WorldWideScience

Sample records for thirtieth cospar scientific

  1. COSPAR for Dummies: History

    Science.gov (United States)

    Viso, Michel

    The committee for Space research was established by the International Council of Scientific Union during the year following the launch of Sputnik 1(October 4th, 1957) which opened the space Era. The committee was the main point of contact in the, then, bipolarized world between scientists from the eastern and western countries. This committee remained the main and sometimes the sole point of contact for the scientists from both parties. During this period, called “cold war” the exchanges were very difficult and language barrier was also a major obstacle in exchanges. Beyond its former, strong political significance, COSPAR aims at promoting the space research, the exchanges of results, information. It was often the starting point of actual scientific cooperation. Even COSPAR has a continuous activity, the focal point for most of the space scientists is the general assembly which was held every year from 1958 up to 1980, then once every other year. The governing body is composed of representatives of various institutions and scientific unions. With the present structure by commissions and sub-commissions, the general assembly are quite big events with numerous scientists working in parallel sessions. The number of oral presentations and poster is continuously increasing. COSPAR is the best and perhaps the unique place for space scientists to exchange and enlarge their vision of space science. While structured in specialized commissions individuals can build up their own interdisciplinary program. Beyond the commissions there are several groups of interests, cross disciplinary and not linked to a single scientific domain: these are the panels. Some are supposed to be transient; some are supposed to be indefinite. The panels can propose advices and recommendations which could be used by the space agencies or other institutions. The officers of the panels are appointed by the COSPAR Bureau. COSPAR is an international cooperative body for scientists. It is the ideal

  2. Scientific ballooning. Proceedings. PSB Meeting of the COSPAR Panel on Technical Problems Related to Scientific Ballooning which was held during the Thirtieth COSPAR Scientific Assembly, Hamburg (Germany), 11 - 21 Jul 1994.

    Science.gov (United States)

    Riedler, W.; Torkar, K.

    1996-05-01

    This issue is grouped into sections on materials, design, performance and analysis of balloons, reviews of major national and international balloon programmes, novel instrumentation and systems for scientific ballooning, and selected recent scientific observations.

  3. Reports and recommendations from COSPAR Planetary Exploration Committee (PEX) & International Lunar Exploration Working Group (ILEWG)

    Science.gov (United States)

    Ehrenfreund, Pascale; Foing, Bernard

    2014-05-01

    In response to the growing importance of space exploration, the objectives of the COSPAR Panel on Exploration (PEX) are to provide high quality, independent science input to support the development of a global space exploration program while working to safeguard the scientific assets of solar system bodies. PEX engages with COSPAR Commissions and Panels, science foundations, IAA, IAF, UN bodies, and IISL to support in particular national and international space exploration working groups and the new era of planetary exploration. COSPAR's input, as gathered by PEX, is intended to express the consensus view of the international scientific community and should ultimately provide a series of guidelines to support future space exploration activities and cooperative efforts, leading to outstanding scientific discoveries, opportunities for innovation, strategic partnerships, technology progression, and inspiration for people of all ages and cultures worldwide. We shall focus on the lunar exploration aspects, where the COSPAR PEX is building on previous COSPAR, ILEWG and community conferences. An updated COSPAR PEX report is published and available online (Ehrenfreund P. et al, COSPAR planetary exploration panel report, http://www.gwu.edu/~spi/assets/COSPAR_PEX2012.pdf). We celebrate 20 years after the 1st International Conference on Exploration and Utilisation of the Moon at Beatenberg in June 1994. The International Lunar Exploration Working Group (ILEWG) was established the year after in April 1995 at an EGS meeting in Hamburg, Germany. As established in its charter, this working group reports to COSPAR and is charged with developing an international strategy for the exploration of the Moon (http://sci.esa.int/ilewg/ ). It discusses coordination between missions, and a road map for future international lunar exploration and utilisation. It fosters information exchange or potential and real future lunar robotic and human missions, as well as for new scientific and

  4. Contributing to COSPAR - Contibuting to Expanding the Knowledge Frontier of Space for the Benefit of Humankind

    Science.gov (United States)

    Lopez-Baeza, Ernesto

    COSPAR's objectives are to promote -on an international level- scientific research in space, with emphasis on the exchange of results, information and opinions, and to provide a forum, open to all scientists, for the discussion of problems that may affect scientific space research (https://cosparhq.cnes.fr/about/origin-purpose-role). COSPAR played an extraordinary significant role in the past by facilitating the scientific exchange between East and West … and surely contributed to the present fluid and free-flowding situation. COSPAR’s challenge now is to get a similar result by providing opportunities to less developed countries to upgrade their resources to progress on all kinds of research using space means. This presentation shows the activity developed by the Climatology from Satellites Group of the University of Valencia, Spain, during the last 10 years, in different action areas of COSPAR, and in the framework of Commission A on Space Studies of the Earth's Surface, Meteorology and Climate, especially in Sub-Commission A3 on Land Processes and Morphology, as well as in the organisation of some Capacity Building Courses akin to Commission A’s terms of reference. The effort -if any- has always and so far been worthwhile. The Group has learnt a lot, it has notably incresed its capacity for networking, as well as its opportunities to accompany scientists from less developed countries in their scientific growing and development of resources (Give a man a fish and you feed him for a day. Teach a man to fish and you feed him for a lifetime -Chinese proverb … and root and foundation for Capacity Building).

  5. New COSPAR space life sciences journal

    Czech Academy of Sciences Publication Activity Database

    Laštovička, Jan; Hei, T.; Stoop, J.

    2013-01-01

    Roč. 52, č. 11 (2013), s. 1859 ISSN 0273-1177 Institutional support: RVO:68378289 Keywords : COSPAR journal Subject RIV: DG - Athmosphere Sciences, Meteorology Impact factor: 1.238, year: 2013 http://www.sciencedirect.com/science/article/pii/S0273117713006753

  6. Atoms for peace: thirtieth anniversary

    International Nuclear Information System (INIS)

    Ramey, J.T.

    1983-01-01

    This paper was prepared for the thirtieth anniversary of President Eisenhower's programme: ''Atoms for Peace''. The author wants to demonstrate that nuclear power has made major contributions to reduction of oil imports and that at the same time, despite repeated predictions of unbridled proliferation, the fact is that proliferation has proceeded at a dramatically slower pace than foreseen by some. To date no country has employed plutonium derived from the nuclear power fuel cycle to initiate its nuclear explosion program. The author concludes that the ''Atoms for Peace'' programme, from the viewpoint of its goal of reducing the spread of nuclear weapons, has been a successful policy. (NEA) [fr

  7. Pennsylvania State University Breazeale Nuclear Reactor. Thirtieth annual progress report, July 1, 1984-June 30, 1985

    International Nuclear Information System (INIS)

    Levine, S.H.; Totenbier, R.E.

    1985-08-01

    This report is the thirtieth annual progress report of the Pennsylvania State University Breazeale Nuclear Reactor and covers such topics as: personnel; reactor facility; cobalt-60 facility; education and training; Radionuclear Application Laboratory; Low Level Radiation Monitoring Laboratory; and facility research utilization

  8. The COSPAR Capacity Building Workshops: growing and expanding : Growing and expanding

    NARCIS (Netherlands)

    Gabriel, Carlos; Willmore, Peter; Mendez, Mariano; Santolik, Ondrej; Pierre-Philippe Mathieu, .; Smith, Randall

    The COSPAR Capacity Building Workshops Program, inaugurated with a first workshop in X-ray astronomy in 2001 in Brazil, has not only grown considerably over the last 11 years, but has also broadened its scope, and now includes very diverse areas of space science. We will review the history of the

  9. Report from ILEWG to the COSPAR Panel on Exploration

    Science.gov (United States)

    Foing, Bernard H.

    The International Lunar Exploration Working Group (ILEWG) was established in April 1995 at a meeting in Hamburg, Germany. As established in its charter, this working group reports to COSPAR and is charged with developing an international strategy for the exploration of the Moon. It discusses coordination between missions, and a road map for future international lunar exploration and utilisation. It fosters information exchange or potential and real future lunar robotic and human missions, as well as for new scientific and exploration information about the Moon. ILEWG was used to feed forward results from lunar missions such as SMART1 to the next ones, and we look now to integrate lessons from all recent orbiters and landers, for the upcoming landers, sample return missions, and human activities. We give a report on ILEWG community activities, refer to COSPAR and ILEWG ICEUM and lunar conferences and declarations [1-18], and discuss the follow-up of GLUC/ICEUM11 declaration relevant to COSPAR PEX*. References: [1] 1st International Lunar Workshop, Balsiger H. et al., Editors, European Space Agency, 1994. ESA-SP-1170. [2] 2nd International Lunar Workshop, Kyoto, H. Mizutani, editor, Japan Space Forum Publisher, 1997. [3] 3rd International Lunar Workshop, Moscow 1998, E. Galimov, editor. [4] ICEUM4, ESTEC, 2000, ESA SP-462, B.H. Foing & M. Perry, editors. [5] ICEUM5, Hawaii Nov 2003, Durst S.M. et al, Editors, Vol 108, 1-576 pp, Science and Technology Series, American Astronautical Society, 2004. [6] ICEUM6, Udaipur 2004, Bhandari N., Editor, Journal Earth Sys-tem Science, India, 114, No6, Dec 2005, pp. 573-841. [7] ICEUM7, Toronto Sept 2005, sci.esa.int/ilewg. [8] ICEUM8, Beijing July 2006, Journal of Chinese Society of Astronautics, Vol. 28 Sup., 2007, Ji W., Editor. [9] ICEUM9, Sorrento, Italy, Foing B., Espinasse S., Kosters G., Editors. http://sci.esa.int/iceum9, Dec. 2007), [11] Ehrenfreund, P., Foing, B.H., Cellino, A. Editors, The Moon and Near Earth Objects

  10. COSPAR/PRBEM international working group activities report

    Science.gov (United States)

    Bourdarie, S.; Blake, B.; Cao, J. B.; Friedel, R.; Miyoshi, Y.; Panasyuk, M.; Underwood, C.

    It is now clear to everybody that the current standard AE8 AP8 model for ionising particle specification in the radiation belts must be updated But such an objective is quite difficult to reach just as a reminder to develop AE8 AP8 model in the seventies was 10 persons full time for ten years It is clear that world-wide efforts must be combined because not any individual group has the human resource to perform these new models by themselves Under COSPAR umbrella an international group of expert well distributed around the world has been created to set up a common framework for everybody involved in this field Planned activities of the international group of experts are to - Define users needs - Provide guidelines for standard file format for ionising measurements - Set up guidelines to process in-situ data on a common basis - Decide in which form the new models will have to be - Centralise all progress done world-wide to advise the community - Try to organise world-wide activities as a project to ensure complementarities and more efficiencies between all efforts done Activities of this working group since its creation will be reported as well as future plans

  11. Report from International Lunar Exploration Working Group (ILEWG) to COSPAR

    Science.gov (United States)

    Foing, Bernard H.

    We refer to COSPAR and ILEWG ICEUM and lunar conferences and declarations [1-18]. We discuss how lunar missions SMART-1, Kaguya, Chang'E1&2, Chandrayaan-1, LCROSS, LRO, GRAIL, LADEE, Chang'E3 and upcoming missions contribute to lunar exploration objectives & roadmap. We present the GLUC/ICEUM11 declaration and give a report on ongoing relevant ILEWG community activities, with focus on: “1. Science and exploration - World-wide access to raw and derived (geophysical units) data products using consistent formats and coordinate systems will maximize return on investment. We call to develop and implement plans for generation, validation, and release of these data products. Data should be made available for scientific analysis and supporting the development and planning of future missions - There are still Outstanding Questions: Structure and composition of crust, mantle, and core and implications for the origin and evolution of the Earth-Moon system; Timing, origin, and consequences of late heavy bombardment; Impact processes and regolith evolution; Nature and origin of volatile emplacement; Implications for resource utilization. These questions require international cooperation and sharing of results in order to be answered in a cost-effective manner - Ground truth information on the lunar far side is missing and needed to address many important scientific questions, e.g. with a sample return from South Pole-Aitken Basin - Knowledge of the interior is poor relative to the surface, and is needed to address a number of key questions, e.g. with International Lunar Network for seismometry and other geophysical measurements - Lunar missions will be driven by exploration, resource utilization, and science; we should consider minimum science payload for every mission, e.g., landers and rovers should carry instruments to determine surface composition and mineralogy - It is felt important to have a shared database about previous missions available for free, so as to provide

  12. Conference 'Republic Anniversary Conference of young scientists, dedicated to 30 thirtieth anniversary of Institute of Chemistry of Academy of Sciences of Republic of Tajikistan' Proceedings

    International Nuclear Information System (INIS)

    1986-04-01

    This collection of thesis of Republic Anniversary Conference of young scientists, dedicated to 30 thirtieth anniversary of Institute of Chemistry of Academy of Sciences of Republic of Tajikistan present the results of investigation of young scientists-chemists of Tajikistan which was carried out from 1974 till 1976 years in the area of physical, nonorganic, analytical, applied and organic chemistry. They are consider the questions of matters synthesis with beforehand given properties

  13. Experimental study on one-thirtieth scale model of reinforced concrete reactor building under cyclic lateral loading

    International Nuclear Information System (INIS)

    Fukada, Y.; Hirashima, S.; Shobara, R.

    1981-01-01

    The test models, three types of earthquake-resistant components, are reduced to a scale of one-thirtieth of the prototype which is based on the design of the reactor building for a BWR Mark II Improved Type 1100 MWe Nuclear Power Plant in Japan. Experiments on earthquake-resistant components are conducted as a first step. Three types of components are selected: Outer Box (a box-shape outer wall of an auxiliary building), Inner Box (a box-shape building wall inside the Outer Box) and Shield Wall (a conical-shape innermost shield wall). Outer Box has one story, Inner Box four stories and Shield Wall three stories, respectively. Lateral forces are statically applied to each height of a specimen and axial force is simultaneously applied on top of the specimen. The shear reinforcement ratio is 1.2% for both Outer Box and Inner Box, 1.6% for Shield Wall. The test results are discussed to confirm safety factors for the design load and the relationships between loads and displacements, and then they are compared with analytical results. The ratio of the maximum load to the design load is above 2.5. Flexural and shear displacements are analyzed independently in the tests. The relationships of moment-curvature and shear stress-shear strain, and the relationships of load-displacement which are calculated from these two show good agreement with those in conventional analyses. The FEM non-linear analysis shows good agreement with the experiments. (orig./HP)

  14. Generic and scientific constraints involving geoethics and geoeducation in planetary geosciences

    Science.gov (United States)

    Martínez-Frías, Jesús

    2013-04-01

    Geoscience education is a key factor in the academic, scientific and professional progress of any modern society. Geoethics is an interdisciplinary field, which involves Earth and Planetary Sciences as well as applied ethics, regarding the study of the abiotic world. These coss-cutting interactions linking scientific, societal and cultural aspects, consider our planet, in its modern approach, as a system and as a model. This new perspective is extremely important in the context of geoducation in planetary geosciences. In addition, Earth, our home planet, is the only planet in our solar system known to harbor life. This also makes it crucial to develop any scientific strategy and methodological technique (e.g. Raman spectroscopy) of searching for extraterrestrial life. In this context, it has been recently proposed [1-3] that the incorporation of the geoethical and geodiversity issues in planetary geology and astrobiology studies would enrich their methodological and conceptual character (mainly but not only in relation to planetary protection). Modern geoscience education must take into account that, in order to understand the origin and evolution of our planet, we need to be aware that the Earth is open to space, and that the study of meteorites, asteroids, the Moon and Mars is also essential for this purpose (Earth analogs are also unique sites to define planetary guidelines). Generic and scientific constraints involving geoethics and geoeducation should be incorporated into the teaching of all fundamental knowledge and skills for students and teachers. References: [1] Martinez-Frias, J. et al. (2009) 9th European Workshop on Astrobiology, EANA 09, 12-14 October 2009, Brussels, Belgiam. [2] Martinez-Frias, J., et al. (2010) 38th COSPAR Scientific Assembly. Protecting the Lunar and Martian Environments for Scientific Research, Bremen, Germany, 18-25 July. [3] Walsh et al. (2012) 43rd Lunar and Planetary Science Conference, 1910.pdf

  15. Gravitational biology and space life sciences: Current status and ...

    Indian Academy of Sciences (India)

    Gravitational and space biology organizations and journals. American Institute of ... of Scientific Unions (now the International Council for. Science). COSPAR ... Greek Aerospace Medical Association & Space Research. (GASMA). Provides ...

  16. Planetary Protection and Mars Special Regions--A Suggestion for Updating the Definition.

    Science.gov (United States)

    Rettberg, Petra; Anesio, Alexandre M; Baker, Victor R; Baross, John A; Cady, Sherry L; Detsis, Emmanouil; Foreman, Christine M; Hauber, Ernst; Ori, Gian Gabriele; Pearce, David A; Renno, Nilton O; Ruvkun, Gary; Sattler, Birgit; Saunders, Mark P; Smith, David H; Wagner, Dirk; Westall, Frances

    2016-02-01

    We highlight the role of COSPAR and the scientific community in defining and updating the framework of planetary protection. Specifically, we focus on Mars "Special Regions," areas where strict planetary protection measures have to be applied before a spacecraft can explore them, given the existence of environmental conditions that may be conducive to terrestrial microbial growth. We outline the history of the concept of Special Regions and inform on recent developments regarding the COSPAR policy, namely, the MEPAG SR-SAG2 review and the Academies and ESF joint committee report on Mars Special Regions. We present some new issues that necessitate the update of the current policy and provide suggestions for new definitions of Special Regions. We conclude with the current major scientific questions that remain unanswered regarding Mars Special Regions.

  17. Annual report 1987-1988

    International Nuclear Information System (INIS)

    1988-01-01

    For this thirtieth year of operation, the Institute's twenty constituent organisations were eighteen Australian universities, the Australian Nuclear Science and Technology Organisation (ANSTO) and the Commonwealth Scientific and Industrial Research Organisation (CSIRO). Through 1987-88, AINSE's operations supported research and training in the nuclear field, assisted the application of nuclear techniques in science, engineering and industrial technology, and assisted the universities and similar organisations in using the reactors, accelerators and other special facilities within the Lucas Heights Research Laboratories

  18. Report of the thirtieth session of GESAMP, Monaco, 22-26 May 2000. Reports and studies no. 69

    International Nuclear Information System (INIS)

    GESAMP - IMO/FAO/UNESCO-IOC/WMO/WHO/IAEA/UN/UNEP Joint Group of Experts on the Scientific Aspects of Marine Environmental Protection

    2000-01-01

    The Joint Group of Experts on the Scientific Aspects of Marine Environmental Protection (GESAMP) held its Thirtieth Session at the International Atomic Energy Agency's Marine Environment Laboratory in Monaco from 22-26 May 2000. GESAMP was established in 1969 by a number of United Nations Organizations as a Joint Group to encourage the independent, interdisciplinary consideration ol marine pollution and environmental protection problems with a view to avoiding duplication of efforts within the United Nations system. At this meeting GESAMP considered the following main topics: 1) Marine Environmental Assessments; 2) Estimates of Oil Entering the Marine Environment from Sea-Based Activities; 3) Environmental Impacts of Coastal Aquaculture; 4)Evaluation of the Hazards of Harmful Substances Carried by Ships. Marine Environmental Assessments: Two final draft reports were put forth to the Group for approval: 1) The LBA report 'Land-based Sources and Activities Affecting the Quality and Uses of the Marine. Coastal and Associated Freshwater Environment' (document GESAMP XXX/3/2); 2) The Biennial Report 'A Sea of Troubles - Issues in Focus' (document GESAMP XXX/3/1). The Group reviewed the LBA report and approved the final draft for publication as GESAMP Reports and Studies Series No. 71, and also as a commercial publication, with the understanding that certain amendments and suggestions given at this session be taken into account in the final version. The Group reviewed the biennial report and found the text, prepared by a professional writer on the basis of the draft report prepared by the Working Group and reviewed at GESAMP XXIX, very appropriate for the intended target audience. They suggested that the final Conclusions and Recommendations chapter should be published as an integral part of the biennial report but in a form which makes it clear that it is a product of the Working Group. GESAMP endorsed the final draft for publication in the GESAMP Reports and Studies

  19. Space agencies' scientific roadmaps need harmonisation and reegular re-assessment

    Science.gov (United States)

    Worms, Jean-Claude; Culhane, J. Leonard; Walter, Nicolas; Swings, Jean-Pierre; Detsis, Emmanouil

    The need to consider international collaboration in the exploration of space has been recognised since the dawn of the space age in 1957. Since then, international collaboration has been the main operational working mode amongst space scientists the world over, setting aside national pre-eminence and other political arguments. COSPAR itself was created as a tool for scientists to maintain the dialogue at the time of the cold war. Similarly the inherent constraints of the field (cost, complexity, time span) have led space agencies to try and coordinate their efforts. As a result many - if not all - of the key space science missions since the 60’s have been collaborative by nature. Different collaboration models have existed with varying success, and the corresponding lessons learned have been assessed through various fora and reports. For various reasons whose scope has broadened since that time (use of space in other domains such as Earth observation, telecommunication and navigation; emergence of commercial space activities; increased public appeal and capacity to motivate the young generation to engage into related careers), the importance of international collaboration in space has never faltered and coordination among spacefaring nations has become the norm. However programme harmonisation is often found to be lacking, and duplication of efforts sometimes happens due to different planning and decision procedures, programmatic timelines or budgetary constraints. Previous studies, in particular by the European ESSC-ESF, with input from the US NAS-SSB, advocated the need to establish a coordinating body involving major space agencies to address these coordination issues in a systematic and harmonious way. Since then and in line with this recommendation, the International Space Exploration Coordination Group (ISECG) of 14 space agencies was created in 2007 and published a first roadmap to advance a “Global Exploration Strategy”. ISECG is non-binding though

  20. Toward a global space exploration program: A stepping stone approach

    Science.gov (United States)

    Ehrenfreund, Pascale; McKay, Chris; Rummel, John D.; Foing, Bernard H.; Neal, Clive R.; Masson-Zwaan, Tanja; Ansdell, Megan; Peter, Nicolas; Zarnecki, John; Mackwell, Steve; Perino, Maria Antionetta; Billings, Linda; Mankins, John; Race, Margaret

    2012-01-01

    In response to the growing importance of space exploration in future planning, the Committee on Space Research (COSPAR) Panel on Exploration (PEX) was chartered to provide independent scientific advice to support the development of exploration programs and to safeguard the potential scientific assets of solar system objects. In this report, PEX elaborates a stepwise approach to achieve a new level of space cooperation that can help develop world-wide capabilities in space science and exploration and support a transition that will lead to a global space exploration program. The proposed stepping stones are intended to transcend cross-cultural barriers, leading to the development of technical interfaces and shared legal frameworks and fostering coordination and cooperation on a broad front. Input for this report was drawn from expertise provided by COSPAR Associates within the international community and via the contacts they maintain in various scientific entities. The report provides a summary and synthesis of science roadmaps and recommendations for planetary exploration produced by many national and international working groups, aiming to encourage and exploit synergies among similar programs. While science and technology represent the core and, often, the drivers for space exploration, several other disciplines and their stakeholders (Earth science, space law, and others) should be more robustly interlinked and involved than they have been to date. The report argues that a shared vision is crucial to this linkage, and to providing a direction that enables new countries and stakeholders to join and engage in the overall space exploration effort. Building a basic space technology capacity within a wider range of countries, ensuring new actors in space act responsibly, and increasing public awareness and engagement are concrete steps that can provide a broader interest in space exploration, worldwide, and build a solid basis for program sustainability. By engaging

  1. Instituto de Asuntos Nucleares: Science and technology for progress

    International Nuclear Information System (INIS)

    Ahumada, J.J.; Zuleta, S.; Lucero, E.; Guzman, O.; Zamora, H.; Briceno de M, C.

    1989-01-01

    On the thirtieth anniversary celebration of the ''Instituto de Asuntos Nucleares'', a historical review of its activities has been made, emphasizing on its politics of development, technological and scientific advances, including the goals and accomplishments attained for the uses and applications of nuclear technology in Colombia. This includes the technical assistance which is being provided by International Organizations. National and international influences are shown for each one of the technical areas: agricultural applications, industrial applications and metallurgy, biochemistry and radiopharmacy, development process, nuclear electronics, solar and non-conventional energies, gamma facility, nuclear physics, hydrology, raw materials, chemistry, health radiophysics, reactor, nuclear documentation and information center and administration

  2. Comments on Current Space Systems Observing the Climate

    Science.gov (United States)

    Fisk, L. A.

    2016-07-01

    The Global Climate Observing System (GCOS), which was established in 1992, has been effective in specifying the observations needed for climate studies, and advocating that these observations be made. As a result, there are essential climate variables being observed, particularly from space, and these have formed the basis for our ever-improving models of how the Earth system functions and the human impact on it. We cannot conclude, however, that the current observing system in space is adequate. Climate change is accelerating, and we need to ensure that our observations capture, with completeness and with proper resolution and cadence, the most important changes. Perhaps of most significance, we need to use observations from space to guide the mitigation and adaptation strategies on which at last our civilization seems prepared to embark. And we need to use our observations to educate particularly policy makers on the reality of climate change, so that none deny the need to act. COSPAR is determined to play its part in highlighting the need to strengthen the climate observing system and notably its research component. This is being accomplished through events like the present roundtable, through the work of its Scientific Commission A, its Task Group on GEO (where COSPAR is serving as a member of its Program Board), and by promoting among space agencies and policy-makers the recently released scientific roadmap on Integrated Earth System Science for the period 2016-2025.

  3. GERAKAN 30 SEPTEMBER 1965 DALAM PERSPEKTIF FILSAFAT SEJARAH MARXISME

    Directory of Open Access Journals (Sweden)

    Harsa Permata

    2016-08-01

    Full Text Available The Thirtieth of September Movement 1965 (G30S 1965, is a movement which is very influential in the history of Indonesian society until today. After G30S 1965, freedom of ideology began to be restricted in Indonesia. In addition, the slaughter of millions of human beings, with the reason to eradicate communism, began to take place after G30S 1965. A restriction on freedom of ideology is also touching the academic life. Based on TAP MPRS No.. XXV/1966, the study of Marxism-Leninism ideology is limited. This resulted in the lack of alternative and scientific thought in the academic world in Indonesia. The Thirtieth of September Movement 1965 (G30S 1965, is the manifestation of class contradictions in the Indonesian capitalist society. G30S 1965, emphasize the class contradictions in Indonesian society. Social classes in Indonesian society is a military bourgeoisie represented by the TNI (Indonesian Armed Forces, the proletariat, as represented by the PKI (Indonesian Communist Party. President Sukarno, was the one who stand in the middle of the contradiction between the army and the PKI. And then, G30S 1965, used as an excuse by Suharto and the army to stage a creeping coup against President Sukarno and slaughtered millions of cadres and sympathizers of the PKI. After the G30S 1965, the New Order regime of Suharto opened the door wide open for international capitalism to exploit the natural resources of Indonesia. Suharto's New Order regime improves Indonesian capitalism.

  4. Scientific instruments, scientific progress and the cyclotron

    International Nuclear Information System (INIS)

    Baird, David; Faust, Thomas

    1990-01-01

    Philosophers speak of science in terms of theory and experiment, yet when they speak of the progress of scientific knowledge they speak in terms of theory alone. In this article it is claimed that scientific knowledge consists of, among other things, scientific instruments and instrumental techniques and not simply of some kind of justified beliefs. It is argued that one aspect of scientific progress can be characterized relatively straightforwardly - the accumulation of new scientific instruments. The development of the cyclotron is taken to illustrate this point. Eight different activities which promoted the successful completion of the cyclotron are recognised. The importance is in the machine rather than the experiments which could be run on it and the focus is on how the cyclotron came into being, not how it was subsequently used. The completed instrument is seen as a useful unit of scientific progress in its own right. (UK)

  5. SALTON SEA SCIENTIFIC DRILLING PROJECT: SCIENTIFIC PROGRAM.

    Science.gov (United States)

    Sass, J.H.; Elders, W.A.

    1986-01-01

    The Salton Sea Scientific Drilling Project, was spudded on 24 October 1985, and reached a total depth of 10,564 ft. (3. 2 km) on 17 March 1986. There followed a period of logging, a flow test, and downhole scientific measurements. The scientific goals were integrated smoothly with the engineering and economic objectives of the program and the ideal of 'science driving the drill' in continental scientific drilling projects was achieved in large measure. The principal scientific goals of the project were to study the physical and chemical processes involved in an active, magmatically driven hydrothermal system. To facilitate these studies, high priority was attached to four areas of sample and data collection, namely: (1) core and cuttings, (2) formation fluids, (3) geophysical logging, and (4) downhole physical measurements, particularly temperatures and pressures.

  6. The CUIB: A source of motivation for research on librarianship and information science in Latin America

    OpenAIRE

    Editores Biblios

    2012-01-01

    Interview with Filiberto Felipe Martínez Arellano (Mexico) researcher of the Centro Universitario de Investigaciones Bibliotecologicas (CUIB) in the context of the thirtieth anniversary of this academic center.

  7. EFSA Scientific Committee; Scientific Opinion on Risk Assessment Terminology

    DEFF Research Database (Denmark)

    Hald, Tine

    of improving the expression and communication of risk and/or uncertainties in the selected opinions. The Scientific Committee concluded that risk assessment terminology is not fully harmonised within EFSA. In part this is caused by sectoral legislation defining specific terminology and international standards......The Scientific Committee of the European Food Safety Authority (EFSA) reviewed the use of risk assessment terminology within its Scientific Panels. An external report, commissioned by EFSA, analysed 219 opinions published by the Scientific Committee and Panels to recommend possible ways......, the Scientific Committee concludes that particular care must be taken that the principles of CAC, OIE or IPPC are followed strictly. EFSA Scientific Panels should identify which specific approach is most useful in dealing with their individual mandates. The Scientific Committee considered detailed aspects...

  8. Biological quarantine on international waters: an initiative for onboard protocols

    Science.gov (United States)

    Takano, Yoshinori; Yano, Hajime; Funase, Ryu; Sekine, Yasuhito; Takai, Ken

    2012-07-01

    The research vessel Chikyu is expanding new frontiers in science, technology, and international collaboration through deep-sea expedition. The Chikyu (length: 210 m, gross tonnage: 56752 tons) has advanced and comprehensive scientific research facilities. One of the scientific purposes of the vessel is to investigate into unexplored biosphere (i.e., undescribed extremophiles) on the Earth. Therefore, "the onboard laboratory" provides us systematic microbiological protocols with a physical containment situation. In parallel, the onboard equipments provide sufficient space for fifty scientists and technical support staff. The helicopter deck also supports various logistics through transporting by a large scale helicopter (See, http://www.jamstec.go.jp/chikyu/eng/). Since the establishment of Panel on Planetary Protection (PPP) in Committee on Space Research (COSPAR), we have an international consensus about the development and promulgation of planetary protection knowledge, policy, and plans to prevent the harmful effects of biological contamination on the Earth (e.g., Rummel, 2002). However, the matter to select a candidate location of initial quarantine at BSL4 level is often problematic. To answer the key issue, we suggest that international waters can be a meaningful option with several advantages to conduct initial onboard-biological quarantine investigation. Hence, the research vessel Chikyu is promising for further PPP requirements (e.g., Enceladus sample return project: Tsou et al., 2012). Rummel, J., Seeking an international consensus in planetary protection: COSPAR's planetary protection panel. Advances in Space Research, 30, 1573-1575 (2002). Tsou, P. et al. LIFE: Life Investigation For Enceladus - A Sample Return Mission Concept in Search for Evidence of Life. Astrobiology, in press.

  9. The Effectiveness of Scientific Inquiry With/Without Integration of Scientific Reasoning

    Science.gov (United States)

    Chen, Chun-Ting; She, Hsiao-Ching

    2015-01-01

    This study examines the difference in effectiveness between two scientific inquiry programs-one with an emphasis on scientific reasoning and one without a scientific reasoning component-on students' scientific concepts, scientific concept-dependent reasoning, and scientific inquiry. A mixed-method approach was used in which 115 grade 5…

  10. The CUIB: A source of motivation for research on librarianship and information science in Latin America

    Directory of Open Access Journals (Sweden)

    Editores Biblios

    2012-08-01

    Full Text Available Interview with Filiberto Felipe Martínez Arellano (Mexico researcher of the Centro Universitario de Investigaciones Bibliotecologicas (CUIB in the context of the thirtieth anniversary of this academic center.

  11. Accelerating the scientific exploration process with scientific workflows

    International Nuclear Information System (INIS)

    Altintas, Ilkay; Barney, Oscar; Cheng, Zhengang; Critchlow, Terence; Ludaescher, Bertram; Parker, Steve; Shoshani, Arie; Vouk, Mladen

    2006-01-01

    Although an increasing amount of middleware has emerged in the last few years to achieve remote data access, distributed job execution, and data management, orchestrating these technologies with minimal overhead still remains a difficult task for scientists. Scientific workflow systems improve this situation by creating interfaces to a variety of technologies and automating the execution and monitoring of the workflows. Workflow systems provide domain-independent customizable interfaces and tools that combine different tools and technologies along with efficient methods for using them. As simulations and experiments move into the petascale regime, the orchestration of long running data and compute intensive tasks is becoming a major requirement for the successful steering and completion of scientific investigations. A scientific workflow is the process of combining data and processes into a configurable, structured set of steps that implement semi-automated computational solutions of a scientific problem. Kepler is a cross-project collaboration, co-founded by the SciDAC Scientific Data Management (SDM) Center, whose purpose is to develop a domain-independent scientific workflow system. It provides a workflow environment in which scientists design and execute scientific workflows by specifying the desired sequence of computational actions and the appropriate data flow, including required data transformations, between these steps. Currently deployed workflows range from local analytical pipelines to distributed, high-performance and high-throughput applications, which can be both data- and compute-intensive. The scientific workflow approach offers a number of advantages over traditional scripting-based approaches, including ease of configuration, improved reusability and maintenance of workflows and components (called actors), automated provenance management, 'smart' re-running of different versions of workflow instances, on-the-fly updateable parameters, monitoring

  12. Astrophysics with small satellites in Scandinavia

    DEFF Research Database (Denmark)

    Lund, Niels

    2003-01-01

    The small-satellites activities in the Scandinavian countries are briefly surveyed with emphasis on astrophysics research. (C) 2002 COSPAR. Published by Elsevier Science Ltd. All rights reserved.......The small-satellites activities in the Scandinavian countries are briefly surveyed with emphasis on astrophysics research. (C) 2002 COSPAR. Published by Elsevier Science Ltd. All rights reserved....

  13. Extensional scientific realism vs. intensional scientific realism.

    Science.gov (United States)

    Park, Seungbae

    2016-10-01

    Extensional scientific realism is the view that each believable scientific theory is supported by the unique first-order evidence for it and that if we want to believe that it is true, we should rely on its unique first-order evidence. In contrast, intensional scientific realism is the view that all believable scientific theories have a common feature and that we should rely on it to determine whether a theory is believable or not. Fitzpatrick argues that extensional realism is immune, while intensional realism is not, to the pessimistic induction. I reply that if extensional realism overcomes the pessimistic induction at all, that is because it implicitly relies on the theoretical resource of intensional realism. I also argue that extensional realism, by nature, cannot embed a criterion for distinguishing between believable and unbelievable theories. Copyright © 2016 Elsevier Ltd. All rights reserved.

  14. EFFECT SCIENTIFIC INQUIRY TEACHING MODELS AND SCIENTIFIC ATTITUDE TO PHYSICS STUDENT OUTCOMES

    Directory of Open Access Journals (Sweden)

    Dian Clara Natalia Sihotang

    2014-12-01

    Full Text Available The objectives of this study were to determine whether: (1 the student’s achievement taught by using Scientific Inquiry Teaching Models is better than that of taught by using Direct Instruction; (2 the student’s achievement who have a high scientific attitude is better than student who have low scientific attitude; and (3 there is interaction between Scientific Inquiry Teaching Models and scientific attitude for the student’s achievement. The results of research are: (1 the student’s achievement given learning through Scientific Inquiry Teaching Models better than Direct Instruction; (2 the student’s achievement who have a high scientific attitude better than student who have low scientific attitude; and (3 there was interaction between Scientific Inquiry Teaching Models and scientific attitude for student’s achievement which this models is better to apply for student who have a high scientific attitude.

  15. Exploration of Korean Students' Scientific Imagination Using the Scientific Imagination Inventory

    Science.gov (United States)

    Mun, Jiyeong; Mun, Kongju; Kim, Sung-Won

    2015-01-01

    This article reports on the study of the components of scientific imagination and describes the scales used to measure scientific imagination in Korean elementary and secondary students. In this study, we developed an inventory, which we call the Scientific Imagination Inventory (SII), in order to examine aspects of scientific imagination. We…

  16. Thirtieth annual report 1981-82

    International Nuclear Information System (INIS)

    1983-01-01

    Changes in the AAEC research program arising from the revised Government energy research arrangements announced in April 1981 are outlined. Projects in fission reactor technology, the nuclear fuel cycle, fusion, environmental studies, radiation technology, the application of radioisotopes and radiopharmaceutical research are discussed. Details of the production, sales and distribution of medical radioisotopes, of the Regulatory Bureau and of international relations are also included

  17. Therapeutical evaluation of bevacizumab application in relapsed pterygium

    Directory of Open Access Journals (Sweden)

    Mayara Martins Abrahão

    Full Text Available Abstract Objective: Therapeutic evaluation of Bevacizumab application in relapsed pterygium concerning visual acuity, keratometry, refraction, symptomatology. Methods: Group 1 (4 patients received 0.1 ml of Bevacizumab (avastin, being evaluated posteriorly on the tenth and thirtieth days after the application, seeking to compare with the exam previously made, being it realized with the other two groups, in which Group 2 (4 patients received 0.2 ml of Bevacizumab and the Group 3 (3 patients received 1 ml of the placebo injection. Results: In this study, eleven eyes of eleven patients were evaluated. Among these patients, 7 were women (63.6% and 4 men (36.4%. There was a variation in the cylindrical diopter after the treatment with a dose of 0.1 ml of bevaciumab during the evaluation on the thirtieth day. Whereas the cylindrical shaft had a significantly larger modification after the application of 0.2 ml. Regarding the spherical diopter variation, there were modifications in the 3 groups. The keratometry varied in the 3 groups, mostly after the thirtieth day of evaluation. In relation to symptomatology, it was observed a reduction in the subjective evaluation of the eye burning sensation, the prurience mentioned by the patient and a reduction of the hyperemia biomicroscopy evaluation. Conclusion: In bevacizumab application in the recurrent pterygium treatment, there is modification of the spherical and cylindrical parameters of refraction, besides the changes in keratometry and the reduction of the symptomatology.

  18. Effects of Scaffolds and Scientific Reasoning Ability on Web-Based Scientific Inquiry

    Science.gov (United States)

    Wu, Hui-Ling; Weng, Hsiao-Lan; She, Hsiao-Ching

    2016-01-01

    This study examined how background knowledge, scientific reasoning ability, and various scaffolding forms influenced students' science knowledge and scientific inquiry achievements. The students participated in an online scientific inquiry program involving such activities as generating scientific questions and drawing evidence-based conclusions,…

  19. Proceedings of the 30th International Workshop on Nuclear Theory (IWNT-30)

    International Nuclear Information System (INIS)

    Georgieva, A. I.; Minkov, N.

    2011-01-01

    The Thirtieth Anniversary International Workshop on Nuclear Theory was held between 27 June and 2 July 2011 in Rila Mountains, Bulgaria. The main topics of the program were: nucleon-nucleon correlation effects on nuclear structure and reactions; symmetries in nuclear structure; collective and intrinsic motions of nuclei; exotic nuclei; few-body systems; advanced studies of many-fermion systems; nuclear astrophysics and related topics. They are related to the problems contained in the research plan of the Nuclear Theory Laboratory of the Institute for Nuclear Research and Nuclear Energy of the Bulgarian Academy of Sciences. The Workshop was attended by 49 participants (including the organizers) from France, Germany, Greece, Italy, Japan, Kazakhstan, Romania, Russia, South Africa, Spain, USA and Bulgaria. The scientific program contained totally 32 oral talks. The schedule of the Workshop was organized so as to provide an opportunity for meetings and discussions among scientists with common interests as well as among physicists working in different fields of research. The secluded mountain area and the lovely forest venue allowed the participants to concentrate on their scientific work but also to refresh between the sessions and get an inspiration for future work development

  20. Scientific integrity in Brazil.

    Science.gov (United States)

    Lins, Liliane; Carvalho, Fernando Martins

    2014-09-01

    This article focuses on scientific integrity and the identification of predisposing factors to scientific misconduct in Brazil. Brazilian scientific production has increased in the last ten years, but the quality of the articles has decreased. Pressure on researchers and students for increasing scientific production may contribute to scientific misconduct. Cases of misconduct in science have been recently denounced in the country. Brazil has important institutions for controlling ethical and safety aspects of human research, but there is a lack of specific offices to investigate suspected cases of misconduct and policies to deal with scientific dishonesty.

  1. The Revista Scientific

    Directory of Open Access Journals (Sweden)

    Oscar Antonio Martínez Molina

    2017-02-01

    Full Text Available The Revista Scientific aims to publish quality papers that include the perspective of analysis in educational settings. Together with www.indtec.com.ve, this electronic publication aims to promote and disseminate, with seriousness and rigor, the academic production in this field. Editorial of the new stage Revista Scientific was created with the aim of constituting a reference space for scientific research in the field of research analysis that is carried out within the universities in Latin America, once the distribution list hosted on the INDTEC platform (http://www.indtec.com.ve is consolidated as a space for dissemination and development of new ideas and initiatives. The first presentation of INDTEC Magazine was held in August 2016 in Venezuela. Thanks to the support of the INDTEC platform, SCIENTIFIC Magazine has been able to develop from the cooperative work of the people who make up its Editorial Committee, Academic Committee and Scientific Committee in Electronic Edition, and of the referees of each one of the numbers. Part of the success is due to the motivation of its co-editors and excellent professionals from different parts of the world: Argentina, Belgium, Colombia, Cuba, Ecuador, Spain, Mexico, Venezuela, which form the various committees, with enthusiasm and joy participating in this project (whose organizational structure is presented in this edition and continues in increcendo. Also, the strategy adopted to edit a monographic number from the various events organized in the framework of the universities, has contributed to provide SCIENTIFIC with a point value speaker of intellectual progress in the field of education. SCIENTIFIC Magazine is currently indexed in ISI, International Scientific Indexing, Dubai - UAE; ROAD, the Directory of Open Access Scholarly Resources (ISSN International Center, France; REVENCYT-ULA, Venezuela; Google Scholar (Google Scholar, International Index; Published in Calaméo; ISSUU; Academia

  2. The Scientific Competitiveness of Nations.

    Science.gov (United States)

    Cimini, Giulio; Gabrielli, Andrea; Sylos Labini, Francesco

    2014-01-01

    We use citation data of scientific articles produced by individual nations in different scientific domains to determine the structure and efficiency of national research systems. We characterize the scientific fitness of each nation-that is, the competitiveness of its research system-and the complexity of each scientific domain by means of a non-linear iterative algorithm able to assess quantitatively the advantage of scientific diversification. We find that technological leading nations, beyond having the largest production of scientific papers and the largest number of citations, do not specialize in a few scientific domains. Rather, they diversify as much as possible their research system. On the other side, less developed nations are competitive only in scientific domains where also many other nations are present. Diversification thus represents the key element that correlates with scientific and technological competitiveness. A remarkable implication of this structure of the scientific competition is that the scientific domains playing the role of "markers" of national scientific competitiveness are those not necessarily of high technological requirements, but rather addressing the most "sophisticated" needs of the society.

  3. Scientific Utopia: An agenda for improving scientific communication (Invited)

    Science.gov (United States)

    Nosek, B.

    2013-12-01

    The scientist's primary incentive is publication. In the present culture, open practices do not increase chances of publication, and they often require additional work. Practicing the abstract scientific values of openness and reproducibility thus requires behaviors in addition to those relevant for the primary, concrete rewards. When in conflict, concrete rewards are likely to dominate over abstract ones. As a consequence, the reward structure for scientists does not encourage openness and reproducibility. This can be changed by nudging incentives to align scientific practices with scientific values. Science will benefit by creating and connecting technologies that nudge incentives while supporting and improving the scientific workflow. For example, it should be as easy to search the research literature for my topic as it is to search the Internet to find hilarious videos of cats falling off of furniture. I will introduce the Center for Open Science (http://centerforopenscience.org/) and efforts to improve openness and reproducibility such as http://openscienceframework.org/. There will be no cats.

  4. «The work of cutting oats will give more materials for a playwright...» soviet writer's intelligentsia in country of 1930s

    Directory of Open Access Journals (Sweden)

    Е Д Гордина

    2008-12-01

    Full Text Available The article has opened role of the soviet writes in formation new views and loyal attitude toward government thought enlightenment and making theaters in the country in thirtieth years the twentieth century. At the same time soviet writes learned everyday life peasants.

  5. Analyzing Data Citations to Assess the Scientific and Societal Value of Scientific Data

    Science.gov (United States)

    Chen, R. S.; Downs, R. R.

    2012-12-01

    Stakeholders in the creation, distribution, support, funding, and use of scientific data can benefit by understanding the value that the data have for society and science. For decades, the scientific community has been using citations of articles in the published scientific literature as one of the primary measures used for evaluating the performance of scientists, departments, institutions, and scientific disciplines. Similarly, citations in the published literature of scientific data may be useful for measuring and assessing the value of the scientific data and the performance of the individuals, projects, programs, and organizations that have contributed to the data and their use. The results of citation analysis and other assessments of the value of data also can contribute to planning for future data collection, development, distribution, and preservation efforts. The planned release of new data citation indexes and the more widespread adoption of unique data identifiers and automated attribution mechanisms have the potential to improve significantly the capabilities for analyzing citations of scientific data. In addition, rapid developments in the systems and capabilities for disseminating data, along with education and workforce development on the importance of data attribution and on techniques for data citation, can improve practices for citing scientific data. Such practices need to lead not only to better aggregate statistics about data citation, but also to improved characterization and understanding of the impact of data use in terms of the benefits for science and society. Analyses of citations in the scientific literature were conducted for data that were distributed by an interdisciplinary scientific data center during a five-year period (1997 - 2011), to identify the scientific fields represented by the journals and books in which the data were cited. Secondary citation analysis also was conducted for a sample of scientific publications that used

  6. INTEGRATION OF UKRAINIAN INDUSTRY SCIENTIFIC PERIODACLS INTO WORLD SCIENTIFIC INFORMATION SPACE: PROBLEMS AND SOLUTIONS

    Directory of Open Access Journals (Sweden)

    T. O. Kolesnykova

    2013-11-01

    Full Text Available Purpose. Problem of representation lack of scientists’ publications, including transport scientists, in the international scientometric databases is the urgent one for Ukrainian science. To solve the problem one should study the structure and quality of the information flow of scientific periodicals of railway universities in Ukraine and to determine the integration algorithm of scientific publications of Ukrainian scientists into the world scientific information space. Methodology. Applying the methods of scientific analysis, synthesis, analogy, comparison and prediction the author has investigated the problem of scientific knowledge distribution using formal communications. The readiness of Ukrainian railway periodicals to registration procedure in the international scientometric systems was analyzed. The level of representation of articles and authors of Ukrainian railway universities in scientometric database Scopus was studied. Findings. Monitoring of the portals of railway industry universities of Ukraine and the sites of their scientific periodicals and analysis of obtained data prove insufficient readiness of most scientific publications for submission to scientometric database. The ways providing sufficient "visibility" of industry periodicals of Ukrainian universities in the global scientific information space were proposed. Originality. The structure and quality of documentary flow of scientific periodicals in railway transport universities of Ukraine and its reflection in scientometric DB Scopus were first investigated. The basic directions of university activities to integrate the results of transport scientists research into the global scientific digital environment were outlined. It was determined the leading role of university libraries in the integration processes of scientific documentary resources of universities into the global scientific and information communicative space. Practical value. Implementation of the proposed

  7. A Complexity Approach to Evaluating National Scientific Systems through International Scientific Collaborations

    Science.gov (United States)

    Zelnio, Ryan J.

    2013-01-01

    This dissertation seeks to contribute to a fuller understanding of how international scientific collaboration has affected national scientific systems. It does this by developing three methodological approaches grounded in social complexity theory and applying them to the evaluation of national scientific systems. The first methodology identifies…

  8. [Financing of the scientific publication and protection of the scientific knowledge].

    Science.gov (United States)

    Oliveira Filho, Renato Santos de; Hochman, Bernardo; Nahas, Fabio Xerfan; Ferreira, Lydia Masako

    2005-01-01

    The main purpose of a study is its publication on a scientific journal. Research financing agencies are important institutions so that studies can be developed and published. The most important research financing agencies that are discussed in this article are: "Coordenação de Aperfeiçoamento de Pessoal de Nível Superior" (CAPES), "Conselho Nacional de Desenvolvimento Científico e Tecnológico" (CNPq) and "Fundação de Amparo à Pesquisa do Estado de São Paulo" (FAPESP). CAPES' activities can be grouped in four different strategy lines: a) it evaluates the stricto sensu, at the post-graduation level; b) it provides access and development of scientific research; c) it provides investment on the development of high qualified human resources in Brazil and abroad, and d) it promotes international scientific cooperation. Although CAPES does not support directly scientific publications, almost all actions of this agency contribute to the development of scientific research and publication. CNPq has two main purposes: financing researches and development of human resources. It provides the researchers with financial aid to scientific publication. The grants for editing were specifically created for supporting the national scientific and technical publications edited by Brazilians institutions or societies. CNPq can also support Congresses, Symposiums and similar short-term courses. The Plataforma Lattes is also a branch of CNPq on which the Curriculum Lattes is available. This site has the curriculum vitae of the scientific community and is of great value for researchers. FAPESP also finances journal publications, articles and books that bring up original results of studies made by researchers from the state of São Paulo. It finances, partially, the travel expenses of innovative papers authors in meetings within the country or abroad. Brazilian authors are increasing the number of international publications. Universities, research institutes, financing agencies and

  9. On the Possibility of a Scientific Theory of Scientific Method.

    Science.gov (United States)

    Nola, Robert

    1999-01-01

    Discusses the philosophical strengths and weaknesses of Laudan's normative naturalism, which understands the principles of scientific method to be akin to scientific hypotheses, and therefore open to test like any principle of science. Contains 19 references. (Author/WRM)

  10. Expectations for a scientific collaboratory

    DEFF Research Database (Denmark)

    Sonnenwald, Diane H.

    2003-01-01

    In the past decade, a number of scientific collaboratories have emerged, yet adoption of scientific collaboratories remains limited. Meeting expectations is one factor that influences adoption of innovations, including scientific collaboratories. This paper investigates expectations scientists have...... with respect to scientific collaboratories. Interviews were conducted with 17 scientists who work in a variety of settings and have a range of experience conducting and managing scientific research. Results indicate that scientists expect a collaboratory to: support their strategic plans; facilitate management...... of the scientific process; have a positive or neutral impact on scientific outcomes; provide advantages and disadvantages for scientific task execution; and provide personal conveniences when collaborating across distances. These results both confirm existing knowledge and raise new issues for the design...

  11. The paradox of scientific expertise

    DEFF Research Database (Denmark)

    Alrøe, Hugo Fjelsted; Noe, Egon

    2011-01-01

    Modern societies depend on a growing production of scientific knowledge, which is based on the functional differentiation of science into still more specialised scientific disciplines and subdisciplines. This is the basis for the paradox of scientific expertise: The growth of science leads to a f...... cross-disciplinary research and in the collective use of different kinds of scientific expertise, and thereby make society better able to solve complex, real-world problems.......Modern societies depend on a growing production of scientific knowledge, which is based on the functional differentiation of science into still more specialised scientific disciplines and subdisciplines. This is the basis for the paradox of scientific expertise: The growth of science leads...... to a fragmentation of scientific expertise. To resolve this paradox, the present paper investigates three hypotheses: 1) All scientific knowledge is perspectival. 2) The perspectival structure of science leads to specific forms of knowledge asymmetries. 3) Such perspectival knowledge asymmetries must be handled...

  12. Open scientific communication urged

    Science.gov (United States)

    Richman, Barbara T.

    In a report released last week the National Academy of Sciences' Panel on Scientific Communication and National Security concluded that the ‘limited and uncertain benefits’ of controls on the dissemination of scientific and technological research are ‘outweighed by the importance of scientific progress, which open communication accelerates, to the overall welfare of the nation.’ The 18-member panel, chaired by Dale R. Corson, president emeritus of Cornell University, was created last spring (Eos, April 20, 1982, p. 241) to examine the delicate balance between open dissemination of scientific and technical information and the U.S. government's desire to protect scientific and technological achievements from being translated into military advantages for our political adversaries.The panel dealt almost exclusively with the relationship between the United States and the Soviet Union but noted that there are ‘clear problems in scientific communication and national security involving Third World countries.’ Further study of this matter is necessary.

  13. Undergraduate honors students' images of science: Nature of scientific work and scientific knowledge

    Science.gov (United States)

    Wallace, Michael L.

    This exploratory study assessed the influence of an implicit, inquiry-oriented nature of science (NOS) instructional approach undertaken in an interdisciplinary college science course on undergraduate honor students' (UHS) understanding of the aspects of NOS for scientific work and scientific knowledge. In this study, the nature of scientific work concentrated upon the delineation of science from pseudoscience and the value scientists place on reproducibility. The nature of scientific knowledge concentrated upon how UHS view scientific theories and how they believe scientists utilize scientific theories in their research. The 39 UHS who participated in the study were non-science majors enrolled in a Honors College sponsored interdisciplinary science course where the instructors took an implicit NOS instructional approach. An open-ended assessment instrument, the UFO Scenario, was designed for the course and used to assess UHS' images of science at the beginning and end of the semester. The mixed-design study employed both qualitative and quantitative techniques to analyze the open-ended responses. The qualitative techniques of open and axial coding were utilized to find recurring themes within UHS' responses. McNemar's chi-square test for two dependent samples was used to identify whether any statistically significant changes occurred within responses from the beginning to the end of the semester. At the start of the study, the majority of UHS held mixed NOS views, but were able to accurately define what a scientific theory is and explicate how scientists utilize theories within scientific research. Postinstruction assessment indicated that UHS did not make significant gains in their understanding of the nature of scientific work or scientific knowledge and their overall images of science remained static. The results of the present study found implicit NOS instruction even with an extensive inquiry-oriented component was an ineffective approach for modifying UHS

  14. From Science Reserves to Sustainable Multiple Uses beyond Earth orbit: Evaluating Issues on the Path towards Balanced Environmental Management on Planetary Bodies

    Science.gov (United States)

    Race, Margaret

    Over the past five decades, our understanding of space beyond Earth orbit has been shaped by a succession of mainly robotic missions whose technologies have enabled scientists to answer diverse science questions about celestial bodies across the solar system. For all that time, exploration has been guided by planetary protection policies and principles promulgated by COSPAR and based on provisions in Article IX of the Outer Space Treaty of 1967. Over time, implementation of the various COSPAR planetary protection policies have sought to avoid harmful forward and backward contamination in order to ensure the integrity of science findings, guide activities on different celestial bodies, and appropriately protect Earth whenever extraterrestrial materials have been returned. The recent increased interest in extending both human missions and commercial activities beyond Earth orbit have prompted discussions in various quarters about the need for updating policies and guidelines to ensure responsible, balanced space exploration and use by all parties, regardless whether activities are undertaken by governmental or non-governmental entities. Already, numerous researchers and workgroups have suggested a range of different ways to manage activities on celestial environments (e.g, wilderness parks, exclusion zones, special regions, claims, national research bases, environmental impact assessments, etc.). While the suggestions are useful in thinking about how to manage future space activities, they are not based on any systematically applied or commonly accepted criteria (scientific or otherwise). In addition, they are borrowed from terrestrial approaches for environmental protection, which may or may not have direct applications to space environments. As noted in a recent COSPAR-PEX workshop (GWU 2012), there are no clear definitions of issues such as harmful contamination, the environment to be protected, or what are considered reasonable activity or impacts for particular

  15. WWW: The Scientific Method

    Science.gov (United States)

    Blystone, Robert V.; Blodgett, Kevin

    2006-01-01

    The scientific method is the principal methodology by which biological knowledge is gained and disseminated. As fundamental as the scientific method may be, its historical development is poorly understood, its definition is variable, and its deployment is uneven. Scientific progress may occur without the strictures imposed by the formal…

  16. The Scientific Enterprise

    Indian Academy of Sciences (India)

    Home; Journals; Resonance – Journal of Science Education; Volume 13; Issue 9. The Scientific Enterprise - Assumptions, Problems, and Goals in the Modern Scientific Framework. V V Raman. Reflections Volume 13 Issue 9 September 2008 pp 885-894 ...

  17. Evolution of the scientific paper

    Energy Technology Data Exchange (ETDEWEB)

    Harmon, J.E.

    1992-09-01

    The first papers reporting original research results in technical periodicals and proceedings appeared in the late 17th century. Since that time, the typical scientific paper has evolved from a fairly simple document, accessible to a general audience, to a much more complex one, aimed at a specialized audience. The purpose of this article is to give an overview of what the first scientific papers were like and how they evolved to their present form and style. To facilitate this discussion, the scientific paper`s development has arbitrarily been divided into four stages: the origin and formative years of the scientific paper (1665-1765), emergence of scientific papers written for specialized publications (1765-1865), development of the modem scientific paper (1865-1965), and hyperspecialization and computerization of the modem scientific paper (1965-?).

  18. Evolution of the scientific paper

    Energy Technology Data Exchange (ETDEWEB)

    Harmon, J.E.

    1992-01-01

    The first papers reporting original research results in technical periodicals and proceedings appeared in the late 17th century. Since that time, the typical scientific paper has evolved from a fairly simple document, accessible to a general audience, to a much more complex one, aimed at a specialized audience. The purpose of this article is to give an overview of what the first scientific papers were like and how they evolved to their present form and style. To facilitate this discussion, the scientific paper's development has arbitrarily been divided into four stages: the origin and formative years of the scientific paper (1665-1765), emergence of scientific papers written for specialized publications (1765-1865), development of the modem scientific paper (1865-1965), and hyperspecialization and computerization of the modem scientific paper (1965- ).

  19. Turning Scientific Presentations into Stories

    Science.gov (United States)

    Aruffo, Christopher

    2015-01-01

    To increase students' confidence in giving scientific presentations, students were shown how to present scientific findings as a narrative story. Students who were preparing to give a scientific talk attended a workshop in which they were encouraged to experience the similarities between telling a personal anecdote and presenting scientific data.…

  20. Software support for students engaging in scientific activity and scientific controversy

    Science.gov (United States)

    Cavalli-Sforza, Violetta; Weiner, Arlene W.; Lesgold, Alan M.

    Computer environments could support students in engaging in cognitive activities that are essential to scientific practice and to the understanding of the nature of scientific knowledge, but that are difficult to manage in science classrooms. The authors describe a design for a computer-based environment to assist students in conducting dialectical activities of constructing, comparing, and evaluating arguments for competing scientific theories. Their choice of activities and their design respond to educators' and theorists' criticisms of current science curricula. They give detailed specifications of portions of the environment.

  1. Scientific Research Competencies of Prospective Teachers and their Attitu des toward Scientific Research

    Directory of Open Access Journals (Sweden)

    Hasan Hüseyin Şahan

    2015-09-01

    Full Text Available Present study has been constructed to determine scientific research competencies of prospective teachers and identify the extent of effect of prospective teachers’ attitudes toward scientific research and scientific research methods course on their research skills and attitudes towards research. This study has two dimensions: it is a descriptive study by virtue of identifying prospective teachers’ research skills and attitudes toward research, also an experimental study by virtue of determining the effect of scientificresearch methods course on prospective teachers’ skills and their attitudes toward research. In order to obtain the data related to identified sub-problems “Scale for Identifying Scientific Research Competencies” and “Scale for Identifying the Attitude toward Research” have been utilized. Data collection tools were applied to 445 prospective teachers. It has thus been concluded in this study that scientific research methods course had no significant effect in gaining scientific research competencies to prospective teachers and that this effect demonstrated no differentiation with respect to departments. On the other hand it has been explored that scientific research methods course had a negative effect onthe attitudes of prospective teachers toward research and that there was a differentiation to the disadvantage of prospective teachers studying at Primary Education Mathematics Teaching Department.

  2. Designing scientific applications on GPUs

    CERN Document Server

    Couturier, Raphael

    2013-01-01

    Many of today's complex scientific applications now require a vast amount of computational power. General purpose graphics processing units (GPGPUs) enable researchers in a variety of fields to benefit from the computational power of all the cores available inside graphics cards.Understand the Benefits of Using GPUs for Many Scientific ApplicationsDesigning Scientific Applications on GPUs shows you how to use GPUs for applications in diverse scientific fields, from physics and mathematics to computer science. The book explains the methods necessary for designing or porting your scientific appl

  3. ERINDA Scientific Results: Transnational Access Activities and Scientific Visits

    CERN Document Server

    Hambsch, Franz-Josef

    2014-01-01

    This paper gives an overview of the Transnational Access Activities and Scientific visits within the FP7 project ERINDA (European Research Infrastructures for Nuclear Data). It highlights the fact that nearly 3200 data - taking hours for external users were made available in the partner installations and 104 man weeks for scientific visits to par tner institutes. This is much more than the 2500 beam hours and 80 weeks promised in the Description of Work of the project.

  4. The Uncertain of Scientific Process

    Directory of Open Access Journals (Sweden)

    Jovina dÁvila Bordoni

    2016-10-01

    Full Text Available The study assesses the existence of certainty in the scientific process, it seeks the truth, however, faced with the unknown, causes uncertainties and doubts. We used the bibliographical research, in which it systematized the scientific literature on epistemology and knowledge related to the scientific process and the uncertainties that surround him. The scientific process, though continuously seeks the truth, will not attain perfection, because the researcher deals with the unknown. The science seeks constantly new knowledge and progress with the criticism of the mistakes, seeks the truth, however these are provisional. It is concluded that all scientific knowledge is uncertain.

  5. Scientific collaboratories in higher education

    DEFF Research Database (Denmark)

    Sonnenwald, Diane H.; Li, Bin

    2003-01-01

    Scientific collaboratories hold the promise of providing students access to specialized scientific instruments, data and experts, enabling learning opportunities perhaps otherwise not available. However, evaluation of scientific collaboratories in higher education has lagged behind...

  6. Implicit normativity in scientific advice

    DEFF Research Database (Denmark)

    Folker, Anna Paldam; Andersen, Hanne; Sandøe, Peter

    2008-01-01

    This paper focuses on implicit normative considerations underlying scientific advice-those normative questions, decisions, or issues that scientific advisers and the general public are not fully aware of but that nevertheless have implications for the character of the advice given. Using...... nutritional science as an example, we identify three such implicit normative issues. The first concerns the aim of scientific advice: whether it is about avoiding harm or promoting good. The second concerns the intended beneficiaries of the advice: whether advice should be framed to benefit the society...... as a whole or with special concern for the most vulnerable members of the population. The third consideration involves scientific advisers' attempts to balance the strengths of the scientific evidence with the expected consequences of scientific advice. We hope to promote more explicit discussion...

  7. Taylor’s Scientific Management

    Directory of Open Access Journals (Sweden)

    Dimitrios Koumparoulis

    2012-08-01

    Full Text Available Frederick Taylor is known as the father of modern management. Taylor’s scientific management revolutionized industry and helped shape modern organization. Scientific management revolutionized industry because it explains how to increase production by working smarter, not harder. Taylor’s ideas were not limited to only serving the company’s bottom line but the increase in productivity benefited the workforce as well. The principles of scientific management became a machine of universal efficiency since there was a widespread use of scientific management worldwide and beyond the scope of the workplace. Taylor’s theories on using science and statistical fact have become a guideline that many have followed to great success.

  8. Mapping the research on scientific collaboration

    Institute of Scientific and Technical Information of China (English)

    HOU Jianhua; CHEN Chaomei; YAN Jianxin

    2010-01-01

    The aim of this paper was to identify the trends and hot topics in the study of scientific collaboration via scientometric analysis.Information visualization and knowledge domain visualization techniques were adopted to determine how the study of scientific collaboration has evolved.A total of 1,455 articles on scientific cooperation published between 1993 and 2007 were retrieved from the SCI,SSCI and A&HCI databases with a topic search of scientific collaboration or scientific cooperation for the analysis.By using CiteSpace,the knowledge bases,research foci,and research fronts in the field of scientific collaboration were studied.The results indicated that research fronts and research foci are highly consistent in terms of the concept,origin,measurement,and theory of scientific collaboration.It also revealed that research fronts included scientific collaboration networks,international scientific collaboration,social network analysis and techniques,and applications of bibliometrical indicators,webmetrics,and health care related areas.

  9. Autonomy vs. dependency of scientific collaboration in scientific performance

    Energy Technology Data Exchange (ETDEWEB)

    Chinchilla-Rodriguez, Z.; Miguel, S.; Perianes-Rodriguez, A.; Ovalle-Perandones, M.A.; Olmeda-Gomez, C.

    2016-07-01

    This article explores the capacity of Latin America in the generation of scientific knowledge and its visibility at the global level. The novelty of the contribution lies in the decomposition of leadership, plus its combination with the results of performance indicators. We compare the normalized citation of all output against the leading output, as well as scientific excellence (Chinchilla, et al. 2016a; 2016b), technological impact and the trends in collaboration types and normalized citation. The main goal is to determine to what extent the main Latin American producers of scientific output depend on collaboration to heighten research performance in terms of citation; or to the contrary, whether there is enough autonomy and capacity to leverage its competitiveness through the design of research and development agendas. To the best of our knowledge this is the first study adopting this approach at the country level within the field of N&N. (Author)

  10. Making Sense of Scientific Biographies: Scientific Achievement, Nature of Science, and Storylines in College Students' Essays

    Science.gov (United States)

    Hwang, Seyoung

    2015-01-01

    In this article, the educative value of scientific biographies will be explored, especially for non-science major college students. During the "Scientist's life and thought" course, 66 college students read nine scientific biographies including five biologists, covering the canonical scientific achievements in Western scientific history.…

  11. TAYLOR’S SCIENTIFIC MANAGEMENT

    OpenAIRE

    Dimitrios N. KOUMPAROULIS; Dionysios K. SOLOMOS

    2012-01-01

    Frederick Taylor is known as the father of modern management. Taylor’s scientific management revolutionized industry and helped shape the modern organization. Scientific management revolutionized industry because it explains how to increase production by working smarter, not harder. Taylor’s ideas were not limited to only serving the company’s bottom line but from the increase in productivity benefited the workforce as well. The principles of scientific management have become a machine of uni...

  12. The Scientific Method and Scientific Inquiry: Tensions in Teaching and Learning

    Science.gov (United States)

    Tang, Xiaowei; Coffey, Janet E.; Elby, Andy; Levin, Daniel M.

    2010-01-01

    Typically, the scientific method in science classrooms takes the form of discrete, ordered steps meant to guide students' inquiry. In this paper, we examine how focusing on the scientific method as discrete steps affects students' inquiry and teachers' perceptions thereof. To do so, we study a ninth-grade environmental science class in which…

  13. Scientific Notation Watercolor

    Science.gov (United States)

    Linford, Kyle; Oltman, Kathleen; Daisey, Peggy

    2016-01-01

    (Purpose) The purpose of this paper is to describe visual literacy, an adapted version of Visual Thinking Strategy (VTS), and an art-integrated middle school mathematics lesson about scientific notation. The intent of this lesson was to provide students with a real life use of scientific notation and exponents, and to motivate them to apply their…

  14. Plagiarism in scientific publishing.

    Science.gov (United States)

    Masic, Izet

    2012-12-01

    Scientific publishing is the ultimate product of scientist work. Number of publications and their quoting are measures of scientist success while unpublished researches are invisible to the scientific community, and as such nonexistent. Researchers in their work rely on their predecessors, while the extent of use of one scientist work, as a source for the work of other authors is the verification of its contributions to the growth of human knowledge. If the author has published an article in a scientific journal it cannot publish the article in any other journal h with a few minor adjustments or without quoting parts of the first article, which are used in another article. Copyright infringement occurs when the author of a new article with or without the mentioning the author used substantial portions of previously published articles, including tables and figures. Scientific institutions and universities should,in accordance with the principles of Good Scientific Practice (GSP) and Good Laboratory Practices (GLP) have a center for monitoring,security, promotion and development of quality research. Establish rules and compliance to rules of good scientific practice are the obligations of each research institutions,universities and every individual-researchers,regardless of which area of science is investigated. In this way, internal quality control ensures that a research institution such as a university, assume responsibility for creating an environment that promotes standards of excellence, intellectual honesty and legality. Although the truth should be the aim of scientific research, it is not guiding fact for all scientists. The best way to reach the truth in its study and to avoid the methodological and ethical mistakes is to consistently apply scientific methods and ethical standards in research. Although variously defined plagiarism is basically intended to deceive the reader's own scientific contribution. There is no general regulation of control of

  15. Private Observatories in South Africa

    Science.gov (United States)

    Rijsdijk, C.

    2016-12-01

    Descriptions of private observatories in South Africa, written by their owners. Positions, equipment descriptions and observing programmes are given. Included are: Klein Karoo Observatory (B. Monard), Cederberg Observatory (various), Centurion Planetary and Lunar Observatory (C. Foster), Le Marischel Observatory (L. Ferreira), Sterkastaaing Observatory (M. Streicher), Henley on Klip (B. Fraser), Archer Observatory (B. Dumas), Overbeek Observatory (A. Overbeek), Overberg Observatory (A. van Staden), St Cyprian's School Observatory, Fisherhaven Small Telescope Observatory (J. Retief), COSPAR 0433 (G. Roberts), COSPAR 0434 (I. Roberts), Weltevreden Karoo Observatory (D. Bullis), Winobs (M. Shafer)

  16. Communication about scientific uncertainty in environmental nanoparticle research - a comparison of scientific literature and mass media

    Science.gov (United States)

    Heidmann, Ilona; Milde, Jutta

    2014-05-01

    The research about the fate and behavior of engineered nanoparticles in the environment is despite its wide applications still in the early stages. 'There is a high level of scientific uncertainty in nanoparticle research' is often stated in the scientific community. Knowledge about these uncertainties might be of interest to other scientists, experts and laymen. But how could these uncertainties be characterized and are they communicated within the scientific literature and the mass media? To answer these questions, the current state of scientific knowledge about scientific uncertainty through the example of environmental nanoparticle research was characterized and the communication of these uncertainties within the scientific literature is compared with its media coverage in the field of nanotechnologies. The scientific uncertainty within the field of environmental fate of nanoparticles is by method uncertainties and a general lack of data concerning the fate and effects of nanoparticles and their mechanisms in the environment, and by the uncertain transferability of results to the environmental system. In the scientific literature, scientific uncertainties, their sources, and consequences are mentioned with different foci and to a different extent. As expected, the authors in research papers focus on the certainty of specific results within their specific research question, whereas in review papers, the uncertainties due to a general lack of data are emphasized and the sources and consequences are discussed in a broader environmental context. In the mass media, nanotechnology is often framed as rather certain and positive aspects and benefits are emphasized. Although reporting about a new technology, only in one-third of the reports scientific uncertainties are mentioned. Scientific uncertainties are most often mentioned together with risk and they arise primarily from unknown harmful effects to human health. Environmental issues itself are seldom mentioned

  17. The (Surplus) Value of Scientific Communication

    OpenAIRE

    Fröhlich, Gerhard

    1996-01-01

    In research on scientific communication there are above all theory-less and formal/natural scientific models of scientific communication. These are juxtaposed to social-scientific, power-sensitive models (Elias, Bourdieu, Merton). The (surplus) value of scientific communication can be variously understood: either as inherent surplus values in the sense of potential effects of stimulation, synergy, critique, quality control; or as symbolic surplus value in the sense of symbolic capital (Bourdi...

  18. Should scientific realists be platonists?

    DEFF Research Database (Denmark)

    Busch, Jacob; Morrison, Joe

    2015-01-01

    an appropriate use of the resources of Scientific Realism (in particular, IBE) to achieve platonism? (§2) We argue that just because a variety of different inferential strategies can be employed by Scientific Realists does not mean that ontological conclusions concerning which things we should be Scientific...

  19. Digital Dreams: The Potential in a Pile of Old Jewish Newspapers

    Science.gov (United States)

    Jefferson, Rebecca; Taylor, Laurie; Santamaria-Wheeler, Lourdes

    2012-01-01

    To celebrate the thirtieth anniversary of the Isser and Rae Price Library of Judaica at the University of Florida, the Price Library launched the first stage of a project to digitize an important, special collection of anniversary editions of Jewish newspapers from around the world. This article provides the history of the collection, need for…

  20. Atoms for peace: after thirty years

    International Nuclear Information System (INIS)

    Bolet, A.M.; Ebinger, C.K.; Pilat, J.; Pendley, R.

    1984-01-01

    An overview of the conference marking the thirtieth anniversary of Eisenhower's Atoms for Peace proposal is presented. The conference provided a forum for exchange of information and opinion among nuclear scientists, statesmen, and scholars on the objectives and implementation of Atoms for Peace. The principal themes and opinions presented at the meeting are summarized

  1. [Scientific journalism and epidemiological risk].

    Science.gov (United States)

    Luiz, Olinda do Carmo

    2007-01-01

    The importance of the communications media in the construction of symbols has been widely acknowledged. Many of the articles on health published in the daily newspapers mention medical studies, sourced from scientific publications focusing on new risks. The disclosure of risk studies in the mass media is also a topic for editorials and articles in scientific journals, focusing the problem of distortions and the appearance of contradictory news items. The purpose of this paper is to explore the meaning and content of disclosing scientific risk studies in large-circulation daily newspapers, analyzing news items published in Brazil and the scientific publications used as their sources during 2000. The "risk" is presented in the scientific research projects as a "black box" in the meaning of Latour, with the news items downplaying scientific disputes and underscoring associations between behavioral habits and the occurrence of diseases, emphasizing individual aspects of the epidemiological approach, to the detriment of the group.

  2. PLAGIARISM IN SCIENTIFIC PUBLISHING

    Science.gov (United States)

    Masic, Izet

    2012-01-01

    Scientific publishing is the ultimate product of scientist work. Number of publications and their quoting are measures of scientist success while unpublished researches are invisible to the scientific community, and as such nonexistent. Researchers in their work rely on their predecessors, while the extent of use of one scientist work, as a source for the work of other authors is the verification of its contributions to the growth of human knowledge. If the author has published an article in a scientific journal it cannot publish the article in any other journal h with a few minor adjustments or without quoting parts of the first article, which are used in another article. Copyright infringement occurs when the author of a new article with or without the mentioning the author used substantial portions of previously published articles, including tables and figures. Scientific institutions and universities should,in accordance with the principles of Good Scientific Practice (GSP) and Good Laboratory Practices (GLP) have a center for monitoring,security, promotion and development of quality research. Establish rules and compliance to rules of good scientific practice are the obligations of each research institutions,universities and every individual-researchers,regardless of which area of science is investigated. In this way, internal quality control ensures that a research institution such as a university, assume responsibility for creating an environment that promotes standards of excellence, intellectual honesty and legality. Although the truth should be the aim of scientific research, it is not guiding fact for all scientists. The best way to reach the truth in its study and to avoid the methodological and ethical mistakes is to consistently apply scientific methods and ethical standards in research. Although variously defined plagiarism is basically intended to deceive the reader’s own scientific contribution. There is no general regulation of control of

  3. 50 CFR 35.11 - Scientific uses.

    Science.gov (United States)

    2010-10-01

    ... NATIONAL WILDLIFE REFUGE SYSTEM WILDERNESS PRESERVATION AND MANAGEMENT General Rules § 35.11 Scientific uses. Recognizing the scientific value of wilderness, research data gathering and similar scientific... 50 Wildlife and Fisheries 6 2010-10-01 2010-10-01 false Scientific uses. 35.11 Section 35.11...

  4. Transactions of the Zimbabwe Scientific Association

    African Journals Online (AJOL)

    The Zimbabwe Scientific Association was founded in Bulawayo in 1899 (called the Rhodesia Scientific Assocation at the time) to promote the study and advancement of science in Zimbabwe and to facilitate the acquisition and dissemination of scientific knowledge. Its journal, Transactions of the Zimbabwe Scientific ...

  5. Quantifying the Ease of Scientific Discovery.

    Science.gov (United States)

    Arbesman, Samuel

    2011-02-01

    It has long been known that scientific output proceeds on an exponential increase, or more properly, a logistic growth curve. The interplay between effort and discovery is clear, and the nature of the functional form has been thought to be due to many changes in the scientific process over time. Here I show a quantitative method for examining the ease of scientific progress, another necessary component in understanding scientific discovery. Using examples from three different scientific disciplines - mammalian species, chemical elements, and minor planets - I find the ease of discovery to conform to an exponential decay. In addition, I show how the pace of scientific discovery can be best understood as the outcome of both scientific output and ease of discovery. A quantitative study of the ease of scientific discovery in the aggregate, such as done here, has the potential to provide a great deal of insight into both the nature of future discoveries and the technical processes behind discoveries in science.

  6. Promoting Science Learning and Scientific Identification through Contemporary Scientific Investigations

    Science.gov (United States)

    Van Horne, Katie

    This dissertation investigates the implementation issues and the educational opportunities associated with "taking the practice turn" in science education. This pedagogical shift focuses instructional experiences on engaging students in the epistemic practices of science both to learn the core ideas of the disciplines, as well as to gain an understanding of and personal connection to the scientific enterprise. In Chapter 2, I examine the teacher-researcher co-design collaboration that supported the classroom implementation of a year-long, project-based biology curriculum that was under development. This study explores the dilemmas that arose when teachers implemented a new intervention and how the dilemmas arose and were managed throughout the collaboration of researchers and teachers and between the teachers. In the design-based research of Chapter 3, I demonstrate how students' engagement in epistemic practices in contemporary science investigations supported their conceptual development about genetics. The analysis shows how this involved a complex interaction between the scientific, school and community practices in students' lives and how through varied participation in the practices students come to write about and recognize how contemporary investigations can give them leverage for science-based action outside of the school setting. Finally, Chapter 4 explores the characteristics of learning environments for supporting the development of scientific practice-linked identities. Specific features of the learning environment---access to the intellectual work of the domain, authentic roles and accountability, space to make meaningful contributions in relation to personal interests, and practice-linked identity resources that arose from interactions in the learning setting---supported learners in stabilizing practice-linked science identities through their engagement in contemporary scientific practices. This set of studies shows that providing students with the

  7. 50 CFR 600.512 - Scientific research.

    Science.gov (United States)

    2010-10-01

    ... 50 Wildlife and Fisheries 8 2010-10-01 2010-10-01 false Scientific research. 600.512 Section 600... research. (a) Scientific research activity. Persons planning to conduct scientific research activities on board a scientific research vessel in the EEZ that may be confused with fishing are encouraged to submit...

  8. The craft of scientific writing

    CERN Document Server

    Alley, Michael

    2019-01-01

    The Craft of Scientific Writing uses scores of examples to show the differences between scientific writing that informs and persuades and scientific writing that does not. Focusing on technical papers, dissertations, and reports, this text shows engineers, scientists, and technical professionals the five keys of style that distinguish the best scientific documents: (1) having the details presented in a methodical fashion, (2) having the important details emphasized, (3) having ideas cast into clear and precise sentences, (4) having clear connections between those ideas, and (5) having illustrations that persuade.

  9. ON THE APPROACH TO SCIENTIFIC PUBLICATIONS VISIBILITY MAXIMIZATION BY THE SCIENTIFIC SOCIAL NETWORKS USAGE

    Directory of Open Access Journals (Sweden)

    A. V. Semenets

    2015-12-01

    3 Research results. Data integration of the user profiles of the scientific social networksThe maximization of visibility and bibliometrics citation increasing of the scientific papers initiated by the given above approach is discussed. The detailed strategy of the user profiles bibliometrics data integration through the scientific social networks is proposed. The role and ways to receiving of the Altmetric rating indices are mentioned.

  10. Lakatos' Scientific Research Programmes as a Framework for Analysing Informal Argumentation about Socio-Scientific Issues

    Science.gov (United States)

    Chang, Shu-Nu; Chiu, Mei-Hung

    2008-01-01

    The purpose of this study is to explore how Lakatos' scientific research programmes might serve as a theoretical framework for representing and evaluating informal argumentation about socio-scientific issues. Seventy undergraduate science and non-science majors were asked to make written arguments about four socio-scientific issues. Our analysis…

  11. Scientific Ethics: A New Approach.

    Science.gov (United States)

    Menapace, Marcello

    2018-06-04

    Science is an activity of the human intellect and as such has ethical implications that should be reviewed and taken into account. Although science and ethics have conventionally been considered different, it is herewith proposed that they are essentially similar. The proposal set henceforth is to create a new ethics rooted in science: scientific ethics. Science has firm axiological foundations and searches for truth (as a value, axiology) and knowledge (epistemology). Hence, science cannot be value neutral. Looking at standard scientific principles, it is possible to construct a scientific ethic (that is, an ethical framework based on scientific methods and rules), which can be applied to all sciences. These intellectual standards include the search for truth (honesty and its derivatives), human dignity (and by reflection the dignity of all animals) and respect for life. Through these it is thence achievable to draft a foundation of a ethics based purely on science and applicable beyond the confines of science. A few applications of these will be presented. Scientific ethics can have vast applications in other fields even in non scientific ones.

  12. Rediscovering the scientific ethos

    DEFF Research Database (Denmark)

    Djørup, Stine

    The doctoral dissertation discusses some of the moral standards of good scientific practice that areunderexposed in the literature. In particular, attempts are made to correct the conceptual confusionsurrounding the norm of 'disinterestedness' in science (‘uhildethed’), and the norm of scientific...

  13. 75 FR 38911 - Death of Senator Robert C. Byrd, President Pro Tempore of the Senate

    Science.gov (United States)

    2010-07-06

    ... half-staff at the White House and upon all public buildings and grounds, at all military posts and... flag of the United States shall be displayed at full-staff at the White House and on all public... WITNESS WHEREOF, I have hereunto set my hand this thirtieth day of June, in the year of our Lord two...

  14. Transportation

    International Nuclear Information System (INIS)

    Anon.

    1998-01-01

    Here is the decree of the thirtieth of July 1998 relative to road transportation, to trade and brokerage of wastes. It requires to firms which carry out a road transportation as well as to traders and to brokers of wastes to declare their operations to the prefect. The declaration has to be renewed every five years. (O.M.)

  15. Scientific meetings

    International Nuclear Information System (INIS)

    1973-01-01

    One of the main aims of the IAEA is to foster the exchange of scientific and technical information and one of the main ways of doing this is to convene international scientific meetings. They range from large international conferences bringing together several hundred scientists, smaller symposia attended by an average of 150 to 250 participants and seminars designed to instruct rather than inform, to smaller panels and study groups of 10 to 30 experts brought together to advise on a particular programme or to develop a set of regulations. The topics of these meetings cover every part of the Agency's activities and form a backbone of many of its programmes. (author)

  16. Scientific millenarianism

    International Nuclear Information System (INIS)

    Weinberg, A.M.

    1997-01-01

    Today, for the first time, scientific concerns are seriously being addressed that span future times--hundreds, even thousands, or more years in the future. One is witnessing what the author calls scientific millenarianism. Are such concerns for the distant future exercises in futility, or are they real issues that, to the everlasting gratitude of future generations, this generation has identified, warned about and even suggested how to cope with in the distant future? Can the four potential catastrophes--bolide impact, CO 2 warming, radioactive wastes and thermonuclear war--be avoided by technical fixes, institutional responses, religion, or by doing nothing? These are the questions addressed in this paper

  17. Scientific communication

    Directory of Open Access Journals (Sweden)

    Aleksander Kobylarek

    2017-09-01

    Full Text Available The article tackles the problem of models of communication in science. The formal division of communication processes into oral and written does not resolve the problem of attitude. The author defines successful communication as a win-win game, based on the respect and equality of the partners, regardless of their position in the world of science. The core characteristics of the process of scientific communication are indicated , such as openness, fairness, support, and creation. The task of creating the right atmosphere for science communication belongs to moderators, who should not allow privilege and differentiation of position to affect scientific communication processes.

  18. Critical appraisal of scientific articles: part 1 of a series on evaluation of scientific publications.

    Science.gov (United States)

    du Prel, Jean-Baptist; Röhrig, Bernd; Blettner, Maria

    2009-02-01

    In the era of evidence-based medicine, one of the most important skills a physician needs is the ability to analyze scientific literature critically. This is necessary to keep medical knowledge up to date and to ensure optimal patient care. The aim of this paper is to present an accessible introduction into critical appraisal of scientific articles. Using a selection of international literature, the reader is introduced to the principles of critical reading of scientific articles in medicine. For the sake of conciseness, detailed description of statistical methods is omitted. Widely accepted principles for critically appraising scientific articles are outlined. Basic knowledge of study design, structuring of an article, the role of different sections, of statistical presentations as well as sources of error and limitation are presented. The reader does not require extensive methodological knowledge. As far as necessary for critical appraisal of scientific articles, differences in research areas like epidemiology, clinical, and basic research are outlined. Further useful references are presented. Basic methodological knowledge is required to select and interpret scientific articles correctly.

  19. Managing scientific information and research data

    CERN Document Server

    Baykoucheva, Svetla

    2015-01-01

    Innovative technologies are changing the way research is performed, preserved, and communicated. Managing Scientific Information and Research Data explores how these technologies are used and provides detailed analysis of the approaches and tools developed to manage scientific information and data. Following an introduction, the book is then divided into 15 chapters discussing the changes in scientific communication; new models of publishing and peer review; ethics in scientific communication; preservation of data; discovery tools; discipline-specific practices of researchers for gathering and using scientific information; academic social networks; bibliographic management tools; information literacy and the information needs of students and researchers; the involvement of academic libraries in eScience and the new opportunities it presents to librarians; and interviews with experts in scientific information and publishing.

  20. Improving the scientific misconduct hearing process.

    Science.gov (United States)

    Parrish, D M

    The overturning and withdrawal of several of the Office of Research Integrity's (ORI's) findings of scientific misconduct have called its role into question. The contested findings of scientific misconduct that have been tried before the hearing body have been based on lengthy and expensive ORI investigations. How could ORI have failed to prove its findings of scientific misconduct after the commitment of substantial resources that far exceed those devoted during institutional investigations? One reason may be that the current hearing process makes it difficult or impossible for ORI, institutions, or individuals to prove scientific misconduct. The hearing process has been criticized by discouraged whistleblowers who believe that their allegations of scientific misconduct should have been upheld, and by the accused for the expensive and protracted nature of the proceedings. The following article examines problems in the scientific misconduct hearing process and suggests that the process could be improved by letting administrative law judges, patent attorneys, and a scientific majority decide these cases.

  1. Strategy for the International Lunar Decade

    Science.gov (United States)

    Beldavs, V.; Dunlop, D.; Foing, B.

    2015-10-01

    LD is a global event and process for international collaboration in space initiated by the International Lunar Exploration Working Group (ILEWG), the National Space Society and the National Science Centre FOTONIKA-LV of the University of Latvia. ILD is planned for launch in 2017, the 60th anniversary of the International Geophysical Year that marked the dawn of the space age with the launch of Sputnik. ILD is envisioned as a decade long process of international collaboration with lunar exploration concurrent with development of policies, key enabling technologies and infrastructures on the Moon and in cislunar space leading towards an eventual goal of industrial development of the Moon and economic activity beyond Earth orbit[1]. This second International Lunar Decade will build on the foundations of the ILD first proposed in by the Planetary Society in 2006 at International Conference on Exploration and Utilisation of the Moon (ICEUM), was endorsed by ICEUM participants[3], and then by ILEWG, COSPAR and other organizations. Starting in 2007, the work plan included a series of recommendations for lunar exploration missions coordinated through the ILEWG agencies and COSPAR. Advances in technology such as CubeSats and 3D printing and fundamental changes in mind-set marked by initiatives such as the Google Lunar-X prize and asteroid mining ventures have made industrial development of the Moon a thinkable proposition. The ILD to be launched in 2017 is intended to set the stage for the Moon to become a wealth generating platform for human expansion into the solar system.ILD is being organized to engage existing organizations involved in space collaboration such as COSPAR, COPUOS, ISECG, technical and scientific organizations and others that address space policy, space law, space security, governance and related concerns. Additional organizations will be involved that deal with structures, ecosystems, financing, economic development and health and life support and

  2. Scientific Integrity Policy Creation and Implementation.

    Science.gov (United States)

    Koizumi, K.

    2017-12-01

    Ensuring the integrity of science was a priority for the Obama Administration. In March 2009, President Obama issued a Presidential Memorandum that recognized the need for the public to be able to trust the science and scientific process informing public policy decisions. In 2010, the White House Office of Science and Technology Policy (OSTP) issued a Memorandum providing guidelines for Federal departments and agencies to follow in developing scientific integrity policies. This Memorandum describes minimum standards for: (1) strengthening the foundations of scientific integrity in government, including by shielding scientific data and analysis from inappropriate political influence; (2) improving public communication about science and technology by promoting openness and transparency; (3) enhancing the ability of Federal Advisory Committees to provide independent scientific advice; and (4) supporting the professional development of government scientists and engineers. The Memorandum called upon the heads of departments and agencies to develop scientific integrity policies that meet these requirements. At the end of the Obama Administration, 24 Federal departments and agencies had developed and implemented scientific integrity policies consistent with the OSTP guidelines. This year, there are significant questions as to the Trump Administration's commitment to these scientific integrity policies and interest in the Congress in codifying these policies in law. The session will provide an update on the status of agency scientific integrity policies and legislation.

  3. Eismitte in the Scientific Imagination

    DEFF Research Database (Denmark)

    Martin-Nielsen, Janet

    was a setting for scientific knowledge production as well as diplomatic maneuvering, providing new insights into the history of polar exploration and the intertwining of scientific and geopolitical considerations. Author Janet Martin-Nielsen draws on new research in private, government, military......Since the first attempts by Europeans to penetrate Greenland's interior, its geometric center, Eismitte (‘middle ice’), has been one of the most forbidding but scientifically rich locations in the Arctic. Tracing its history from European contact through the Cold War, this study shows how Eismitte......, and institutional archives in many languages in multiple countries to illuminate Eismitte’s place in the scientific imagination....

  4. Network science landers for Mars

    DEFF Research Database (Denmark)

    Harri, A.M.; Marsal, O.; Lognonne, P.

    1999-01-01

    by the Mars Express Orbiter that is expected to be functional during the NetLander Mission's operational phase. Communication between the landers and the Earth would take place via a data relay onboard the Mars Express Orbiter. (C) 1999 COSPAR. Published by Elsevier Science Ltd.......The NetLander Mission will deploy four landers to the Martian surface. Each lander includes a network science payload with instrumentation for studying the interior of Mars, the atmosphere and the subsurface, as well as the ionospheric structure and geodesy. The NetLander Mission is the first......, ionospheric, geodetic measurements and ground penetrating radar mapping supported by panoramic images. The payloads also include entry phase measurements of the atmospheric vertical structure. The scientific data could be combined with simultaneous observations of the atmosphere and surface of Mars...

  5. Scientific Information Service at CERN

    CERN Document Server

    Pereira, Margarida

    2016-01-01

    Dissemination of information is an essential part of CERN's mission. It brings people together from all around the world and trains the scientists of tomorrow. CERN scientific output is documented and made available for the scientific community and the general public through the CERN Document Server, INSPIRE-HEP and Wikipedia. This report presents the work done in the Scientific Information Service during the summer student program.

  6. Scientific Tourism in Armenia

    Science.gov (United States)

    Tashchyan, Davit

    2016-12-01

    The Scientific Tourism is relatively new direction in the world, however it already has managed to gain great popularity. As it is, it has arisen in 1980s, but its ideological basis comes from the earliest periods of the human history. In Armenia, it is a completely new phenomenon and still not-understandable for many people. At global level, the Scientific Tourism has several definitions: for example, as explains the member of the scientific tourist centre of Zlovlen Mrs. Pichelerova "The essence of the scientific tourism is based on the provision of the educational, cultural and entertainment needs of a group of people of people who are interested in the same thing", which in our opinion is a very comprehensive and discreet definition. We also have our own views on this type of tourism. Our philosophy is that by keeping the total principles, we put the emphasis on the strengthening of science-individual ties. Our main emphasis is on the scientific-experimental tourism. But this does not mean that we do not take steps to other forms of tourism. Studying the global experience and combining it with our resources, we are trying to get a new interdisciplinary science, which will bring together a number of different professionals as well as individuals, and as a result will have a new lore. It is in this way that an astronomer will become an archaeologist, an archaeologist will become an astrophysicist, etc. Speaking on interdisciplinary sciences, it's worth mentioning that in recent years, the role of interdisciplinary sciences at global level every day is being considered more and more important. In these terms, tourism is an excellent platform for the creation of interdisciplinary sciences and, therefore, the preparation of corresponding scholars. Nevertheless, scientific tourism is very important for the revelation, appreciation and promotion of the country's historical-cultural heritage and scientific potential. Let us not forget either that tourism in all its

  7. Can scientific medicine incorporate alternative medicine?

    Science.gov (United States)

    Federspil, G; Vettor, R

    2000-06-01

    The authors examine the problem of defining alternative medicine, and after a brief analysis conclude that a satisfactory unifying definition of the different practices is not possible. Scientific knowledge is a function of scientific method. In turn the principle of falsifiability proposed by Karl Popper is used as a demarcation line between science and pseudoscience. They assert that the various alternative modalities do not represent authentic scientific disciplines, as they lack many of the minimum requirements of scientific discourse and, above all, because they violate the principle of falsifiability. Until they overcome these methodological shortcomings, alternative medical practices cannot become authentic scientific disciplines.

  8. Modern Scientific Literacy: A Case Study of Multiliteracies and Scientific Practices in a Fifth Grade Classroom

    Science.gov (United States)

    Allison, Elizabeth; Goldston, M. Jenice

    2018-01-01

    This study investigates the convergence of multiliteracies and scientific practices in a fifth grade classroom. As students' lives become increasingly multimodal, diverse, and globalized, the traditional notions of literacy must be revisited (New London Group 1996). With the adoption of the Next Generation Science Standards (NGSS Lead States 2013a) in many states, either in their entirety or in adapted forms, it becomes useful to explore the interconnectedness multiliteracies and scientific practices and the resulting implications for scientific literacy. The case study included a fifth grade classroom, including the students and teacher. In order to create a rich description of the cases involved, data were collected and triangulated through teacher interviews, student interviews and focus groups, and classroom observations. Findings reveal that as science activities were enriched with multiliteracies and scientific practices, students were engaged in developing skills and knowledge central to being scientifically literate. Furthermore, this study establishes that characteristics of scientific literacy, by its intent and purpose, are a form of multiliteracies in elementary classrooms. Therefore, the teaching and learning of science and its practices for scientific literacy are in turn reinforcing the development of broader multiliteracies.

  9. International scientific seminar «Chronicle of Nature – a common database for scientific analysis and joint planning of scientific publications»

    Directory of Open Access Journals (Sweden)

    Juri P. Kurhinen

    2016-05-01

    Full Text Available Provides information about the results of the international scienti fic seminar «Сhronicle of Nature – a common database for scientific analysis and joint planning of scientific publications», held at Findland-Russian project «Linking environmental change to biodiversity change: large scale analysis оf Eurasia ecosystem».

  10. Age and Scientific Performance.

    Science.gov (United States)

    Cole, Stephen

    1979-01-01

    The long-standing belief that age is negatively associated with scientific productivity and creativity is shown to be based upon incorrect analysis of data. Studies reported in this article suggest that the relationship between age and scientific performance is influenced by the operation of the reward system. (Author)

  11. SCIENTIFIC STUDY OF NATURE AND SCIENTIFIC STUDY OF CULTURE: INTE-GRATION TREND, PRACTICAL VALUE

    Directory of Open Access Journals (Sweden)

    Fokina Zoya Titovna

    2017-03-01

    Full Text Available This article deals with a topic of interest : studying the expanding and deepening trend of integration of natural, technical, social and humanities fields of scientific knowledge. The point of absolute opposition between the sciences dealing with nature and those dealing with culture is subjected to criticism, the forms of integration of scientific knowledge are identified: mathematization, formalization, computerization of knowledge; philosophization/dialectization and environmentalization of the scientific knowledge. It is noted that such areas of scientific knowledge as synergetics, cybernetics, system theory, information technology, sociosynergetics, historical informatics, cliometrics, informatics for economics, evolutionary economics, human ecology, etc. Many scientific fields appear on the border between the science, technology and mathematics, and social and humanities studies, while the sharp borders between the natural sciences and cultural sciences tend to disappear, although specifics of studying the social reality still exists. Within the context of integration of sciences, comprehensive approach, synergetics, cybernetics, and mathematical model approach are analyzed. The philosophy of technology, and environmental problems, which are caused by the development of technological civilization, are studied. Practical value of integration processes in science is identified. The studied data is addressed to the specialists who are interested in the modern processes of integration of sciences, and modern issues of scientific and technical development of humanity, survival of humanity under the conditions of increasing technological understanding of the nature.

  12. People and things. CERN Courier, Mar 1987, v. 27(2)

    Energy Technology Data Exchange (ETDEWEB)

    Anon.

    1987-03-15

    The article reports on achievements of various people, staff changes and position opportunities within the CERN organization and contains news updates on upcoming or past events. A symposium to celebrate the sixtieth birthday of T. D. Lee and to commemorate the thirtieth anniversary of the discovery of parity (left-right symmetry) nonconservation was held at Columbia in November. Last year's traditional annual summer Workshop on High Energy Physics and Field Theory was held in Protvino near Serpukhov, USSR, under the sponsorship of the Institute for High Energy Physics. A special symposium at the University of Timisoara, Roumania, in November marked the 50th anniversary of the landmark contributions to the physics of vector fields by the Roumanian theoretician Alexandru Proca (1897-1955). The Computer Applications in Nuclear and Plasma Sciences Technical Committee of the Nuclear and Plasma Physics Society, US Institute of Electrical and Electronics Engineers, has set up a new individual award 'for outstanding professional contributions to the profession of using computers in nuclear and/or plasma scientific research', regardless of nationality.

  13. People and things. CERN Courier, Mar 1987, v. 27(2)

    International Nuclear Information System (INIS)

    Anon.

    1987-01-01

    The article reports on achievements of various people, staff changes and position opportunities within the CERN organization and contains news updates on upcoming or past events. A symposium to celebrate the sixtieth birthday of T. D. Lee and to commemorate the thirtieth anniversary of the discovery of parity (left-right symmetry) nonconservation was held at Columbia in November. Last year's traditional annual summer Workshop on High Energy Physics and Field Theory was held in Protvino near Serpukhov, USSR, under the sponsorship of the Institute for High Energy Physics. A special symposium at the University of Timisoara, Roumania, in November marked the 50th anniversary of the landmark contributions to the physics of vector fields by the Roumanian theoretician Alexandru Proca (1897-1955). The Computer Applications in Nuclear and Plasma Sciences Technical Committee of the Nuclear and Plasma Physics Society, US Institute of Electrical and Electronics Engineers, has set up a new individual award 'for outstanding professional contributions to the profession of using computers in nuclear and/or plasma scientific research', regardless of nationality

  14. Didactical-Scientific Modeling: integrating experimental activities and the process of scientific modeling in the teaching of Physics

    Directory of Open Access Journals (Sweden)

    Leonardo Albuquerque Heidemann

    2016-04-01

    Full Text Available The dissociated way with which the theory and practice are often treated in Physics teaching contributes to students' difficulties in using scientific knowledge to represent real events, which are not idealized situations as the events presented in most textbook problems. Considering that the process of scientific modeling is of fundamental importance for students to learn Science, about Science and how to do Science, Brandão, Araujo and Veit, supported by Vergnaud's Theory of Conceptual Fields and by Bunge's concept of scientific modeling, propose a theoretical-methodological framework for modeling in Physics Education named Didactical-Scientific Modeling (DSM. The authors defend the thesis that it is possible to consider the process of scientific modeling as a conceptual field underlying the specific conceptual fields of Physics. They elucidate knowledge associated to the facing of problems that involve the use, exploration and validation of didactical versions of scientific models. However, the goal of this framework is not to explain how the concepts related to empirical testability are connected to scientific modeling concepts. In order to fill this gap, we present in this article an expansion of this theoretical-methodological framework based on Bunge's concepts on contrasting scientific ideas. In this regard, we insert experimental work concepts in the conceptual field associated to the process of didactical-scientific modeling. Lastly, we exemplify its use in order to support the design and execution of experimental activities focused on the scientific-didactical process, and we also discuss some implications for future research in Physics Education.

  15. Scientific evaluation at the CEA

    International Nuclear Information System (INIS)

    1999-01-01

    This report presents a statement of the scientific and technical activity of the French atomic energy commission (CEA) for the year 1998. This evaluation is made by external and independent experts and requires some specific dispositions for the nuclear protection and safety institute (IPSN) and for the direction of military applications (DAM). The report is divided into 5 parts dealing successively with: part 1 - the CEA, a public research organization (civil nuclear research, technology research and transfers, defence activities); the scientific and technical evaluation at the CEA (general framework, evaluation of the IPSN and DAM); part 2 - the scientific and technical councils (directions of fuel cycle, of nuclear reactors, and of advanced technologies); part 3 - the scientific councils (directions of matter and of life sciences); the nuclear protection and safety institute; the direction of military applications; part 4 - the corresponding members of the evaluation; part 5 - the list of scientific and technical councils and members. (J.S.)

  16. Mastering scientific computing with R

    CERN Document Server

    Gerrard, Paul

    2015-01-01

    If you want to learn how to quantitatively answer scientific questions for practical purposes using the powerful R language and the open source R tool ecosystem, this book is ideal for you. It is ideally suited for scientists who understand scientific concepts, know a little R, and want to be able to start applying R to be able to answer empirical scientific questions. Some R exposure is helpful, but not compulsory.

  17. EPA scientific integrity policy draft

    Science.gov (United States)

    Showstack, Randy

    2011-08-01

    The U.S. Environmental Protection Agency (EPA) issued its draft scientific integrity policy on 5 August. The draft policy addresses scientific ethical standards, communications with the public, the use of advisory committees and peer review, and professional development. The draft policy was developed by an ad hoc group of EPA senior staff and scientists in response to a December 2010 memorandum on scientific integrity from the White House Office of Science and Technology Policy. The agency is accepting public comments on the draft through 6 September; comments should be sent to osa.staff@epa.gov. For more information, see http://www.epa.gov/stpc/pdfs/draft-scientific-integrity-policy-aug2011.pdf.

  18. The martial art of scientific publication

    Science.gov (United States)

    Parker, E. N.

    Publication of scientific results in refereed journals is an essential part of the scientific process. It is the final payoff for the obscure labors that compose scientific research. Unfortunately, effective operation of the publication procedure requires simultaneous rational scientific judgment on the part of the author, the referee, and the editor, and the coincidence of all of these cannot be taken for granted on every given occasion. There are times when the working definition of truth is taken to be the consensus of one's scientific intimates: the “good old boys.” Anything outside that limited horizon is discomforting and improper and is to be barred from consideration.

  19. Scientific and non-scientific information in the uptake of health information: The case of Ebola

    Directory of Open Access Journals (Sweden)

    Bankole A. Falade

    2017-07-01

    Full Text Available The Ebola virus disease outbreak in West Africa (2013–2016 claimed over 10 000 lives in less than 18 months. Low levels of familiarity with the disease, ease of transmission, scale of infection, gruesomeness of symptoms, lack of cure and high fatality rate created a global panic. From the perspective of the social psychology of communication and content analysis, this study examines media coverage of the crisis in Africa with a view to unpacking the scientific and non-scientific information that may have framed public understanding of the disease. Findings show that accepting scientific advice was not unproblematic, because of the similarity of early symptoms with known diseases such as Lassa, dengue and malaria fevers. Cultural and religious actors and beliefs posed a paradox for believers as the public assimilated disease prevention information into existing norms and practices. Rumours and conspiracy theories about Western governments and pharmaceuticals also contributed to the rejection of the scientific explanation of its origin. Fear of the devastating effects of the disease and the lack of a cure led to the stigmatisation of the infected and treatment centres and ultimately to public revolts. Findings show the importance of non-scientific information and actors in matters of health and illness in Africa. Significance: Scientific knowledge is not enough to change health behaviour. Non-scientific knowledge and actors, traditional and religious practices, rumours and conspiracy theories must all be factored into efforts to address behavioural change.

  20. DOE Advanced Scientific Computing Advisory Committee (ASCAC) Subcommittee Report on Scientific and Technical Information

    Energy Technology Data Exchange (ETDEWEB)

    Hey, Tony [eScience Institute, University of Washington; Agarwal, Deborah [Lawrence Berkeley National Laboratory; Borgman, Christine [University of California, Los Angeles; Cartaro, Concetta [SLAC National Accelerator Laboratory; Crivelli, Silvia [Lawrence Berkeley National Laboratory; Van Dam, Kerstin Kleese [Pacific Northwest National Laboratory; Luce, Richard [University of Oklahoma; Arjun, Shankar [CADES, Oak Ridge National Laboratory; Trefethen, Anne [University of Oxford; Wade, Alex [Microsoft Research, Microsoft Corporation; Williams, Dean [Lawrence Livermore National Laboratory

    2015-09-04

    The Advanced Scientific Computing Advisory Committee (ASCAC) was charged to form a standing subcommittee to review the Department of Energy’s Office of Scientific and Technical Information (OSTI) and to begin by assessing the quality and effectiveness of OSTI’s recent and current products and services and to comment on its mission and future directions in the rapidly changing environment for scientific publication and data. The Committee met with OSTI staff and reviewed available products, services and other materials. This report summaries their initial findings and recommendations.

  1. The GTC Scientific Data Centre

    Science.gov (United States)

    Solano, E.

    2005-12-01

    Since the early stages of the GTC project, the need of a scientific archive was already identified as an important tool for the scientific exploitation of the data. In this work, the conceptual design and the main functionalities of the Scientific Data Archive of the Gran Telescopio Canarias (GSA) are described. The system will be developed, implemented and maintained at the Laboratorio de Astrofísica Espacial y Física Fundamental (LAEFF).

  2. XVIS: Visualization for the Extreme-Scale Scientific-Computation Ecosystem Final Scientific/Technical Report

    Energy Technology Data Exchange (ETDEWEB)

    Geveci, Berk [Kitware, Inc., Clifton Park, NY (United States); Maynard, Robert [Kitware, Inc., Clifton Park, NY (United States)

    2017-10-27

    The XVis project brings together the key elements of research to enable scientific discovery at extreme scale. Scientific computing will no longer be purely about how fast computations can be performed. Energy constraints, processor changes, and I/O limitations necessitate significant changes in both the software applications used in scientific computation and the ways in which scientists use them. Components for modeling, simulation, analysis, and visualization must work together in a computational ecosystem, rather than working independently as they have in the past. The XVis project brought together collaborators from predominant DOE projects for visualization on accelerators and combining their respective features into a new visualization toolkit called VTK-m.

  3. The Scientific Case against Astrology.

    Science.gov (United States)

    Kelly, Ivan

    1980-01-01

    Discussed is the lack of a scientific foundation and scientific evidence favoring astrology. Included are several research studies conducted to examine astrological tenets which yield generally negative results. (Author/DS)

  4. Scientific word, Version 1.0

    Directory of Open Access Journals (Sweden)

    Semen Köksal

    1993-01-01

    Full Text Available Scientific Word is the first fully integrated mathematical word processor in the Windows 3.1 environment, which uses the TEX typesetting language for output. It runs as a Microsoft Windows application program and has two-way interface to TEX. The Scientific Word is an object-oriented WYSIWYG word processor for virtually all users who need typesetting scientific books, manuals and papers. It includes automatic equation numbering, spell checking, and LATEX and DVI previewer.

  5. Scientific computer simulation review

    International Nuclear Information System (INIS)

    Kaizer, Joshua S.; Heller, A. Kevin; Oberkampf, William L.

    2015-01-01

    Before the results of a scientific computer simulation are used for any purpose, it should be determined if those results can be trusted. Answering that question of trust is the domain of scientific computer simulation review. There is limited literature that focuses on simulation review, and most is specific to the review of a particular type of simulation. This work is intended to provide a foundation for a common understanding of simulation review. This is accomplished through three contributions. First, scientific computer simulation review is formally defined. This definition identifies the scope of simulation review and provides the boundaries of the review process. Second, maturity assessment theory is developed. This development clarifies the concepts of maturity criteria, maturity assessment sets, and maturity assessment frameworks, which are essential for performing simulation review. Finally, simulation review is described as the application of a maturity assessment framework. This is illustrated through evaluating a simulation review performed by the U.S. Nuclear Regulatory Commission. In making these contributions, this work provides a means for a more objective assessment of a simulation’s trustworthiness and takes the next step in establishing scientific computer simulation review as its own field. - Highlights: • We define scientific computer simulation review. • We develop maturity assessment theory. • We formally define a maturity assessment framework. • We describe simulation review as the application of a maturity framework. • We provide an example of a simulation review using a maturity framework

  6. Recording Scientific Knowledge

    International Nuclear Information System (INIS)

    Bowker, Geof

    2006-01-01

    The way we record knowledge, and the web of technical, formal, and social practices that surrounds it, inevitably affects the knowledge that we record. The ways we hold knowledge about the past - in handwritten manuscripts, in printed books, in file folders, in databases - shape the kind of stories we tell about that past. In this talk, I look at how over the past two hundred years, information technology has affected the nature and production of scientific knowledge. Further, I explore ways in which the emergent new cyberinfrastructure is changing our relationship to scientific practice.

  7. A generative model for scientific concept hierarchies.

    Science.gov (United States)

    Datta, Srayan; Adar, Eytan

    2018-01-01

    In many scientific disciplines, each new 'product' of research (method, finding, artifact, etc.) is often built upon previous findings-leading to extension and branching of scientific concepts over time. We aim to understand the evolution of scientific concepts by placing them in phylogenetic hierarchies where scientific keyphrases from a large, longitudinal academic corpora are used as a proxy of scientific concepts. These hierarchies exhibit various important properties, including power-law degree distribution, power-law component size distribution, existence of a giant component and less probability of extending an older concept. We present a generative model based on preferential attachment to simulate the graphical and temporal properties of these hierarchies which helps us understand the underlying process behind scientific concept evolution and may be useful in simulating and predicting scientific evolution.

  8. A generative model for scientific concept hierarchies

    Science.gov (United States)

    Adar, Eytan

    2018-01-01

    In many scientific disciplines, each new ‘product’ of research (method, finding, artifact, etc.) is often built upon previous findings–leading to extension and branching of scientific concepts over time. We aim to understand the evolution of scientific concepts by placing them in phylogenetic hierarchies where scientific keyphrases from a large, longitudinal academic corpora are used as a proxy of scientific concepts. These hierarchies exhibit various important properties, including power-law degree distribution, power-law component size distribution, existence of a giant component and less probability of extending an older concept. We present a generative model based on preferential attachment to simulate the graphical and temporal properties of these hierarchies which helps us understand the underlying process behind scientific concept evolution and may be useful in simulating and predicting scientific evolution. PMID:29474409

  9. The balance principle in scientific research.

    Science.gov (United States)

    Hu, Liang-ping; Bao, Xiao-lei; Wang, Qi

    2012-05-01

    The principles of balance, randomization, control and repetition, which are closely related, constitute the four principles of scientific research. The balance principle is the kernel of the four principles which runs through the other three. However, in scientific research, the balance principle is always overlooked. If the balance principle is not well performed, the research conclusion is easy to be denied, which may lead to the failure of the whole research. Therefore, it is essential to have a good command of the balance principle in scientific research. This article stresses the definition and function of the balance principle, the strategies and detailed measures to improve balance in scientific research, and the analysis of the common mistakes involving the use of the balance principle in scientific research.

  10. Computational Simulations and the Scientific Method

    Science.gov (United States)

    Kleb, Bil; Wood, Bill

    2005-01-01

    As scientific simulation software becomes more complicated, the scientific-software implementor's need for component tests from new model developers becomes more crucial. The community's ability to follow the basic premise of the Scientific Method requires independently repeatable experiments, and model innovators are in the best position to create these test fixtures. Scientific software developers also need to quickly judge the value of the new model, i.e., its cost-to-benefit ratio in terms of gains provided by the new model and implementation risks such as cost, time, and quality. This paper asks two questions. The first is whether other scientific software developers would find published component tests useful, and the second is whether model innovators think publishing test fixtures is a feasible approach.

  11. Scientific rigor through videogames.

    Science.gov (United States)

    Treuille, Adrien; Das, Rhiju

    2014-11-01

    Hypothesis-driven experimentation - the scientific method - can be subverted by fraud, irreproducibility, and lack of rigorous predictive tests. A robust solution to these problems may be the 'massive open laboratory' model, recently embodied in the internet-scale videogame EteRNA. Deploying similar platforms throughout biology could enforce the scientific method more broadly. Copyright © 2014 Elsevier Ltd. All rights reserved.

  12. Planetary protection issues related to human missions to Mars

    Science.gov (United States)

    Debus, A.; Arnould, J.

    2008-09-01

    In accordance with the United Nations Outer Space Treaties [United Nations, Agreement Governing the Activities of States on the Moon and Other Celestial Bodies, UN doc A/RES/34/68, resolution 38/68 of December 1979], currently maintained and promulgated by the Committee on Space Research [COSPAR Planetary Protection Panel, Planetary Protection Policy accepted by the COSPAR Council and Bureau, 20 October 2002, amended 24 March 2005, http://www.cosparhq.org/scistr/PPPolicy.htm], missions exploring the Solar system must meet planetary protection requirements. Planetary protection aims to protect celestial bodies from terrestrial contamination and to protect the Earth environment from potential biological contamination carried by returned samples or space systems that have been in contact with an extraterrestrial environment. From an exobiology perspective, Mars is one of the major targets, and several missions are currently in operation, in transit, or scheduled for its exploration. Some of them include payloads dedicated to the detection of life or traces of life. The next step, over the coming years, will be to return samples from Mars to Earth, with a view to increasing our knowledge in preparation for the first manned mission that is likely to take place within the next few decades. Robotic missions to Mars shall meet planetary protection specifications, currently well documented, and planetary protection programs are implemented in a very reliable manner given that experience in the field spans some 40 years. With regards to sample return missions, a set of stringent requirements has been approved by COSPAR [COSPAR Planetary Protection Panel, Planetary Protection Policy accepted by the COSPAR Council and Bureau, 20 October 2002, amended 24 March 2005, http://www.cosparhq.org/scistr/PPPolicy.htm], and technical challenges must now be overcome in order to preserve the Earth’s biosphere from any eventual contamination risk. In addition to the human dimension of

  13. Scientific production and technological production: transforming a scientific paper into patent applications.

    Science.gov (United States)

    Dias, Cleber Gustavo; Almeida, Roberto Barbosa de

    2013-01-01

    Brazil has been presenting in the last years a scientific production well-recognized in the international scenario, in several areas of knowledge, according to the impact of their publications in important events and especially in indexed journals of wide circulation. On the other hand, the country does not seem to be in the same direction regarding to the technological production and wealth creation from the established scientific development, and particularly from the applied research. The present paper covers such issue and discloses the main similarities and differences between a scientific paper and a patent application, in order to contribute to a better understanding of both types of documents and help the researchers to chose and select the results with technological potential, decide what is appropriated for industrial protection, as well as foster new business opportunities for each technology which has been created.

  14. Continuous EEG monitoring in the intensive care unit: beta scientific and management scientific aspects

    NARCIS (Netherlands)

    Sanders, P.M.H.; van Putten, Michel Johannes Antonius Maria; Jarm, T.; Kramar, P.; Zupanic, A.

    2007-01-01

    Due to various technological advances, it is now possible to continuously monitor critically ill patients using EEG, including the extraction of various quantitative features. In this study, several beta scientific and management scientific aspects of the implementation and use of cEEg on the ICU

  15. Agriscience Student Engagement in Scientific Inquiry: Representations of Scientific Processes and Nature of Science.

    Science.gov (United States)

    Grady, Julie R; Dolan, Erin L; Glasson, George E

    2010-01-01

    Students' experiences with science integrated into agriscience courses contribute to their developing epistemologies of science. The purpose of this case study was to gain insight into the implementation of scientific inquiry in an agriscience classroom. Also of interest was how the tenets of the nature of science were reflected in the students' experiments. Participants included an agriscience teacher and her fifteen students who were conducting plant experiments to gain insight into the role of a gene disabled by scientists. Data sources included classroom observations, conversations with students, face-to-face interviews with the teacher, and students' work. Analysis of the data indicated that the teacher viewed scientific inquiry as a mechanical process with little emphasis on the reasoning that typifies scientific inquiry. Students' participation in their experiments also centered on the procedural aspects of inquiry with little attention to scientific reasoning. There was no explicit attention to the nature of science during the experiments, but the practice implied correct, incorrect, and underdeveloped conceptions of the nature of science. Evidence from the study suggests a need for collaboration between agriscience and science teacher educators to design and conduct professional development focused on scientific inquiry and nature of science for preservice and practicing teachers.

  16. Scientific Misconduct.

    Science.gov (United States)

    Goodstein, David

    2002-01-01

    Explores scientific fraud, asserting that while few scientists actually falsify results, the field has become so competitive that many are misbehaving in other ways; an example would be unreasonable criticism by anonymous peer reviewers. (EV)

  17. Strengthening maintenance and reconstruction of scientific experiment building and creating a good working environment for scientific research and production

    International Nuclear Information System (INIS)

    Fu Jianping

    2005-01-01

    The quality of scientific experiment building directly influences the scientific research work and production. To create a good working environment for scientific research and production, it is necessary to strengthen the maintenance and reconstruction for old scientific experiment building. The paper briefly introduces the site supervisory work of maintaining and reconstructing old scientific experiment building in Beijing Research Institute of Uranium Geology, as well as some measures taken to ensure the project quality, and the reconstructed building. (authors)

  18. [Eleven thesis on the archive of scientific research, for a new patrimonial and scientific policy].

    Science.gov (United States)

    Müller, Bertrand

    2015-12-01

    Abstracting the main content of a recent report on the bad state of the archives of scientific research, this paper puts forward eleven thesis likely to feed, in this time of numeric transition to a new documentary regime and to a new patrimonial policy. The recent numeric conditions impose to set new archival pratices, more proactive, anticipative and prospective. Archives of scientific research must be thought in a double memorial and scientific dimension, and not only as a patrimonial or historical one.

  19. Is risk analysis scientific?

    Science.gov (United States)

    Hansson, Sven Ove; Aven, Terje

    2014-07-01

    This article discusses to what extent risk analysis is scientific in view of a set of commonly used definitions and criteria. We consider scientific knowledge to be characterized by its subject matter, its success in developing the best available knowledge in its fields of study, and the epistemic norms and values that guide scientific investigations. We proceed to assess the field of risk analysis according to these criteria. For this purpose, we use a model for risk analysis in which science is used as a base for decision making on risks, which covers the five elements evidence, knowledge base, broad risk evaluation, managerial review and judgment, and the decision; and that relates these elements to the domains experts and decisionmakers, and to the domains fact-based or value-based. We conclude that risk analysis is a scientific field of study, when understood as consisting primarily of (i) knowledge about risk-related phenomena, processes, events, etc., and (ii) concepts, theories, frameworks, approaches, principles, methods and models to understand, assess, characterize, communicate, and manage risk, in general and for specific applications (the instrumental part). © 2014 Society for Risk Analysis.

  20. Scientific Facts and Methods in Public Reason

    DEFF Research Database (Denmark)

    Jønch-Clausen, Karin; Kappel, Klemens

    2016-01-01

    Should scientific facts and methods have an epistemically privileged status in public reason? In Rawls’s public reason account he asserts what we will label the Scientific Standard Stricture: citizens engaged in public reason must be guided by non-controversial scientific methods, and public reason...... must be in line with non-controversial scientific conclusions. The Scientific Standard Stricture is meant to fulfill important tasks such as enabling the determinateness and publicity of the public reason framework. However, Rawls leaves us without elucidation with regard to when science...

  1. Network effects on scientific collaborations.

    Directory of Open Access Journals (Sweden)

    Shahadat Uddin

    Full Text Available BACKGROUND: The analysis of co-authorship network aims at exploring the impact of network structure on the outcome of scientific collaborations and research publications. However, little is known about what network properties are associated with authors who have increased number of joint publications and are being cited highly. METHODOLOGY/PRINCIPAL FINDINGS: Measures of social network analysis, for example network centrality and tie strength, have been utilized extensively in current co-authorship literature to explore different behavioural patterns of co-authorship networks. Using three SNA measures (i.e., degree centrality, closeness centrality and betweenness centrality, we explore scientific collaboration networks to understand factors influencing performance (i.e., citation count and formation (tie strength between authors of such networks. A citation count is the number of times an article is cited by other articles. We use co-authorship dataset of the research field of 'steel structure' for the year 2005 to 2009. To measure the strength of scientific collaboration between two authors, we consider the number of articles co-authored by them. In this study, we examine how citation count of a scientific publication is influenced by different centrality measures of its co-author(s in a co-authorship network. We further analyze the impact of the network positions of authors on the strength of their scientific collaborations. We use both correlation and regression methods for data analysis leading to statistical validation. We identify that citation count of a research article is positively correlated with the degree centrality and betweenness centrality values of its co-author(s. Also, we reveal that degree centrality and betweenness centrality values of authors in a co-authorship network are positively correlated with the strength of their scientific collaborations. CONCLUSIONS/SIGNIFICANCE: Authors' network positions in co

  2. Scientific-creative thinking and academic achievement

    Directory of Open Access Journals (Sweden)

    Rosario Bermejo

    2014-07-01

    Full Text Available The aim of this work is to study the relationship between scientific-creative thinking construct and academic performance in a sample of adolescents. In addition, the scientific-creative thinking instrument’s reliability will be tested. The sample was composed of 98 students (aged between 12-16 years old attending to a Secondary School in Murcia Region (Spain. The used instruments were: a the Scientific-Creative Thinking Test designed by Hu and Adey (2002, which was adapted to the Spanish culture by the High Abilities research team at Murcia University. The test is composed of 7 task based in the Scientific Creative Structure Model. It assesses the dimensions fluency, flexibility and originality; b The General and Factorial Intelligence Test (IGF/5r; Yuste, 2002, which assess the abilities of general intelligence and logic reasoning, verbal reasoning, numerical reasoning and spatial reasoning; c Students’ academic achievement by domains (scientific-technological, social-linguistic and artistic was collected. The results showed positive and statistical significant correlations between the scientific-creative tasks and academic achievement of different domains.

  3. Scientific impact: opportunity and necessity.

    Science.gov (United States)

    Cohen, Marlene Z; Alexander, Gregory L; Wyman, Jean F; Fahrenwald, Nancy L; Porock, Davina; Wurzbach, Mary E; Rawl, Susan M; Conn, Vicki S

    2010-08-01

    Recent National Institutes of Health changes have focused attention on the potential scientific impact of research projects. Research with the excellent potential to change subsequent science or health care practice may have high scientific impact. Only rigorous studies that address highly significant problems can generate change. Studies with high impact may stimulate new research approaches by changing understanding of a phenomenon, informing theory development, or creating new research methods that allow a field of science to move forward. Research with high impact can transition health care to more effective and efficient approaches. Studies with high impact may propel new policy developments. Research with high scientific impact typically has both immediate and sustained influence on the field of study. The article includes ideas to articulate potential scientific impact in grant applications as well as possible dissemination strategies to enlarge the impact of completed projects.

  4. The PBase Scientific Workflow Provenance Repository

    Directory of Open Access Journals (Sweden)

    Víctor Cuevas-Vicenttín

    2014-10-01

    Full Text Available Scientific workflows and their supporting systems are becoming increasingly popular for compute-intensive and data-intensive scientific experiments. The advantages scientific workflows offer include rapid and easy workflow design, software and data reuse, scalable execution, sharing and collaboration, and other advantages that altogether facilitate “reproducible science”. In this context, provenance – information about the origin, context, derivation, ownership, or history of some artifact – plays a key role, since scientists are interested in examining and auditing the results of scientific experiments. However, in order to perform such analyses on scientific results as part of extended research collaborations, an adequate environment and tools are required. Concretely, the need arises for a repository that will facilitate the sharing of scientific workflows and their associated execution traces in an interoperable manner, also enabling querying and visualization. Furthermore, such functionality should be supported while taking performance and scalability into account. With this purpose in mind, we introduce PBase: a scientific workflow provenance repository implementing the ProvONE proposed standard, which extends the emerging W3C PROV standard for provenance data with workflow specific concepts. PBase is built on the Neo4j graph database, thus offering capabilities such as declarative and efficient querying. Our experiences demonstrate the power gained by supporting various types of queries for provenance data. In addition, PBase is equipped with a user friendly interface tailored for the visualization of scientific workflow provenance data, making the specification of queries and the interpretation of their results easier and more effective.

  5. Scientific legacy of Stanley Ruby

    International Nuclear Information System (INIS)

    Shenoy, G. K.

    2006-01-01

    Stanley L. Ruby (1924-2004) made major contributions to Moessbauer spectroscopy and was the first to suggest the feasibility of observing the Moessbauer effect using synchrotron radiation. In this article we recall his scientific legacy that have inspired his scientific colleagues.

  6. Software Defects, Scientific Computation and the Scientific Method

    CERN Multimedia

    CERN. Geneva

    2011-01-01

    Computation has rapidly grown in the last 50 years so that in many scientific areas it is the dominant partner in the practice of science. Unfortunately, unlike the experimental sciences, it does not adhere well to the principles of the scientific method as espoused by, for example, the philosopher Karl Popper. Such principles are built around the notions of deniability and reproducibility. Although much research effort has been spent on measuring the density of software defects, much less has been spent on the more difficult problem of measuring their effect on the output of a program. This talk explores these issues with numerous examples suggesting how this situation might be improved to match the demands of modern science. Finally it develops a theoretical model based on an amalgam of statistical mechanics and Hartley/Shannon information theory which suggests that software systems have strong implementation independent behaviour and supports the widely observed phenomenon that defects clust...

  7. Mapping the evolution of scientific fields.

    Science.gov (United States)

    Herrera, Mark; Roberts, David C; Gulbahce, Natali

    2010-05-04

    Despite the apparent cross-disciplinary interactions among scientific fields, a formal description of their evolution is lacking. Here we describe a novel approach to study the dynamics and evolution of scientific fields using a network-based analysis. We build an idea network consisting of American Physical Society Physics and Astronomy Classification Scheme (PACS) numbers as nodes representing scientific concepts. Two PACS numbers are linked if there exist publications that reference them simultaneously. We locate scientific fields using a community finding algorithm, and describe the time evolution of these fields over the course of 1985-2006. The communities we identify map to known scientific fields, and their age depends on their size and activity. We expect our approach to quantifying the evolution of ideas to be relevant for making predictions about the future of science and thus help to guide its development.

  8. The development of scientific literacy assessment to measure student’s scientific literacy skills in energy theme

    Science.gov (United States)

    Rusilowati, A.; Nugroho, S. E.; Susilowati, E. S. M.; Mustika, T.; Harfiyani, N.; Prabowo, H. T.

    2018-03-01

    The research were aimed to develop and find out of validity, reliability, characteristic of scientific literacy assessment, and find out of the profile of students’ scientific literacy skills in Energy themed. The research is conducted in 7th grade of Secondary School at Demak, Central of Java Indonesia. The research design used R&D (Research and Development). The results of the research showed that the scientific literacy assessment was valid and reliable with 0.68 value in the first try out and 0.73 value in the last try out. The characteristics of the scientific literacy assessment are the difficulty index and the discrimination power. The difficulty index and distinguishing are 56.25% easy, 31.25% medium, and 12.5% very difficult with good discrimination power. The proportion of category of scientific literacy as the body of knowledge, the science as a way of investigating, science as a way of thinking, and the interaction among science, environment, technology, and society was 37.5%:25%:18.75%:18.75%. The highest to the lowest profile of students’ scientific literacy skills at Secondary School Demak was 72% in the category of science as a way of thinking and the lowest was 59% in the category of science as the body of knowledge.

  9. Mythical thinking, scientific discourses and research dissemination.

    Science.gov (United States)

    Hroar Klempe, Sven

    2011-06-01

    This article focuses on some principles for understanding. By taking Anna Mikulak's article "Mismatches between 'scientific' and 'non-scientific' ways of knowing and their contributions to public understanding of science" (IPBS 2011) as a point of departure, the idea of demarcation criteria for scientific and non-scientific discourses is addressed. Yet this is juxtaposed with mythical thinking, which is supposed to be the most salient trait of non-scientific discourses. The author demonstrates how the most widespread demarcation criterion, the criterion of verification, is self-contradictory, not only when it comes to logic, but also in the achievement of isolating natural sciences from other forms of knowledge. According to Aristotle induction is a rhetorical device and as far as scientific statements are based on inductive inferences, they are relying on humanities, which rhetoric is a part of. Yet induction also has an empirical component by being based on sense-impressions, which is not a part of the rhetoric, but the psychology. Also the myths are understood in a rhetorical (Lévi-Strauss) and a psychological (Cassirer) perspective. Thus it is argued that both scientific and non-scientific discourses can be mythical.

  10. Scientific information processing procedures

    Directory of Open Access Journals (Sweden)

    García, Maylin

    2013-07-01

    Full Text Available The paper systematizes several theoretical view-points on scientific information processing skill. It decomposes the processing skills into sub-skills. Several methods such analysis, synthesis, induction, deduction, document analysis were used to build up a theoretical framework. Interviews and survey to professional being trained and a case study was carried out to evaluate the results. All professional in the sample improved their performance in scientific information processing.

  11. [The fate of scientific articles when errors and scientific misconduct are detected].

    Science.gov (United States)

    Vinther, Siri; Rosenberg, Jacob

    2014-01-20

    When a minor error is noted in a scientific article, the publishing journal should issue a correction. Issuing an expression of concern is relevant when scientific misconduct is suspected. If the suspicion proves to be well founded, the journal should retract the article. The number of retractions is increasing, and this emphasizes the need for unequivocal concepts and guidelines. The reason a given article is corrected or retracted should be unambiguous and articles as well as notices should be indexed properly.

  12. Scientific Progress in Strategic Management

    DEFF Research Database (Denmark)

    Foss, Nicolai Juul

    Does the RBV represent a case of scientific progress? And has it emerged as the dominant approach to the analysis of competitive advantage for this reason? Conventional criteria for scientific progress, notably those of the growth of knowledge literature, are not particularly helpful for understa...

  13. Microcephaly, mental retardation and chromosomal aberrations in a girl following radiation therapy during late fetal life

    Energy Technology Data Exchange (ETDEWEB)

    Gustavson, K H; Jagell, S; Blomquist, H K; Nordenson, I [Umeaa Univ. (Sweden)

    1981-01-01

    A human foetus was heavily irradiated in the thirtieth to the thirty-third week due to carcinoma of the uterine cervix of the mother. Irradiation after 20 weeks of pregnancy is thought not to produce severe abnormalities. However, the child showed microcephaly, mental retardation, stunted growth, microphthalmus, retinal degeneration, cataract and defective dentition. Cytogenetically the frequencies of both chromatid and chromosome breaks were increased.

  14. Australia and the International Atomic Energy Agency

    International Nuclear Information System (INIS)

    1987-01-01

    Australia's support for the IAEA's safeguards program is described. Through a program of bilateral assistance to the Agency, Austrlia has developed and sponsored special programs of assistance to the IAEA's Safeguards over the period 1980 to 1986. The speech by the Minister for Foreign Affairs and Trade, Mr Bill Hayden, to the IAEA Thirtieth Anniversary Conference in Vienna on 21 September 1987 is included

  15. Microcephaly, mental retardation and chromosomal aberrations in a girl following radiation therapy during late fetal life

    International Nuclear Information System (INIS)

    Gustavson, K.-H.; Jagell, S.; Blomquist, H.K.; Nordenson, I.

    1981-01-01

    A human foetus was heavily irradiated in the thirtieth to the thirty-third week due to carcinoma of the uterine cervix of the mother. Irradiation after 20 weeks of pregnancy is thought not to produce severe abnormalities. However, the child showed microcephaly, mental retardation, stunted growth, microphthalmus, retinal degeneration, cataract and defective dentition. Cytogenetically the frequencies of both chromatid and chromosome breaks were increased. (Auth.)

  16. Biomedical ontologies: toward scientific debate.

    Science.gov (United States)

    Maojo, V; Crespo, J; García-Remesal, M; de la Iglesia, D; Perez-Rey, D; Kulikowski, C

    2011-01-01

    Biomedical ontologies have been very successful in structuring knowledge for many different applications, receiving widespread praise for their utility and potential. Yet, the role of computational ontologies in scientific research, as opposed to knowledge management applications, has not been extensively discussed. We aim to stimulate further discussion on the advantages and challenges presented by biomedical ontologies from a scientific perspective. We review various aspects of biomedical ontologies going beyond their practical successes, and focus on some key scientific questions in two ways. First, we analyze and discuss current approaches to improve biomedical ontologies that are based largely on classical, Aristotelian ontological models of reality. Second, we raise various open questions about biomedical ontologies that require further research, analyzing in more detail those related to visual reasoning and spatial ontologies. We outline significant scientific issues that biomedical ontologies should consider, beyond current efforts of building practical consensus between them. For spatial ontologies, we suggest an approach for building "morphospatial" taxonomies, as an example that could stimulate research on fundamental open issues for biomedical ontologies. Analysis of a large number of problems with biomedical ontologies suggests that the field is very much open to alternative interpretations of current work, and in need of scientific debate and discussion that can lead to new ideas and research directions.

  17. Making better scientific figures

    Science.gov (United States)

    Hawkins, Ed; McNeall, Doug

    2016-04-01

    In the words of the UK government chief scientific adviser "Science is not finished until it's communicated" (Walport 2013). The tools to produce good visual communication have never been so easily accessible to scientists as at the present. Correspondingly, it has never been easier to produce and disseminate poor graphics. In this presentation, we highlight some good practice and offer some practical advice in preparing scientific figures for presentation to peers or to the public. We identify common mistakes in visualisation, including some made by the authors, and offer some good reasons not to trust defaults in graphics software. In particular, we discuss the use of colour scales and share our experiences in running a social media campaign (http://tiny.cc/endrainbow) to replace the "rainbow" (also "jet", or "spectral") colour scale as the default in (climate) scientific visualisation.

  18. Scientific papers for health informatics.

    Science.gov (United States)

    Pereira, Samáris Ramiro; Duarte, Jacy Marcondes; Bandiera-Paiva, Paulo

    2013-01-01

    From the hypothesis that the development of scientific papers, mainly in interdisciplinary areas such as Health Informatics, may bring difficulties to the author, as had its communicative efficacy decreased or compromising their approval for publication; we aim to make considerations on the main items to good players making this kind of text. The scientific writing has peculiarities that must be taken into consideration when it writes: general characteristics, such as simplicity and objectivity, and characteristics of each area of knowledge, such as terminology, formatting and standardization. The research methodology adopted is bibliographical. The information was based on literature review and the authors' experience, teachers and assessors of scientific methodology in peer review publications in the area. As a result, we designed a checklist of items to be checked before submission of a paper to a scientific publication vehicle in order to contribute to the promotion of research, facilitating the publication and increase its capacity in this important area of knowledge.

  19. Scientific Services on the Cloud

    Science.gov (United States)

    Chapman, David; Joshi, Karuna P.; Yesha, Yelena; Halem, Milt; Yesha, Yaacov; Nguyen, Phuong

    Scientific Computing was one of the first every applications for parallel and distributed computation. To this date, scientific applications remain some of the most compute intensive, and have inspired creation of petaflop compute infrastructure such as the Oak Ridge Jaguar and Los Alamos RoadRunner. Large dedicated hardware infrastructure has become both a blessing and a curse to the scientific community. Scientists are interested in cloud computing for much the same reason as businesses and other professionals. The hardware is provided, maintained, and administrated by a third party. Software abstraction and virtualization provide reliability, and fault tolerance. Graduated fees allow for multi-scale prototyping and execution. Cloud computing resources are only a few clicks away, and by far the easiest high performance distributed platform to gain access to. There may still be dedicated infrastructure for ultra-scale science, but the cloud can easily play a major part of the scientific computing initiative.

  20. XML Based Scientific Data Management Facility

    Science.gov (United States)

    Mehrotra, P.; Zubair, M.; Bushnell, Dennis M. (Technical Monitor)

    2002-01-01

    The World Wide Web consortium has developed an Extensible Markup Language (XML) to support the building of better information management infrastructures. The scientific computing community realizing the benefits of XML has designed markup languages for scientific data. In this paper, we propose a XML based scientific data management ,facility, XDMF. The project is motivated by the fact that even though a lot of scientific data is being generated, it is not being shared because of lack of standards and infrastructure support for discovering and transforming the data. The proposed data management facility can be used to discover the scientific data itself, the transformation functions, and also for applying the required transformations. We have built a prototype system of the proposed data management facility that can work on different platforms. We have implemented the system using Java, and Apache XSLT engine Xalan. To support remote data and transformation functions, we had to extend the XSLT specification and the Xalan package.

  1. Roles of Illustrators in Visual Communication of Scientific Knowledge

    Directory of Open Access Journals (Sweden)

    Kana Okawa

    2011-10-01

    Full Text Available Scientific knowledge is the knowledge accumulated by systematic studies and organized by general principles. Visual, verbal, numeric, and other types of representation are used to communicate scientific knowledge. Scientific illustration is the visual representation of objects and concepts in order to record and to convey scientific knowledge(Ford, 1993. There are some discussions on scientific illustrations in history, philosophy and the sociology of science(Burri & Dumit, 2008, but little has been done on the creation of scientific illustrations by illustrators. This study focuses on the creation of scientific illustrations by illustrators. The purpose is to show how illustrators create the visual messages in communications of scientific knowledge. Through analysis of semi-structured interviews with 6 professional illustrators, creators and art directors, it is showed that illustrators select and edit scientific information, add non-scientific information, and organize information into one visual representation of scientific knowledge. The implication of this research will provide a new perspective to multisensory communication of scientific knowledge.

  2. On Writing Scientific Articles in English

    Institute of Scientific and Technical Information of China (English)

    JamesHartley

    2003-01-01

    If we examine the text of scientific articles it is clear that there is a generally accepted way of writing them. Scientific prose in English stereotypically uses the third person, the passive tense, complex terminology, and various footnoting and referencing systems. Scientific prose is not known for discursive anecdotes, humour, pictures, colour, bizarre typography or exclamation marks! Often the written text appears quite impersonal-the human element is removed.

  3. Poster Development and Presentation to Improve Scientific Inquiry and Broaden Effective Scientific Communication Skills.

    Science.gov (United States)

    Rauschenbach, Ines; Keddis, Ramaydalis; Davis, Diane

    2018-01-01

    We have redesigned a tried-and-true laboratory exercise into an inquiry-based team activity exploring microbial growth control, and implemented this activity as the basis for preparing a scientific poster in a large, multi-section laboratory course. Spanning most of the semester, this project culminates in a poster presentation of data generated from a student-designed experiment. Students use and apply the scientific method and improve written and verbal communication skills. The guided inquiry format of this exercise provides the opportunity for student collaboration through cooperative learning. For each learning objective, a percentage score was tabulated (learning objective score = points awarded/total possible points). A score of 80% was our benchmark for achieving each objective. At least 76% of the student groups participating in this project over two semesters achieved each learning goal. Student perceptions of the project were evaluated using a survey. Nearly 90% of participating students felt they had learned a great deal in the areas of formulating a hypothesis, experimental design, and collecting and analyzing data; 72% of students felt this project had improved their scientific writing skills. In a separate survey, 84% of students who responded felt that peer review was valuable in improving their final poster submission. We designed this inquiry-based poster project to improve student scientific communication skills. This exercise is appropriate for any microbiology laboratory course whose learning outcomes include the development of scientific inquiry and literacy.

  4. Using Scientific Visualizations to Enhance Scientific Thinking In K-12 Geoscience Education

    Science.gov (United States)

    Robeck, E.

    2016-12-01

    The same scientific visualizations, animations, and images that are powerful tools for geoscientists can serve an important role in K-12 geoscience education by encouraging students to communicate in ways that help them develop habits of thought that are similar to those used by scientists. Resources such as those created by NASA's Scientific Visualization Studio (SVS), which are intended to inform researchers and the public about NASA missions, can be used in classrooms to promote thoughtful, engaged learning. Instructional materials that make use of those visualizations have been developed and are being used in K-12 classrooms in ways that demonstrate the vitality of the geosciences. For example, the Center for Geoscience and Society at the American Geosciences Institute (AGI) helped to develop a publication that outlines an inquiry-based approach to introducing students to the interpretation of scientific visualizations, even when they have had little to no prior experience with such media. To facilitate these uses, the SVS team worked with Center staff and others to adapt the visualizations, primarily by removing most of the labels and annotations. Engaging with these visually compelling resources serves as an invitation for students to ask questions, interpret data, draw conclusions, and make use of other processes that are key components of scientific thought. This presentation will share specific resources for K-12 teaching (all of which are available online, from NASA, and/or from AGI), as well as the instructional principles that they incorporate.

  5. Human-scientific Planning Theory

    OpenAIRE

    Hagen, Aksel

    1998-01-01

    This working report is a paper written to XII AESOP Congress 22 – 25 July 1998, Aveiro, Portugal. It is a presentation of human-scientific action theory and its linkage to planning, both planning theory and planning practice. Human-scientific action theory is created by professor Gunnar Olsson and professor José Luis Ramírez, Nordic School of Planning, Stockholm. Planning is primarily a practical and reflective activity. The notion ”Planning” may, therefore, describe the activi...

  6. CORRELATION BETWEEN INTELLECTUAL PROPERTY AND SCIENTIFIC ACTIVITY

    Directory of Open Access Journals (Sweden)

    Nataliia Shust

    2017-07-01

    Full Text Available Purpose: The article is dedicated to the analysis of legal nature and peculiarities of optimal correlation between the notions of intellectual property and scientific activity. Nowadays intellectual property as institution goes through the period of establishment in Ukraine. As the Soviet system of civil law was based on recognition and regulation of authors’ rights for the authors of scientific works, discoveries, inventions and innovation proposals as the ones having mainly relative, i.e. legally mandatory, but not absolute character.  Getting started to define the notion of intellectual property and intellectual property right in the system of interaction with scientific activity, it is important to say that such notion as “intellectual property” still needs enhancement. Its imperfection is due to the fact that this kind of property implies being formed by intellectual efforts of the author of scientific work, but legally it is processed with the help of documents that guarantee property right. Methods. General scientific method, philosophical method, specially-legal method of scientific research, system analysis method. Results: It is important to emphasize that not every result of scientific or creative work can become the object of intellectual property right, but the one that corresponds with law. Any scientific work falls within the purview of law if it corresponds with law demands. Scientific and technical results obtain legal protection only in case of appropriate qualification established by specific agency of State administration and issuement of law-enforcement document being limited by the territory of Ukraine. Protection of rights on the territory of other countries is realized only on the basis of correspondent international conventions and treaties. Discussion: Advanced modern countries realized the meaning and importance of usage and proper protection of creative and scientific work results known as

  7. Scientific Research: How Many Paradigms?

    Science.gov (United States)

    Strawn, George O.

    2012-01-01

    As Yogi Berra said, "Predictions are hard, especially about the future." In this article, the author offers a few forward-looking observations about the emerging impact of information technology on scientific research. Scientific research refers to a particular method for acquiring knowledge about natural phenomena. This method has two dimensions:…

  8. Scientific Jargon, Good and Bad

    Science.gov (United States)

    Hirst, Russel

    2003-01-01

    Scientific and technical jargon--specialized vocabulary, usually Latinate--plays a vital role in scientific and technical communication. But its proper use continues to be a point of discussion because of our concern with audience adaptation, rhetorical exigence, rhetorical purpose, and ethics. We've focused on teaching students--and on convincing…

  9. Scientific Representation and Science Learning

    Science.gov (United States)

    Matta, Corrado

    2014-01-01

    In this article I examine three examples of philosophical theories of scientific representation with the aim of assessing which of these is a good candidate for a philosophical theory of scientific representation in science learning. The three candidate theories are Giere's intentional approach, Suárez's inferential approach and Lynch and…

  10. Reading, Writing, and Presenting Original Scientific Research: A Nine-Week Course in Scientific Communication for High School Students†

    Science.gov (United States)

    Danka, Elizabeth S.; Malpede, Brian M.

    2015-01-01

    High school students are not often given opportunities to communicate scientific findings to their peers, the general public, and/or people in the scientific community, and therefore they do not develop scientific communication skills. We present a nine-week course that can be used to teach high school students, who may have no previous experience, how to read and write primary scientific articles and how to discuss scientific findings with a broad audience. Various forms of this course have been taught for the past 10 years as part of an intensive summer research program for rising high school seniors that is coordinated by the Young Scientist Program at Washington University in St. Louis. The format presented here includes assessments for efficacy through both rubric-based methods and student self-assessment surveys. PMID:26753027

  11. Brazilian law for scientific use of animals.

    Science.gov (United States)

    Marques, Ruy Garcia; Morales, Marcelo Marcos; Petroianu, Andy

    2009-01-01

    The Brazilian scientific community claimed for a definitive systematization and for comprehensive and realistic national rules, to provide guidance and regulation, instead of sanctions, so that the question of scientific research involving animals could be better contemplated. This is beginning to occur now with Law no. 11.794, sanctioned by the President of the Republic on November 8, 2008. To describe the evolution of Brazilian regimentation for scientific use of animals and to analyze Law no. 11.794. The legislation about the use of animals in teaching and in scientific research in Brazil and in Rio de Janeiro State was identified and discussed. Until now, there was no updated general and systematizing rule regarding animal vivisection and experimentation for didactic or scientific purposes. The only specific law dates back to 1979 and was not regimented. More recent laws equated the practice of scientific experiments to acts of abuse and mistreatment of animals, when alternative technology was available. Municipal laws that restricted the scientific practice of vivisection and experimentation with animals were created in the cities of Rio de Janeiro and Florianopolis. With the claim and collaboration of the scientific community, the sanction of Law no. 11.794 regarding the scientific use of animals represented an invaluable advance in spite of the presence of some points that eventually may require another type of treatment. The new Law states that it will be regimented within 180 (one-hundred-and-eighty) days, when some of these points could be better elucidated.

  12. Clustering of scientific citations in Wikipedia

    DEFF Research Database (Denmark)

    Nielsen, Finn Årup

    The instances of templates in Wikipedia form an interesting data set of structured information. Here I focus on the cite journal template that is primarily used for citation to articles in scientific journals. These citations can be extracted and analyzed: Non-negative matrix factorization...... is performed on a (article x journal) matrix resulting in a soft clustering of Wikipedia articles and scientific journals, each cluster more or less representing a scientific topic....

  13. Professional scientific blog

    Directory of Open Access Journals (Sweden)

    Tamás Beke

    2009-03-01

    Full Text Available The professional blog is a weblog that on the whole meets the requirements of scientific publication. In my opinion it bear a resemblance to digital notice board, where the competent specialists of the given branch of science can place their ideas, questions, possible solutions and can raise problems. Its most important function can be collectivization of the knowledge. In this article I am going to examine the characteristics of the scientific blog as a genre. Conventional learning counts as a rather solitary activity. If the students have access to the materials of each other and of the teacher, their sense of solitude diminishes and this model is also closer to the constructivist approach that features the way most people think and learn. Learning does not mean passively collecting tiny pieces of knowledge; it much more esembles ‘spinning a conceptual net’ which is made up by the experiences and observations of the individual. With the spreading of the Internet more universities and colleges worldwide gave a try to on-line educational methods, but the most efficient one has not been found yet. The publication of the curriculum (the material of the lectures and the handling of the electronic mails are not sufficient; much more is needed for collaborative learning. Our scholastic scientific blog can be a sufficient field for the start of a knowledge-building process based on cooperation. In the Rocard-report can be read that for the future of Europe it is crucial to develop the education of the natural sciences, and for this it isnecessary to act on local, regional, national and EU-level. To the educational processes should be involved beyond the traditional actors (child, parent, teacher also others (scientists, professionals, universities, local institutions, the actors of the economic sphere, etc.. The scholastic scientific blog answer the purposes, as a collaborative knowledge-sharing forum.

  14. Scientific report 1998

    International Nuclear Information System (INIS)

    1998-01-01

    The aim of this report is to outline the main developments of the ''Departement des Reacteurs Nucleaires'', (DRN) during the year 1998. DRN is one of the CEA Institution. This report is divided in three main parts: the DRN scientific programs, the scientific and technical publications (with abstracts in english) and economic data on staff, budget and communication. Main results of the Department, for the year 1998, are presented giving information on the reactors technology and safety, the neutronics, the transmutation and the hybrid systems, the dismantling and the sites improvement, the nuclear accidents, the nuclear matter transport, the thermonuclear fusion safety, the fuel cladding materials and radioactive waste control. (A.L.B.)

  15. Shaping a Scientific Self

    DEFF Research Database (Denmark)

    Andrade-Molina, Melissa; Valero, Paola

    us to understand how a truth is reproduced, circulating among diverse fields of human knowledge. Also it will show why we accept and reproduce a particular discourse. Finally, we state Euclidean geometry as a truth that circulates in scientific discourse and performs a scientific self. We unfold...... the importance of having students following the path of what schools perceive a real scientist is, no to become a scientist, but to become a logical thinker, a problem solver, a productive citizen who uses reason....

  16. 50 CFR 21.23 - Scientific collecting permits.

    Science.gov (United States)

    2010-10-01

    ... take, transport, or possess migratory birds, their parts, nests, or eggs for scientific research or... project involved; (4) Name and address of the public, scientific, or educational institution to which all... possessed under authority of a scientific collecting permit must be donated and transferred to the public...

  17. The Crossroads between Biology and Mathematics: The Scientific Method as the Basics of Scientific Literacy

    Science.gov (United States)

    Karsai, Istvan; Kampis, George

    2010-01-01

    Biology is changing and becoming more quantitative. Research is creating new challenges that need to be addressed in education as well. New educational initiatives focus on combining laboratory procedures with mathematical skills, yet it seems that most curricula center on a single relationship between scientific knowledge and scientific method:…

  18. Scientific Research: Commodities or Commons?

    Science.gov (United States)

    Vermeir, Koen

    2013-01-01

    Truth is for sale today, some critics claim. The increased commodification of science corrupts it, scientific fraud is rampant and the age-old trust in science is shattered. This cynical view, although gaining in prominence, does not explain very well the surprising motivation and integrity that is still central to the scientific life. Although…

  19. NASA's Scientific Visualization Studio

    Science.gov (United States)

    Mitchell, Horace G.

    2003-01-01

    Since 1988, the Scientific Visualization Studio(SVS) at NASA Goddard Space Flight Center has produced scientific visualizations of NASA s scientific research and remote sensing data for public outreach. These visualizations take the form of images, animations, and end-to-end systems and have been used in many venues: from the network news to science programs such as NOVA, from museum exhibits at the Smithsonian to White House briefings. This presentation will give an overview of the major activities and accomplishments of the SVS, and some of the most interesting projects and systems developed at the SVS will be described. Particular emphasis will be given to the practices and procedures by which the SVS creates visualizations, from the hardware and software used to the structures and collaborations by which products are designed, developed, and delivered to customers. The web-based archival and delivery system for SVS visualizations at svs.gsfc.nasa.gov will also be described.

  20. Scientific Assistant Virtual Laboratory (SAVL)

    Science.gov (United States)

    Alaghband, Gita; Fardi, Hamid; Gnabasik, David

    2007-03-01

    The Scientific Assistant Virtual Laboratory (SAVL) is a scientific discovery environment, an interactive simulated virtual laboratory, for learning physics and mathematics. The purpose of this computer-assisted intervention is to improve middle and high school student interest, insight and scores in physics and mathematics. SAVL develops scientific and mathematical imagination in a visual, symbolic, and experimental simulation environment. It directly addresses the issues of scientific and technological competency by providing critical thinking training through integrated modules. This on-going research provides a virtual laboratory environment in which the student directs the building of the experiment rather than observing a packaged simulation. SAVL: * Engages the persistent interest of young minds in physics and math by visually linking simulation objects and events with mathematical relations. * Teaches integrated concepts by the hands-on exploration and focused visualization of classic physics experiments within software. * Systematically and uniformly assesses and scores students by their ability to answer their own questions within the context of a Master Question Network. We will demonstrate how the Master Question Network uses polymorphic interfaces and C# lambda expressions to manage simulation objects.

  1. Scientific knowledge and modern prospecting

    Science.gov (United States)

    Neuerburg, G.J.

    1985-01-01

    Modern prospecting is the systematic search for specified and generally ill-exposed components of the Earth's crust known as ore. This prospecting depends entirely on reliable, or scientific knowledge for guidance and for recognition of the search objects. Improvement in prospecting results from additions and refinements to scientific knowledge. Scientific knowledge is an ordered distillation of observations too numerous and too complex in themselves for easy understanding and for effective management. The ordering of these observations is accomplished by an evolutionary hierarchy of abstractions. These abstractions employ simplified descriptions consisting of characterization by selected properties, sampling to represent much larger parts of a phenomenon, generalized mappings of patterns of geometrical and numerical relations among properties, and explanation (theory) of these patterns as functional relations among the selected properties. Each abstraction is predicated on the mode of abstraction anticipated for the next higher level, so that research is a deductive process in which the highest level, theory, is indispensible for the growth and refinement of scientific knowledge, and therefore of prospecting methodology. ?? 1985 Springer-Verlag.

  2. Mapping the evolution of scientific ideas

    Energy Technology Data Exchange (ETDEWEB)

    Roberts, David C [Los Alamos National Laboratory; Herrera, Mark [UNIV OF MARYLAND; Gulbahce, Natali [NORTHEASTERN UNIV

    2008-01-01

    The importance of interdisciplinary research is ever increasing as challenging world problems require expertise across diverse fields. Despite the apparent conceptual boundaries of scientific fields, a formal description for their evolution is lacking. Here we describe a novel approach to study the dynamics and evolution of scientific ideas and fields using a network-based analysis. We build a idea network consisting of American Physical Society Pacs numbers as nodes representing scientific concepts. Two Pacs numbers are linked in the network if there exist publications that reference them simultaneously. We locate scientific fields using an overlapping community finding algorithm and describe the time evolution of these fields using a community evolution method over the course of 1985-2006. We find that the communities we find map to scientific fields, the lifetime of these fields strongly depends on their size, impact and activity, and longest living communities are least volatile. The described approach to quantify the evolution of ideas is expected to be relevant in making predictions about the future of science and how to guide its development.

  3. Introduction to scientific publishing backgrounds, concepts, strategies

    CERN Document Server

    Öchsner, Andreas

    2013-01-01

    This book is a very concise introduction to the basic knowledge of scientific publishing. It  starts with the basics of writing a scientific paper, and recalls the different types of scientific documents. In gives an overview on the major scientific publishing companies and different business models. The book also introduces to abstracting and indexing services and how they can be used for the evaluation of science, scientists, and institutions. Last but not least, this short book faces the problem of plagiarism and publication ethics.

  4. Artificial intelligence support for scientific model-building

    Science.gov (United States)

    Keller, Richard M.

    1992-01-01

    Scientific model-building can be a time-intensive and painstaking process, often involving the development of large and complex computer programs. Despite the effort involved, scientific models cannot easily be distributed and shared with other scientists. In general, implemented scientific models are complex, idiosyncratic, and difficult for anyone but the original scientific development team to understand. We believe that artificial intelligence techniques can facilitate both the model-building and model-sharing process. In this paper, we overview our effort to build a scientific modeling software tool that aids the scientist in developing and using models. This tool includes an interactive intelligent graphical interface, a high-level domain specific modeling language, a library of physics equations and experimental datasets, and a suite of data display facilities.

  5. [Scientific medical forum as important source of scientific-information provision for innovation processes in the healthcare sector of Ukraine].

    Science.gov (United States)

    Horban', A Ie; Zakrut'ko, L I; Uvarenko, S V; Prysiazhniuk, L V

    2013-12-01

    The article made a retrospective analysis of the scientific medical forums (congresses, symposia and scientific conferences) in the healthcare sector of Ukraine in 2008-2012, planned by higher medical schools and post-graduate medical education schools, scientific institutions of Ministry of Healthcare of Ukraine, National Academy of Medical Science of Ukraine, medical associations and scientific and medical societies. Quantitative and qualitative assessment was carried out of the effectiveness of their implementation, provided suggestions for improving the planning and conducting of medical research forums.

  6. Scientific workflows as productivity tools for drug discovery.

    Science.gov (United States)

    Shon, John; Ohkawa, Hitomi; Hammer, Juergen

    2008-05-01

    Large pharmaceutical companies annually invest tens to hundreds of millions of US dollars in research informatics to support their early drug discovery processes. Traditionally, most of these investments are designed to increase the efficiency of drug discovery. The introduction of do-it-yourself scientific workflow platforms has enabled research informatics organizations to shift their efforts toward scientific innovation, ultimately resulting in a possible increase in return on their investments. Unlike the handling of most scientific data and application integration approaches, researchers apply scientific workflows to in silico experimentation and exploration, leading to scientific discoveries that lie beyond automation and integration. This review highlights some key requirements for scientific workflow environments in the pharmaceutical industry that are necessary for increasing research productivity. Examples of the application of scientific workflows in research and a summary of recent platform advances are also provided.

  7. Scientific Communication and the Nature of Science

    Science.gov (United States)

    Nielsen, Kristian H.

    2013-01-01

    Communication is an important part of scientific practice and, arguably, may be seen as constitutive to scientific knowledge. Yet, often scientific communication gets cursory treatment in science studies as well as in science education. In Nature of Science (NOS), for example, communication is rarely mentioned explicitly, even though, as will be…

  8. Testing Scientific Software: A Systematic Literature Review

    Science.gov (United States)

    Kanewala, Upulee; Bieman, James M.

    2014-01-01

    Context Scientific software plays an important role in critical decision making, for example making weather predictions based on climate models, and computation of evidence for research publications. Recently, scientists have had to retract publications due to errors caused by software faults. Systematic testing can identify such faults in code. Objective This study aims to identify specific challenges, proposed solutions, and unsolved problems faced when testing scientific software. Method We conducted a systematic literature survey to identify and analyze relevant literature. We identified 62 studies that provided relevant information about testing scientific software. Results We found that challenges faced when testing scientific software fall into two main categories: (1) testing challenges that occur due to characteristics of scientific software such as oracle problems and (2) testing challenges that occur due to cultural differences between scientists and the software engineering community such as viewing the code and the model that it implements as inseparable entities. In addition, we identified methods to potentially overcome these challenges and their limitations. Finally we describe unsolved challenges and how software engineering researchers and practitioners can help to overcome them. Conclusions Scientific software presents special challenges for testing. Specifically, cultural differences between scientist developers and software engineers, along with the characteristics of the scientific software make testing more difficult. Existing techniques such as code clone detection can help to improve the testing process. Software engineers should consider special challenges posed by scientific software such as oracle problems when developing testing techniques. PMID:25125798

  9. Testing Scientific Software: A Systematic Literature Review.

    Science.gov (United States)

    Kanewala, Upulee; Bieman, James M

    2014-10-01

    Scientific software plays an important role in critical decision making, for example making weather predictions based on climate models, and computation of evidence for research publications. Recently, scientists have had to retract publications due to errors caused by software faults. Systematic testing can identify such faults in code. This study aims to identify specific challenges, proposed solutions, and unsolved problems faced when testing scientific software. We conducted a systematic literature survey to identify and analyze relevant literature. We identified 62 studies that provided relevant information about testing scientific software. We found that challenges faced when testing scientific software fall into two main categories: (1) testing challenges that occur due to characteristics of scientific software such as oracle problems and (2) testing challenges that occur due to cultural differences between scientists and the software engineering community such as viewing the code and the model that it implements as inseparable entities. In addition, we identified methods to potentially overcome these challenges and their limitations. Finally we describe unsolved challenges and how software engineering researchers and practitioners can help to overcome them. Scientific software presents special challenges for testing. Specifically, cultural differences between scientist developers and software engineers, along with the characteristics of the scientific software make testing more difficult. Existing techniques such as code clone detection can help to improve the testing process. Software engineers should consider special challenges posed by scientific software such as oracle problems when developing testing techniques.

  10. The ESO Scientific and Technical Committee.

    Science.gov (United States)

    Léna, P.

    1982-03-01

    Since 1978, the structure of ESO involves a Scientific and Technical Committee (STC) which advises the Council on scientific and technical matters. This committee meets twice a year, usually at Garehing; its members are nominated by the Council and their term is 4 years. The STC has 10 members, who are as evenly distributed as possible among member countries, although indeed mainly chosen for their scientific abilities. The chairman is invited to attend Council meetings and to report to the members.

  11. Defending the scientific integrity of conservation-policy processes.

    Science.gov (United States)

    Carroll, Carlos; Hartl, Brett; Goldman, Gretchen T; Rohlf, Daniel J; Treves, Adrian; Kerr, Jeremy T; Ritchie, Euan G; Kingsford, Richard T; Gibbs, Katherine E; Maron, Martine; Watson, James E M

    2017-10-01

    Government agencies faced with politically controversial decisions often discount or ignore scientific information, whether from agency staff or nongovernmental scientists. Recent developments in scientific integrity (the ability to perform, use, communicate, and publish science free from censorship or political interference) in Canada, Australia, and the United States demonstrate a similar trajectory. A perceived increase in scientific-integrity abuses provokes concerted pressure by the scientific community, leading to efforts to improve scientific-integrity protections under a new administration. However, protections are often inconsistently applied and are at risk of reversal under administrations publicly hostile to evidence-based policy. We compared recent challenges to scientific integrity to determine what aspects of scientific input into conservation policy are most at risk of political distortion and what can be done to strengthen safeguards against such abuses. To ensure the integrity of outbound communications from government scientists to the public, we suggest governments strengthen scientific integrity policies, include scientists' right to speak freely in collective-bargaining agreements, guarantee public access to scientific information, and strengthen agency culture supporting scientific integrity. To ensure the transparency and integrity with which information from nongovernmental scientists (e.g., submitted comments or formal policy reviews) informs the policy process, we suggest governments broaden the scope of independent reviews, ensure greater diversity of expert input and transparency regarding conflicts of interest, require a substantive response to input from agencies, and engage proactively with scientific societies. For their part, scientists and scientific societies have a responsibility to engage with the public to affirm that science is a crucial resource for developing evidence-based policy and regulations in the public interest.

  12. [Academician Li Lianda talking about doctors doing scientific research].

    Science.gov (United States)

    He, Ping; Li, Yi-kui

    2015-09-01

    At present, Chinese medical field faces with an important problem of how to correctly handle the relationship between medical and scientific research. Academician Li Lianda advocates doctors doing scientific research under the premise of putting the medical work first. He points out that there are many problems in the process of doctors doing scientific research at present such as paying more attention to scientific research than medical care, excessively promoting building scientific research hospital, only paying attention to training scientific talents, research direction be flashy without substance, the medical evaluation system should be improved and so on. Medical, scientific research and teaching are inseparable because improving medical standards depends on scientific research and personnel training. But not all doctors need to take into account of medical treatment, scientific research and teaching in the same degree while not all hospitals need to turn into three-in-one hospital, scientific research hospital or teaching hospital. It must be treated differently according to the actual situation.

  13. Motivating Scientific Research and Development: | Ononogbu | Bio ...

    African Journals Online (AJOL)

    Scientific research is an important aspect of the function of a university lecturer. It is how he/she carries out this function that determines his/her relevance in the university system and indeed in the scientific community as a whole. Scientific research or investigation may be divided into four sections: mental exercise, ...

  14. Support Science by Publishing in Scientific Society Journals.

    Science.gov (United States)

    Schloss, Patrick D; Johnston, Mark; Casadevall, Arturo

    2017-09-26

    Scientific societies provide numerous services to the scientific enterprise, including convening meetings, publishing journals, developing scientific programs, advocating for science, promoting education, providing cohesion and direction for the discipline, and more. For most scientific societies, publishing provides revenues that support these important activities. In recent decades, the proportion of papers on microbiology published in scientific society journals has declined. This is largely due to two competing pressures: authors' drive to publish in "glam journals"-those with high journal impact factors-and the availability of "mega journals," which offer speedy publication of articles regardless of their potential impact. The decline in submissions to scientific society journals and the lack of enthusiasm on the part of many scientists to publish in them should be matters of serious concern to all scientists because they impact the service that scientific societies can provide to their members and to science. Copyright © 2017 Schloss et al.

  15. Popularization of science and scientific journalism: possibilities of scientific literacy

    Directory of Open Access Journals (Sweden)

    Alessandro Augusto Barros Façanha

    2017-07-01

    Full Text Available This study evidences the intersection between science education and communication in the perspective of the popularization of sciences based on the evidence produced in a specific column of a large circulation newspaper of the city of Teresina / PI. The discussions were based on the analysis of content carried out in the context of science classes in a school of basic education with elementary students, where journalistic texts were used with diverse themes that involved science and daily life in order to understand the interpretation of texts And the relationship with the context of scientific dissemination and citizenship. The analysis of the content was used and the answers were stratified into categories of conceptual nature and application of the themes. The analyses show that the texts of scientific dissemination have a contribution in relation to the popularization of Sciences, fomentation to the debate in the classroom, didactic increment in the classes of sciences, in spite of their insertion still incipient in the context of science education. However, the results of the research denote the difficulty faced by the students in understanding the text of dissemination in their conceptual comprehension and resolution of daily problems, as well as the distance between the context of the sciences in their theoretical scope and their presentation in everyday situations, Despite this, the texts of divulgation corroborated as an important way of real insertion in the process of scientific literacy and promotion of citizenship.

  16. CREATE Cornerstone: Introduction to Scientific Thinking, a New Course for STEM-Interested Freshmen, Demystifies Scientific Thinking through Analysis of Scientific Literature

    Science.gov (United States)

    Gottesman, Alan J.; Hoskins, Sally G.

    2013-01-01

    The Consider, Read, Elucidate hypotheses, Analyze and interpret data, Think of the next Experiment (CREATE) strategy for teaching and learning uses intensive analysis of primary literature to improve students’ critical-thinking and content integration abilities, as well as their self-rated science attitudes, understanding, and confidence. CREATE also supports maturation of undergraduates’ epistemological beliefs about science. This approach, originally tested with upper-level students, has been adapted in Introduction to Scientific Thinking, a new course for freshmen. Results from this course's initial semesters indicate that freshmen in a one-semester introductory course that uses a narrowly focused set of readings to promote development of analytical skills made significant gains in critical-thinking and experimental design abilities. Students also reported significant gains in their ability to think scientifically and understand primary literature. Their perceptions and understanding of science improved, and multiple aspects of their epistemological beliefs about science gained sophistication. The course has no laboratory component, is relatively inexpensive to run, and could be adapted to any area of scientific study. PMID:23463229

  17. Cyber warfare building the scientific foundation

    CERN Document Server

    Jajodia, Sushil; Subrahmanian, VS; Swarup, Vipin; Wang, Cliff

    2015-01-01

    This book features a wide spectrum of the latest computer science research relating to cyber warfare, including military and policy dimensions. It is the first book to explore the scientific foundation of cyber warfare and features research from the areas of artificial intelligence, game theory, programming languages, graph theory and more. The high-level approach and emphasis on scientific rigor provides insights on ways to improve cyber warfare defense worldwide. Cyber Warfare: Building the Scientific Foundation targets researchers and practitioners working in cyber security, especially gove

  18. Biomedical Scientific and Professional Social Networks in the Service of the Development of Modern Scientific Publishing.

    Science.gov (United States)

    Masic, Izet; Begic, Edin

    2016-12-01

    Information technologies have found their application in virtually every branch of health care. In recent years they have demonstrated their potential in the development of online library, where scientists and researchers can share their latest findings. Academia.edu, ResearchGate, Mendeley, Kudos, with the support of platform GoogleScholar, have indeed increased the visibility of scientific work of one author, and enable a much greater availability of the scientific work to the broader audience. Online libraries have allowed free access to the scientific content to the countries that could not follow the economic costs of getting access to certain scientific bases. Especially great benefit occurred in countries in transition and developing countries. Online libraries have great potential in terms of expanding knowledge, but they also present a major problem for many publishers, because their rights can be violated, which are signed by the author when publishing the paper. In the future it will lead to a major conflict of the author, the editorial board and online database, about the right to scientific content This question certainly represents one of the most pressing issues of publishing, whose future in printed form is already in the past, and the future of the online editions will be a problem of large-scale.

  19. In Search of Scientific Inspiration.

    Science.gov (United States)

    2017-01-12

    In the ever-expanding sea of scientific advances, how do you find inspiration for your own study? Cell editor Jiaying Tan talked with Mark Lemmon and Joseph (Yossi) Schlessinger about the importance of fueling your research creativity with the conceptual excitement and technical advance from the broad scientific field. An excerpt of the conversation appears below. Copyright © 2017. Published by Elsevier Inc.

  20. Scientific publications 1973-1974

    International Nuclear Information System (INIS)

    1976-01-01

    This catalogue supplements the HMI report 'Scientific publications 1958-1972' (HMI-B-142). It lists all the publications by the Hahn-Meitner-Institut fuer Kernforschung Berlin of the years 1973-1974. The catalogue contains progress reports, dissertations, publications from scientific journals and anthologies if these are available in print. The titles listed in this catalogue are based on the HMI's annual reports. The classification according to fields and departments follows the development of the institute as outlined in the annual reports. Further classification is done according to the year of publication. (orig./HK) [de

  1. Poster Development and Presentation to Improve Scientific Inquiry and Broaden Effective Scientific Communication Skills †

    Science.gov (United States)

    Rauschenbach, Ines; Keddis, Ramaydalis; Davis, Diane

    2018-01-01

    We have redesigned a tried-and-true laboratory exercise into an inquiry-based team activity exploring microbial growth control, and implemented this activity as the basis for preparing a scientific poster in a large, multi-section laboratory course. Spanning most of the semester, this project culminates in a poster presentation of data generated from a student-designed experiment. Students use and apply the scientific method and improve written and verbal communication skills. The guided inquiry format of this exercise provides the opportunity for student collaboration through cooperative learning. For each learning objective, a percentage score was tabulated (learning objective score = points awarded/total possible points). A score of 80% was our benchmark for achieving each objective. At least 76% of the student groups participating in this project over two semesters achieved each learning goal. Student perceptions of the project were evaluated using a survey. Nearly 90% of participating students felt they had learned a great deal in the areas of formulating a hypothesis, experimental design, and collecting and analyzing data; 72% of students felt this project had improved their scientific writing skills. In a separate survey, 84% of students who responded felt that peer review was valuable in improving their final poster submission. We designed this inquiry-based poster project to improve student scientific communication skills. This exercise is appropriate for any microbiology laboratory course whose learning outcomes include the development of scientific inquiry and literacy. PMID:29904518

  2. Salton Sea Scientific Drilling Project: A summary of drilling and engineering activities and scientific results

    Energy Technology Data Exchange (ETDEWEB)

    Ross, H.P.; Forsgren, C.K. (eds.)

    1992-04-01

    The Salton Sea Scientific g Project (SSSDP) completed the first major well in the United States Continental Scientific Drilling Program. The well (State 2-14) was drilled to 10,W ft (3,220 m) in the Salton Sea Geothermal Field in California's Imperial Valley, to permit scientific study of a deep, high-temperature portion of an active geothermal system. The program was designed to investigate, through drilling and testing, the subsurface thermal, chemical, and mineralogical environments of this geothermal area. Extensive samples and data, including cores, cuttings, geothermal fluids and gases, and geophysical logs, were collected for future scientific analysis, interpretation, and publication. Short duration flow tests were conducted on reservoirs at a depth of approximately 6,120 ft (1,865 m) and at 10,136 ft (3,089 m). This report summarizes all major activities of the SSSDP, from project inception in the fall of 1984 through brine-pond cleanup and site restoration, ending in February 1989. This report presents a balanced summary of drilling, coring, logging, and flow-test operations, and a brief summary of technical and scientific results. Frequent reference is made to original records, data, and publication of results. The report also reviews the proposed versus the final well design, and operational summaries, such as the bit record, the casing and cementing program, and the coring program. Summaries are and the results of three flow tests. Several teamed during the project.

  3. Enhancing Eight Grade Students' Scientific Conceptual Change and Scientific Reasoning through a Web-Based Learning Program

    Science.gov (United States)

    Liao, Ya-Wen; She, Hsiao-Ching

    2009-01-01

    This study reports the impacts of the Scientific Concept Construction and Reconstruction (SCCR) digital learning system on eighth grade students' concept construction, conceptual change, and scientific reasoning involving the topic of "atoms". A two-factorial experimental design was carried out to investigate the effects of the approach…

  4. Toward fostering the scientific and technological literacy establishment of the 'Central Scientific and Technological Museum-Institute' and nuclear development

    International Nuclear Information System (INIS)

    Murata, Takashi

    1999-01-01

    The public in general does not necessarily have enough knowledge for the reasonable decision making in the application of scientific and technological development even in the ear of the Information Society. However strongly the necessity of the consensus in the scientific policy like nuclear R and D is required, it is impossible to attain the goal, unless the scientific literacy of the general public is. In order to improve it the role of the scientific museum as a social educational facility is very important. In this respect, there still remains vast room to improve in the Japanese museum system and its activities. The concept of the 'Central Scientific and Technological Museum-Institute', which also operates very small-sized reactor for the educational use, is developed in this paper. (author)

  5. Mapping the evolution of scientific ideas

    Energy Technology Data Exchange (ETDEWEB)

    Roberts, David [Los Alamos National Laboratory; Herrera, Mark [UNIV OF MARYLAND; Gulbahce, Natali [UNIV OF BOSTON

    2009-01-01

    Despite the apparent conceptual boundaries of scientific fields, a formal description for their evolution is lacking. Here we describe a novel approach to study the dynamics and evolution of scientific fields using a network-based analysis. We build an idea network consisting of American Physical Society PACS numbers as nodes representing scientific concepts. Two PACS numbers are linked if there exist publications that reference them simultaneously. We locate scientific fields using Cfinder, an overlapping community finding algorithm, and describe the time evolution of these fields using a community evolution method over the course of 1985-2006. The communities we identify map to known scientific fields, and their age strongly depends on t.heir size, impact and activity. Our analysis further suggests that communities that redefine themselves by merging and creating new groups of ideas tend to have more fitness as measured by the impact per paper, and hence communities with a higher fitness tend to be short-lived. The described approach to quantify the evolution of ideas may be relevant in making predictions about the future of science and how to guide its development.

  6. Two-Dimensional Theory of Scientific Representation

    Directory of Open Access Journals (Sweden)

    A Yaghmaie

    2013-03-01

    Full Text Available Scientific representation is an interesting topic for philosophers of science, many of whom have recently explored it from different points of view. There are currently two competing approaches to the issue: cognitive and non-cognitive, and each of them claims its own merits over the other. This article tries to provide a hybrid theory of scientific representation, called Two-Dimensional Theory of Scientific Representation, which has the merits of the two accounts and is free of their shortcomings. To do this, we will argue that although scientific representation needs to use the notion of intentionality, such a notion is defined and realized in a simply structural form contrary to what cognitive approach says about intentionality. After a short introduction, the second part of the paper is devoted to introducing theories of scientific representation briefly. In the third part, the structural accounts of representation will be criticized. The next step is to introduce the two-dimensional theory which involves two key components: fixing and structural fitness. It will be argued that fitness is an objective and non-intentional relation, while fixing is intentional.

  7. Refining Current Scientific Priorities and Identifying New Scientific Gaps in HIV-Related Heart, Lung, Blood, and Sleep Research.

    Science.gov (United States)

    Twigg, Homer L; Crystal, Ronald; Currier, Judith; Ridker, Paul; Berliner, Nancy; Kiem, Hans-Peter; Rutherford, George; Zou, Shimian; Glynn, Simone; Wong, Renee; Peprah, Emmanuel; Engelgau, Michael; Creazzo, Tony; Colombini-Hatch, Sandra; Caler, Elisabet

    2017-09-01

    The National Heart, Lung, and Blood Institute (NHLBI) AIDS Program's goal is to provide direction and support for research and training programs in areas of HIV-related heart, lung, blood, and sleep (HLBS) diseases. To better define NHLBI current HIV-related scientific priorities and with the goal of identifying new scientific priorities and gaps in HIV-related HLBS research, a wide group of investigators gathered for a scientific NHLBI HIV Working Group on December 14-15, 2015, in Bethesda, MD. The core objectives of the Working Group included discussions on: (1) HIV-related HLBS comorbidities in the antiretroviral era; (2) HIV cure; (3) HIV prevention; and (4) mechanisms to implement new scientific discoveries in an efficient and timely manner so as to have the most impact on people living with HIV. The 2015 Working Group represented an opportunity for the NHLBI to obtain expert advice on HIV/AIDS scientific priorities and approaches over the next decade.

  8. REEXPORT OF SCIENTIFIC COMPETENCIES IN THE LIGHT OF THE RE-CONSTRUCTION OF A NETWORK OF SCIENTIFIC-RESEARCH BODIES

    Directory of Open Access Journals (Sweden)

    О. A. Yeremchenko

    2016-01-01

    Full Text Available One of the primary challengesRussiais currently facing is the need for diversification of the Russian economy and its increase in the share of manufacturing and exported scientific-driven work products. In this light, improving the effectiveness of the scientific-technological complex of the country is becoming increasingly important. The article considers two scalable, developed in parallel, projects for increasing effectiveness of the scientificresearch sector: restructurization of the scientific organizations network and the project for bringing back home 15 thousand Russian scientists reverse immigration. A conclusion is made about the adequacy of a refusal from a large-scale change in the personnel of scientists in circumstances of when the budget for research and development and the number of scientific-research organizations is cut. It is proposed to create comfortable conditions for scientific search for all parties involved in the process of new knowledge creation, both for the scientists returning toRussiaand those that remain working in the country. 

  9. Embedding Scientific Integrity and Ethics into the Scientific Process and Research Data Lifecycle

    Science.gov (United States)

    Gundersen, L. C.

    2016-12-01

    Predicting climate change, developing resources sustainably, and mitigating natural hazard risk are complex interdisciplinary challenges in the geosciences that require the integration of data and knowledge from disparate disciplines and scales. This kind of interdisciplinary science can only thrive if scientific communities work together and adhere to common standards of scientific integrity, ethics, data management, curation, and sharing. Science and data without integrity and ethics can erode the very fabric of the scientific enterprise and potentially harm society and the planet. Inaccurate risk analyses of natural hazards can lead to poor choices in construction, insurance, and emergency response. Incorrect assessment of mineral resources can bankrupt a company, destroy a local economy, and contaminate an ecosystem. This paper presents key ethics and integrity questions paired with the major components of the research data life cycle. The questions can be used by the researcher during the scientific process to help ensure the integrity and ethics of their research and adherence to sound data management practice. Questions include considerations for open, collaborative science, which is fundamentally changing the responsibility of scientists regarding data sharing and reproducibility. The publication of primary data, methods, models, software, and workflows must become a norm of science. There are also questions that prompt the scientist to think about the benefit of their work to society; ensuring equity, respect, and fairness in working with others; and always striving for honesty, excellence, and transparency.

  10. Scientific data management challenges, technology and deployment

    CERN Document Server

    Rotem, Doron

    2010-01-01

    Dealing with the volume, complexity, and diversity of data currently being generated by scientific experiments and simulations often causes scientists to waste productive time. Scientific Data Management: Challenges, Technology, and Deployment describes cutting-edge technologies and solutions for managing and analyzing vast amounts of data, helping scientists focus on their scientific goals. The book begins with coverage of efficient storage systems, discussing how to write and read large volumes of data without slowing the simulation, analysis, or visualization processes. It then focuses on the efficient data movement and management of storage spaces and explores emerging database systems for scientific data. The book also addresses how to best organize data for analysis purposes, how to effectively conduct searches over large datasets, how to successfully automate multistep scientific process workflows, and how to automatically collect metadata and lineage information. This book provides a comprehensive u...

  11. [M.S. Gilyarov's Scientific School of Soil Zoology].

    Science.gov (United States)

    Chesnova, L V

    2005-01-01

    The role of M.S. Gilyarov's scientific school in the development of the subject and methodology of a new complex discipline formed in the mid-20th century--soil zoology--was considered. The establishment and evolution of the proper scientific school was periodized. The creative continuity and development of the basic laws and technical approaches included in the teacher's scientific program was demonstrated by scientific historical analysis.

  12. Preventing statistical errors in scientific journals.

    NARCIS (Netherlands)

    Nuijten, M.B.

    2016-01-01

    There is evidence for a high prevalence of statistical reporting errors in psychology and other scientific fields. These errors display a systematic preference for statistically significant results, distorting the scientific literature. There are several possible causes for this systematic error

  13. Deathcore, creativity, and scientific thinking

    Science.gov (United States)

    Angeler, David G.; Sundstrom, Shana M.; Allen, Craig R.

    2016-01-01

    BackgroundMajor scientific breakthroughs are generally the result of materializing creative ideas, the result of an inductive process that sometimes spontaneously and unexpectedly generates a link between thoughts and/or objects that did not exist before. Creativity is the cornerstone of scientific thinking, but scientists in academia are judged by metrics of quantification that often leave little room for creative thinking. In many scientific fields, reductionist approaches are rewarded and new ideas viewed skeptically. As a result, scientific inquiry is often confined to narrow but safe disciplinary ivory towers, effectively preventing profoundly creative explorations that could yield unexpected benefits.New informationThis paper argues how apparently unrelated fields specifically music and belief systems can be combined in a provocative allegory to provide novel perspectives regarding patterns in nature, thereby potentially inspiring innovation in the natural, social and other sciences. The merger between basic human tensions such as those embodied by religion and music, for example the heavy metal genre of deathcore, may be perceived as controversial, challenging, and uncomfortable. However, it is an example of moving the thinking process out of unconsciously established comfort zones, through the connection of apparently unrelated entities. We argue that music, as an auditory art form, has the potential to enlighten and boost creative thinking in science. Metal, as a fast evolving and diversifying extreme form of musical art, may be particularly suitable to trigger surprising associations in scientific inquiry. This may pave the way for dealing with questions about what we don´t know that we don´t know in a fast-changing planet.

  14. Ethical muscle and scientific interests: a role for philosophy in scientific research.

    Science.gov (United States)

    Kaposy, Chris

    2008-03-01

    Ethics, a branch of philosophy, has a place in the regulatory framework of human subjects research. Sometimes, however, ethical concepts and arguments play a more central role in scientific activity. This can happen, for example, when violations of research norms are also ethical violations. In such a situation, ethical arguments can be marshaled to improve the quality of the scientific research. I explore two different examples in which philosophers and scientists have used ethical arguments to plead for epistemological improvements in the conduct of research. The first example deals with research dishonesty in pharmaceutical development. The second example is concerned with neuropsychological research using fMRI technology.

  15. International Scientific and Technical Organisations

    International Nuclear Information System (INIS)

    Nunez-Lagos Rogla, R.

    2003-01-01

    The nuclear scientific and technical world is well aware of the EURATOM and IAEA activities but usually other international scientific and technical organisations relevant for their ordinary work are unknown. In this article three international organisations are described briefly, the International Union of Pure and Applied Physics (IUPAP). International Union of Pure and Applied chemistry (IUPAC) and the international council of Science (ICSU). (Author)

  16. Politics and the life sciences: an unfinished revolution.

    Science.gov (United States)

    Johnson, Gary R

    2011-01-01

    Politics and the life sciences--also referred to as biopolitics--is a field of study that seeks to advance knowledge of politics and promote better policymaking through multidisciplinary analysis that draws on the life sciences. While the intellectual origins of the field may be traced at least into the 1960s, a broadly organized movement appeared only with the founding of the Association for Politics and the Life Sciences (APLS) in 1980 and the establishment of its journal, Politics and the Life Sciences ( PLS ), in 1982. This essay--contributed by a past journal editor and association executive director--concludes a celebration of the association's thirtieth anniversary. It reviews the founding of the field and the association, as well as the contributions of the founders. It also discusses the nature of the empirical work that will advance the field, makes recommendations regarding the identity and future of the association, and assesses the status of the revolution of which the association is a part. It argues that there is progress to celebrate, but that this revolution--the last of three great scientific revolutions--is still in its early stages. The revolution is well-started, but remains unfinished.

  17. Scientific text as a special form of communication

    OpenAIRE

    CHERNYAKOVA NATALIA STEPANOVNA

    2016-01-01

    It is asserted in the article that scientific text, even being a product of spiritual culture, never ceased to be the main form of an objectivization of scientific thought and the means of special scientific communication.

  18. Open Science: Open source licenses in scientific research

    OpenAIRE

    Guadamuz, Andres

    2006-01-01

    The article examines the validity of OSS (open source software) licenses for scientific, as opposed to creative works. It draws on examples of OSS licenses to consider their suitability for the scientific community and scientific research.

  19. Scientific meeting abstracts

    International Nuclear Information System (INIS)

    1999-01-01

    The document is a collection of the scientific meeting abstracts in the fields of nuclear physics, medical sciences, chemistry, agriculture, environment, engineering, different aspects of energy and presents research done in 1999 in these fields

  20. Evaluating Scientific Work by Means of Diffusion

    Directory of Open Access Journals (Sweden)

    Dan Ophir

    2013-10-01

    Full Text Available There are two approaches for evaluating scientific papers. The classic way is to choose well established representatives of the specific scientific community and have them evaluate their colleague's work. The other method of evaluation, the so called peer-evaluation method, is where peers (famous or otherwise of the author evaluate the paper. Peer-evaluation resembles the diffusion process in which a new substance spreads out to the whole solution. Similarly the new author and article are diffused among the scientific community, smoothing the level for accepting scientific papers. Using the classic-evaluation system of accepting new papers, the average starting scientists writes their first number of articles as collaborators with a renowned scientist, thus gradually building up their image. Only afterwards do these authors dare to independently publish. What are the pros and cons of both these types of scientific article evaluations?

  1. How to write a good scientific paper

    CERN Document Server

    Mack, Chris A

    2018-01-01

    Many scientists and engineers consider themselves poor writers or find the writing process difficult. The good news is that you do not have to be a talented writer to produce a good scientific paper, but you do have to be a careful writer. In particular, writing for a peer-reviewed scientific or engineering journal requires learning and executing a specific formula for presenting scientific work. This book is all about teaching the style and conventions of writing for a peer-reviewed scientific journal. From structure to style, titles to tables, abstracts to author lists, this book gives practical advice about the process of writing a paper and getting it published.

  2. The emergence of scientific management in America

    Directory of Open Access Journals (Sweden)

    Sorin-George Toma

    2014-05-01

    Full Text Available A scientific approach to management was initiated for the first time in America in the late 19th century. Scientific management arose mainly from the need to increase efficiency in America, but other key factors were the spread of big businesses and the expanding application of science in industry. The aims of our paper are to present the emergence of scientific management in America and to emphasize the contribution of some of the most representatives American authors to its development. The methodological approach is literature review. Our paper shows that scientific management was essentially an American achievement that provided useful lessons for the whole human society.

  3. Joseph Henry's Conception of Scientific Knowledge

    Science.gov (United States)

    Theerman, Paul

    1997-04-01

    Joseph Henry, America's premier physicist and physics teacher in the mid-nineteenth century, had decided views of scientific knowledge. These were expressed in two ways. First of all, scientific knowledge led to moral betterment. Thus the study of science was a morally good thing. This was not only because it led to the contemplation of God's creation, which was a standard reason justifying the study of science dating from the Scientific Revolution and even earlier. More importantly, the study of science itself was a moral discipline, imparting to scientists the habits and virtues of truthfulness, respect for others, care and diligence, and the discernment of meaningful patterns from experience. The moral ideals of science were expressed most strongly in Henry's upholding the international "Republic of Science"; conversely, cheapening science was a sign of moral failure. Second, for Henry and his generation, science provided a path to sure truth, separate from falsehood of both the politics and the quackery that characterized mid-century public life. Henry promoted this in his championing of the Smithsonian Institution a scientific establishment, against the ideas of others who wanted to make it a literary establishment or a training school for teachers. For Henry, the Smithsonian's scientific reputation would be established by relying on careful peer review in its publications, and supporting established scientists to write authoritative popular works. The purpose of both these activities was to raise the profile of science in the United States and further establish science and the scientific method as a guide to public life.

  4. Usability in Scientific Databases

    Directory of Open Access Journals (Sweden)

    Ana-Maria Suduc

    2012-07-01

    Full Text Available Usability, most often defined as the ease of use and acceptability of a system, affects the users' performance and their job satisfaction when working with a machine. Therefore, usability is a very important aspect which must be considered in the process of a system development. The paper presents several numerical data related to the history of the scientific research of the usability of information systems, as it is viewed in the information provided by three important scientific databases, Science Direct, ACM Digital Library and IEEE Xplore Digital Library, at different queries related to this field.

  5. Scientific Community in Algeria: Adopting Traditions and Developing Identity

    Directory of Open Access Journals (Sweden)

    Tatyana I. Tyukaeva

    2014-01-01

    Full Text Available The history of scientific development in Algeria, which has not been long, represents a series of continual rises and falls. The Algerian leadership and researchers have been making efforts to create Algeria's national science through protection from the western scientific tradition, which is reminiscent of the colonial period of the country, and at the same time adoption of scientific knowledge and scientific institutions functioning principles from abroad, with no organizational or scientific experience of their own. Since the time the independent Algerian state was established, its scientific development has been inevitably coupled with active support of European countries, especially France, and other western and non-western states. Today the Algerian leadership is highly devoted to the modernization of the national scientific and research potential in strong cooperation with its foreign partners. The article concentrates on examining the present period (the 2000s of the scientific development in Algeria. The main conclusion is that there still is a number of problems - for Algeria until now lacks an integral scientific community with the state preserving its dominating role in science and research activities. Despite these difficulties, the Algerian science has made an outstanding progress. The efficiently built organizational scientific structure, the growing science and technology cooperation with foreign countries as well as the increasing state expenses in science allow to hope for further success of the Algerian scientific development.

  6. Einstein in love a scientific romance

    CERN Document Server

    Overbye, Dennis

    2000-01-01

    At its height, Einstein's marriage to Mileva was an extraordinary one - a colleague and often fierce adversary, Mileva was brilliantly matched with the scientific genius. Dennis Overbye seeks to present this scientific romance in a vivid light, telling the private story of the young Einstein.

  7. A guide for writing in the scientific forum.

    Science.gov (United States)

    Kotsis, Sandra V; Chung, Kevin C

    2010-11-01

    When considering the importance of scientific writing in disseminating new discoveries and ideas, it is quite remarkable that few physicians have received any formal instruction in this essential process. This article focuses on the fundamental principles of scientific writing that also include a "style and grace" component. The art of good scientific writing is to convey scientific materials in a clear and interesting way, while avoiding incomprehensible sentences that only serve to disguise marginal contents within the article. The goal of this article is to encourage authors and readers to critically examine the art of scientific writing to overcome the barrier to effective communication.

  8. Scientific Digital Libraries, Interoperability, and Ontologies

    Science.gov (United States)

    Hughes, J. Steven; Crichton, Daniel J.; Mattmann, Chris A.

    2009-01-01

    Scientific digital libraries serve complex and evolving research communities. Justifications for the development of scientific digital libraries include the desire to preserve science data and the promises of information interconnectedness, correlative science, and system interoperability. Shared ontologies are fundamental to fulfilling these promises. We present a tool framework, some informal principles, and several case studies where shared ontologies are used to guide the implementation of scientific digital libraries. The tool framework, based on an ontology modeling tool, was configured to develop, manage, and keep shared ontologies relevant within changing domains and to promote the interoperability, interconnectedness, and correlation desired by scientists.

  9. The committee of scientific expertise coordination

    International Nuclear Information System (INIS)

    2003-01-01

    Placed under the MIES control, the Committee of scientific expertise coordination defines the needs, the contain and the planing of expertises realized in function of Climate national and international decisions and negotiations calendars. The Committee verifies the different expertises and offers the administrations, scientific tools and techniques useful for the negotiations. It can also define long-dated research needs which require the scientific community mobilization. This paper provides some document of the Committee: objectives, operating and priorities of the Committee, scenarios ''Factor 4'' and ''crack technology'', perceptions and practices, developing countries (China, India...), Euromed. (A.L.B.)

  10. Recommendations to write better scientific articles

    Directory of Open Access Journals (Sweden)

    Richard Threlfall (Author

    2014-12-01

    Full Text Available Disseminate results is one of the functions of the scientists, and we all must have approach to the knowledge to carry it a greater number of people. This is done by writing and publishing scientific articles. But though we all have good intentions and ours goals are the best, not always we get our papers are accepted and published in scientific journals. With the aim of providing assistance to achieve greater efficiency and effectiveness in our work, in this article the translation of some interesting recommendations for best writing scientific papers is presented.

  11. Scientific literacy for democratic decision-making

    Science.gov (United States)

    Yacoubian, Hagop A.

    2018-02-01

    Scientifically literate citizens must be able to engage in making decisions on science-based social issues. In this paper, I start by showing examples of science curricula and policy documents that capitalise the importance of engaging future citizens in decision-making processes whether at the personal or at the societal levels. I elucidate the ideological underpinnings behind a number of the statements within those documents that have defined the trajectory of scientific literacy and have shaped what ought to be considered as personal and societal benefits. I argue that science curricula and policy documents can truly endorse scientific literacy when they embed principles of democratic education at their core. The latter entails fostering learning experiences where some of the underlying assumptions and political ideologies are brought to the conscious level and future citizens encouraged to reflect upon them critically and explicitly. Such a proposal empowers the future citizens to engage in critical deliberation on science-based social issues without taking the underlying status quo for granted. I end up the paper by situating the preparation of scientifically literate citizens within a framework of democratic education, discuss conditions through which a curriculum for scientific literacy can serve democratic decision-making processes, and provide modest recommendations.

  12. On the impoverishment of scientific education.

    Science.gov (United States)

    Dougherty, Edward R

    2013-11-11

    Hannah Arendt, one of the foremost political philosophers of the twentieth century, has argued that it is the responsibility of educators not to leave children in their own world but instead to bring them into the adult world so that, as adults, they can carry civilization forward to whatever challenges it will face by bringing to bear the learning of the past. In the same collection of essays, she discusses the recognition by modern science that Nature is inconceivable in terms of ordinary human conceptual categories - as she writes, 'unthinkable in terms of pure reason'. Together, these views on scientific education lead to an educational process that transforms children into adults, with a scientific adult being one who has the ability to conceptualize scientific systems independent of ordinary physical intuition. This article begins with Arendt's basic educational and scientific points and develops from them a critique of current scientific education in conjunction with an appeal to educate young scientists in a manner that allows them to fulfill their potential 'on the shoulders of giants'. While the article takes a general philosophical perspective, its specifics tend to be directed at biomedical education, in particular, how such education pertains to translational science.

  13. On the impovesrishment of scientific education

    Science.gov (United States)

    2013-01-01

    Hannah Arendt, one of the foremost political philosophers of the twentieth century, has argued that it is the responsibility of educators not to leave children in their own world but instead to bring them into the adult world so that, as adults, they can carry civilization forward to whatever challenges it will face by bringing to bear the learning of the past. In the same collection of essays, she discusses the recognition by modern science that Nature is inconceivable in terms of ordinary human conceptual categories - as she writes, ‘unthinkable in terms of pure reason’. Together, these views on scientific education lead to an educational process that transforms children into adults, with a scientific adult being one who has the ability to conceptualize scientific systems independent of ordinary physical intuition. This article begins with Arendt’s basic educational and scientific points and develops from them a critique of current scientific education in conjunction with an appeal to educate young scientists in a manner that allows them to fulfill their potential ‘on the shoulders of giants’. While the article takes a general philosophical perspective, its specifics tend to be directed at biomedical education, in particular, how such education pertains to translational science. PMID:24215841

  14. The Scientific Enterprise

    Indian Academy of Sciences (India)

    Srimath

    The phrase pre-modern scientific may be used to describe certain attitudes and ..... But unfortunately, in the general atmosphere of poor education and collective fears .... present day science and technology that old time beliefs and traditional ...

  15. Scientific misconduct: also an issue in nursing science?

    NARCIS (Netherlands)

    Fierz, K.; Gennaro, S.; Dierickx, K.; Achterberg, T. van; Morin, K.H.; Geest, S. de

    2014-01-01

    PURPOSE: Scientific misconduct (SMC) is an increasing concern in nursing science. This article discusses the prevalence of SMC, risk factors and correlates of scientific misconduct in nursing science, and highlights interventional approaches to foster good scientific conduct. METHODS: Using the

  16. Examining Data Processing Work as Part of the Scientific Data Lifecycle Comparing Practices Across Four Scientific Research Groups

    OpenAIRE

    Paine, Drew; Lee, Charlotte

    2015-01-01

    Slides from Charlotte P. Lee's presentation at the 2015 iConference on our paper "Examining Data Processing Work as Part of the Scientific Data Lifecycle: Comparing Practices Across Four Scientific Research Groups".

  17. Scientific planning for the VLT and VLTI

    Science.gov (United States)

    Leibundgut, B.; Berger, J.-P.

    2016-07-01

    An observatory system like the VLT/I requires careful scientific planning for operations and future instruments. Currently the ESO optical/near-infrared facilities include four 8m telescopes, four (movable) 1.8m telescopes used exclusively for interferometry, two 4m telescopes and two survey telescopes. This system offers a large range of scientific capabilities and setting the corresponding priorities depends good community interactions. Coordinating the existing and planned instrumentation is an important aspect for strong scientific return. The current scientific priorities for the VLT and VLTI are pushing for the development of the highest angular resolution imaging and astrometry, integral field spectroscopy and multi-object spectroscopy. The ESO 4m telescopes on La Silla will be dedicated to time domain spectroscopy and exo-planet searches with highly specialized instruments. The next decade will also see a significant rise in the scientific importance of massive ground and space-based surveys. We discuss how future developments in astronomical research could shape the VLT/I evolution.

  18. Predicting future discoveries from current scientific literature.

    Science.gov (United States)

    Petrič, Ingrid; Cestnik, Bojan

    2014-01-01

    Knowledge discovery in biomedicine is a time-consuming process starting from the basic research, through preclinical testing, towards possible clinical applications. Crossing of conceptual boundaries is often needed for groundbreaking biomedical research that generates highly inventive discoveries. We demonstrate the ability of a creative literature mining method to advance valuable new discoveries based on rare ideas from existing literature. When emerging ideas from scientific literature are put together as fragments of knowledge in a systematic way, they may lead to original, sometimes surprising, research findings. If enough scientific evidence is already published for the association of such findings, they can be considered as scientific hypotheses. In this chapter, we describe a method for the computer-aided generation of such hypotheses based on the existing scientific literature. Our literature-based discovery of NF-kappaB with its possible connections to autism was recently approved by scientific community, which confirms the ability of our literature mining methodology to accelerate future discoveries based on rare ideas from existing literature.

  19. Antibody Scientific Committee | Office of Cancer Clinical Proteomics Research

    Science.gov (United States)

    The Antibody Scientific Committee provides scientific insight and guidance to the NCI's Antibody Characterization Program. Specifically, the members of this committee evaluate request from the external scientific community for development and characterization of antibodies by the program. The members of the Antibody Scientific Committee include:

  20. 50 CFR 300.104 - Scientific research.

    Science.gov (United States)

    2010-10-01

    ... 50 Wildlife and Fisheries 7 2010-10-01 2010-10-01 false Scientific research. 300.104 Section 300... REGULATIONS Antarctic Marine Living Resources § 300.104 Scientific research. (a) The management measures... vessel for research purposes, unless otherwise indicated. (b) Catches taken by any vessel for research...

  1. Scientific publications: now a marketing decision?

    Science.gov (United States)

    Scientists have been publishing in journals related to their disciplines. Now with the advent of the internet, many more options are now available and scientific publication has become a marketing decision. Scientific journals are rated by "impact factor" which is based on the average number of cita...

  2. Speech and scientific paper. A rhetorical approach

    Directory of Open Access Journals (Sweden)

    Juan Carlos Carmona Sandoval

    2013-01-01

    Full Text Available This essay attempts to show that the ancient rhetorical theory has explanatory capabilities to understand and learn to write modern texts and to analyze them in order to understand their communication skills, as in the scientific article, one of the most prestigious forms on scientific communication. It starts with the notion of discourse in the field of scientific communication and then address the rhetorical dimension of the paper.

  3. HONESTY AND GOOD PRACTICE IN SCIENTIFIC RESEARCH

    Directory of Open Access Journals (Sweden)

    Jože Trontelj

    2008-01-01

    Full Text Available In the field of science, we see cases of misconduct ranging from relatively minor departurefrom good manners and practice to more severe dishonesty and even criminal behaviour.Unethical experiments on human beings are among the worst abuses in scientific researchin medicine. Unethical research is usually also worthless from the scientific point of view.The commonest types of offence, however, include mismanagement of data, conscious misinterpretation,wrongful authorship, biased citation of work by others, plagiarism, misquotationor suppression of findings for the interests or upon the request of the sponsor or In the field of science, we see cases of misconduct ranging from relatively minor departurefrom good manners and practice to more severe dishonesty and even criminal behaviour.Unethical experiments on human beings are among the worst abuses in scientific researchin medicine. Unethical research is usually also worthless from the scientific point of view.The commonest types of offence, however, include mismanagement of data, conscious misinterpretation,wrongful authorship, biased citation of work by others, plagiarism, misquotationor suppression of findings for the interests or upon the request of the sponsor or In the field of science, we see cases of misconduct ranging from relatively minor departurefrom good manners and practice to more severe dishonesty and even criminal behaviour.Unethical experiments on human beings are among the worst abuses in scientific researchin medicine. Unethical research is usually also worthless from the scientific point of view.The commonest types of offence, however, include mismanagement of data, conscious misinterpretation,wrongful authorship, biased citation of work by others, plagiarism, misquotationor suppression of findings for the interests or upon the request of the sponsor or even a senior scientist in the team. Every case of misconduct and fraud may causedamage: it may undermine confidence of the

  4. Addressing big data challenges for scientific data infrastructure

    NARCIS (Netherlands)

    Demchenko, Y.; Zhao, Z.; Grosso, P.; Wibisono, A.; de Laat, C.

    2012-01-01

    This paper discusses the challenges that are imposed by Big Data Science on the modern and future Scientific Data Infrastructure (SDI). The paper refers to different scientific communities to define requirements on data management, access control and security. The paper introduces the Scientific

  5. 48 CFR 435.010 - Scientific and technical reports.

    Science.gov (United States)

    2010-10-01

    ... CATEGORIES OF CONTRACTING RESEARCH AND DEVELOPMENT CONTRACTING 435.010 Scientific and technical reports... all scientific and technical reports to the National Technical Information Service at the address... 48 Federal Acquisition Regulations System 4 2010-10-01 2010-10-01 false Scientific and technical...

  6. The scientific status of fusion

    International Nuclear Information System (INIS)

    Crandall, D.H.

    1989-01-01

    The development of fusion energy has been a large-scale scientific undertaking of broad interest. The magnetic plasma containment in tokamaks and the laser-drive ignition of microfusion capsules appear to be scientifically feasible sources of energy. These concepts are bounded by questions of required intensity in magnetid field and plasma currents or in drive energy and, for both concepts, by issues of plasma stability and energy transport. The basic concept and the current scientific issues are described for magnetic fusion and for the interesting, but likely infeasible, muon-catalyzed fusion concept. Inertial fusion is mentioned, qualitatively, to complete the context. For magnetic fusion, the required net energy production within the plasma may be accomplished soon, but the more useful goal of self-sustained plasma ignition requires a new device of somewhat uncertain (factor of 2) cost and size. (orig.)

  7. How to write and publish a scientific paper

    CERN Document Server

    Day, Robert A

    2011-01-01

    Writing and publishing journal articles are crucial to scientific careers. Unfortunately, many young scientists find the process of communicating scientific information effectively a complete mystery. By providing practical, readable, and sometimes humorous guidance, this book helps researchers gain the knowledge, skills, and confidence to succeed in communicating about their work. This seventh edition of "How to Write and Publish a Scientific Paper" contains 41 chapters focused upon two separate tasks: how to write the respective sections of a scientific paper and how to publish the paper. Other related topics include approaching a writing project, following ethical principles in scientific publishing, preparing oral presentations and poster presentations, writing grant proposals, and working with the popular media. The authors provide considerable guidance on appropriate scientific writing style as well as an extensive list of words and expressions to avoid - and supply the language to substitute for them.

  8. Scientific writing and communication papers, proposals, and presentations

    CERN Document Server

    Hofmann, Angelika H

    2014-01-01

    Scientific Writing and Communication: Papers, Proposals, and Presentations, Second Edition, serves as a comprehensive " reference guide to scientific writing and communication. The second edition of Angelika Hofmann's successful text covers all the areas of scientific communication that a scientist needs to know and master in order to successfully promote his or her research and career. This unique "all-in-one" handbook begins with a discussion of the basic principles of scientific writing style and composition and then applies these principles to writing research papers, review articles, grant proposals, research statements, and resumes, as well as to preparing academic presentations and posters. Scientific Writing and Communication: Papers, Proposals, and Presentations has been used successfully for a number of years in courses on scientific writing at various universities and institutes worldwide. Readers of the second edition will find numerous new examples and exercises, many with an expanded interdiscip...

  9. 1997 Scientific Report

    International Nuclear Information System (INIS)

    Govaerts, P.

    1998-01-01

    The 1997 Scientific Report of the Belgian Nuclear Research Centre SCK-CEN describes progress achieved in nuclear safety, radioactive waste management, radiation protection and safeguards. In the field of nuclear research, the main projects concern the behaviour of high-burnup and MOX fuel, the embrittlement of reactor pressure vessels, the irradiation-assisted stress corrosion cracking of reactor internals, and irradiation effects on materials of fusion reactors. In the field of radioactive waste management, progress in the following domains is reported: the disposal of high-level radioactive waste and spent fuel in a clay formation, the decommissioning of nuclear installations, the study of alternative waste-processing techniques. For radiation protection and safeguards, the main activities reported on are in the field of site and environmental restoration, emergency planning and response and scientific support to national and international programmes

  10. Scientific report 1999

    International Nuclear Information System (INIS)

    1999-01-01

    The aim of this report is to outline the main developments of the 'Departement des Reacteurs Nucleaires' (DRN) during the year 1999. DRN is one of the CEA Institutions. This report is divided in three main parts: the DRN scientific programs, the scientific and technical publications (with abstracts in English) and economic data on staff, budget and communication. Main results of the Department for the year 1999 are presented giving information on the simulation of low mach number compressible flow, experimental irradiation of multi-materials, progress in the dry route conversion process of UF 6 to UO 2 , the neutronics, the CASCADE installation, the corium, the BWR type reactor cores technology, the reactor safety, the transmutation of americium and fuel cell flow studies, the crack propagation, the hybrid systems and the CEA sites improvement. (A.L.B.)

  11. Thirtieth Annual Congress on Veterinary Acupuncture: IVAS Report

    Directory of Open Access Journals (Sweden)

    Krishna Kaphle

    2005-01-01

    Full Text Available More than 155 participants from 25 countries attended the 30th Annual IVAS Congress, September 8–11, 2004 in Oostende, Belgium. The focus was on veterinary acupuncture (AP and immunology, and the event was sponsored by the International Veterinary Acupuncture Society (IVAS. IVAS is a non-profit organization dedicated to promoting excellence in the practice of veterinary AP as an integral part of the total veterinary health care delivery system. The Society endeavors to establish uniformly high standards of veterinary AP through its educational programs and accreditation examination. IVAS seeks to integrate veterinary AP and the practice of Western veterinary science, while also noting that the science of veterinary AP does not overlook allied health systems, such as homeopathy, herbology, nutrition, chiropractic, kinesiology, etc. (www.ivas.org.

  12. Scientific and Technological Report 2011

    International Nuclear Information System (INIS)

    Lopez Milla, Alcides; Prado Cuba, Antonio; Agapito Panta, Juan; Montoya Rossi, Eduardo

    2013-01-01

    This annual scientific and technological report provides an overview of research and development activities at Peruvian Institute of Nuclear Energy (IPEN) during the period from 1 january to 31 december, 2011. This report includes 30 papers divided in 8 subject matters, such as: physics and chemistry, materials science, nuclear engineering, mining industrial and environmental applications, medical and biological applications, radiation protection and nuclear safety, scientific instrumentation and management aspects. It also includes annexes. (APC)

  13. Scientific and Technological Report 2010

    International Nuclear Information System (INIS)

    Prado Cuba, Antonio; Santiago Contreras, Julio; Solis Veliz, Jose; Lopez Moreno, Edith

    2011-10-01

    This annual scientific and technological report provides an overview of research and development activities at Peruvian Institute of Nuclear Energy (IPEN) during the period from 1 january to 31 december, 2010. This report includes 41 papers divided in 8 subject matters, such as: physics and chemistry, materials science, nuclear engineering, mining industrial and environmental applications, medical and biological applications, radiation protection and nuclear safety, scientific instrumentation and management aspects. It also includes annexes. (APC)

  14. Similarity measures for scientific workflows

    OpenAIRE

    Starlinger, Johannes

    2016-01-01

    In Laufe der letzten zehn Jahre haben Scientific Workflows als Werkzeug zur Erstellung von reproduzierbaren, datenverarbeitenden in-silico Experimenten an Aufmerksamkeit gewonnen, in die sowohl lokale Skripte und Anwendungen, als auch Web-Services eingebunden werden können. Über spezialisierte Online-Bibliotheken, sogenannte Repositories, können solche Workflows veröffentlicht und wiederverwendet werden. Mit zunehmender Größe dieser Repositories werden Ähnlichkeitsmaße für Scientific Workfl...

  15. Science communication at scientific societies.

    Science.gov (United States)

    Braha, Jeanne

    2017-10-01

    Scientific societies can play a key role in bridging the research and practice of scientists' engagement of public audiences. Societies are beginning to support translation of science communication research, connections between scientists and audiences, and the creation of opportunities for scientists to engage publics without extensive customization. This article suggests roles, strategies, and mechanisms for scientific societies to promote and enhance their member's engagement of public audiences. Copyright © 2017 Elsevier Ltd. All rights reserved.

  16. Scientific Literacy of High School Students.

    Science.gov (United States)

    Lucas, Keith B.; Tulip, David F.

    This investigation was undertaken in order to establish the status of scientific literacy among three groups of secondary school students in four Brisbane, Australia high schools, and to reduce the apparent reticence of science teachers to evaluate students' achievement in the various dimensions of scientific literacy by demonstrating appropriate…

  17. Nine Criteria for a Measure of Scientific Output

    Science.gov (United States)

    Kreiman, Gabriel; Maunsell, John H. R.

    2011-01-01

    Scientific research produces new knowledge, technologies, and clinical treatments that can lead to enormous returns. Often, the path from basic research to new paradigms and direct impact on society takes time. Precise quantification of scientific output in the short-term is not an easy task but is critical for evaluating scientists, laboratories, departments, and institutions. While there have been attempts to quantifying scientific output, we argue that current methods are not ideal and suffer from solvable difficulties. Here we propose criteria that a metric should have to be considered a good index of scientific output. Specifically, we argue that such an index should be quantitative, based on robust data, rapidly updated and retrospective, presented with confidence intervals, normalized by number of contributors, career stage and discipline, impractical to manipulate, and focused on quality over quantity. Such an index should be validated through empirical testing. The purpose of quantitatively evaluating scientific output is not to replace careful, rigorous review by experts but rather to complement those efforts. Because it has the potential to greatly influence the efficiency of scientific research, we have a duty to reflect upon and implement novel and rigorous ways of evaluating scientific output. The criteria proposed here provide initial steps toward the systematic development and validation of a metric to evaluate scientific output. PMID:22102840

  18. PROSCENIUM OF SCIENTIFIC MANAGEMENT

    Directory of Open Access Journals (Sweden)

    Vasile Berlingher

    2013-09-01

    Full Text Available During the last three decades of the nineteenth century, organizations developed rapidly, their managers began to realize that they had too frequent managerial problems; this awareness lead to a new phase of development of scientific management. Examining the titles published in that period, it can be concluded that management issues that pose interest related to payroll and payroll systems, problems exacerbated by the industrial revolution and related work efficiency. Noting that large organizations losing power, direct supervision, the managers were looking for incentives to replace this power . One of the first practitioners of this new management system was Henry R. Towne, the president of the well-known enterprise "Yale and Towne Manufacturing Company", which applied the management methods in his company workshops. Publishers of magazines "Industrial Management" and "The Engineering Magazine" stated that HR Towne is, undisputedly, the pioneer of scientific management. He initiated the systematic application of effective management methods and his famous article "The Engineer as Economist" provided to the company. "American Society of Mechanical Engineers" in 1886 was the one that probably inspired Frederick W. Taylor to devote his entire life and work in scientific management.

  19. A Computing Environment to Support Repeatable Scientific Big Data Experimentation of World-Wide Scientific Literature

    Energy Technology Data Exchange (ETDEWEB)

    Schlicher, Bob G [ORNL; Kulesz, James J [ORNL; Abercrombie, Robert K [ORNL; Kruse, Kara L [ORNL

    2015-01-01

    A principal tenant of the scientific method is that experiments must be repeatable and relies on ceteris paribus (i.e., all other things being equal). As a scientific community, involved in data sciences, we must investigate ways to establish an environment where experiments can be repeated. We can no longer allude to where the data comes from, we must add rigor to the data collection and management process from which our analysis is conducted. This paper describes a computing environment to support repeatable scientific big data experimentation of world-wide scientific literature, and recommends a system that is housed at the Oak Ridge National Laboratory in order to provide value to investigators from government agencies, academic institutions, and industry entities. The described computing environment also adheres to the recently instituted digital data management plan mandated by multiple US government agencies, which involves all stages of the digital data life cycle including capture, analysis, sharing, and preservation. It particularly focuses on the sharing and preservation of digital research data. The details of this computing environment are explained within the context of cloud services by the three layer classification of Software as a Service , Platform as a Service , and Infrastructure as a Service .

  20. Creating Posters for Effective Scientific Communication.

    Science.gov (United States)

    Bavdekar, Sandeep B; Vyas, Shruti; Anand, Varun

    2017-08-01

    A scientific poster is a summary of one's research that is presented in a visually engaging manner. Posters are presented as a means of short and quick scientific communications at conferences and scientific meetings. Presenting posters has advantages for the presenters and for conference attendees and organizers. It also plays a part in dissemination of research findings and furthering science. An effective poster is the one that focuses on a single message and conveys it through a concise and artistically attractive manner. This communication intends to provide tips on creating an effective poster to young scientists. © Journal of the Association of Physicians of India 2011.

  1. Recent Developments in Scientific Research Ballooning

    International Nuclear Information System (INIS)

    Jones, W. Vernon

    2007-01-01

    The National Aeronautics and Space Administration (NASA) Balloon Program is committed to meeting the need for extended duration scientific investigations by providing advanced balloon vehicles and support systems. A sea change in ballooning capability occurred with the inauguration of 8 - 20 day flights around Antarctica in the early 1990's. The attainment of 28-31 day flights and a record-breaking 42-day flight in, respectively, two and three circumnavigations of the continent has greatly increased the expectations of the scientific users. A new super-pressure balloon is currently under development for future flights of 60-100 days at any latitude, which would bring another sea change in scientific research ballooning

  2. 48 CFR 235.010 - Scientific and technical reports.

    Science.gov (United States)

    2010-10-01

    ....010 Scientific and technical reports. (b) For DoD, the Defense Technical Information Center is responsible for collecting all scientific and technical reports. For access to these reports, follow the... 48 Federal Acquisition Regulations System 3 2010-10-01 2010-10-01 false Scientific and technical...

  3. Scientific Literacy: Resurrecting the Phoenix with Thinking Skills

    Science.gov (United States)

    Deming, John C.; O'Donnell, Jacqueline R.; Malone, Christopher J.

    2012-01-01

    Prior research suggests that students' understanding of scientific concepts is pre-determined by their reasoning ability. Other efforts suggest that American students' scientific literacy is in decline. One difficulty Bybee (2009) acknowledges is that there are two divergent philosophical models of scientific literacy. The first describes the…

  4. The Early Scientific Contributions of J. Robert Oppenheimer: Why Did the Scientific Community Miss the Black Hole Opportunity?

    Science.gov (United States)

    Ortega-Rodríguez, M.; Solís-Sánchez, H.; Boza-Oviedo, E.; Chaves-Cruz, K.; Guevara-Bertsch, M.; Quirós-Rojas, M.; Vargas-Hernández, S.; Venegas-Li, A.

    2017-04-01

    We assess the scientific value of Oppenheimer's research on black holes in order to explain its neglect by the scientific community, and even by Oppenheimer himself. Looking closely at the scientific culture and conceptual belief system of the 1930s, the present article seeks to supplement the existing literature by enriching the explanations and complicating the guiding questions. We suggest a rereading of Oppenheimer as a figure both more intriguing for the history of astrophysics and further ahead of his time than is commonly supposed.

  5. Kaleidoscope: Scientific Quality Committee - final report

    DEFF Research Database (Denmark)

    Dirckinck-Holmfeld, Lone; Laurillard, Diana

    To shape a body of reference at a scientific level for the European TEL research communities. To make recommendations (i) to support a policy for the enhancement of research in Europe in this field, (ii) to survey the development of the field, and (iii) to build scientific collaboration on top of...

  6. INNER DIALOGICITY OF MEDICAL SCIENTIFIC TEXTS

    Directory of Open Access Journals (Sweden)

    Efremova Nataliya Vladimirovna

    2015-06-01

    Full Text Available The author studies inner dialogicity as an integral property of a scientist's thinking activity, a way of a scientific idea development, one of the cognitive and discursive mechanisms of new knowledge formation, its crystallization and dementalisation in a text, as a way of search for truth. Such approach to dialogicity in the study of a scientific text makes it possible to analyze the cogitative processes proceeding in human consciousness and cognitive activity, allows to fully understand the stated scientific concept, to define pragmatic strategies of the author, to plunge into his reflexive world. On the material of medical scientific texts of N.M. Amosov and F. G. Uglov, famous scientists in the field of cardio surgery, it is established that traces of internal dialogicity manifestation in the textual space of scientists actualize the origin of new knowledge, the change of author's semantic positions, his ability to reflect, compare, analyze his own thoughts and actions, to estimate oneself and the features of thinking process which are realized in logic of a statement of the scientific concept, an explanation of concepts, terms at judgment of the points of view of contemporaries and predecessors, adherents and scientist's opponents, and also orientation to the addressee's presupposition, activization of his cogitative activity. Linguistic, discursive, verbal analysis singles out the impact on the addressee, his mental activity.

  7. Scientific Literacy Campaign among Children with Special Needs ...

    African Journals Online (AJOL)

    ... for them and equipping them to make decisions about matters which affect their well-being. The resources for scientific literacy should be provided. The importance of scientific literacy among the gifted and the necessity of assessment of scientific literacy level among children with special needs are adequately discussed.

  8. Hypothesis testing of scientific Monte Carlo calculations

    Science.gov (United States)

    Wallerberger, Markus; Gull, Emanuel

    2017-11-01

    The steadily increasing size of scientific Monte Carlo simulations and the desire for robust, correct, and reproducible results necessitates rigorous testing procedures for scientific simulations in order to detect numerical problems and programming bugs. However, the testing paradigms developed for deterministic algorithms have proven to be ill suited for stochastic algorithms. In this paper we demonstrate explicitly how the technique of statistical hypothesis testing, which is in wide use in other fields of science, can be used to devise automatic and reliable tests for Monte Carlo methods, and we show that these tests are able to detect some of the common problems encountered in stochastic scientific simulations. We argue that hypothesis testing should become part of the standard testing toolkit for scientific simulations.

  9. Instructional scientific humor in the secondary classroom

    Science.gov (United States)

    Wizner, Francine

    This study is an examination of the manner in which educators employ scientific content humor and how that humor is perceived by their students. Content humor is a useful strategy in drawing the attention of students and improving their receptivity toward scientific information. It is also a useful tool in combating the growing distractions of the electronic classroom. Previous studies have found that humor has a positive effect on knowledge, memory, and understanding. However, few studies have been conducted below the undergraduate level and mainly quantitative measures of student recall have been used to measure learning. This study employed multiple data sources to determine how two secondary biology teachers used humor in order to explain scientific concepts and how their students perceived their teachers' use of scientific instructional humor. Evidence of student humor reception was collected from four students in each of the two classes. All of the scientific instructional humor used in the studied classrooms was cognitive in nature, varying among factual, procedural, conceptual, and metacognitive knowledge. Teachers tended to use dialogic forms of humor. Their scientific humor reflected everyday experiences, presented queries, poked fun at authority, and asked students to search out new perspectives and perform thought experiments. Teachers were the primary actors in performing the humorous events. The events were sometimes physical exaggerations of words or drawings, and they occurred for the purpose of establishing rapport or having students make connections between scientific concepts and prior knowledge. Student perceptions were that teachers did employ humor toward instructional objectives that helped their learning. Helping students become critical thinkers is a trademark of science teachers. Science teachers who take the risk of adopting some attributes of comedians may earn the reward of imparting behaviors on their students like critical thinking

  10. Scientific publishing: some food for thought

    Directory of Open Access Journals (Sweden)

    Vittorio Bo

    2007-03-01

    Full Text Available Scientific publishing, here to be considered in a broader sense, as publishing of both specialised scientific journals and science popularisation works addressed to a wider audience, has been sailing for some years on troubled waters. To gather some possible food for thought is the purpose of this brief article.

  11. Extracting Core Claims from Scientific Articles

    NARCIS (Netherlands)

    Jansen, Tom; Kuhn, Tobias

    2017-01-01

    The number of scientific articles has grown rapidly over the years and there are no signs that this growth will slow down in the near future. Because of this, it becomes increasingly difficult to keep up with the latest developments in a scientific field. To address this problem, we present here an

  12. Scientific Resource EXplorer

    Science.gov (United States)

    Xing, Z.; Wormuth, A.; Smith, A.; Arca, J.; Lu, Y.; Sayfi, E.

    2014-12-01

    Inquisitive minds in our society are never satisfied with curatedimages released by a typical public affairs office. They always want tolook deeper and play directly on original data. However, most scientificdata products are notoriously hard to use. They are immensely large,highly distributed and diverse in format. In this presentation,we will demonstrate Resource EXplorer (REX), a novel webtop applicationthat allows anyone to conveniently explore and visualize rich scientificdata repositories, using only a standard web browser. This tool leverageson the power of Webification Science (w10n-sci), a powerful enabling technologythat simplifies the use of scientific data on the web platform.W10n-sci is now being deployed at an increasing number of NASA data centers,some of which are the largest digital treasure troves in our nation.With REX, these wonderful scientific resources are open for teachers andstudents to learn and play.

  13. Constructing a Scientific Explanation—A Narrative Account

    Science.gov (United States)

    Yeo, Jennifer; Gilbert, John K.

    2014-07-01

    Studies analyzing explanations that have been constructed by science students have found that they were generally weak and lack necessary features. The goal of this study was to establish the competencies that one needs to construct a scientific explanation. Scientific explanations can be looked at in three ways, in terms of their function, form and level, as being essentially sign-making processes. Taking a case study approach and using Lemke's multimodal framework, we analyzed the scientific explanation of an electromagnetic induction phenomenon constructed by one high school student. We found that such a construction involves the complex coordination of different types of signs, not only to represent the entities in the phenomenon, but also to support thinking and reasoning about it at abstract levels. Scientific conventions and rules, and everyday material and social tools were found to be crucial in shifting from one level of abstraction to another. The findings highlight the importance of developing the skillful use of schemes of scientific representation by students and familiarizing them with commonly encountered contexts.

  14. Scientific literacy and the social constructivist perspective

    Directory of Open Access Journals (Sweden)

    Antić Slobodanka

    2015-01-01

    Full Text Available The term scientific literacy is already common in our educational rhetoric. Although the term is widely used, there are no papers that analyse the definition of the term and the rangeitencompasses in Serbia. If scientific literacy is a necessary outcome of education, this analysis is an important base for designing the teaching/learning process which is intended to develop such an outcome. Therefore, this paper provides an analysis of the concept of scientific literacy (SL, the different viewpoints on SL and the nature of the concept. Furthermore, five key lines as courses of action in the teaching/learning process, necessary for the development of these competencies, are defined: appreciation ofstudents' previous knowledge, encouragement of students' basic functional literacy and reading comprehension skills, the development of students' understanding of the socio-cultural perspective on the origin and use of scientific knowledge and technological products, and practicing of scientific research, either through school science or science applied in the context of cooperation between school and the local community, i.e. in the socio-cultural background where students live.

  15. On the Existence and Uniqueness of the Scientific Method.

    Science.gov (United States)

    Wagensberg, Jorge

    2014-01-01

    The ultimate utility of science is widely agreed upon: the comprehension of reality. But there is much controversy about what scientific understanding actually means, and how we should proceed in order to gain new scientific understanding. Is there a method for acquiring new scientific knowledge? Is this method unique and universal? There has been no shortage of proposals, but neither has there been a shortage of skeptics about these proposals. This article proffers for discussion a potential scientific method that aspires to be unique and universal and is rooted in the recent and ancient history of scientific thinking. Curiously, conclusions can be inferred from this scientific method that also concern education and the transmission of science to others.

  16. Deutsches Elektronen-Synchrotron DESY. Scientific annual report 1991

    International Nuclear Information System (INIS)

    1991-11-01

    The scientific annual report 1991 presented by DESY again is a very detailed summary of the activities. The HERA activities reported for the most part deal with the preparatory work for the scientific programme for electron-proton collisions in HERA, and with the modified DORIS III electron-positron storage ring. But at the time this annual report will have been published, the physics studies at HERA will have yielded the first and certainly interesting scientific results, and there also are scientific results available of experiments with the newly installed beam guides in DORIS. (orig.) [de

  17. CAD/CAM and scientific data management at Dassault

    Science.gov (United States)

    Bohn, P.

    1984-01-01

    The history of CAD/CAM and scientific data management at Dassault are presented. Emphasis is put on the targets of the now commercially available software CATIA. The links with scientific computations such as aerodynamics and structural analysis are presented. Comments are made on the principles followed within the company. The consequences of the approximative nature of scientific data are examined. Consequence of the new history function is mainly its protection against copy or alteration. Future plans at Dassault for scientific data appear to be in opposite directions compared to some general tendencies.

  18. The Associative Basis of Scientific Creativity: A Model Proposal

    Directory of Open Access Journals (Sweden)

    Esra Kanli

    2014-06-01

    Full Text Available Creativity is accepted as an important part of scientific skills. Scientific creativity proceeds from a need or urge to solve a problem, and in-volves the production of original and useful ideas or products. Existing scientific creativity theories and tests do not feature the very im-portant thinking processes, such as analogical and associative thinking, which can be consid-ered crucial in creative scientific problem solv-ing. Current study’s aim is to provide an alter-native model and explicate the associative basis of scientific creativity. Emerging from the re-viewed theoretical framework, Scientific Asso-ciations Model is proposed. This model claims that, similarity and mediation constitutes the basis of creativity and focuses on three compo-nents namely; associative thinking, analogical thinking (analogical reasoning & analogical problem solving and insight which are consid-ered to be main elements of scientific associa-tive thinking.

  19. Women scientists' scientific and spiritual ways of knowing

    Science.gov (United States)

    Buffington, Angela Cunningham

    While science education aims for literacy regarding scientific knowledge and the work of scientists, the separation of scientific knowing from other knowing may misrepresent the knowing of scientists. The majority of science educators K-university are women. Many of these women are spiritual and integrate their scientific and spiritual ways of knowing. Understanding spiritual women of science would inform science education and serve to advance the scientific reason and spirituality debate. Using interviews and grounded theory, this study explores scientific and spiritual ways of knowing in six women of science who hold strong spiritual commitments and portray science to non-scientists. From various lived experiences, each woman comes to know through a Passive knowing of exposure and attendance, an Engaged knowing of choice, commitment and action, an Mindful/Inner knowing of prayer and meaning, a Relational knowing with others, and an Integrated lifeworld knowing where scientific knowing, spiritual knowing, and other ways of knowing are integrated. Consequences of separating ways of knowing are discussed, as are connections to current research, implications to science education, and ideas for future research. Understanding women scientists' scientific/ spiritual ways of knowing may aid science educators in linking academic science to the life-worlds of students.

  20. Measuring scientific research in emerging nano-energy field

    Science.gov (United States)

    Guan, Jiancheng; Liu, Na

    2014-04-01

    The purpose of this paper is to comprehensively explore scientific research profiles in the field of emerging nano-energy during 1991-2012 based on bibliometrics and social network analysis. We investigate the growth pattern of research output, and then carry out across countries/regions comparisons on research performances. Furthermore, we examine scientific collaboration across countries/regions by analyzing collaborative intensity and networks in 3- to 4-year intervals. Results indicate with an impressively exponential growth pattern of nano-energy articles, the world share of scientific "giants," such as the USA, Germany, England, France and Japan, display decreasing research trends, especially in the USA. Emerging economies, including China, South Korea and India, exhibit a rise in terms of the world share, illustrating strong development momentum of these countries in nano-energy research. Strikingly, China displays a remarkable rise in scientific influence rivaling Germany, Japan, France, and England in the last few years. Finally, the scientific collaborative network in nano-energy research has expanded steadily. Although the USA and several major European countries play significantly roles on scientific collaboration, China and South Korea exert great influence on scientific collaboration in recent years. The findings imply that emerging economies can earn competitive advantages in some emerging fields by properly engaging a catch-up strategy.

  1. Amplify scientific discovery with artificial intelligence

    Energy Technology Data Exchange (ETDEWEB)

    Gil, Yolanda; Greaves, Mark T.; Hendler, James; Hirsch, Hyam

    2014-10-10

    Computing innovations have fundamentally changed many aspects of scientific inquiry. For example, advances in robotics, high-end computing, networking, and databases now underlie much of what we do in science such as gene sequencing, general number crunching, sharing information between scientists, and analyzing large amounts of data. As computing has evolved at a rapid pace, so too has its impact in science, with the most recent computing innovations repeatedly being brought to bear to facilitate new forms of inquiry. Recently, advances in Artificial Intelligence (AI) have deeply penetrated many consumer sectors, including for example Apple’s Siri™ speech recognition system, real-time automated language translation services, and a new generation of self-driving cars and self-navigating drones. However, AI has yet to achieve comparable levels of penetration in scientific inquiry, despite its tremendous potential in aiding computers to help scientists tackle tasks that require scientific reasoning. We contend that advances in AI will transform the practice of science as we are increasingly able to effectively and jointly harness human and machine intelligence in the pursuit of major scientific challenges.

  2. Forecast Mekong 2012: Building scientific capacity

    Science.gov (United States)

    Stefanov, James E.

    2012-01-01

    In 2009, U.S. Secretary of State Hillary R. Clinton joined the Foreign Ministers of Cambodia, Laos, Thailand, and Vietnam in launching the Lower Mekong Initiative to enhance U.S. engagement with the countries of the Lower Mekong River Basin in the areas of environment, health, education, and infrastructure. The U.S. Geological Survey Forecast Mekong supports the Lower Mekong Initiative through a variety of activities. The principal objectives of Forecast Mekong include the following: * Build scientific capacity in the Lower Mekong Basin and promote cooperation and collaboration among scientists working in the region. * Provide data, information, and scientific models to help resource managers there make informed decisions. * Produce forecasting and visualization tools to support basin planning, including climate change adaptation. The focus of this product is Forecast Mekong accomplishments and current activities related to the development of scientific capacity at organizations and institutions in the region. Building on accomplishments in 2010 and 2011, Forecast Mekong continues to enhance scientific capacity in the Lower Mekong Basin with a suite of activities in 2012.

  3. The OceanoScientific® Programme

    OpenAIRE

    Kramp, M.; Gaillard, F.; Blouch, P.; Fietzek, Peer

    2010-01-01

    The aim of the OceanoScientific® Programme and its SolOceans One-design Class is to collect and transmit scientific data from the ocean-atmosphere interface during regularly starting offshore sailing races. Data collected on board the first SolOceans One-design proved to be of good quality. Thus the first important step towards the introduction of an accepted as well as highly valuable platform for ocean surface and atmospheric parameter acquisition has been taken. The serial production of t...

  4. The European standard on planetary protection requirements.

    Science.gov (United States)

    Debus, André

    2006-01-01

    Since the beginning of solar system exploration, numerous spacecrafts have been sent towards others worlds, and one of the main goals of such missions is the search for extraterrestrial forms of life. It is known that, under certain conditions, some terrestrial entities are able to survive during cruises in space and that they may contaminate other planets (forward contamination). At another level, possible extraterrestrial life forms are unknown and their ability to contaminate the Earth's biosphere (back contamination) in the frame of sample return missions cannot be excluded. Article IX of the Outer Space Treaty (London/Washington, January 27, 1967) requires the preservation of planets and the Earth from contamination. All nations taking part in this Treaty must prevent forward and back contamination during missions exploring our solar system. Consequently, the United Nations (UN-COPUOS) has delegated COSPAR (Committee of Space Research) to take charge of planetary protection and, at present, all space-faring nations must comply with COSPAR policy and consequently with COSPAR planetary protection recommendations. Starting from these recommendations and the "CNES Planetary Protection Standard" document, a working group has been set up in the framework of the "European Cooperation for Space Standardization" (ECSS) to establish the main specifications for preventing cross-contamination between target bodies within the solar system and the Earth-moon system.

  5. Scientific Medical Journal

    African Journals Online (AJOL)

    Scientific Medical Journal: an official journal of Egyptian Medical Education provides a forum for dissemination of knowledge, exchange of ideas, inform of exchange of ideas, information and experience among workers, investigators and clinicians in all disciplines of medicine with emphasis on its treatment and prevention.

  6. Analysis According to Certain Variables of Scientific Literacy among Gifted Students That Participate in Scientific Activities at Science and Art Centers

    Science.gov (United States)

    Kömek, Emre; Yagiz, Dursun; Kurt, Murat

    2015-01-01

    The purpose of this study is to analyze scientific literacy levels relevant to science and technology classes among gifted students that participate in scientific activities at science and art centers. This study investigated whether there was a significant difference in scientific literacy levels among gifted students according to the areas of…

  7. THE SPANISH SCIENTIFIC JOURNALS: A DESCRIPTIVE APPROACH

    Directory of Open Access Journals (Sweden)

    Melba G. Claudio-González

    2017-02-01

    Full Text Available The main objective of this article is to present a broad description of Spanish scientific journals. The results were obtained from a survey distributed to 1,280 editors of Spanish scientific journals included in Dulcinea database (2012 edition. The response rate was 43,8%. As specific objectives, the study aimed to characterize scientific journals and to analyze the particularities of a set of parameters that make up the economic, strategic and operational dimensions of the journals in the period studied. The results show that the funding model of the Spanish scientific journals depends mainly on institutional support, that many journals lack a stable organizational structure and rely heavily on volunteer work, and that the debate on the limitations and difficulties affecting the development of open access remains open.

  8. Is writing style predictive of scientific fraud?

    DEFF Research Database (Denmark)

    Braud, Chloé Elodie; Søgaard, Anders

    2017-01-01

    The problem of detecting scientific fraud using machine learning was recently introduced, with initial, positive results from a model taking into account various general indicators. The results seem to suggest that writing style is predictive of scientific fraud. We revisit these initial experime......The problem of detecting scientific fraud using machine learning was recently introduced, with initial, positive results from a model taking into account various general indicators. The results seem to suggest that writing style is predictive of scientific fraud. We revisit these initial...... experiments, and show that the leave-one-out testing procedure they used likely leads to a slight over-estimate of the predictability, but also that simple models can outperform their proposed model by some margin. We go on to explore more abstract linguistic features, such as linguistic complexity...

  9. African Scientific Network: A model to enhance scientific research in developing countries

    Science.gov (United States)

    Kebede, Abebe

    2002-03-01

    Africa has over 350 higher education institutions with a variety of experiences and priorities. The primary objectives of these institutions are to produce white-collar workers, teachers, and the work force for mining, textiles, and agricultural industries. The state of higher education and scientific research in Africa have been discussed in several conferences. The proposals that are generated by these conferences advocate structural changes in higher education, North-South institutional linkages, mobilization of the African Diaspora and funding. We propose a model African Scientific Network that would facilitate and enhance international scientific partnerships between African scientists and their counterparts elsewhere. A recent article by James Lamout (Financial Times, August 2, 2001) indicates that emigration from South Africa alone costs $8.9 billion in lost human resources. The article also stated that every year 23,000 graduates leave Africa for opportunities overseas, mainly in Europe, leaving only 20,000 scientists and engineers serving over 600 million people. The International Organization for Migration states that the brain drain of highly skilled professionals from Africa is making economic growth and poverty alleviation impossible across the continent. In our model we will focus on a possible networking mechanism where the African Diaspora will play a major role in addressing the financial and human resources needs of higher education in Africa

  10. Proportional Reasoning: An Essential Component of Scientific Understanding

    Science.gov (United States)

    Hilton, Annette; Hilton, Geoff

    2016-01-01

    In many scientific contexts, students need to be able to use mathematical knowledge in order to engage in scientific reasoning and problem-solving, and their understanding of scientific concepts relies heavily on their ability to understand and use mathematics in often new or unfamiliar contexts. Not only do science students need high levels of…

  11. Technical-scientific production of IPEN - 1992

    International Nuclear Information System (INIS)

    1993-01-01

    The technical-scientific production from Nuclear and Energetic Research Institute (IPEN), Brazil, is presented, including 471 references, where 421 papers are from the 1992 year and 50 from the earlier years. The main areas that the IPEN acts are: technical-scientific development of materials; nuclear processes; research reactors; nuclear utilization; nuclear safety and human resources formation. (C.G.C.)

  12. Accelerating scientific discovery : 2007 annual report.

    Energy Technology Data Exchange (ETDEWEB)

    Beckman, P.; Dave, P.; Drugan, C.

    2008-11-14

    As a gateway for scientific discovery, the Argonne Leadership Computing Facility (ALCF) works hand in hand with the world's best computational scientists to advance research in a diverse span of scientific domains, ranging from chemistry, applied mathematics, and materials science to engineering physics and life sciences. Sponsored by the U.S. Department of Energy's (DOE) Office of Science, researchers are using the IBM Blue Gene/L supercomputer at the ALCF to study and explore key scientific problems that underlie important challenges facing our society. For instance, a research team at the University of California-San Diego/ SDSC is studying the molecular basis of Parkinson's disease. The researchers plan to use the knowledge they gain to discover new drugs to treat the disease and to identify risk factors for other diseases that are equally prevalent. Likewise, scientists from Pratt & Whitney are using the Blue Gene to understand the complex processes within aircraft engines. Expanding our understanding of jet engine combustors is the secret to improved fuel efficiency and reduced emissions. Lessons learned from the scientific simulations of jet engine combustors have already led Pratt & Whitney to newer designs with unprecedented reductions in emissions, noise, and cost of ownership. ALCF staff members provide in-depth expertise and assistance to those using the Blue Gene/L and optimizing user applications. Both the Catalyst and Applications Performance Engineering and Data Analytics (APEDA) teams support the users projects. In addition to working with scientists running experiments on the Blue Gene/L, we have become a nexus for the broader global community. In partnership with the Mathematics and Computer Science Division at Argonne National Laboratory, we have created an environment where the world's most challenging computational science problems can be addressed. Our expertise in high-end scientific computing enables us to provide

  13. Betting on better scientific literacy

    CERN Multimedia

    Daisy Yuhas

    Dmitry Zimin, founder of the Russian philanthropic foundation Dynasty, visited CERN on 23 October. Zimin, who is himself a scientist and businessman, founded Dynasty in order to support scientific education and a greater public understanding of scientific thinking. Zimin met the Bulletin to reflect on the experience and what had interested him about CERN. Zimin, who had read about and researched CERN before his visit, felt prepared for the physics at CERN but was greatly impressed by the collaborative “brainforce.” He observed that “The organization of all of these people is not less important as an achievement than all of the technical achievements, the collider, the experiments.” He was amazed at “how CERN has been able to organize such a grand collaboration of different people from different institutes of countries from all over the world.” At the core of the Dynasty Foundation’s ideals is the dissemination of scientific thought. Zimin ...

  14. CERN Library - Scientific journal cancellations

    CERN Multimedia

    2004-01-01

    Due to the constant increase of the subscription costs of scientific journals and the current budget restrictions, the Scientific Information Policy Board has mandated the Working Group for Acquisitions (WGA) together with the Library to propose a list of titles to be cancelled at the end of 2004. As a first step, the WGA has identified the scientific journals listed at the web site below as candidates for cancellation. The choice has been guided by the personal experience of the WGA members, consultation of other expert CERN staff for highly specialized titles, and by criteria such as subscription price, impact factor, and - where available - access statistics for electronic journals. The list also accounts for the fact that many titles are subscribed to in 'packages' such that a cancellation of individual titles would not lead to any cost savings. We invite users to carefully check the list on the Library homepage (http://library.cern.ch/). If you find any title that you consider critically important for y...

  15. Scientific publications in Nepal.

    Science.gov (United States)

    Magar, A

    2012-09-01

    Scientific publications have become a mainstay of communication among readers, academicians, researchers and scientists worldwide. Although, its existence dates back to 17 th century in the West, Nepal is still struggling to take few steps towards improving its local science for last 50 years. Since the start of the first medical journal in 1963, the challenges remains as it were decades back regarding role of authors, peer reviewers, editors and even publishers in Nepal. Although, there has been some development in terms of the number of articles being published and appearances of the journals, yet there is a long way to go. This article analyzes the past and present scenario, and future perspective for scientific publications in Nepal.

  16. Taiwan Government’s scientific journal supporting policy

    Directory of Open Access Journals (Sweden)

    Hsiu-Ching Hsu

    2016-08-01

    Full Text Available This report discloses the journal supporting policy in Taiwan. At the moment, the Ministry of Science and Technology (MOST not only gives financial support to each academic research projects but also plays an important role to the quality of many scientific journals. The MOST has established a competitive evaluation system to assess the quality of scientific journals. According to the policy of MOST, each academic association could apply financial support for one scientific journal. Around 60 journals receive support from MOST every year.

  17. Documenta Mathematica A Community-Driven Scientific Journal

    CERN Document Server

    Rehmann, U

    2003-01-01

    Documenta Mathematica is an electronically produced, peer-reviewed, scientific journal, founded in 1996 by the German Mathematical Society (DMV). It is produced and distributed without any commercial publisher. Its foundation was one of the responses of the scientific community in order to cope with the ever increasing prices of scientific journals. Since May 1996, Documenta Mathematica is freely available on the Internet, and printed versions of its annual volumes are available at low cost. In this article we describe its management and its 'business model'.

  18. Toward fostering the scientific and technological literacy establishment of the 'Central Scientific and Technological Museum-Institute' and nuclear development

    Energy Technology Data Exchange (ETDEWEB)

    Murata, Takashi [Graduate School of Energy Sci., Kyoto Univ., Kyoto (Japan)

    1999-12-01

    The public in general does not necessarily have enough knowledge for the reasonable decision making in the application of scientific and technological development even in the ear of the Information Society. However strongly the necessity of the consensus in the scientific policy like nuclear R and D is required, it is impossible to attain the goal, unless the scientific literacy of the general public is. In order to improve it the role of the scientific museum as a social educational facility is very important. In this respect, there still remains vast room to improve in the Japanese museum system and its activities. The concept of the 'Central Scientific and Technological Museum-Institute', which also operates very small-sized reactor for the educational use, is developed in this paper. (author)

  19. Assessing Scientific Performance.

    Science.gov (United States)

    Weiner, John M.; And Others

    1984-01-01

    A method for assessing scientific performance based on relationships displayed numerically in published documents is proposed and illustrated using published documents in pediatric oncology for the period 1979-1982. Contributions of a major clinical investigations group, the Childrens Cancer Study Group, are analyzed. Twenty-nine references are…

  20. General outline of scientific programme for 1971

    CERN Multimedia

    1971-01-01

    A description of the 1971 scientific and technical programme at CERN was prepared for the Scientific Policy Committee and was used to accompany the budget document. The opening chapter is reproduced here with a few minor modifications.

  1. Things to see and do: how scientific images work

    DEFF Research Database (Denmark)

    Kjærgaard, Rikke Schmidt

    2011-01-01

    Visual representations are an important and integral part of understanding and developing new scientific concepts – both in the laboratory and when engaging a public audience. Images often serve as the primary evidence supporting the claims of the scientific publication (Goodsell & Johnson, 2007...... a broad range of scientific areas, visual approaches and imaging technologies. It explores the way we look at scientific data, why some representations are better than others, and what you can do to achieve clarity, accuracy and aesthetic appearance in a visual representation that will represent your...... scientific data in the best possible way....

  2. Essential elements of a framework for future space exploration and use: the role of science

    Science.gov (United States)

    Rummel, John; Ehrenfreund, Pascale

    The objective of the COSPAR Panel on Exploration (PEX) is to provide independent scientific advice to support the development of exploration programs and to safeguard the potential scientific assets of solar system objects. The Outer Space Treaty (OST) of 1967 provides (Article I) for “exploration and use of outer space” as well as an obligation for States to authorize and supervise space activities (Article VI) so “that national activities are carried out in conformity with the provisions set forth in the. . Treaty,” while the provisions of Article IX of the Treaty include pursuing “studies of outer space, including the Moon and other celestial bodies, and conduct[ing] exploration of them so as to avoid their harmful contamination." In short, the Treaty provides for many activities to take place in outer space, but it also leaves to the future the definitions of “harmful contamination,” “adverse changes,” and even “use.” In order to provide for both protection and use in outer space, and therefore to provide for both scientific and economic exploration, an extension of the OST (or its replacement) will be required. Whatever policy choices are made in constructing such a framework, it is clear that scientific understanding of the solar system, and each of its individual planetary bodies, will be required to determine the balance—and it may be a dynamic balance—between protection and use of outer space environments. This paper will consider the role of scientific advice and continuing research and education within such a framework, and as an essential complement to the necessary regulation distinguishing between protection and use of different locations in outer space.

  3. Queen's discovery lauded by top scientific journal

    CERN Multimedia

    McGrady, S

    2002-01-01

    A scientific breakthrough at Queen's University's Sudbury Neutrino Observatory has received major international recognition. The journal Science ranked the discovery that cracked the "neutrino problem" second, in the journal's top 10 scientific achievements of 2002 (1/2 page).

  4. Collaborative e-Science Experiments and Scientific Workflows

    NARCIS (Netherlands)

    Belloum, A.; Inda, M.A.; Vasunin, D.; Korkhov, V.; Zhao, Z.; Rauwerda, H.; Breit, T.M.; Bubak, M.; Hertzberger, L.O.

    2011-01-01

    Recent advances in Internet and grid technologies have greatly enhanced scientific experiments' life cycle. In addition to compute- and data-intensive tasks, large-scale collaborations involving geographically distributed scientists and e-infrastructure are now possible. Scientific workflows, which

  5. The NRPB future scientific programme (2002-2007)

    International Nuclear Information System (INIS)

    2002-01-01

    This paper provides a detailed summary of the work planned for the lifetime of the Corporate Plan (2002-2007). Some of the work relates to new technologies, other work arises from challenges to accepted standards or because of new information from research. The Scientific Programme is set in the context of NRPB effort in the international arena to develop and address radiation issues and standards. This work pervades and influences aspects of the work programme in all of the scientific areas. The globally recognised expertise of NRPB can influence developments to ensure UK concerns are addressed and the UK research programmes meshes with international and collaborative research. The Scientific Programme is in line with the role of NRPB, our stated methods of working and the priorities identified by the 1999-2000 Strategic Review, Government Departments, Devolved Administrations and Agencies and the views of Board members. The future Scientific Programme spans the three principal functions of advice, research and the provision of technical services and draws on expertise from across the organisation. The Department of Health is responsible for ministerial approval of the Corporate Plan and Scientific Programme. (author)

  6. The configuration of the Brazilian scientific field.

    Science.gov (United States)

    Barata, Rita B; Aragão, Erika; de Sousa, Luis E P Fernandes; Santana, Taris M; Barreto, Mauricio L

    2014-03-01

    This article describes the configuration of the scientific field in Brazil, characterizing the scientific communities in every major area of knowledge in terms of installed capacity, ability to train new researchers, and capacity for academic production. Empirical data from several sources of information are used to characterize the different communities. Articulating the theoretical contributions of Pierre Bourdieu, Ludwik Fleck, and Thomas Kuhn, the following types of capital are analyzed for each community: social capital (scientific prestige), symbolic capital (dominant paradigm), political capital (leadership in S & T policy), and economic capital (resources). Scientific prestige is analyzed by taking into account the volume of production, activity index, citations, and other indicators. To characterize symbolic capital, the dominant paradigms that distinguish the natural sciences, the humanities, applied sciences, and technology development are analyzed theoretically. Political capital is measured by presidency in one of the main agencies in the S & T national system, and research resources and fellowships define the economic capital. The article discusses the composition of these different types of capital and their correspondence to structural capacities in various communities with the aim of describing the configuration of the Brazilian scientific field.

  7. Scientific wealth and inequality within nations

    OpenAIRE

    Prathap, Gangan

    2017-01-01

    We show that the greater the scientific wealth of a nation, the more likely that it will tend to concentrate this excellence in a few premier institutions. That is, great wealth implies great inequality of distribution. The scientific wealth is interpreted in terms of citation data harvested by Google Scholar Citations for profiled institutions from all countries in the world.

  8. Social behavioural epistemology and the scientific community.

    Science.gov (United States)

    Watve, Milind

    2017-07-01

    The progress of science is influenced substantially by social behaviour of and social interactions within the scientific community. Similar to innovations in primate groups, the social acceptance of an innovation depends not only upon the relevance of the innovation but also on the social dominance and connectedness of the innovator. There are a number of parallels between many well-known phenomena in behavioural evolution and various behavioural traits observed in the scientific community. It would be useful, therefore, to use principles of behavioural evolution as hypotheses to study the social behaviour of the scientific community. I argue in this paper that a systematic study of social behavioural epistemology is likely to boost the progress of science by addressing several prevalent biases and other problems in scientific communication and by facilitating appropriate acceptance/rejection of novel concepts.

  9. Identifying Strategic Scientific Opportunities

    Science.gov (United States)

    As NCI's central scientific strategy office, CRS collaborates with the institute's divisions, offices, and centers to identify research opportunities to advance NCI's vision for the future of cancer research.

  10. Authorship for scientific papers: the new challenges.

    Science.gov (United States)

    Garcia, Carla Costa; Martrucelli, Cristina Ribeiro Nabuco; Rossilho, Marilisa de Melo Freire; Denardin, Odilon Victor Porto

    2010-01-01

    The dissemination of the practice of collaborative authorship (coauthorship) in Brazil and in the international scientific community has been accompanied by an increasing occurrence of frauds, manipulations and other deviations in the assignment of responsibility for a scientific paper. This article discusses the criteria for authorship attribution, the reasons for the growing indices of coauthorship and the challenges to determine authorship in electronic journals. Through literature review and case study (bibliographic search in scientific database), it shows ways to avoid that "misbehaviors" related to the authorship attribution affect the credibility of science.

  11. Scientific Report 2001

    International Nuclear Information System (INIS)

    2002-04-01

    The annual scientific report gives an overview of the R and D activities at the Belgian Nuclear Research Centre SCK-CEN in 2001. The report discusses progress and main achievements in four principal areas: Radiation Protection, Radioactive Waste and Clean-up, Reactor Safety and the BR2 Reactor

  12. Scientific Report 2001

    Energy Technology Data Exchange (ETDEWEB)

    NONE

    2002-04-01

    The annual scientific report gives an overview of the R and D activities at the Belgian Nuclear Research Centre SCK-CEN in 2001. The report discusses progress and main achievements in four principal areas: Radiation Protection, Radioactive Waste and Clean-up, Reactor Safety and the BR2 Reactor.

  13. The reading of scientific texts: questions on interpretation and evaluation, with special reference to the scientific writings of Ludwik Fleck.

    Science.gov (United States)

    Hedfors, Eva

    2007-03-01

    Ludwik Fleck is remembered for his monograph published in German in 1935. Reissued in 1979 as Genesis and development of a scientific fact Fleck's monograph has been claimed to expound relativistic views of science. Fleck has also been portrayed as a prominent scientist. The description of his production of a vaccine against typhus during World War II, when imprisoned in Buchenwald, is legendary in the scholarly literature. The claims about Fleck's scientific achievements have been justified by referring to his numerous publications in international scientific journals. Though frequently mentioned, these publications have scarcely been studied. The present article discusses differences in interpretation and evaluation of science in relation to the background of the interpreters. For this purpose Fleck's scientific publications have been scrutinized. In conjunction with further sources reflecting the desperate situation at the time in question, the results of the study account for a more restrained picture of Fleck's scientific accomplishments. Furthermore, based on the review of the latter, certain demands characterizing good science could be articulated. The restricted possibilities of those not trained in science or not possessing field specific knowledge, evaluating science are discussed, as are also formal aspects of scientific papers and questions related to research ethics.

  14. Profile and scientific production of Brazilian National Council of Technological and Scientific Development researchers in Pediatrics.

    Science.gov (United States)

    Oliveira, Maria Christina L; Martelli, Daniella Reis B; Pinheiro, Sergio Veloso; Miranda, Debora Marques; Quirino, Isabel Gomes; Leite, Barbara Gusmão L; Colosimo, Enrico Antonio; e Silva, Ana Cristina S; Martelli-Júnior, Hercílio; Oliveira, Eduardo Araujo

    2013-09-01

    To evaluate the profile and the scientific production of researchers in Pediatrics with scholarship from the National Counsel of Technological and Scientific Development. The Lattes curricula of 34 researchers in Pediatrics with active scholarships, from 2006 to 2008 were included in the analysis. The variables of interest were: gender, affiliation, time since PHD, tutoring of undergraduate students, mentorship of masters and doctors, scientific production and the papers' impact. In a total of 411 researchers in Medicine, 34 (8%) belonged to Pediatrics. Males (77%) and scholars in the category 2 of productivity (62%) prevailed. Three states of Brazil were responsible for approximately 90% of the researchers: São Paulo (53%), Minas Gerais (21%), and Rio Grande do Sul (15%). During their academic career, the Pediatrics researchers have published 3,122 articles with a median of 89 articles per researcher (interquartile range - IQ=51-119). Of the total, 40 and 59% articles were indexed in the Web of Science and Scopus databases, respectively. The Pediatrics researchers have published papers in 599 journals with a median impact factor of 2.35 (IQ=1.37-3.73) for the 323 indexed journals. The Pediatrics researchers have a relevant scientific output from the quantity point of the view, but there is a need to improve quality.

  15. A cytochemical study of histones in the muscular cells of Triturus cristatus limbs in normal regeneration of limbs irradiated by X-rays, of irradiated limbs in which the regenerative power is restored by cartilage implants

    International Nuclear Information System (INIS)

    Desselle, J.-C.

    1976-01-01

    The muscular cells of regenerating limbs and of limbs in which regenerative power is restored, show an important decrease in the amount of cytophotometrically detected histones. This decrease is owing to the arginine rich fraction and to the lysine rich fraction. The muscular cells of irradiated limbs show a decrease in the amount of histones. This decrease is owing only to the arginine rich fraction and continues after the thirtieth day of irradiation and amputation [fr

  16. The role of scientific institutions

    International Nuclear Information System (INIS)

    Gonzalez, A.J.

    2002-01-01

    The topic that was requested to address at this Nea seminar is the role (i.e., what is expected to be done) by institutions (i.e., organisations for the promotion of a public object) of a scientific nature (assisted by expert knowledge), with regard to a better integration of radiation protection in modern society. The scientific radiation protection institutions at an international level are the I.C.R.P. (non governmental), UNSCEAR (governmental) and the IAEA, acting together as an international forum. They are the focus of this paper. (N.C.)

  17. Understanding the Impact of an Apprenticeship-Based Scientific Research Program on High School Students' Understanding of Scientific Inquiry

    Science.gov (United States)

    Aydeniz, Mehmet; Baksa, Kristen; Skinner, Jane

    2011-01-01

    The purpose of this study was to understand the impact of an apprenticeship program on high school students' understanding of the nature of scientific inquiry. Data related to seventeen students' understanding of science and scientific inquiry were collected through open-ended questionnaires. Findings suggest that although engagement in authentic…

  18. Scientific and Technological Facilities in CIEMAT

    International Nuclear Information System (INIS)

    Vaquero Ortiz, E. M.

    2012-01-01

    The precise knowledge of the available Resources in an Organization, regardless the work it carries out, is an essential strategic enable to achieve its goals. Material Resources are part of the resources in an organization, The Material Resources expression includes a wide span of elements, because a Material Resource, as a generic concept, is each and every specific physical mean, utilised to get any of the Organization objectives. In case of CIEMAT, as Public Research Agency, its Material Resources consists of its scientific and technological facilities. These resources are the basis of this Agency numerous amount of technical capabilities, allowing it to carry out its research, development and innovation activity to transfer its results to the society later. This report is a summary on CIEMAT scientific and technological facilities, whose spread can help to show its scientific and technological capabilities, to enable the execution of a wide variety of projects and to open new external cooperation channels. In that list its possible to find the two Unique Scientific and Technological Infrastructures (ICTS) in Spain which are hold by CIEMAT and the Ionizing Radiations Metrology Laboratory (LMRI) which is the Spanish National Standards Laboratory for ionising radiations. (Author)

  19. Scientific and Technological Facilities in CIEMAT

    International Nuclear Information System (INIS)

    Vaquero Ortiz, E. M.; Cascante Díaz, E.; González Pineda, L. M.

    2015-01-01

    The precise knowledge of the available Resources in an Organization, regardless the work it carries out, is an essential strategic enabler to achieve its goals. Material Resources are part of the resources in an organization, The “Material Resources” expression includes a wide span of elements, because a Material Resource, as a generic concept, is each and every specific physical mean, utilized to get any of the Organization objectives. In CIEMAT, as Public Research Agency, its Material Resources consist of its scientific and technological facilities. These resources are the basis of this Agency numerous amount of technical capabilities, allowing it to carry out its research, development and innovation activity to transfer its results to the society later. This report is a summary on CIEMAT scientific and technological facilities, whose spread can help to show its scientific and technological capabilities, to enable the execution of a wide variety of projects and to open new external cooperation channels. Outstanding among these facilities are two “Unique Scientific and Technological Infrastructures” (ICTS) and the Ionizing Radiations Metrology Laboratory (LMRI) which is the Spanish National Standards Laboratory for ionising radiations.

  20. 1999 scientific evaluation at the CEA

    International Nuclear Information System (INIS)

    1999-01-01

    This report presents a statement of the scientific and technical activity of the French atomic energy commission (CEA) for the year 1999. This evaluation is made by external and independent experts and requires some specific dispositions for the nuclear protection and safety institute (IPSN) and for the direction of military applications (DAM). The report is divided into 4 parts dealing successively with: 1)the CEA, a public research organization (strategy, research programs, new organization of the CEA activities, civil nuclear research, technology research and transfer, defence activities, transfer of knowledge) 2)the scientific evaluation at the CEA (evaluations of the civil applications of the CEA, IPSN, DAM, INSTN (national institute for nuclear sciences and techniques) 3)synthesis of the 1999 scientific and technical evaluation for each operational directions of the CEA (directions of fuel cycle, of nuclear reactors, of advanced technologies, of materials sciences, of life sciences, of military applications, of the nuclear protection and safety institute and of the national institute for nuclear sciences and techniques) 4)the corresponding members of the evaluation and the list of scientific and technical councils and members

  1. Research governance and scientific knowledge production in The Gambia

    Directory of Open Access Journals (Sweden)

    Frederick U. Ozor

    2014-09-01

    Full Text Available Public research institutions and scientists are principal actors in the production and transfer of scientific knowledge, technologies and innovations for application in industry as well for social and economic development. Based on the relevance of science and technology actors, the aim of this study was to identify and explain factors in research governance that influence scientific knowledge production and to contribute to empirical discussions on the impact levels of different governance models and structures. These discussions appear limited and mixed in the literature, although still are ongoing. No previous study has examined the possible contribution of the scientific committee model of research governance to scientific performance at the individual level of the scientist. In this context, this study contributes to these discussions, firstly, by suggesting that scientific committee structures with significant research steering autonomy could contribute not only directly to scientific output but also indirectly through moderating effects on research practices. Secondly, it is argued that autonomous scientific committee structures tend to play a better steering role than do management-centric models and structures of research governance.

  2. The economic scientific research, a production neo-factor

    Directory of Open Access Journals (Sweden)

    Elena Ciucur

    2007-12-01

    Full Text Available The scientific research represents a modern production neo-factor that implies two groups of coordinates: preparation and scientific research. The scientific research represents a complex of elements that confer a new orientation of high performance and is materialized in resources and new availabilities brought in active shape by the contribution of the creators and by the attraction in a specific way in the economic circuit. It is the creator of new ideas, lifting the performance and understanding to the highest international standards of competitive economic efficiency. In the present, the role of the scientific research stands before some new challenges generated by the stage of society. It.s propose a unitary, coherent scientific research and educational system, created in corresponding proportions, based on the type, level and utility of the system, by the state, the economic-social environment and the citizen himself.

  3. Scientific Programming in Fortran

    Directory of Open Access Journals (Sweden)

    W. Van Snyder

    2007-01-01

    Full Text Available The Fortran programming language was designed by John Backus and his colleagues at IBM to reduce the cost of programming scientific applications. IBM delivered the first compiler for its model 704 in 1957. IBM's competitors soon offered incompatible versions. ANSI (ASA at the time developed a standard, largely based on IBM's Fortran IV in 1966. Revisions of the standard were produced in 1977, 1990, 1995 and 2003. Development of a revision, scheduled for 2008, is under way. Unlike most other programming languages, Fortran is periodically revised to keep pace with developments in language and processor design, while revisions largely preserve compatibility with previous versions. Throughout, the focus on scientific programming, and especially on efficient generated programs, has been maintained.

  4. Collaboration in scientific practice

    DEFF Research Database (Denmark)

    Wagenknecht, Susann

    2014-01-01

    This monograph investigates the collaborative creation of scientific knowledge in research groups. To do so, I combine philosophical analysis with a first-hand comparative case study of two research groups in experimental science. Qualitative data are gained through observation and interviews......, and I combine empirical insights with existing approaches to knowledge creation in philosophy of science and social epistemology. On the basis of my empirically-grounded analysis I make several conceptual contributions. I study scientific collaboration as the interaction of scientists within research...... to their publication. Specifically, I suggest epistemic difference and the porosity of social structure as two conceptual leitmotifs in the study of group collaboration. With epistemic difference, I emphasize the value of socio-cognitive heterogeneity in group collaboration. With porosity, I underline the fact...

  5. Exploration and thinking of dynamic scientific and technical intelligence research

    International Nuclear Information System (INIS)

    Zhang Xupu; Xia Yun

    2014-01-01

    This article discusses the concept and types of dynamic scientific and technical intelligence, describes the characteristics and role of dynamic scientific and technical intelligence, and analyzes methods and procedures of dynamic scientific and technical intelligence research. Combined with the status quo of dynamic scientific and technical intelligence research in library of China Institute of Atomic Energy, this article makes some suggestions for strengthening dynamic scientific and technical intelligence research. (authors)

  6. Evaluation of Scientific Journal Validity, It's Articles and Their Authors.

    Science.gov (United States)

    Masic, Izet; Begic, Edin

    2016-01-01

    The science that deals with evaluation of a scientific article refer to the finding quantitative indicators (index) of the scientific research success is called scientometrics. Scientometrics is part of scientology (the science of science) that analyzes scientific papers and their citations in a selected sample of scientific journals. There are four indexes by which it is possible to measure the validity of scientific research: number of articles, impact factor of the journal, the number and order of authors and citations number. Every scientific article is a record of the data written by the rules recommended by several scientific associations and committees. Growing number of authors and lot of authors with same name and surname led to the introduction of the necessary identification agent - ORCID number.

  7. Study of Scientific Problem-Solving Abilities Based on Scientific Knowledge about Atmosphere and Weather for Seventh Grade Students

    Directory of Open Access Journals (Sweden)

    Phoorin Thaengnoi

    2017-06-01

    Full Text Available The purposes of this research were: 1 to develop scientific problem-solving abilities test based on scientific knowledge about atmosphere and weather for seventh grade students and 2 to study the scientific problem-solving abilities of seventh grade students. The samples used in this study were 47 students who were studying in seventh grade in academic year 2015 of a school in Chai Nat province, Thailand. Purposive sampling was applied for identifying the samples. The research instrument of this study was the scientific problem-solving abilities test developed by the researcher. The research data was analyzed by comparing students’ scores with the criteria and considering students’ answers in each element of scientific problem-solving abilities. The results of the study were as follows: The scientific problem-solving abilities test composed of 2 parts. The first part was multiple-choice questions which was composed of 4 situations, a total of 20 questions. The Index of Item Objective Congruence of this part was varied in the range between 0.67 – 1.00. The difficulty and the discrimination level were in the range between 0.33 – 0.63 and 0.27 – 0.67, respectively. The reliability levels of this part was equal to 0.81. The second part of the test was subjective questions which composed of 2 situations, a total of 10 questions. The Index of Item Objective Congruence of this part was varied in the range between 0.67 – 1.00. The reliability level of this part was equal to 0.83. Besides, all questions in the test were covered all elements of scientific problem-solving abilities ; 1 identifying the problem 2 making the hypothesis 3 collecting data and knowledge to solve the problem 4 identifying problem-solving method and 5 predicting the characteristics of the results. The problem-solving abilities of the students revealed that 40.43% of students (n=19 were in a moderate level and 59.57% of students (n=28 were in a low level with the

  8. Scientific activities in and about Greenland

    DEFF Research Database (Denmark)

    Graversen, Ebbe Krogh; Pedersen, Asger Dalsgaard

    2018-01-01

    This report presents the results of an investigation and analysis of opportunities, strengths and challenges of scientific activities involving Greenland as a research area or research object relative to other Arctic areas.......This report presents the results of an investigation and analysis of opportunities, strengths and challenges of scientific activities involving Greenland as a research area or research object relative to other Arctic areas....

  9. 3D Scientific Visualization with Blender

    Science.gov (United States)

    Kent, Brian R.

    2015-03-01

    This is the first book written on using Blender for scientific visualization. It is a practical and interesting introduction to Blender for understanding key parts of 3D rendering and animation that pertain to the sciences via step-by-step guided tutorials. 3D Scientific Visualization with Blender takes you through an understanding of 3D graphics and modelling for different visualization scenarios in the physical sciences.

  10. Studying Scientific Discovery by Computer Simulation.

    Science.gov (United States)

    1983-03-30

    Mendel’s laws of inheritance, the law of Gay- Lussac for gaseous reactions, tile law of Dulong and Petit, the derivation of atomic weights by Avogadro...neceseary mid identify by block number) scientific discovery -ittri sic properties physical laws extensive terms data-driven heuristics intensive...terms theory-driven heuristics conservation laws 20. ABSTRACT (Continue on revere. side It necessary and identify by block number) Scientific discovery

  11. Maximizing scientific knowledge from randomized clinical trials

    DEFF Research Database (Denmark)

    Gustafsson, Finn; Atar, Dan; Pitt, Bertram

    2010-01-01

    Trialists have an ethical and financial responsibility to plan and conduct clinical trials in a manner that will maximize the scientific knowledge gained from the trial. However, the amount of scientific information generated by randomized clinical trials in cardiovascular medicine is highly vari...

  12. PUBLICATION OF SCIENTIFIC PERIODICALS AT UNIVERSITIES:NEW CHALLENGES, PARTICIPANTS TECHNOLOGY

    Directory of Open Access Journals (Sweden)

    T. О. Kolesnykova

    2015-11-01

    Full Text Available Purpose. Publication of scientific periodicals in the Universities is very important and necessary element in the infrastructure of scientific communication. The aim of the article is: 1 providing a new model of publication system of the University scientific periodicals (on the example of Dnipropetrovsk National University of Railway Transport named after Academician V. Lazaryan – DNURT; 2 studying the peculiarities of the «Library publishing» model (Library Publishing and library as a new participant in the publication of world scientific periodicals of the University; 3 description of the developed software automation typesetting of scientific articles and their integration into international databases of scientific and technical information. Methodology. The scientists investigated: 1 the system of publication of scientific periodicals at DNURT; 2 integration system of electronic versions of periodicals and individual articles of scientists from DNURT into the world scientific databases; 3 publishing activity of the scientific and technical library of the University. Findings. The authors proved the need for the fast updates in each higher education institution of Ukrainian management system of scientific periodicals and the creation of the periodicals development concept. The conditions for the occurrence of positive changes in the publishing process in Universities were determined and named as a new participant in these processes – University library. The list of new tasks inherent in the scientific periodicals of the Universities was presented. The software product «Digital designer» was created as a new applied information technology solution to extend the functionality of the basic system information of the publication according to its editorial policy. Originality. The scientists studied the transformation process of the organizational structure of scientific periodicals publishing in the Universities of Ukraine and the world

  13. 1997 Scientific Report[1997 Scientific Report of the Belgian Nuclear Research Centre

    Energy Technology Data Exchange (ETDEWEB)

    Govaerts, P

    1998-07-01

    The 1997 Scientific Report of the Belgian Nuclear Research Centre SCK-CEN describes progress achieved in nuclear safety, radioactive waste management, radiation protection and safeguards. In the field of nuclear research, the main projects concern the behaviour of high-burnup and MOX fuel, the embrittlement of reactor pressure vessels, the irradiation-assisted stress corrosion cracking of reactor internals, and irradiation effects on materials of fusion reactors. In the field of radioactive waste management, progress in the following domains is reported: the disposal of high-level radioactive waste and spent fuel in a clay formation, the decommissioning of nuclear installations, the study of alternative waste-processing techniques. For radiation protection and safeguards, the main activities reported on are in the field of site and environmental restoration, emergency planning and response and scientific support to national and international programmes.

  14. Developments in scientific communication: considerations on the value chain

    NARCIS (Netherlands)

    Geurts, Petrus A.T.M.; Roosendaal, Hans E.; van der Vet, P.E.

    2001-01-01

    This article analyses the transformation of the value chain of scientific information in response to concomitant changes in scientific research and education. The scientific communication market is described in terms of main driving forces and their interplay. These forces are the actor

  15. Lexical Features of Scientific Discourse

    Directory of Open Access Journals (Sweden)

    Tatjana Rusko

    2014-06-01

    Full Text Available Currently, a lot of emphasis is placed of the ability of a person to successfully communicate in any sphere of activity, which along with upbringing and education is among the factors that determine a person’s culture. In the context of rapid scientific and technological progress, it is vital to constantly exchange relevant infor- mation. The effectiveness of this process relies not only on the proficient knowledge of the subject and the ability to make grammatically correct sentences, but to a large extent on the level of competence in scientific language. The present article attempts to consider the interaction of discourse and vocabulary, different types of cognitive phenomena responsible for the use of a language in real time and related to the language as a means of storing and organising information. Analysing and classifying some key elements of a scientific discourse lexicon contributes to the development of certain provisions of lexicology, functional stylistics, cognitive linguistics and terminology. The results of the analysis may be advantageous both to linguistics and teaching the language for specific purposes.

  16. Ethics of reviewing scientific publications.

    Science.gov (United States)

    Napolitani, Federica; Petrini, Carlo; Garattini, Silvio

    2017-05-01

    The approval or rejection of scientific publications can have important consequences for scientific knowledge, so considerable responsibility lies on those who have to assess or review them. Today it seems that the peer review process, far from being considered an outdated system to be abandoned, is experiencing a new upturn. This article proposes criteria for the conduct of reviewers and of those who select them. While commenting on new emerging models, it provides practical recommendations for improving the peer-review system, like strengthening the role of guidelines and training and supporting reviewers. The process of peer review is changing, it is getting more open and collaborative, but those same ethical principles which guided it from its very origin should remain untouched and be firmly consolidated. The paper highlights how the ethics of reviewing scientific publications is needed now more than ever, in particular with regard to competence, conflict of interest, willingness to discuss decisions, complete transparency and integrity. Copyright © 2016 European Federation of Internal Medicine. Published by Elsevier B.V. All rights reserved.

  17. Scientific progress without increasing verisimilitude: In response to Niiniluoto.

    Science.gov (United States)

    Rowbottom, Darrell P

    2015-06-01

    First, I argue that scientific progress is possible in the absence of increasing verisimilitude in science's theories. Second, I argue that increasing theoretical verisimilitude is not the central, or primary, dimension of scientific progress. Third, I defend my previous argument that unjustified changes in scientific belief may be progressive. Fourth, I illustrate how false beliefs can promote scientific progress in ways that cannot be explicated by appeal to verisimilitude. Copyright © 2015 Elsevier Ltd. All rights reserved.

  18. Cloud Data Storage Federation for Scientific Applications

    NARCIS (Netherlands)

    Koulouzis, S.; Vasyunin, D.; Cushing, R.; Belloum, A.; Bubak, M.; an Mey, D.; Alexander, M.; Bientinesi, P.; Cannataro, M.; Clauss, C.; Costan, A.; Kecskemeti, G.; Morin, C.; Ricci, L.; Sahuquillo, J.; Schulz, M.; Scarano, V.; Scott, S.L.; Weidendorfer, J.

    2014-01-01

    Nowadays, data-intensive scientific research needs storage capabilities that enable efficient data sharing. This is of great importance for many scientific domains such as the Virtual Physiological Human. In this paper, we introduce a solution that federates a variety of systems ranging from file

  19. Scientific revolution, incommensurability and truth in theories ...

    African Journals Online (AJOL)

    Scientific revolution, incommensurability and truth in theories: objection to Kuhn's perspective. ... AFRREV STECH: An International Journal of Science and Technology ... The core of our discussion is, ultimately, to provide a clearer and broader picture of the general characteristics of scientific revolution or theory change.

  20. The Innocence of Scientific »Truths«

    Directory of Open Access Journals (Sweden)

    Metka Mencin Čeplak

    2013-03-01

    Full Text Available The article presents a case of »scientific« argument supporting racism in psychology (»Cattell controversy«. The author argues that scientific racism in psychology should not be considered as an excess but rather as a symptom. It is not limited to a few cases of eugenicist and evolutionary psychologists; it is closely tied to the genetic reductionist concept of a person and of psychological differences, and to the role of psychological knowledge in (bio power relations. It concludes with comments on the social responsibility of scientists and points out that scientific conclusions cannot be detached from their effects.

  1. The role of data in scientific progress

    International Nuclear Information System (INIS)

    Glaeser, P.S.

    1985-01-01

    This book contains 109 papers presented at the 9th Int. CODATA Conference and illustrates two main themes (1) new computer-based methods for storing, manipulating and disseminating scientific and technical data, and (2) the use of such computerized data files to give new scientific insights. The broad range of scientific disciplines covered includes geology and geochemistry, oceanography and ecology, molecular biology and biotechnology, chemical engineering, materials properties, energy systems, data base design and management - theory and practice, and finally, a last section on data retrieval and library systems. 12 items are included in Atomindex separately. (Auth.)

  2. Dealing with scientific integrity issues: the Spanish experience.

    Science.gov (United States)

    Puigdomènech, Pere

    2014-02-01

    Integrity has been an important matter of concern for the scientific community as it affects the basis of its activities. Most countries having a significant scientific activity have dealt with this problem by different means, including drafting specific legal or soft law regulations and the appointment of stable or ad hoc committees that take care of these questions. This has also been the case in Spain. After the period of transition between dictatorship to a democratic regime, and, particularly, after the entrance in the European Union, scientific activity has increased in the country. As it could be expected, problems of misconduct have appeared and different institutions have been dealing with these matters. One of the best examples is that of Consejo Superior de Investigaciones Cientificas (CSIC), the largest institution devoted to scientific research belonging to the Spanish Government. The experience of the CSIC’s Ethics Committee in dealing with conflicts related to scientific practices is discussed here.

  3. Science and society: The benefits of scientific collaboration

    CERN Multimedia

    2003-01-01

    The guest speaker at the next Science and Society symposium is no stranger to CERN. He is, in fact, Sir Chris Llewellyn Smith, Director General of CERN from 1994 to 1998. His topic is one with which he is particularly familiar, having "lived" it throughout his time at CERN: international scientific collaboration and its advantages. International scientific collaboration is essential in a wide range of areas and for a large number of reasons: scientific problems have no frontiers; certain subjects are so complex that they require the expertise of numerous countries; certain types of research, such as that carried out at CERN, cannot be pursued by one nation on its own. However, scientific collaboration is not only beneficial to science itself. This is the point Chris Llewellyn Smith intends to demonstrate in his address. Scientific collaboration can help to build bridges between societies and act as a spur to the development of certain countries. It can even help to diminish conflicts in certain cases. The his...

  4. [Investigation methodology and application on scientific and technological personnel of traditional Chinese medical resources based on data from Chinese scientific research paper].

    Science.gov (United States)

    Li, Hai-yan; Li, Yuan-hai; Yang, Yang; Liu, Fang-zhou; Wang, Jing; Tian, Ye; Yang, Ce; Liu, Yang; Li, Meng; Sun Li-ying

    2015-12-01

    The aim of this study is to identify the present status of the scientific and technological personnel in the field of traditional Chinese medicine (TCM) resource science. Based on the data from Chinese scientific research paper, an investigation regarding the number of the personnel, the distribution, their output of paper, their scientific research teams, high-yield authors and high-cited authors was conducted. The study covers seven subfields of traditional Chinese medicine identification, quality standard, Chinese medicine cultivation, harvest processing of TCM, market development and resource protection and resource management, as well as 82 widely used Chinese medicine species, such as Ginseng and Radix Astragali. One hundred and fifteen domain authority experts were selected based on the data of high-yield authors and high-cited authors. The database system platform "Skilled Scientific and Technological Personnel in the field of Traditional Chinese Medicine Resource Science-Chinese papers" was established. This platform successfully provided the retrieval result of the personnel, output of paper, and their core research team by input the study field, year, and Chinese medicine species. The investigation provides basic data of scientific and technological personnel in the field of traditional Chinese medicine resource science for administrative agencies and also evidence for the selection of scientific and technological personnel and construction of scientific research teams.

  5. A tool for public analysis of scientific data

    Directory of Open Access Journals (Sweden)

    D Haglin

    2006-01-01

    Full Text Available The scientific method encourages sharing data with other researchers to independently verify conclusions. Currently, technical barriers impede such public scrutiny. A strategy for offering scientific data for public analysis is described. With this strategy, effectively no requirements of software installation (other than a web browser or data manipulation are imposed on other researchers to prepare for perusing the scientific data. A prototype showcasing this strategy is described.

  6. Visualization in scientific computing

    National Research Council Canada - National Science Library

    Nielson, Gregory M; Shriver, Bruce D; Rosenblum, Lawrence J

    1990-01-01

    The purpose of this text is to provide a reference source to scientists, engineers, and students who are new to scientific visualization or who are interested in expanding their knowledge in this subject...

  7. Comparative Difficulties with Non-Scientific General Vocabulary and Scientific/Medical Terminology in English as a Second Language (ESL) Medical Students.

    Science.gov (United States)

    Heming, Thomas A; Nandagopal, Shobha

    2012-11-01

    Medical education requires student comprehension of both technical (scientific/medical) and non-technical (general) vocabulary. Our experience with "English as a second language" (ESL) Arab students suggested they often have problems comprehending scientific statements because of weaknesses in their understanding of non-scientific vocabulary. This study aimed to determine whether ESL students have difficulties with general vocabulary that could hinder their understanding of scientific/medical texts. A survey containing English text was given to ESL students in the premedical years of an English-medium medical school in an Arabic country. The survey consisted of sample questions from the Medical College Admission Test (USA). Students were instructed to identify all unknown words in the text. ESL students commenced premedical studies with substantial deficiencies in English vocabulary. Students from English-medium secondary schools had a selective deficiency in scientific/medical terminology which disappeared with time. Students from Arabic-medium secondary schools had equal difficulty with general and scientific/medical vocabulary. Deficiencies in both areas diminished with time but remained even after three years of English-medium higher education. Typically, when teaching technical subjects to ESL students, attention is focused on subject-unique vocabulary and associated modifiers. This study highlights that ESL students also face difficulties with the general vocabulary used to construct statements employing technical words. Such students would benefit from increases in general vocabulary knowledge.

  8. Joining of Ukraine to the European scientific and metric systems

    Directory of Open Access Journals (Sweden)

    O.M. Sazonets

    2015-09-01

    Full Text Available At the present stage of development it is necessary to form the knowledge which structures knowledge as the object of management. In conditions of technological globalism there are structural changes in the information environment of countries. Scientific metrics is sufficiently developed in other countries, especially in the EU. The article contains the description of the first index calculation system of scientific references called Science Citation Index (SCI. The main advantage of this project was searching for information not only by the author and thematic categories, but also by the list of cited literature. The authors define the scientific and metric base in the following way: scientific and metric database (SMBD is the bibliographic and abstract database with the tools for tracking citations of articles published in scientific journals. The most prominent European scientific and metric bases are examined. The authors show that the bases have the performance assessment tools which track down the impact of scientific papers and publications of individual scientists and research institutions. The state of crisis in scientific and technological activities in Ukraine as well as the economy as a whole, needs immediate organization of national scientific and metric system.

  9. A science confidence gap: Education, trust in scientific methods, and trust in scientific institutions in the United States, 2014.

    Science.gov (United States)

    Achterberg, Peter; de Koster, Willem; van der Waal, Jeroen

    2017-08-01

    Following up on suggestions that attitudes toward science are multi-dimensional, we analyze nationally representative survey data collected in the United States in 2014 ( N = 2006), and demonstrate the existence of a science confidence gap: some people place great trust in scientific methods and principles, but simultaneously distrust scientific institutions. This science confidence gap is strongly associated with level of education: it is larger among the less educated than among the more educated. We investigate explanations for these educational differences. Whereas hypotheses deduced from reflexive-modernization theory do not pass the test, those derived from theorizing on the role of anomie are corroborated. The less educated are more anomic (they have more modernity-induced cultural discontents), which not only underlies their distrust in scientific institutions, but also fuels their trust in scientific methods and principles. This explains why this science confidence gap is most pronounced among the less educated.

  10. Effects of Inquiry-Based Agriscience Instruction on Student Scientific Reasoning

    Science.gov (United States)

    Thoron, Andrew C.; Myers, Brian E.

    2012-01-01

    The purpose of this study was to determine the effect of inquiry-based agriscience instruction on student scientific reasoning. Scientific reasoning is defined as the use of the scientific method, inductive, and deductive reasoning to develop and test hypothesis. Developing scientific reasoning skills can provide learners with a connection to the…

  11. A Commentary on Innovation and Emerging Scientific Careers: Is Social Work Prepared to Compete in Today's Scientific Marketplace?

    Science.gov (United States)

    Craddock, Jaih B.

    2017-01-01

    The aim of this article is to address some of the questions Dr. Paula S. Nurius presents in her article, "Innovation and Emerging Scientific Careers: Is Social Work Prepared to Compete in Today?s Scientific Marketplace?" Specifically, this article will focus on what we can do to better prepare our emerging research scholars to be…

  12. Profile and scientific production of Brazilian National Council of Technological and Scientific Development researchers in Pediatrics

    Directory of Open Access Journals (Sweden)

    Maria Christina L. Oliveira

    2013-09-01

    Full Text Available OBJECTIVE: To evaluate the profile and the scientific production of researchers in Pediatrics with scholarship from the National Counsel of Technological and Scientific Development. METHODS: The Lattes curricula of 34 researchers in Pediatrics with active scholarships, from 2006 to 2008 were included in the analysis. The variables of interest were: gender, affiliation, time since PHD, tutoring of undergraduate students, mentorship of masters and doctors, scientific production and the papers' impact. RESULTS: In a total of 411 researchers in Medicine, 34 (8% belonged to Pediatrics. Males (77% and scholars in the category 2 of productivity (62% prevailed. Three states of Brazil were responsible for approximately 90% of the researchers: São Paulo (53%, Minas Gerais (21%, and Rio Grande do Sul (15%. During their academic career, the Pediatrics researchers have published 3,122 articles with a median of 89 articles per researcher (interquartile range - IQ=51-119. Of the total, 40 and 59% articles were indexed in the Web of Science and Scopus databases, respectively. The Pediatrics researchers have published papers in 599 journals with a median impact factor of 2.35 (IQ=1.37-3.73 for the 323 indexed journals. CONCLUSIONS: The Pediatrics researchers have a relevant scientific output from the quantity point of the view, but there is a need to improve quality.

  13. Undergraduate Medical Academic Performance is Improved by Scientific Training

    Science.gov (United States)

    Zhang, Lili; Zhang, Wei; Wu, Chong; Liu, Zhongming; Cai, Yunfei; Cao, Xingguo; He, Yushan; Liu, Guoxiang; Miao, Hongming

    2017-01-01

    The effect of scientific training on course learning in undergraduates is still controversial. In this study, we investigated the academic performance of undergraduate students with and without scientific training. The results show that scientific training improves students' test scores in general medical courses, such as biochemistry and…

  14. Sherlock Holmes: scientific detective.

    Science.gov (United States)

    Snyder, Laura J

    2004-09-01

    Sherlock Holmes was intended by his creator, Arthur Conan Doyle, to be a 'scientific detective'. Conan Doyle criticized his predecessor Edgar Allan Poe for giving his creation - Inspector Dupin - only the 'illusion' of scientific method. Conan Doyle believed that he had succeeded where Poe had failed; thus, he has Watson remark that Holmes has 'brought detection as near an exact science as it will ever be brought into the world.' By examining Holmes' methods, it becomes clear that Conan Doyle modelled them on certain images of science that were popular in mid- to late-19th century Britain. Contrary to a common view, it is also evident that rather than being responsible for the invention of forensic science, the creation of Holmes was influenced by the early development of it.

  15. Verified scientific findings

    International Nuclear Information System (INIS)

    Bullinger, M.G.

    1982-01-01

    In this essay, the author attempts to enlighten the reader as to the meaning of the term ''verified scientific findings'' in section 13, sub-section 1, sentence 2 of the new Chemicals Control Law. The examples given here are the generally accepted regulations in regards to technology (that is sections 7a and 18b of the WHG (law on water economy), section 3, sub-section 1 of the machine- and engine protection laws) and to the status of technology (section 3, sub-section 6 of the BImSchG (Fed. law on prevention of air-borne pollution)), and to the status of science (section 5, sub-section 2 of the AMG (drug legislation). The ''status of science and technology'' as defined in sections 4 ff of the Atomic Energy Law (AtomG) and in sections 3, 4, 12, 2) of the First Radiation Protection Ordinance (1.StrlSch. VO), is also being discussed. The author defines the in his opinion ''dynamic term'' as the generally recognized result of scientific research, and the respective possibilities of practical utilization of technology. (orig.) [de

  16. Nine Criteria for a Measure of Scientific Output

    OpenAIRE

    Kreiman, Gabriel; Maunsell, John H. R.

    2011-01-01

    Scientific research produces new knowledge, technologies, and clinical treatments that can lead to enormous returns. Often, the path from basic research to new paradigms and direct impact on society takes time. Precise quantification of scientific output in the short-term is not an easy task but is critical for evaluating scientists, laboratories, departments, and institutions. While there have been attempts to quantifying scientific output, we argue that current methods are not ideal and suf...

  17. WITHER SCIENTIFIC AND TECHNOLOGICAL

    African Journals Online (AJOL)

    No library or information service and especially in a developing .... Good public relations, consultancy services including bilateral and ... project proposal for the creation of a scientific and technological information ... For example, in 1995 the ...

  18. Communication of geo-scientific safety arguments

    International Nuclear Information System (INIS)

    Flavelle, P.; Goodwin, B.; Jensen, M.; Linden, R.; Mazurek, M.; Srivastave, M.; Strom, A.; Sudicky, E.; Voinis, S.

    2007-01-01

    Working Group B addressed the communication of geo-scientific safety arguments through a discussion of practical experience as it related to the methods, types of information and specific arguments found to best communicate geo-scientific concepts and notions of safety with broad audiences including, colleagues, authorities and regulators, political decision makers, academics, and the general public. The following questions were suggested by the programme committee of the AMIGO-2 workshop for discussion by Working Group B with respect to the communication of geo-scientific information and safety arguments: - What is the place of geo-scientific arguments in relation to quantitative and qualitative topics like scenario and FEPs (features, events, processes) assessment, simulated repository evolution, calculated dose or risk impacts, engineering tests of materials, etc., when presenting a safety case to different audiences and with respect to the various stages of the repository programme? (see section 3). - Would we be better off focusing messages to the public on time scales of a few hundred years or a few generations? (see section 4). - How do you handle the fact that geoscience interpretations seldom are unique and data often are open to various interpretations? (see section 5). - How do you handle expert controversy on a specific topic? (see section 6). (authors)

  19. Considering the Ethical Implications of Space Exploration and Potential Impacts on Planetary Environments and Possible Indigenous Life

    Science.gov (United States)

    Race, Margaret

    Since the early days of the Outer Space Treaty, a primary concern of planetary protection policy has been to avoid contamination of planetary environments by terrestrial microbes that could compromise current or subsequent scientific investigations, particularly those searching for indigenous life. Over the past decade robotic missions and astrobiological research have greatly increased our understanding of diverse planetary landscapes and altered our views about the survivability of terrestrial organisms in extreme environments. They have also expanded notions about the prospect for finding evidence of extraterrestrial life. Recently a number of different groups, including the COSPAR Planetary Protection Workshop in Montreal (January 2008), have questioned whether it is advisable to re-examine current biological planetary protection policy in light of the ethical implications and responsibilities to preserve planetary environments and possible indigenous life. This paper discusses the issues and concerns that have led to recent recommendations for convening an international workshop specifically to discuss planetary protection policy and practices within a broader ethical and practical framework, and to consider whether revisions to policy and practices should be made. In addition to including various international scientific and legal organizations and experts in such a workshop, it will be important to find ways to involve the public in these discussions about ethical aspects of planetary exploration.

  20. Communicating novel and conventional scientific metaphors

    DEFF Research Database (Denmark)

    Knudsen, Sanne

    2005-01-01

    . But we still need empirical studies of the career of metaphors in scientific discourse and of the communicative strategies identifying a given metaphor as either novel or conventional. This paper presents a case study of the discursive development of the metaphor of "the genetic code" from......Metaphors are more popular than ever in the study of scientific reasoning and culture because of their innovative and generative powers. It is assumed, that novel scientific metaphors become more clear and well-defined, as they become more established and conventional within the relevant discourses...... the introduction of the metaphor to it was established as an entire network of interrelated conventional metaphors. Not only do the strategies in communicating the metaphor change as the metaphor becomes more established within the discourse, but the genres in which the metaphor is developed and interpreted...

  1. 2005 Annual Scientific Conference. Program and Abstracts

    International Nuclear Information System (INIS)

    Barborica, Andrei; Bulinski, Mircea; Stefan, Sabina

    2005-01-01

    Every year the Physics Department of the University of Bucharest organizes the 'Annual Scientific Conference' to present the most interesting scientific results, obtained within the department. This scientific session is opened also to the interested physics researchers from other institutes and universities in the country. This scientific event represents a recognition and a continuation of the prestigious tradition of physics research performed within University. The scientific research in the Physics Department is performed in groups and research centers, the terminal year undergraduate students and graduate students being involved in a high extent in the research works. There are 5 research centers with the status of Center of excellence in research. The long-term strategy adopted by the faculty was focused on developing the scientific research in modern topics of theoretical, experimental and applied physics, as well as in inter-disciplinary fields as biophysics, medical physics, physics and protection of the environment, physics - computer science. Following this strategy, the Faculty of Physics has diversified the research activity, developing new research laboratories and encouraging the academic community to perform modern and competitive research projects. The Faculty of Physics is a partner in many common research programs with prestigious foreign universities and institutes. The 2005 session covered the following 8 topics: 1. Atmosphere and Earth Science; Environment Protection (21 papers); 2. Atomic and Molecular Physics; Astrophysics (12 papers); 3. Electricity and Biophysics (19 papers); 4. Nuclear and Elementary Particles Physics (17 papers); 5. Optics, Spectroscopy, Plasma and Lasers (19 papers); 6. Polymer Physics (10 papers); 7. Solid State Physics and Materials Science (10 papers); 8. Theoretical Physics and Applied Mathematics Seminar (12 papers)

  2. Greenhouse effect: Evolution of scientific message and its transfer

    International Nuclear Information System (INIS)

    Braicovich, L.; Amman, F.; Pavia Univ.

    1991-01-01

    The greenhouse effect, not anymore confined to scientific journals, is becoming a policy issue and, possibly, a nightmare in public opinion. In this analysis of the evolution of the scientific message and its transfer to policy makers and public opinion, the paper first considers, in general terms, the more recent trends in related research activity and in the transfer processes of the results. Then, a more detailed examination is made of the progress achieved in the years 1989-1990 through scientific research in various aspects of the greenhouse effect. It is confirmed that, for the time being, the scientific results leave many important points unresolved; policy decisions on the matter cannot therefore rely on present scientific knowledge as if it were firmly established

  3. Center for Technology for Advanced Scientific Component Software (TASCS)

    Energy Technology Data Exchange (ETDEWEB)

    Damevski, Kostadin [Virginia State Univ., Petersburg, VA (United States)

    2009-03-30

    A resounding success of the Scientific Discover through Advanced Computing (SciDAC) program is that high-performance computational science is now universally recognized as a critical aspect of scientific discovery [71], complementing both theoretical and experimental research. As scientific communities prepare to exploit unprecedened computing capabilities of emerging leadership-class machines for multi-model simulations at the extreme scale [72], it is more important than ever to address the technical and social challenges of geographically distributed teams that combine expertise in domain science, applied mathematics, and computer science to build robust and flexible codes that can incorporate changes over time. The Center for Technology for Advanced Scientific Component Software (TASCS) tackles these issues by exploiting component-based software development to facilitate collaborative hig-performance scientific computing.

  4. Pseudo-Scientific Information: Reasons of Spread and Premises of Vitality

    Directory of Open Access Journals (Sweden)

    Valdas Pruskus

    2011-04-01

    Full Text Available The phenomenon of pseudo-scientific information, the reasons of its spread and premises of its vitality are discussed in the paper. Pseudo-scientific information is understandable as an attempt to suit a demand, which exists in society, while providing a simple answer to a question, which an individual or society is concerned about, and that answer is not sustained by scientific research. It is showed that the rise and spread of pseudo-scientific information in society are conditioned by objective reasons. Firstly, the lack of information concerning a subject which is significant for society. Secondly, the lack of information for a particular individual (social group concerning a substantial subject. Thirdly, fast spread of scientific and technical inventions and penetration of technological innovations into various spheres of life the understanding of which demands an appropriate informal “processing”, i e it demands provision in an appropriate form, which is partly provided by pseudo-scientific knowledge.The existence of pseudo-scientific information is determined by the fact that it performs important social functions in society. The existence of pseudo-scientific information by official certified scientific information and the fact, that all social groups are affected to a larger or lesser extent, show its ambivalent power and vitality. On the one part, the roots of its vitality lie in the duality of this phenomenon, where opposite things coexist in a strange way – the truth (scientifically verified propositions and speculations which are based on intuition rather than on scientifically verified facts. On the other part, it is maintained by our permanent wish to get an additional and fresher information, though not totally reliable, while seeking to know universally and better the world around us and its phenomena. While meeting this requirement, a pseudo-scientific information stimulates researchers both to enhance their attempts to

  5. Scientific Report 2004

    International Nuclear Information System (INIS)

    2005-04-01

    The annual scientific report gives a summary overview of the research and development activities at the Belgian Nuclear Research Centre SCK-CEN in 2004. The report discusses progress and main achievements in the following areas: reactor safety, radioactive waste and clean-up, radiation protection, the BR2 reactor, nuclear research and society, managing nuclear knowledge and fusion research

  6. Scientific Report 2004

    Energy Technology Data Exchange (ETDEWEB)

    NONE

    2005-04-01

    The annual scientific report gives a summary overview of the research and development activities at the Belgian Nuclear Research Centre SCK-CEN in 2004. The report discusses progress and main achievements in the following areas: reactor safety, radioactive waste and clean-up, radiation protection, the BR2 reactor, nuclear research and society, managing nuclear knowledge and fusion research.

  7. Scientific Report 2005

    Energy Technology Data Exchange (ETDEWEB)

    NONE

    2006-04-15

    The annual scientific report gives a summary overview of the research and development activities at the Belgian Nuclear Research Centre SCK-CEN in 2005. The report discusses progress and main achievements in the following areas: reactor safety, radioactive waste and clean-up, radiation protection, the BR2 reactor, nuclear research and society, managing nuclear knowledge and fusion research.

  8. Scientific Report 2007

    International Nuclear Information System (INIS)

    2009-09-01

    This annual scientific report gives an concise overview of research and development activities at the Belgian Nuclear Research Centre SCK-CEN in 2007. The report discusses progress and main achievements in the following areas: reactor safety, radioactive waste and clean-up, radiation protection, the BR2 reactor, nuclear research and society, managing nuclear knowledge and fusion research

  9. Scientific Report 2003

    International Nuclear Information System (INIS)

    2004-01-01

    The annual scientific report gives an overview of the R and D activities at the Belgian Nuclear Research Centre SCK-CEN in 2003. The report discusses progress and main achievements in the following areas: reactor safety, radioactive waste and clean-up, radiation protection, the BR2 reactor, nuclear research and society, managing nuclear knowledge, and fusion research

  10. Scientific Report 2005

    International Nuclear Information System (INIS)

    2006-04-01

    The annual scientific report gives a summary overview of the research and development activities at the Belgian Nuclear Research Centre SCK-CEN in 2005. The report discusses progress and main achievements in the following areas: reactor safety, radioactive waste and clean-up, radiation protection, the BR2 reactor, nuclear research and society, managing nuclear knowledge and fusion research

  11. Scientific Report 2006

    Energy Technology Data Exchange (ETDEWEB)

    NONE

    2007-09-15

    The annual scientific report gives a summary overview of the research and development activities at the Belgian Nuclear Research Centre SCK-CEN in 2006. The report discusses progress and main achievements in the following areas: reactor safety, radioactive waste and clean-up, radiation protection, the BR2 reactor, nuclear research and society, managing nuclear knowledge and fusion research.

  12. Scientific Report 2006

    International Nuclear Information System (INIS)

    2007-09-01

    The annual scientific report gives a summary overview of the research and development activities at the Belgian Nuclear Research Centre SCK-CEN in 2006. The report discusses progress and main achievements in the following areas: reactor safety, radioactive waste and clean-up, radiation protection, the BR2 reactor, nuclear research and society, managing nuclear knowledge and fusion research

  13. Scientific Report 2003

    Energy Technology Data Exchange (ETDEWEB)

    NONE

    2004-01-01

    The annual scientific report gives an overview of the R and D activities at the Belgian Nuclear Research Centre SCK-CEN in 2003. The report discusses progress and main achievements in the following areas: reactor safety, radioactive waste and clean-up, radiation protection, the BR2 reactor, nuclear research and society, managing nuclear knowledge, and fusion research.

  14. 1995 Scientific Report

    Energy Technology Data Exchange (ETDEWEB)

    NONE

    1996-11-01

    This annual scientific report of SCK-CEN presents a comprehensive coverage and research activities in the filed of (a) waste and site restoration (b) reactor safety and radiation protection (c) operation of BR2 Materials Testing Reactor and (d) services provided by the center (analysis for characterization of waste packages, nuclear measurements, low-level radioactivity measurements).

  15. Manual for JSSL (JAERI scientific subroutine library)

    International Nuclear Information System (INIS)

    Inoue, Shuji; Fujimura, Toichiro; Tsutsui, Tsuneo; Nishida, Takahiko

    1982-09-01

    A manual on revised version of JAERI scientific subroutine library, which is a collection of scientific subroutines developed or modified in JAERI. They are classified into fifteen fields (Special Functions, Linear Problems, Eigenvalue and Eigen vector Problems, Non linear Problems, Mathematical Programming, Extreme Value Problems, Transformations, Functional Approximation Methods, Numerical Differential and Integral Methods, Numerical Differential and Integral Equations, Statistical Functions, Physical Problems, I/O Routines, Plotter Routines, Computer System Functions and Others). Main expansion of this version is in the fields of mathematical programming and statistical functions. The present library may be said to be a comprehensive compilation of scientific subroutines covering almost all the important fields. (author)

  16. Research initiatives for plug-and-play scientific computing

    International Nuclear Information System (INIS)

    McInnes, Lois Curfman; Dahlgren, Tamara; Nieplocha, Jarek; Bernholdt, David; Allan, Ben; Armstrong, Rob; Chavarria, Daniel; Elwasif, Wael; Gorton, Ian; Kenny, Joe; Krishan, Manoj; Malony, Allen; Norris, Boyana; Ray, Jaideep; Shende, Sameer

    2007-01-01

    This paper introduces three component technology initiatives within the SciDAC Center for Technology for Advanced Scientific Component Software (TASCS) that address ever-increasing productivity challenges in creating, managing, and applying simulation software to scientific discovery. By leveraging the Common Component Architecture (CCA), a new component standard for high-performance scientific computing, these initiatives tackle difficulties at different but related levels in the development of component-based scientific software: (1) deploying applications on massively parallel and heterogeneous architectures, (2) investigating new approaches to the runtime enforcement of behavioral semantics, and (3) developing tools to facilitate dynamic composition, substitution, and reconfiguration of component implementations and parameters, so that application scientists can explore tradeoffs among factors such as accuracy, reliability, and performance

  17. AGU's Updated Scientific Integrity and Professional Ethics Policy

    Science.gov (United States)

    McPhaden, M. J.

    2017-12-01

    AGU'S mission is to promote discovery in Earth and space science for the benefit of humanity. This mission can only be accomplished if all those engaged in the scientific enterprise uphold the highest standards of scientific integrity and professional ethics. AGU's Scientific Integrity and Professional Ethics Policy provides a set of principles and guidelines for AGU members, staff, volunteers, contractors, and non-members participating in AGU sponsored programs and activities. The policy has recently been updated to include a new code of conduct that broadens the definition of scientific misconduct to include discrimination, harassment, and bullying. This presentation provides the context for what motivated the updated policy, an outline of the policy itself, and a discussion of how it is being communicated and applied.

  18. Modelling Scientific Argumentation in the Classroom : Teachers perception and practice

    Science.gov (United States)

    Probosari, R. M.; Sajidan; Suranto; Prayitno, B. A.; Widyastuti, F.

    2017-02-01

    The purposes of this study were to investigate teacher’s perception about scientific argumentation and how they practice it in their classroom. Thirty biology teachers in high school participated in this study and illustrated their perception of scientific argumentation through a questionnaire. This survey research was developed to measure teachers’ understanding of scientific argumentation, what they know about scientific argumentation, the differentiation between argument and reasoning, how they plan teaching strategies in order to make students’ scientific argumentation better and the obstacles in teaching scientific argumentation. The result conclude that generally, teachers modified various representation to accommodate student’s active participation, but most of them assume that argument and reasoning are similar. Less motivation, tools and limited science’s knowledge were considered as obstacles in teaching argumentation. The findings can be helpful to improving students’ abilities of doing scientific argumentation as a part of inquiry.

  19. 75 FR 52346 - Findings of Scientific Misconduct

    Science.gov (United States)

    2010-08-25

    ... DEPARTMENT OF HEALTH AND HUMAN SERVICES Office of the Secretary Findings of Scientific Misconduct... professor of genetics and medical genetics, UW-M, engaged in scientific misconduct while her research was...: Falsified Figures 5A and 5B by reusing figures from two of her earlier published papers and falsely labeling...

  20. Training Packages: The Scientific Management of Education.

    Science.gov (United States)

    Hunter, John

    The theory of scientific management was established as a way to increase workers' productivity. The following are among the key principles underpinning scientific management: task simplification and division of labor boost productivity; management must control the planning of work down to its minutiae; and remuneration should be based on output.…

  1. "The Scientific Method" as Myth and Ideal

    Science.gov (United States)

    Woodcock, Brian A.

    2014-01-01

    "The Scientific Method" as it has been portrayed in popular and introductory contexts has been declared a myth. The variation that one finds in introductory presentations of "The Scientific Method" is explained by the fact that there is no canonical account among historians and philosophers of science. What, in particular, is…

  2. Learners' Epistemic Criteria for Good Scientific Models

    Science.gov (United States)

    Pluta, William J.; Chinn, Clark A.; Duncan, Ravit Golan

    2011-01-01

    Epistemic criteria are the standards used to evaluate scientific products (e.g., models, evidence, arguments). In this study, we analyzed epistemic criteria for good models generated by 324 middle-school students. After evaluating a range of scientific models, but before extensive instruction or experience with model-based reasoning practices,…

  3. Four stages of a scientific discipline; four types of scientist.

    Science.gov (United States)

    Shneider, Alexander M

    2009-05-01

    In this article I propose the classification of the evolutionary stages that a scientific discipline evolves through and the type of scientists that are the most productive at each stage. I believe that each scientific discipline evolves sequentially through four stages. Scientists at stage one introduce new objects and phenomena as subject matter for a new scientific discipline. To do this they have to introduce a new language adequately describing the subject matter. At stage two, scientists develop a toolbox of methods and techniques for the new discipline. Owing to this advancement in methodology, the spectrum of objects and phenomena that fall into the realm of the new science are further understood at this stage. Most of the specific knowledge is generated at the third stage, at which the highest number of original research publications is generated. The majority of third-stage investigation is based on the initial application of new research methods to objects and/or phenomena. The purpose of the fourth stage is to maintain and pass on scientific knowledge generated during the first three stages. Groundbreaking new discoveries are not made at this stage. However, new ways to present scientific information are generated, and crucial revisions are often made of the role of the discipline within the constantly evolving scientific environment. The very nature of each stage determines the optimal psychological type and modus operandi of the scientist operating within it. Thus, it is not only the talent and devotion of scientists that determines whether they are capable of contributing substantially but, rather, whether they have the 'right type' of talent for the chosen scientific discipline at that time. Understanding the four different evolutionary stages of a scientific discipline might be instrumental for many scientists in optimizing their career path, in addition to being useful in assembling scientific teams, precluding conflicts and maximizing

  4. PAUL FEYERABEND ON THE SCIENTIFIC WORLDVIEW: TOWARDS QUESTIONING THE SCIENTIFIC UNIFORMITY

    Directory of Open Access Journals (Sweden)

    N. I. Petrunok

    2014-12-01

    Full Text Available The purpose of the following article is to draw attention to main problems of scientific values as they were stated by Paul Feyerabend. Various philosophers and epistemologists have always tried to prove chosen principles and objectives, but only few dared to jeopardize their fundamentals. Stereotypes of searching for ultimate truth ceased to hold; however, scientific coordinates are still not qualified. Underlying ambiguities often remain unarticulated. Among those who ventured to shed light on them were the philosophers of post-positivistic branch. One of those who questioned science values in social, cultural, and philosophical approaches the most rigidly was Paul Feyerabend. By means of typical political concepts (such as ideology and propaganda he detected basic objectives of scientists. Our main methodological tools in this research are comparative analyses of the sources and immanent critique of Feyerabend’s arguments. The scientific novelty is based on our core objective to clarify substantial obstacles for homogeneity of science. Does such homogeneity or unity exist at any level? Feyerabend’s answer is a weak “yes”. He accepts such unity only as a useful assumption or a myth. In one of his latest books, Conquest of Abundance, he calls it a “flag” for the “people doing science.” As Feyerabend diagnosed faults of relativism, instrumentalism, and realism – all of them are threatened by the same menace of being invalid to response the world “at face value” – we have to deal somehow with topics denounced by him. In conclusion, we show important implications for the creation of a specific worldview at the intersection of philosophy and science. Considering a number of negatives, in the article we elicit fruitful ideas of Feyerabend, and contextually question them without resorting to a superficial reproach.

  5. Aspects Regarding the Scientific Production of a University

    OpenAIRE

    Ionela DUMITRU

    2008-01-01

    The analysis of the scientific production of a university is a very complex process and it usually refers to the number of articles published in scientific journals. For most analyses, only a small number of journals is taken into consideration. Usually, there are considered the journals indexed in databases like Science Citation Index (Thompson ISI). However, we consider that for a more complex image of the scientific production of a university, we need to take into consideration several asp...

  6. Exploring scientific creativity of eleventh-grade students in Taiwan

    Science.gov (United States)

    Liang, Jia-Chi

    2002-04-01

    Although most researchers focus on scientists' creativity, students' scientific creativity should be considered, especially for high school and college students. It is generally assumed that most professional creators in science emerge from amateur creators. Therefore, the purpose of this study is to investigate the relationship between students' scientific creativity and selected variables including creativity, problem finding, formulating hypotheses, science achievement, the nature of science, and attitudes toward science for finding significant predictors of eleventh grade students' scientific creativity. A total of 130 male eleventh-grade students in three biology classes participated in this study. The main instruments included the Test of Divergent Thinking (TDT) for creativity measurement, the Creativity Rating Scale (CRS) and the Creative Activities and Accomplishments Check Lists (CAACL ) for measurement of scientific creativity, the Nature of Scientific Knowledge Scale (NSKS) for measurement of the nature of science, and the Science Attitude Inventory II (SAI II) for measurement of attitudes toward science. In addition, two instruments on measuring students' abilities of problem finding and abilities of formulating hypotheses were developed by the researcher in this study. Data analysis involved descriptive statistics, Pearson product-moment correlations, and stepwise multiple regressions. The major findings suggested the following: (1) students' scientific creativity significantly correlated with some of selected variables such as attitudes toward science, problem finding, formulating hypotheses, the nature of science, resistance to closure, originality, and elaboration; (2) four significant predictors including attitudes toward science, problem finding, resistance to closure, and originality accounted for 48% of the variance of students' scientific creativity; (3) there were big differences between students with a higher and a lower degree of scientific

  7. High-End Scientific Computing

    Science.gov (United States)

    EPA uses high-end scientific computing, geospatial services and remote sensing/imagery analysis to support EPA's mission. The Center for Environmental Computing (CEC) assists the Agency's program offices and regions to meet staff needs in these areas.

  8. Gaming science: the "Gamification" of scientific thinking.

    Science.gov (United States)

    Morris, Bradley J; Croker, Steve; Zimmerman, Corinne; Gill, Devin; Romig, Connie

    2013-09-09

    Science is critically important for advancing economics, health, and social well-being in the twenty-first century. A scientifically literate workforce is one that is well-suited to meet the challenges of an information economy. However, scientific thinking skills do not routinely develop and must be scaffolded via educational and cultural tools. In this paper we outline a rationale for why we believe that video games have the potential to be exploited for gain in science education. The premise we entertain is that several classes of video games can be viewed as a type of cultural tool that is capable of supporting three key elements of scientific literacy: content knowledge, process skills, and understanding the nature of science. We argue that there are three classes of mechanisms through which video games can support scientific thinking. First, there are a number of motivational scaffolds, such as feedback, rewards, and flow states that engage students relative to traditional cultural learning tools. Second, there are a number of cognitive scaffolds, such as simulations and embedded reasoning skills that compensate for the limitations of the individual cognitive system. Third, fully developed scientific thinking requires metacognition, and video games provide metacognitive scaffolding in the form of constrained learning and identity adoption. We conclude by outlining a series of recommendations for integrating games and game elements in science education and provide suggestions for evaluating their effectiveness.

  9. Scientific Staff Attestation in Pedagogic and Psychological Disciplines

    Directory of Open Access Journals (Sweden)

    D. I. Feldshtein

    2012-01-01

    Full Text Available The paper is devoted to the quality issue of the research conducted by the candidates for a scientific degree in pedagogy and psychology. The author – Chairman of the Expert Council in Pedagogy and Psychology of the Higher Attestation Commission and Vice President of the Russian Academy of Education –points out once again that awarding the scientific degree involves both the assessment of the research work and validation of the candidate’s contribution to the scientific society: publications, conference and symposium presentations, participation in discussions, etc. The paper exemplifies and analyzes the shortcomings of the thesis research: methodological illiteracy, incorrect wording, irrelevant and narrow themes and hypotheses, obvious borrowing of ideas, lack of novelty. The author lays the blame for the undue level of theses on the candidates for a degree, as well as the expert society – the department and laboratory staff, scientific and dissertation councils, scientific advisors, opponents and consult- ants, and experts of the Higher Attestation Commission. The paper suggests the correcting ways to improve the current situation in theses preparation, its defense and approval. 

  10. Scientific Staff Attestation in Pedagogic and Psychological Disciplines

    Directory of Open Access Journals (Sweden)

    D. I. Feldshtein

    2015-02-01

    Full Text Available The paper is devoted to the quality issue of the research conducted by the candidates for a scientific degree in pedagogy and psychology. The author – Chairman of the Expert Council in Pedagogy and Psychology of the Higher Attestation Commission and Vice President of the Russian Academy of Education –points out once again that awarding the scientific degree involves both the assessment of the research work and validation of the candidate’s contribution to the scientific society: publications, conference and symposium presentations, participation in discussions, etc. The paper exemplifies and analyzes the shortcomings of the thesis research: methodological illiteracy, incorrect wording, irrelevant and narrow themes and hypotheses, obvious borrowing of ideas, lack of novelty. The author lays the blame for the undue level of theses on the candidates for a degree, as well as the expert society – the department and laboratory staff, scientific and dissertation councils, scientific advisors, opponents and consult- ants, and experts of the Higher Attestation Commission. The paper suggests the correcting ways to improve the current situation in theses preparation, its defense and approval. 

  11. The Knowledge Management Research of Agricultural Scientific Research Institution

    Institute of Scientific and Technical Information of China (English)

    2010-01-01

    Based on the perception of knowledge management from experts specializing in different fields,and experts at home and abroad,the knowledge management of agricultural scientific research institution can build new platform,offer new approach for realization of explicit or tacit knowledge,and promote resilience and innovative ability of scientific research institution.The thesis has introduced functions of knowledge management research of agricultural science.First,it can transform the tacit knowledge into explicit knowledge.Second,it can make all the scientific personnel share knowledge.Third,it is beneficial to the development of prototype system of knowledge management.Fourth,it mainly researches the realization of knowledge management system.Fifth,it can manage the external knowledge via competitive intelligence.Sixth,it can foster talents of knowledge management for agricultural scientific research institution.Seventh,it offers the decision-making service for leaders to manage scientific program.The thesis also discusses the content of knowledge management of agricultural scientific research institution as follows:production and innovation of knowledge;attainment and organizing of knowledge;dissemination and share of knowledge;management of human resources and the construction and management of infrastructure.We have put forward corresponding countermeasures to further reinforce the knowledge management research of agricultural scientific research institution.

  12. geo-scientific indicators for safety

    International Nuclear Information System (INIS)

    Andersson, J.; Bruno, G.; Deguchi, A.; Fein, E.; Larue, P.J.; Lei, S.; Leung, H.; Norris, S.; Violette, S.; Wollrath, J.

    2007-01-01

    Working Group A was continuation of Working Group B of AMIGO-1, but participants explored more deeply the issues surrounding geo-scientific indicators for safety. The following outcomes were expected. - List different geo-scientific arguments or indicators for safety (with motivation) for various host rocks and sites. Consider dividing the arguments into those that support isolation or retention and discuss their applicability for different time frames. - What actual measurable field evidence supports these arguments/indicators? - What kind of field evidence would go counter to these safety arguments? - What key messages are the most promising in terms of scientific credibility to contribute to the safety case? Possibly examine the same message but in terms of potential ease of communication. The session started with two introductory presentations: - Following the presentations, in discussion the Working Group listed: - Safety Functions where geo-scientific support is needed; - Commonly used chains of argument for supporting these safety functions; - Whether the applicability of the arguments are host rock or site specific and how they apply for different time frames; - Field evidence or other issues that would go counter to the safety arguments; - Key messages most promising in terms of scientific credibility to contribute to the safety case. Overall it was concluded by the Working Group that: - The most important argument is to present a clear understanding of past geological evolution at the particular site, consistent with the global understanding of geological evolution. Efforts should be made to achieve a broad consensus on this from many independent experts. - The supporting arguments are seldom based on a single piece of evidence. It is the chain of arguments rather than individual arguments that is important. - We are primarily interested in 'reasonable' predictability of the geological system. We recognize that most geological systems evolve with time

  13. Scientific Discoveries the Year I Was Born

    Science.gov (United States)

    Cherif, Abour

    2012-01-01

    The author has successfully used a learning activity titled "The Year I Was Born" to motivate students to conduct historical research and present key scientific discoveries from their birth year. The activity promotes writing, helps students enhance their scientific literacy, and also improves their attitude toward the learning of science. As one…

  14. Manual on JSSL (JAERI scientific subroutine library)

    International Nuclear Information System (INIS)

    Fujimura, Toichiro; Nishida, Takahiko; Asai, Kiyoshi

    1977-05-01

    A manual on the revised JAERI scientific subroutine library is presented. The library is a collection of subroutines developed or modified in JAERI which complements the library installed for FACOM 230-75 computer. It is subject to further extension in the future, since the present one is still insufficient for scientific calculations. (auth.)

  15. Open Science: Dimensions to a new scientific practice

    Directory of Open Access Journals (Sweden)

    Adriana Carla Silva de Oliveira

    2016-08-01

    Full Text Available Introduction:The practices of e-science and the use and reuse of scientific data have constituted a new scientific work that leads to the reflection on new regulatory, legal, institutional and technological frameworks for open science. Objective: This study shows the following research question: which dimensions provide sustainability for the formulation of a policy geared to open science and its practices in the Brazilian context? The aim of this study is to discuss the dimensions that support transversely the formulation of a policy for open science and its scientific practices. Methodology:Theoretically, the study is guided by the fourth scientific paradigm grounded in the e-Science. The methodology is supported by Bufrem’s studies (2013, which propose an alternative and multidimensional model for analysis and discussion of scientific research. Technically, the literature review and documentary survey were the methods used on the Data Lifecycle scientific model, laws and international agreements.For this study purpose, five dimensions were proposed, namely: epistemological, political, ethical-legal-cultural, morphological, and technological. Results: This studyunderstands that these dimensions substantiate an information policy or the development of minimum guidelines for the open science agenda in Brazil. Conclusions: The dimensions put away the reductionist perspective on survey data and they conducted the study for the multi-dimensional and multi-relational vision of open science.

  16. SCHOOL LINGUISTIC CREATIVITY BASED ON SCIENTIFIC GEOGRAPHICAL TEXTS

    Directory of Open Access Journals (Sweden)

    VIORICA BLÎNDĂ

    2012-01-01

    Full Text Available The analysis and observation of the natural environment and of the social and economic one, observing phenomena, objects, beings, and geographical events are at the basis of producing geographical scientific texts. The symbols of iconotexts and cartotexts are another source of inspiration for linguistic interpretation. The linguistic creations that we selected for our study are the scientific analysis, the commentary, the characterization, the parallel, the synthesis, epitomizing and abstracting, the scientific communication, the essay, and the scientific description. The representations on maps, photos, graphics and profiles are translated into verbal or written expression in order to render geographical scientific information from diagrams and images through diverse discursive procedures. Through school linguistic creations, teachers develop their students’ observation spirit, in a written and oral form, their geographical thinking through metaphors, they develop and stimulate their students’ imagination and fantasy, their cognitive, reflexive and affective sensitivity, their abilities to express themselves, to present and argument in a scientific way according to different criteria (sufficiency, demonstrative reasoning, lineal reasoning, pros and cons, giving examples, inferential deduction through using truth tables, etc.. Trough description, students give names and define geographical objects and beings (plants, animals, and people according to their form and aspect, they explain toponyms and appellatives, they classify and make hierarchies, they define their identity through processes of differentiation, emblematizing, personification, location in time and space.

  17. Restrictions of comparative analysis of investing in scientific research and scientific outcomes of the countries in nanotechnology

    OpenAIRE

    Milanović, Vesna; Bučalina-Matić, Andrea; Golubović, Marina

    2016-01-01

    The aim of this paper is to provide an insight into restrictions of comparative analysis of investing in scientific research and scientific outcomes of the countries in nanotechnology, having in mind that it is a developing technology which is expected to give significant contribution to science, economy and society in the future. Using the methods of content analysis, comparative methods and relevant literature, certain restrictions of this comparative analysis have been established. They ar...

  18. Complexity-Based Modeling of Scientific Capital: An Outline of Mathematical Theory

    Directory of Open Access Journals (Sweden)

    Yurij L. Katchanov

    2014-01-01

    measuring and assessing the accumulated recognition and the specific scientific power. The concept of scientific capital developed by Bourdieu is used in international social science research to explain a set of scholarly properties and practices. Mathematical modeling is applied as a lens through which the scientific capital is addressed. The principal contribution of this paper is an axiomatic characterization of scientific capital in terms of natural axioms. The application of the axiomatic method to scientific capital reveals novel insights into problem still not covered by mathematical modeling. Proposed model embraces the interrelations between separate sociological variables, providing a unified sociological view of science. Suggested microvariational principle is based upon postulate, which affirms that (under suitable conditions the observed state of the agent in scientific field maximizes scientific capital. Its value can be roughly imagined as a volume of social differences. According to the considered macrovariational principle, the actual state of scientific field makes so-called energy functional (which is associated with the distribution of scientific capital minimal.

  19. The Nature of Scientific Revolutions from the Vantage Point of Chaos Theory: Toward a Formal Model of Scientific Change

    Science.gov (United States)

    Perla, Rocco J.; Carifio, James

    2005-01-01

    In sharp contrast to the early positivist view of the nature of science and scientific knowledge, Kuhn argues that the scientific enterprise involves states of continuous, gradual development punctuated by comparatively rare instances of turmoil and change, which ultimately brings about a new stability and a qualitatively changed knowledge base.…

  20. Socio-scientific controversies and beginning teachers’ pedagogical practice

    Directory of Open Access Journals (Sweden)

    Pedro Reis

    2005-08-01

    Full Text Available The current investigation aimed to study the impact of recent socio-scientific controversies, made public through the media, on the concepts and practices of a group of Natural Science teachers at the start of their careers. This study is particularly relevant at a time that is heavily marked by much debate regarding the social and environmental impact of several scientific and technological innovations and by the implementation of new science curricula, that stress the importance of discussing socio-scientific controversies in the context of students’ scientific alphabetisation (namely in their understanding of the nature of science and its relation to society and culture (McComas, 2000. This investigation followed an interpretative approach of a qualitative nature. Through the construction of case studies, it sought to analyse the possible impact of socio-scientific controversies on the teachers’ concepts (about the nature, teaching and learning of science and pedagogic practice. For data collection semi-structured interviews were conducted and classes observed.The controversial issues raised by certain recent technological innovations – namely the environmental, social and cultural impact they may have – did have an impact on the teachers’ concepts about the nature, teaching and learning of science. Besides reinforcing the duality of feelings as regards science and technology, as a source of both progress and concern, they triggered in these teachers the idea of the need for a widespread scientific alphabetisation that empowers the population for understanding and deciding and acting upon these issues. However, the concept of scientific alphabetisation and the best way to achieve it vary among the teachers participating in this study.

  1. Adding intelligence to scientific data management

    Science.gov (United States)

    Campbell, William J.; Short, Nicholas M., Jr.; Treinish, Lloyd A.

    1989-01-01

    NASA plans to solve some of the problems of handling large-scale scientific data bases by turning to artificial intelligence (AI) are discussed. The growth of the information glut and the ways that AI can help alleviate the resulting problems are reviewed. The employment of the Intelligent User Interface prototype, where the user will generate his own natural language query with the assistance of the system, is examined. Spatial data management, scientific data visualization, and data fusion are discussed.

  2. The Scientific Method in a Cup

    Science.gov (United States)

    Carroll, Bradley W.; More, M. B.

    2006-12-01

    This paper describes an inexpensive hands-on activity that invites students to investigate an intriguing mystery and so discover for themselves the essence of the scientific method. When a spoon is tapped against the bottom of a mug of freshly made hot chocolate, a tone of constantly rising pitch is heard. Students’ reactions to this “hot chocolate effect” illustrate how the scientific method may be constructed from the common sense and curiosity present in us all.

  3. Teaching Scientific Ethics Using the Example of Hendrik Schon

    Science.gov (United States)

    Feldman, Bernard J.

    2012-01-01

    It has been almost 10 years since one of the greatest frauds in the history of physics was uncovered, namely, the case of Hendrik Schon. This case provides a wonderful opportunity to discuss scientific integrity and scientific misconduct with both undergraduate and graduate science students. This article explains the scientific data at the heart…

  4. Theoretical bases analysis of scientific prediction on marketing principles

    OpenAIRE

    A.S. Rosohata

    2012-01-01

    The article presents an overview categorical apparatus of scientific predictions and theoretical foundations results of scientific forecasting. They are integral part of effective management of economic activities. The approaches to the prediction of scientists in different fields of Social science and the categories modification of scientific prediction, based on principles of marketing are proposed.

  5. The International Reference Ionosphere 2012 – a model of international collaboration☆

    Directory of Open Access Journals (Sweden)

    Bilitza Dieter

    2014-02-01

    Full Text Available The International Reference Ionosphere (IRI project was established jointly by the Committee on Space Research (COSPAR and the International Union of Radio Science (URSI in the late sixties with the goal to develop an international standard for the specification of plasma parameters in the Earth’s ionosphere. COSPAR needed such a specification for the evaluation of environmental effects on spacecraft and experiments in space, and URSI for radiowave propagation studies and applications. At the request of COSPAR and URSI, IRI was developed as a data-based model to avoid the uncertainty of theory-based models which are only as good as the evolving theoretical understanding. Being based on most of the available and reliable observations of the ionospheric plasma from the ground and from space, IRI describes monthly averages of electron density, electron temperature, ion temperature, ion composition, and several additional parameters in the altitude range from 60 km to 2000 km. A working group of about 50 international ionospheric experts is in charge of developing and improving the IRI model. Over time as new data became available and new modeling techniques emerged, steadily improved editions of the IRI model have been published. This paper gives a brief history of the IRI project and describes the latest version of the model, IRI-2012. It also briefly discusses efforts to develop a real-time IRI model. The IRI homepage is at http://IRImodel.org.

  6. Open Access to Scientific Data: Promoting Science and Innovation

    Directory of Open Access Journals (Sweden)

    Guan-Hua Xu

    2007-06-01

    Full Text Available As an important part of the science and technology infrastructure platform of China, the Ministry of Science and Technology launched the Scientific Data Sharing Program in 2002. Twenty-four government agencies now participate in the Program. After five years of hard work, great progress has been achieved in the policy and legal framework, data standards, pilot projects, and international cooperation. By the end of 2005, one-third of the existing public-interest and basic scientific databases in China had been integrated and upgraded. By 2020, China is expected to build a more user-friendly scientific data management and sharing system, with 80 percent of scientific data available to the general public. In order to realize this objective, the emphases of the project are to perfect the policy and legislation system, improve the quality of data resources, expand and establish national scientific data centers, and strengthen international cooperation. It is believed that with the opening up of access to scientific data in China, the Program will play a bigger role in promoting science and national innovation.

  7. Undergraduate medical academic performance is improved by scientific training.

    Science.gov (United States)

    Zhang, Lili; Zhang, Wei; Wu, Chong; Liu, Zhongming; Cai, Yunfei; Cao, Xingguo; He, Yushan; Liu, Guoxiang; Miao, Hongming

    2017-09-01

    The effect of scientific training on course learning in undergraduates is still controversial. In this study, we investigated the academic performance of undergraduate students with and without scientific training. The results show that scientific training improves students' test scores in general medical courses, such as biochemistry and molecular biology, cell biology, physiology, and even English. We classified scientific training into four levels. We found that literature reading could significantly improve students' test scores in general courses. Students who received scientific training carried out experiments more effectively and published articles performed better than their untrained counterparts in biochemistry and molecular biology examinations. The questionnaire survey demonstrated that the trained students were more confident of their course learning, and displayed more interest, motivation and capability in course learning. In summary, undergraduate academic performance is improved by scientific training. Our findings shed light on the novel strategies in the management of undergraduate education in the medical school. © 2017 by The International Union of Biochemistry and Molecular Biology, 45(5):379-384, 2017. © 2017 The International Union of Biochemistry and Molecular Biology.

  8. [Scientific journals of medical students in Latin-America].

    Science.gov (United States)

    Cabrera-Samith, Ignacio; Oróstegui-Pinilla, Diana; Angulo-Bazán, Yolanda; Mayta-Tristán, Percy; Rodríguez-Morales, Alfonso J

    2010-11-01

    This article deals with the history and evolution of student's scientific journals in Latin-America, their beginnings, how many still exist and which is their future projection. Relevant events show the growth of student's scientific journals in Latin-America and how are they working together to improve their quality. This article is addressed not only for Latin American readers but also to worldwide readers. Latin American medical students are consistently working together to publish scientific research, whose quality is constantly improving.

  9. 2006 XSD Scientific Software Workshop report.

    Energy Technology Data Exchange (ETDEWEB)

    Evans, K., Jr.; De Carlo, F.; Jemian, P.; Lang, J.; Lienert, U.; Maclean, J.; Newville, M.; Tieman, B.; Toby, B.; van Veenendaal, B.; Univ. of Chicago

    2006-01-22

    In May of 2006, a committee was formed to assess the fundamental needs and opportunities in scientific software for x-ray data reduction, analysis, modeling, and simulation. This committee held a series of discussions throughout the summer, conducted a poll of the members of the x-ray community, and held a workshop. This report details the findings and recommendations of the committee. Each experiment performed at the APS requires three crucial ingredients: the powerful x-ray source, an optimized instrument to perform measurements, and computer software to acquire, visualize, and analyze the experimental observations. While the APS has invested significant resources in the accelerator, investment in other areas such as scientific software for data analysis and visualization has lagged behind. This has led to the adoption of a wide variety of software with variable levels of usability. In order to maximize the scientific output of the APS, it is essential to support the broad development of real-time analysis and data visualization software. As scientists attack problems of increasing sophistication and deal with larger and more complex data sets, software is playing an ever more important role. Furthermore, our need for excellent and flexible scientific software can only be expected to increase, as the upgrade of the APS facility and the implementation of advanced detectors create a host of new measurement capabilities. New software analysis tools must be developed to take full advantage of these capabilities. It is critical that the APS take the lead in software development and the implementation of theory to software to ensure the continued success of this facility. The topics described in this report are relevant to the APS today and critical for the APS upgrade plan. Implementing these recommendations will have a positive impact on the scientific productivity of the APS today and will be even more critical in the future.

  10. Report for the Office of Scientific and Technical Information: Population Modeling of the Emergence and Development of Scientific Fields

    Energy Technology Data Exchange (ETDEWEB)

    Bettencourt, L. M. A. (LANL); Castillo-Chavez, C. (Arizona State University); Kaiser, D. (MIT); Wojick, D. E. (IIA)

    2006-10-04

    The accelerated development of digital libraries and archives, in tandem with efficient search engines and the computational ability to retrieve and parse massive amounts of information, are making it possible to quantify the time evolution of scientific literatures. These data are but one piece of the tangible recorded evidence of the processes whereby scientists create and exchange information in their journeys towards the generation of knowledge. As such, these tools provide a proxy with which to study our ability to innovate. Innovation has often been linked with prosperity and growth and, consequently, trying to understand what drives scientific innovation is of extreme interest. Identifying sets of population characteristics, factors, and mechanisms that enable scientific communities to remain at the cutting edge, accelerate their growth, or increase their ability to re-organize around new themes or research topics is therefore of special significance. Yet generating a quantitative understanding of the factors that make scientific fields arise and/or become more or less productive is still in its infancy. This is precisely the type of knowledge most needed for promoting and sustaining innovation. Ideally, the efficient and strategic allocation of resources on the part of funding agencies and corporations would be driven primarily by knowledge of this type. Early steps have been taken toward such a quantitative understanding of scientific innovation. Some have focused on characterizing the broad properties of relevant time series, such as numbers of publications and authors in a given field. Others have focused on the structure and evolution of networks of coauthorship and citation. Together these types of studies provide much needed statistical analyses of the structure and evolution of scientific communities. Despite these efforts, however, crucial elements of prediction have remained elusive. Building on many of these earlier insights, we provide here a

  11. Experiences of Scientific Thinking in Physics Classrooms

    Directory of Open Access Journals (Sweden)

    Alexandre Fagundes Faria

    2018-04-01

    Full Text Available There is a contemporary demand on STEM education to support learning experiences in which students use scientific thinking to solve tasks. Scientific thinking involves domain-specific knowledge and general domain strategies of thinking. The object of interest in this research was the set of students’ experiences of scientific thinking in which they articulate domain-general strategies and domain-specific knowledge to solve physics tasks. Our goal was to characterize the experiences of scientific thinking of two groups of four students engaged in tasks about Newtonian Mechanics. The volunteers were 19 students, 15-17 years old, enrolled in electronics or computer science courses (11th grade of a Brazilian vocational high school at Belo Horizonte/Minas Gerais. All class activities proposed to the students have been regularly used since 2010, therefore, we made no special intervention to conduct the study. Data collection occurred during the classes and involved audio and video recordings of students working in group; field notes; and photographs of students’ notebooks and of the posters they made to conduct oral presentations. The choice of the groups was based on how assiduous the members were. We have transcribed episodes in which we identified experiences of scientific thinking. These transcriptions, the field notes and the photographs were analyzed together, in interaction with each other. Data analysis is based upon John Dewey’s Theory of Experience. Our results show that the experiences of scientific thinking of the two groups were educative experiences, although qualitatively different. This difference was due to the way students interacted with the conditions given to solve the tasks. Additional information is given about the school circumstances in which the study was conducted to allow a better evaluation of results quality.

  12. Manual on JSSL (JAERI scientific subroutine library)

    International Nuclear Information System (INIS)

    Fujimura, Toichiro; Nishida, Takahiko; Asai, Kiyoshi

    1979-11-01

    A manual on the revised version of JAERI scientific subroutine library is presented. The library is a collection of subroutines developed or modified in JAERI. They are classified into fifteen fields. It is subject to further extension in the future, since there are some fields still insufficient for scientific calculations in the present library. (author)

  13. Ecological potentialities for the future scientific research

    International Nuclear Information System (INIS)

    Fidirko, V.A.

    1996-01-01

    Efficient scientific development may promote the solution of all the environmental problems. The way the question is put is new, for science is finally considered to be the source of all environmental disasters and to be blamed for that. Search for the means to solve scientifically induced crisis situation seems to be very interesting. (author)

  14. Rural Entrepreneurship in Nigeria: Lessons From Scientific ...

    African Journals Online (AJOL)

    This article focussed on the lessons that can be garnered from the tenets of Scientific Management. We undertook an X-ray of the tenets of Scientific Management and how these tenets can be adopted to ensure the success of emerging entrepreneurs in the rural areas. Many rural entrepreneurs fail within a short period of ...

  15. Scientific visualization uncertainty, multifield, biomedical, and scalable visualization

    CERN Document Server

    Chen, Min; Johnson, Christopher; Kaufman, Arie; Hagen, Hans

    2014-01-01

    Based on the seminar that took place in Dagstuhl, Germany in June 2011, this contributed volume studies the four important topics within the scientific visualization field: uncertainty visualization, multifield visualization, biomedical visualization and scalable visualization. • Uncertainty visualization deals with uncertain data from simulations or sampled data, uncertainty due to the mathematical processes operating on the data, and uncertainty in the visual representation, • Multifield visualization addresses the need to depict multiple data at individual locations and the combination of multiple datasets, • Biomedical is a vast field with select subtopics addressed from scanning methodologies to structural applications to biological applications, • Scalability in scientific visualization is critical as data grows and computational devices range from hand-held mobile devices to exascale computational platforms. Scientific Visualization will be useful to practitioners of scientific visualization, ...

  16. Scientific Habits of Mind in Virtual Worlds

    Science.gov (United States)

    Steinkuehler, Constance; Duncan, Sean

    2008-12-01

    In today's increasingly "flat" world of globalization (Friedman 2005), the need for a scientifically literate citizenry has grown more urgent. Yet, by some measures, we have done a poor job at fostering scientific habits of mind in schools. Recent research on informal games-based learning indicates that such technologies and the communities they evoke may be one viable alternative—not as a substitute for teachers and classrooms, but as an alternative to textbooks and science labs. This paper presents empirical evidence about the potential of games for fostering scientific habits of mind. In particular, we examine the scientific habits of mind and dispositions that characterize online discussion forums of the massively multiplayer online game World of Warcraft. Eighty-six percent of the forum discussions were posts engaged in "social knowledge construction" rather than social banter. Over half of the posts evidenced systems based reasoning, one in ten evidenced model-based reasoning, and 65% displayed an evaluative epistemology in which knowledge is treated as an open-ended process of evaluation and argument.

  17. Introductory Biology Textbooks Under-Represent Scientific Process

    Directory of Open Access Journals (Sweden)

    Dara B. Duncan

    2011-08-01

    Full Text Available Attrition of undergraduates from Biology majors is a long-standing problem. Introductory courses that fail to engage students or spark their curiosity by emphasizing the open-ended and creative nature of biological investigation and discovery could contribute to student detachment from the field. Our hypothesis was that introductory biology books devote relatively few figures to illustration of the design and interpretation of experiments or field studies, thereby de-emphasizing the scientific process.To investigate this possibility, we examined figures in six Introductory Biology textbooks published in 2008. On average, multistep scientific investigations were presented in fewer than 5% of the hundreds of figures in each book. Devoting such a small percentage of figures to the processes by which discoveries are made discourages an emphasis on scientific thinking. We suggest that by increasing significantly the illustration of scientific investigations, textbooks could support undergraduates’ early interest in biology, stimulate the development of design and analytical skills, and inspire some students to participate in investigations of their own.

  18. [Scientific publications: a resource for the physician's intellectual development].

    Science.gov (United States)

    Zárate, Arturo

    2013-01-01

    The physician's professional life involves reading and analysis of scientific journals, regardless of the specialization field. The hospital and academic areas lead to the scientific-literary activity development. The aim of this editorial is to make some reflections about the way a physician reaches intellectual development, through the creation of a culture of writing and reading scientific publications.

  19. Medical elementology as a new scientific discipline

    International Nuclear Information System (INIS)

    Zaichick, V.

    2006-01-01

    All legitimate scientific disciplines are characterized by: (1) the clear definition of subjects of the study and its corresponding clear-cut name, (2) some accepted postulates, (3) set of research methods, (4) methods of quality control and processing of the obtained information, and (5) specific terminology and definitions. The inaccuracies and uncertainties in medical elementology as a new scientific discipline are discussed and some corresponding statements are made. Another and no less important problem of medical elementology is the critical unsatisfactory reproducibility of data. The complex arrangements required for the harmonization of data acquired for studies in medical elementology are offered. Main strategic aims and tactical tasks of the new scientific discipline are outlined. (author)

  20. [The scientific entertainer in primary health care].

    Science.gov (United States)

    Ortega-Calvo, Manuel; Santos, José Manuel; Lapetra, José

    2012-09-01

    The scientific method is capable of being applied in primary care. In this article we defend the role of the "scientific entertainer "as strategic and necessary in achieving this goal. The task has to include playful and light-hearted content. We explore some words in English that may help us to understand the concept of "scientific entertainer" from a semantic point of view (showman, master of ceremonies, entrepreneur, go-between) also in Spanish language (counsellor, mediator, methodologist) and finally in Latin and Greek (tripalium, negotium, chronos, kairos). We define the clinical, manager or research health-worker who is skilled in primary care as a "primarylogist". Copyright © 2011 Elsevier España, S.L. All rights reserved.

  1. Dorky Poll Scientific Fears

    CERN Multimedia

    2008-01-01

    The questions posed in yesterday's posts about hopes for 2008 were half of what we were asked by the Powers That Be. The other half: What scientific development do you fear you'll be blogging or reading about in 2008?

  2. The Scientific & Democratic Revolution in Education

    Directory of Open Access Journals (Sweden)

    Ramón Flecha

    2011-10-01

    Full Text Available The main issue dealt with in this theoretical paper is the explanation of the starting scientific and democratic revolution both in the educative field and in the educative research. In addition, evidence-based arguments are included to provide validity of some affirmations. The first section argues that the social sciences are the daughters and an essential part of democracy. A few historical arguments about the way in which the dominant classes have slowed down the scientific progress and the development of people that make it possible. In the second section, it is analyzed the opposition of feudal universities to this unstoppable beginning of what could be called the scientific and democratic revolution. At the same time, we deal with its ambivalent character requiring to be supported and to be criticized so that it can be improved. In the third section, we expound the way in which this progress has provide some conditions that makes it possible to overcome the strong gender-based violence happening in our institutions of higher education and makes it also possible that women who were persecuted are now transforming our universities. Influences and criticism to our university feudalism, made by social movements such as the named 'Spanish Revolution', appear in the fourth section. In the fifth and last section, we offer a proposal to promote the scientific, democratic, and revolutionary approach of the university.

  3. Scientific Integrity and Professional Ethics at AGU - The Establishment and Evolution of an Ethics Program at a Large Scientific Society

    Science.gov (United States)

    McPhaden, Michael; Leinen, Margaret; McEntee, Christine; Townsend, Randy; Williams, Billy

    2016-04-01

    The American Geophysical Union, a scientific society of 62,000 members worldwide, has established a set of scientific integrity and professional ethics guidelines for the actions of its members, for the governance of the union in its internal activities, and for the operations and participation in its publications and scientific meetings. This presentation will provide an overview of the Ethics program at AGU, highlighting the reasons for its establishment, the process of dealing ethical breaches, the number and types of cases considered, how AGU helps educate its members on Ethics issues, and the rapidly evolving efforts at AGU to address issues related to the emerging field of GeoEthics. The presentation will also cover the most recent AGU Ethics program focus on the role for AGU and other scientific societies in addressing sexual harassment, and AGU's work to provide additional program strength in this area.

  4. Assessing the scientific relevance of a single publication over time

    Directory of Open Access Journals (Sweden)

    Philipp A. Bloching

    2013-09-01

    Full Text Available Quantitatively assessing the scientific relevance of a research paper is challenging for two reasons. Firstly, scientific relevance may change over time, and secondly, it is unclear how to evaluate a recently published paper. The temporally averaged paper-specific impact factor is defined as the yearly average of citations to the paper until now including bonus citations equal to the journal impact factor in the publication year. This new measure subsequently allows relevance rankings and annual updates of all (i.e. both recent and older scientific papers of a department, or even a whole scientific field, on a more objective basis. It can also be used to assess both the average and overall time-dependent scientific relevance of researchers in a specific department or scientific field.

  5. Scientific Library Offers New Training Options | Poster

    Science.gov (United States)

    The Scientific Library is expanding its current training opportunities by offering webinars, allowing employees to take advantage of trainings from the comfort of their own offices. Due to the nature of their work, some employees find it inconvenient to attend in-person training classes; others simply prefer to use their own computers. The Scientific Library has been

  6. The stratified H-index makes scientific impact transparent

    DEFF Research Database (Denmark)

    Würtz, Morten; Schmidt, Morten

    2017-01-01

    The H-index is widely used to quantify and standardize researchers' scientific impact. However, the H-index does not account for the fact that co-authors rarely contribute equally to a paper. Accordingly, we propose the use of a stratified H-index to measure scientific impact. The stratified H......-index supplements the conventional H-index with three separate H-indices: one for first authorships, one for second authorships and one for last authorships. The stratified H-index takes scientific output, quality and individual author contribution into account....

  7. 3D Scientific Visualization with Blender

    Science.gov (United States)

    Kent, Brian R.

    2015-03-01

    This is the first book written on using Blender (an open source visualization suite widely used in the entertainment and gaming industries) for scientific visualization. It is a practical and interesting introduction to Blender for understanding key parts of 3D rendering and animation that pertain to the sciences via step-by-step guided tutorials. 3D Scientific Visualization with Blender takes you through an understanding of 3D graphics and modelling for different visualization scenarios in the physical sciences.

  8. Gaming Science: The Gamification of Scientific Thinking

    Directory of Open Access Journals (Sweden)

    Bradley eMorris

    2013-09-01

    Full Text Available Science is critically important for advancing economics, health, and social well being in the 21st century. A scientifically literate workforce is one that is well suited to meet the challenges of an information economy. However, scientific thinking skills do not routinely develop and must be scaffolded via educational and cultural tools. In this paper we outline a rationale for why we believe that video games have the potential to be exploited for gain in science education. The premise we entertain is that several classes of video games can be viewed as a type of cultural tool that is capable of supporting three key elements of scientific literacy: content knowledge, process skills, and understanding the nature of science. We argue that there are three classes of mechanisms through which video games can support scientific thinking. First, there are a number of motivational scaffolds, such as feedback, rewards, and flow states that engage students relative to traditional cultural learning tools. Second, there are a number of cognitive scaffolds, such as simulations and embedded reasoning skills that compensate for the limitations of the individual cognitive system. Third, fully developed scientific thinking requires metacognition, and video games provide metacognitive scaffolding in the form of constrained learning and identity adoption. We conclude by outlining a series of recommendations for integrating games and game elements in science education and provide suggestions for evaluating their effectiveness.

  9. When we decided to create the Revista Scientific

    Directory of Open Access Journals (Sweden)

    Oscar Antonio Martínez Molina

    2017-08-01

    Full Text Available When we proposed to create the Revista Scientific, we had many doubts about what would be the treatment to be followed for the development of it? On the one hand, we needed to create a common basis for their more ethical and moral aspects so that the authors always applied the same criteria. This is not only to achieve an editorial unit, but to establish guidelines to follow throughout the publication, so as to facilitate the reading and understanding of the contents from the respect to the information, to the sources, but on all to the readers. The rules created are, therefore, the guidelines to be followed by the authors that appear in our publication, which must take into account these basic rules. Another point to be addressed was the selection of a disciplinary and multidisciplinary team at the international level that is in charge of the valuation of scientific productions, high invoice equipment of different Universities and Organizations recognized worldwide. On the basis of the above considerations, the question arises of deciding, what can or should be, and what can not or should not be counted, but rather how to explain and explain information in the most ethically correct way from the deontological perspective of the writer. It should be noted that Scientific tries to serve as a complement and informative tool for both teachers and the general public. We aim to disseminate scientific and technological knowledge, through the original results, the product of scientific research, which represent a contribution to the development of science and technology. It includes works, products of scientific research and theoretical reflections that, due to their relevance, merit publication, and in this way contribute to the visibility of intellectual production in the areas of education and social sciences. Scientific Magazine is aimed at the academic audience in its different levels (Initial, Basic, University as well as the scientific community

  10. GENERAL MECHANISMS OF CITATION SYSTEM OF SCIENTIFIC ARTICLES

    Directory of Open Access Journals (Sweden)

    Віктор Дмитрович ГОГУНСЬКИЙ

    2016-02-01

    Full Text Available Transformation competitive environment of higher education in the creation of effective mechanisms of management research encourages research teams and individual researchers to analyze their activity Publication search methods for improvement of citations of scientific publications. The paper analyzed the life cycle of scientific publications and show that the way to promote scientific articles in the world community inherent properties of Markov processes. Application of Markov chains allows top ground the need for active participation of the authors in the distribution of its publications in different scientometric databases, repositories of scientific and social networks. Markov model to describe decomposition of scientists made certain discrete states and proposed a schematic diagram of transitions between them. The model's 5A fully reflect the properties of the system. Communication influences the probability of changing system states with consistent movement along the trajectory from a lack of information about the publication to familiarize with it because of the positive attitude to state its citation. This is a must as well as a negative attitude to the publications. Proved that improve performance citation of scientific publications in the case of using Google Scholar, ORCID, Mendeley, Academia, ResearchGate, and others. The active participation of authors in their publications available in these systems leads to an increase in the proportion of articles that are available to colleagues in the global scientific community that is becoming one of the factors of increase in citations.

  11. [Significance of the doctorate in scientific medical education].

    Science.gov (United States)

    Frosch, Matthias

    2018-02-01

    According to European and German law, the medical education of physicians must take place in a scientific degree program at a university or under the supervision of a university. To keep up the ideal of a scientific degree program, various organizations and associations, such as the German Research Foundation, the German Council of Science and Humanities and the German Medical Faculty Association, see the need for an even stronger anchoring of academic learning content in the course of study. Traditionally, a scientific project, which is carried out during the studies, provides the basis for the Doctor of Medicine (Dr. med.) after graduation, although the research projects as a basis for medical degrees are currently not obligatory parts of the curricula. The number of medical students performing such research projects is significantly decreasing, thus they are missing major skills for working in science. To counteract these developments, faculties of medicine are currently developing model curricula including deepened scientific education. Despite these efforts, the German Association of Faculties of Medicine argues that the performance of research projects leading to the doctoral degree is most suitable for obtaining expertise in scientific work. According to recommendations by the German Council of Science on the requirements for quality assurance of graduation doctoral degree programs have been introduced. This and further measures, like MD/PhD programs or research-based additional study programs serving the scientific qualification of medical students, are the subject of this article.

  12. Public Awareness of the Scientific Consensus on Climate

    Directory of Open Access Journals (Sweden)

    Lawrence C. Hamilton

    2016-11-01

    Full Text Available Questions about climate change elicit some of the widest political divisions of any items on recent U.S. surveys. Severe polarization affects even basic questions about the reality of anthropogenic climate change (ACC, or whether most scientists agree that humans are changing the Earth’s climate. Statements about scientific consensus have been contentious among social scientists, with some arguing for consensus awareness as a “gateway cognition” that leads to greater public acceptance of ACC, but others characterizing consensus messaging (deliberate communication about the level of scientific agreement as a counterproductive tactic that exacerbates polarization. A series of statewide surveys, with nationwide benchmarks, repeated questions about the reality of ACC and scientific consensus many times over 2010 to 2016. These data permit tests for change in beliefs and polarization. ACC and consensus beliefs have similar trends and individual background predictors. Both rose gradually by about 10 points over 2010 to 2016, showing no abrupt shifts that might correspond to events such as scientific reports, leadership statements, or weather. Growing awareness of the scientific consensus, whether from deliberate messaging or the cumulative impact of many studies and publicly engaged scientists, provides the most plausible explanation for this rise in both series. In state-level data, the gap between liberal and conservative views on the reality of ACC did not widen over this period, whereas the liberal–conservative gap regarding existence of a scientific consensus narrowed.

  13. Statistics and analysis of scientific data

    CERN Document Server

    Bonamente, Massimiliano

    2013-01-01

    Statistics and Analysis of Scientific Data covers the foundations of probability theory and statistics, and a number of numerical and analytical methods that are essential for the present-day analyst of scientific data. Topics covered include probability theory, distribution functions of statistics, fits to two-dimensional datasheets and parameter estimation, Monte Carlo methods and Markov chains. Equal attention is paid to the theory and its practical application, and results from classic experiments in various fields are used to illustrate the importance of statistics in the analysis of scientific data. The main pedagogical method is a theory-then-application approach, where emphasis is placed first on a sound understanding of the underlying theory of a topic, which becomes the basis for an efficient and proactive use of the material for practical applications. The level is appropriate for undergraduates and beginning graduate students, and as a reference for the experienced researcher. Basic calculus is us...

  14. Exploring HPCS languages in scientific computing

    International Nuclear Information System (INIS)

    Barrett, R F; Alam, S R; Almeida, V F d; Bernholdt, D E; Elwasif, W R; Kuehn, J A; Poole, S W; Shet, A G

    2008-01-01

    As computers scale up dramatically to tens and hundreds of thousands of cores, develop deeper computational and memory hierarchies, and increased heterogeneity, developers of scientific software are increasingly challenged to express complex parallel simulations effectively and efficiently. In this paper, we explore the three languages developed under the DARPA High-Productivity Computing Systems (HPCS) program to help address these concerns: Chapel, Fortress, and X10. These languages provide a variety of features not found in currently popular HPC programming environments and make it easier to express powerful computational constructs, leading to new ways of thinking about parallel programming. Though the languages and their implementations are not yet mature enough for a comprehensive evaluation, we discuss some of the important features, and provide examples of how they can be used in scientific computing. We believe that these characteristics will be important to the future of high-performance scientific computing, whether the ultimate language of choice is one of the HPCS languages or something else

  15. Exploring HPCS languages in scientific computing

    Science.gov (United States)

    Barrett, R. F.; Alam, S. R.; Almeida, V. F. d.; Bernholdt, D. E.; Elwasif, W. R.; Kuehn, J. A.; Poole, S. W.; Shet, A. G.

    2008-07-01

    As computers scale up dramatically to tens and hundreds of thousands of cores, develop deeper computational and memory hierarchies, and increased heterogeneity, developers of scientific software are increasingly challenged to express complex parallel simulations effectively and efficiently. In this paper, we explore the three languages developed under the DARPA High-Productivity Computing Systems (HPCS) program to help address these concerns: Chapel, Fortress, and X10. These languages provide a variety of features not found in currently popular HPC programming environments and make it easier to express powerful computational constructs, leading to new ways of thinking about parallel programming. Though the languages and their implementations are not yet mature enough for a comprehensive evaluation, we discuss some of the important features, and provide examples of how they can be used in scientific computing. We believe that these characteristics will be important to the future of high-performance scientific computing, whether the ultimate language of choice is one of the HPCS languages or something else.

  16. Sergio Bertolucci - Towards dynamic scientific research

    CERN Multimedia

    2009-01-01

    Sergio Bertolucci has become Director for Research and Scientific Computing at the moment when the LHC is almost ready to deliver its first physics data. In this interview, he explains the importance of the perfect mix of collaboration and competition that will make the LHC scientific programme successful. Sergio Bertolucci’s enthusiasm for being at CERN at this historic time is evident from the first minute of the interview and has not waned after an hour speaking with us. Bertolucci’s recipe for a successful start-up of the physics delivery phase of the LHC is "Festina lente", a Latin motto that means something like ‘hasten slowly’. "The LHC is probably the biggest and most complex scientific enterprise ever undertaken by humanity," says Bertolucci. "It will certainly lead us towards a new phase of our understanding of the Universe. Nature is already giving us some indications but only the LHC will allow us to observe the ne...

  17. Transforming Data: An Ethnography of Scientific Data from the Brazilian Amazon

    DEFF Research Database (Denmark)

    Walford, Antonia Caitlin

    This thesis is an ethnography of scientific data produced by a Brazil-led scientific project in the Brazilian Amazon. It describes how the researchers and technicians make data about the Amazon forest, and how this data in turn generates different scientific communities, scientific subjectivities...

  18. Intelligent Tools for Building a Scientific Information Platform

    CERN Document Server

    Skonieczny, Lukasz; Rybiński, Henryk; Niezgodka, Marek

    2012-01-01

    This book is a selection of results obtained within one year of research performed under SYNAT - a nation-wide scientific project aiming to create an infrastructure for scientific content storage and sharing for academia, education and open knowledge society in Poland. The selection refers to the research in artificial intelligence, knowledge discovery and data mining, information retrieval and natural language processing, addressing the problems of implementing intelligent tools for building a scientific information platform. The idea of this book is based on the very successful SYNAT Project Conference and the SYNAT Workshop accompanying the 19th International Symposium on Methodologies for Intelligent Systems (ISMIS 2011). The papers included in this book present an overview and insight into such topics as architecture of scientific information platforms, semantic clustering, ontology-based systems, as well as, multimedia data processing.

  19. Teaching Radiology Physics Interactively with Scientific Notebook Software.

    Science.gov (United States)

    Richardson, Michael L; Amini, Behrang

    2018-06-01

    The goal of this study is to demonstrate how the teaching of radiology physics can be enhanced with the use of interactive scientific notebook software. We used the scientific notebook software known as Project Jupyter, which is free, open-source, and available for the Macintosh, Windows, and Linux operating systems. We have created a scientific notebook that demonstrates multiple interactive teaching modules we have written for our residents using the Jupyter notebook system. Scientific notebook software allows educators to create teaching modules in a form that combines text, graphics, images, data, interactive calculations, and image analysis within a single document. These notebooks can be used to build interactive teaching modules, which can help explain complex topics in imaging physics to residents. Copyright © 2018 The Association of University Radiologists. Published by Elsevier Inc. All rights reserved.

  20. The German scientific balloon and sounding rocket programme

    International Nuclear Information System (INIS)

    Dahl, A.F.

    1980-01-01

    This report contains information on sounding rocket projects in the scientific field of astronomy, aeronomy, magnetosphere, and material science under microgravity. The scientific balloon projects are performed with emphasis on astronomical research. By means of tables it is attempted to give a survey, as complete as possible, of the projects the time since the last symposium in Ajaccio, Corsica, and of preparations and plans for the future until 1983. The scientific balloon and sounding rocket projects form a small successful part of the German space research programme. (Auth.)

  1. DataBank. Towards a new scientific management methodology

    International Nuclear Information System (INIS)

    Mahmoud, N.S.; Lashin, R.M.A.; Abdul-Aziz, L.Kh.

    2017-01-01

    The main task of the presented management system plan is to control and organize the successful organisation. The achievement of the project shall consider objectives of the organization, strategy, workers and benefits. Various management systems have appeared during the last century; the scientific management approach, administrative theory, systems approach, socio-technical approach, contingency or situational approach, and others. The selection of the management methodology for a scientific organizations in the nuclear sector shall be, in particular, a precise process. That is due to the different objectives of scientific activities performed.

  2. DataBank. Towards a new scientific management methodology

    Energy Technology Data Exchange (ETDEWEB)

    Mahmoud, N.S.; Lashin, R.M.A.; Abdul-Aziz, L.Kh. [Egyptian Nuclear and Radiological Regulatory Authority (ENNRA), Cairo (Egypt). Nuclear Installations Safety Div.

    2017-12-15

    The main task of the presented management system plan is to control and organize the successful organisation. The achievement of the project shall consider objectives of the organization, strategy, workers and benefits. Various management systems have appeared during the last century; the scientific management approach, administrative theory, systems approach, socio-technical approach, contingency or situational approach, and others. The selection of the management methodology for a scientific organizations in the nuclear sector shall be, in particular, a precise process. That is due to the different objectives of scientific activities performed.

  3. Science games and the development of scientific possible selves

    Science.gov (United States)

    Beier, Margaret E.; Miller, Leslie M.; Wang, Shu

    2012-12-01

    Serious scientific games, especially those that include a virtual apprenticeship component, provide players with realistic experiences in science. This article discusses how science games can influence learning about science and the development of science-oriented possible selves through repeated practice in professional play and through social influences (e.g., peer groups). We first review the theory of possible selves (Markus and Nurius 1986) and discuss the potential of serious scientific games for influencing the development of scientific possible selves. As part of our review, we present a forensic game that inspired our work. Next we present a measure of scientific possible selves and assess its reliability and validity with a sample of middle-school students ( N = 374). We conclude by discussing the promise of science games and the development of scientific possible selves on both the individual and group levels as a means of inspiring STEM careers among adolescents.

  4. Marie Curie: scientific entrepreneur

    International Nuclear Information System (INIS)

    Boudia, S.

    1998-01-01

    Marie Curie is best known for her discovery of radium one hundred years ago this month, but she also worked closely with industry in developing methods to make and monitor radioactive material, as Soraya Boudia explains. One hundred years ago this month, on 28 December 1898, Pierre Curie, Marie Sklodowska-Curie and Gustave Bemont published a paper in Comptes-rendus - the journal of the French Academy of Sciences. In the paper they announced that they had discovered a new element with astonishing properties: radium. But for one of the authors, Marie Curie, the paper was more than just the result of outstanding work: it showed that a woman could succeed in what was then very much a male-dominated scientific world. Having arrived in Paris from Poland in 1891, Marie Curie became the first woman in France to obtain a PhD in physics, the first woman to win a Nobel prize and the first woman to teach at the Sorbonne. She also helped to found a new scientific discipline: the study of radioactivity. She became an icon and a role-model for other women to follow, someone who succeeded - despite many difficulties - in imposing herself on the world of science. Although Curie's life story is a familiar and well documented one, there is one side to her that is less well known: her interaction with industry. As well as training many nuclear physicists and radiochemists in her laboratory, she also became a scientific pioneer in industrial collaboration. In this article the author describes this side of Marie Curie. (UK)

  5. The next scientific revolution.

    Science.gov (United States)

    Hey, Tony

    2010-11-01

    For decades, computer scientists have tried to teach computers to think like human experts. Until recently, most of those efforts have failed to come close to generating the creative insights and solutions that seem to come naturally to the best researchers, doctors, and engineers. But now, Tony Hey, a VP of Microsoft Research, says we're witnessing the dawn of a new generation of powerful computer tools that can "mash up" vast quantities of data from many sources, analyze them, and help produce revolutionary scientific discoveries. Hey and his colleagues call this new method of scientific exploration "machine learning." At Microsoft, a team has already used it to innovate a method of predicting with impressive accuracy whether a patient with congestive heart failure who is released from the hospital will be readmitted within 30 days. It was developed by directing a computer program to pore through hundreds of thousands of data points on 300,000 patients and "learn" the profiles of patients most likely to be rehospitalized. The economic impact of this prediction tool could be huge: If a hospital understands the likelihood that a patient will "bounce back," it can design programs to keep him stable and save thousands of dollars in health care costs. Similar efforts to uncover important correlations that could lead to scientific breakthroughs are under way in oceanography, conservation, and AIDS research. And in business, deep data exploration has the potential to unearth critical insights about customers, supply chains, advertising effectiveness, and more.

  6. Rapid Scientific Promotion of Scientific Productions in Stem Cells According to The Indexed Papers in The ISI (web of knowledge).

    Science.gov (United States)

    Alijani, Rahim

    2015-01-01

    In recent years emphasis has been placed on evaluation studies and the publication of scientific papers in national and international journals. In this regard the publication of scientific papers in journals in the Institute for Scientific Information (ISI) database is highly recommended. The evaluation of scientific output via articles in journals indexed in the ISI database will enable the Iranian research authorities to allocate and organize research budgets and human resources in a way that maximises efficient science production. The purpose of the present paper is to publish a general and valid view of science production in the field of stem cells. In this research, outputs in the field of stem cell research are evaluated by survey research, the method of science assessment called Scientometrics in this branch of science. A total of 1528 documents was extracted from the ISI database and analysed using descriptive statistics software in Excel. The results of this research showed that 1528 papers in the stem cell field in the Web of Knowledge database were produced by Iranian researchers. The top ten Iranian researchers in this field have produced 936 of these papers, equivalent to 61.3% of the total. Among the top ten, Soleimani M. has occupied the first place with 181 papers. Regarding international scientific participation, Iranian researchers have cooperated to publish papers with researchers from 50 countries. Nearly 32% (452 papers) of the total research output in this field has been published in the top 10 journals. These results show that a small number of researchers have published the majority of papers in the stem cell field. International participation in this field of research unacceptably low. Such participation provides the opportunity to import modern science and international experience into Iran. This not only causes scientific growth, but also improves the research and enhances opportunities for employment and professional development. Iranian

  7. The profile of high school students’ scientific literacy on fluid dynamics

    Science.gov (United States)

    Parno; Yuliati, L.; Munfaridah, N.

    2018-05-01

    This study aims to describe the profile of scientific literacy of high school students on Fluid Dynamics materials. Scientific literacy is one of the ability to solve daily problems in accordance with the context of materials related to science and technology. The study was conducted on 90 high school students in Sumbawa using survey design. Data were collected using an instrument of scientific literacy for high school students on dynamic fluid materials. Data analysis was conducted descriptively to determine the students’ profile of scientific literacy. The results showed that high school students’ scientific literacy on Fluid Dynamics materials was in the low category. The highest average is obtained on indicators of scientific literacy i.e. the ability to interpret data and scientific evidence. The ability of scientific literacy is related to the mastery of concepts and learning experienced by students, therefore it is necessary to use learning that can trace this ability such as Science, Technology, Engineering, and Mathematics (STEM).

  8. 1998-2001 Scientific Technological Report

    International Nuclear Information System (INIS)

    Gayoso C, C.; Ezpinoza Z, M.; Prado C, A.; Robles N, A.

    2002-01-01

    IPEN has elaborated the 1998-2001 Scientific-Technological Report as a result of several research and development works within the fields of production and services, and related with mining, archaeology, agriculture, biology, industry and medicine as well with tracer techniques in industry, welding quality control, speed and underground waters flows, direction, water treatment, environmental pollution, geothermy, production and calibration of radioactive sources, X-rays equipment quality control, neutron physics, neutron radiography, neutron activation analysis, water traces analysis, crystal growth and building of nuclear equipment. The 1998-2001 Scientific-Technological Report includes 148 papers divided in 8 subject matters: Nuclear and Reactor Physics, Nuclear Chemistry, Nuclear Engineering, Materials, Nuclear Safety, Protection and Radiological Safety, Nuclear Applications, and Rules and Regulation

  9. International Scientific Cooperation in the Field of Spatial Studies

    Directory of Open Access Journals (Sweden)

    Pavel Aleksandrovich Minakir

    2014-06-01

    Full Text Available The paper discusses the existing structure of international cooperation of scientific organizations in the field of regional studies in different parts of the world. The authors define current major organizations that coordinate the work of scientific subdivisions in the field of regional studies in the whole world and also in Europe, North and South America and the Asia-Pacific region. The researchers offer the new term - ‘public-scientific partnership’ (PSP - and discuss PSP mechanisms and its implementation ways that may strengthen regional scientific research in Russia. The authors also debate the idea of creation of the Russian Association of Regional Science

  10. Self-Evaluation of the Scientific Activity of a Higher Educational Institution

    Directory of Open Access Journals (Sweden)

    Rayevnyeva Olena V.

    2017-06-01

    Full Text Available The article is dedicated to the problem of self-evaluation of the scientific activity of a higher educational institution (HEI as a component of its overall ranking evaluation. On the basis of a potentially effective approach to studying this problem, there proposed a system of indicators for evaluating the scientific activity of a HEI, which makes it possible to determine the potential of its scientific activity in terms of staff and resource provision, and the efficiency — in terms of quality of the training of scientific staff (students, graduate students, young scientists, etc., financial results of scientific activity and publication activity. To obtain an integral ranking score of the scientific activity of a HEI, the use of the taxonomic method is justified, the necessity of applying weight coefficients of the significance of primary indicators is determined. The approbation of the approach was carried out on the basis of the data of S. Kuznets KhNEU for the period of 2013-2016, which made it possible to obtain not only point estimates of the integral indicator of the scientific activity of an HEI but also determine the trends in its changes and identify their reasons. The proposed approach to the self-evaluation of the scientific activity of a HEI allows its administration to develop effective management solutions to increase the level of scientific activity of its scientific and pedagogical, and scientific staff, which will provide additional competitive advantages in the national and world educational space.

  11. China ranks second in scientific publications since 2006

    NARCIS (Netherlands)

    Zhou, P.; Leydesdorff, L.

    2008-01-01

    With the fast development of its economy, China plays an increasingly important role in the world. China's performance in science is also impressive. The exponential growth of Chinese scientific publications provides evidence. However, statistical results about China's world share of scientific

  12. The philosophy of scientific experimentation: a review

    Science.gov (United States)

    2009-01-01

    Practicing and studying automated experimentation may benefit from philosophical reflection on experimental science in general. This paper reviews the relevant literature and discusses central issues in the philosophy of scientific experimentation. The first two sections present brief accounts of the rise of experimental science and of its philosophical study. The next sections discuss three central issues of scientific experimentation: the scientific and philosophical significance of intervention and production, the relationship between experimental science and technology, and the interactions between experimental and theoretical work. The concluding section identifies three issues for further research: the role of computing and, more specifically, automating, in experimental research, the nature of experimentation in the social and human sciences, and the significance of normative, including ethical, problems in experimental science. PMID:20098589

  13. Students’ Scientific Circle of Obstetrics and Gynaecology

    Directory of Open Access Journals (Sweden)

    Ivan Polishchuk

    2017-06-01

    Full Text Available The students’ scientific circle is the kind of teaching obstetrics and gynaecology in a higher medical institution. The circle is an elective form of learning that allows the students to get deeper knowledge of a subject and to perfect themselves in the issues of diagnostics in obstetrics and gynaecology as well as to acquaint themselves with basic medical techniques. It helps identify students who are capable of scientific research and allows the students to improve their ability to analytical perception of professional information, the ability to present it to the audience, ask and answer the questions publicly. The article presents the results of practical and research activities of obstetric and gynaecologic section of the students’ scientific circle of Ivano-Frankivsk National Medical University.

  14. Turning Crisis into Opportunity: Nature of Science and Scientific Inquiry as Illustrated in the Scientific Research on Severe Acute Respiratory Syndrome

    Science.gov (United States)

    Wong, Siu Ling; Kwan, Jenny; Hodson, Derek; Yung, Benny Hin Wai

    2009-01-01

    Interviews with key scientists who had conducted research on Severe Acute Respiratory Syndrome (SARS), together with analysis of media reports, documentaries and other literature published during and after the SARS epidemic, revealed many interesting aspects of the nature of science (NOS) and scientific inquiry in contemporary scientific research in the rapidly growing field of molecular biology. The story of SARS illustrates vividly some NOS features advocated in the school science curriculum, including the tentative nature of scientific knowledge, theory-laden observation and interpretation, multiplicity of approaches adopted in scientific inquiry, the inter-relationship between science and technology, and the nexus of science, politics, social and cultural practices. The story also provided some insights into a number of NOS features less emphasised in the school curriculum—for example, the need to combine and coordinate expertise in a number of scientific fields, the intense competition between research groups (suspended during the SARS crisis), the significance of affective issues relating to intellectual honesty and the courage to challenge authority, the pressure of funding issues on the conduct of research and the ‘peace of mind’ of researchers, These less emphasised elements provided empirical evidence that NOS knowledge, like scientific knowledge itself, changes over time. They reflected the need for teachers and curriculum planners to revisit and reconsider whether the features of NOS currently included in the school science curriculum are fully reflective of the practice of science in the 21st century. In this paper, we also report on how we made use of extracts from the news reports and documentaries on SARS, together with episodes from the scientists’ interviews, to develop a multimedia instructional package for explicitly teaching the prominent features of NOS and scientific inquiry identified in the SARS research.

  15. The Analysis of Students Scientific Reasoning Ability in Solving the Modified Lawson Classroom Test of Scientific Reasoning (MLCTSR Problems by Applying the Levels of Inquiry

    Directory of Open Access Journals (Sweden)

    N. Novia

    2017-04-01

    Full Text Available This study aims to determine the students’ achievement in answering modified lawson classroom test of scientific reasoning (MLCTSR questions in overall science teaching and by every aspect of scientific reasoning abilities. There are six aspects related to the scientific reasoning abilities that were measured; they are conservatorial reasoning, proportional reasoning, controlling variables, combinatorial reasoning, probabilistic reasoning, correlational reasoning. The research is also conducted to see the development of scientific reasoning by using levels of inquiry models. The students reasoning ability was measured using the Modified Lawson Classroom Test of Scientific Reasoning (MLCTSR. MLCTSR is a test developed based on the test of scientific reasoning of Lawson’s Classroom Test of Scientific Reasoning (LCTSR in 2000 which amounted to 12 multiple-choice questions. The research method chosen in this study is descriptive quantitative research methods. The research design used is One Group Pretest-Posttest Design. The population of this study is the entire junior high students class VII the academic year 2014/2015 in one junior high school in Bandung. The samples in this study are one of class VII, which is class VII C. The sampling method used in this research is purposive sampling. The results showed that there is an increase in quantitative scientific reasoning although its value is not big.

  16. Synchronous international scientific mobility in the space of affiliations: evidence from Russia.

    Science.gov (United States)

    Markova, Yulia V; Shmatko, Natalia A; Katchanov, Yurij L

    2016-01-01

    The article presents a survey of Russian researchers' synchronous international scientific mobility as an element of the global system of scientific labor market. Synchronous international scientific mobility is a simultaneous holding of scientific positions in institutions located in different countries. The study explores bibliometric data from the Web of Science Core Collection and socio-economic indicators for 56 countries. In order to examine international scientific mobility, we use a method of affiliations. The paper introduces a model of synchronous international scientific mobility. It enables to specify country's involvement in the international division of scientific labor. Synchronous international scientific mobility is a modern form of the international division of labor in science. It encompasses various forms of part-time, temporary and remote employment of scientists. The analysis reveals the distribution of Russian authors in the space of affiliations, and directions of upward/downward international scientific mobility. The bibliometric characteristics of mobile authors are isomorphic to those of receiver country authors. Synchronous international scientific mobility of Russian authors is determined by differences in scientific impacts between receiver and donor countries.

  17. 3 CFR - Scientific Integrity

    Science.gov (United States)

    2010-01-01

    ... information in policymaking. The selection of scientists and technology professionals for positions in the... Administration on a wide range of issues, including improvement of public health, protection of the environment... technological findings and conclusions. If scientific and technological information is developed and used by the...

  18. Hot Spots and Hot Moments in Scientific Collaborations and Social Movements

    Science.gov (United States)

    Parker, John N.; Hackett, Edward J.

    2012-01-01

    Emotions are essential but little understood components of research; they catalyze and sustain creative scientific work and fuel the scientific and intellectual social movements (SIMs) that propel scientific change. Adopting a micro-sociological focus, we examine how emotions shape two intellectual processes central to all scientific work:…

  19. Expanding the use of Scientific Data through Maps and Apps

    Science.gov (United States)

    Shrestha, S. R.; Zimble, D. A.; Herring, D.; Halpert, M.

    2014-12-01

    The importance of making scientific data more available can't be overstated. There is a wealth of useful scientific data available and demand for this data is only increasing; however, applying scientific data towards practical uses poses several technical challenges. These challenges can arise from difficulty in handling the data due largely to 1) the complexity, variety and volume of scientific data and 2) applying and operating the techniques and tools needed to visualize and analyze the data. As a result, the combined knowledge required to take advantage of these data requires highly specialized skill sets that in total, limit the ability of scientific data from being used in more practical day-to-day decision making activities. While these challenges are daunting, information technologies do exist that can help mitigate some of these issues. Many organizations for years have already been enjoying the benefits of modern service oriented architectures (SOAs) for everyday enterprise tasks. We can use this approach to modernize how we share and access our scientific data where much of the specialized tools and techniques needed to handle and present scientific data can be automated and executed by servers and done so in an appropriate way. We will discuss and show an approach for preparing file based scientific data (e.g. GRIB, netCDF) for use in standard based scientific web services. These scientific web services are able to encapsulate the logic needed to handle and describe scientific data through a variety of service types including, image, map, feature, geoprocessing, and their respective service methods. By combining these types of services and leveraging well-documented and modern web development APIs, we can afford to focus our attention on the design and development of user-friendly maps and apps. Our scenario will include developing online maps through these services by integrating various forecast data from the Climate Forecast System (CFSv2). This

  20. Scientific papers: A new paradigm

    Science.gov (United States)

    Reid, George C.

    The problem of how to organize and write a scientific paper is a very basic one for most of us. A scientific paper is, after all, the only tangible product of a research scientist and, like all products, will be a failure if not marketed properly to reach its potential buyers. I think that a lack of attention to this “marketing and sales” aspect of research is a serious fault in our community, by which I mean those of us who publish in AGU journals.The potential audience for a scientific paper can be divided roughly into three distinct categories. The first group is usually rather small in number, consisting of fellow scientists working in a very closely related field, and to whom the details of the work are of major importance. The second group is also fellow scientists, but their interest is less sharply focused, and they are concerned with the broad outlines of the work and essential results. The third group is the sponsors and the people who actually pay for the work, whose interest in the details is minimal and they, sadly enough, are often concerned only with the fact that a paper has been published rather than its content.

  1. Scientific Publications and the Internet - Editorial

    Directory of Open Access Journals (Sweden)

    Heller WD

    2014-12-01

    Full Text Available The Internet is a potent medium for the global distribution and retrieval of information in all areas of life. We already profit from this opportunity and will do so even more when the Internet will be developed further. But there is another side to all this: The fact that unchecked information is available to an almost unlimited extent also carries dangers with it particularly when it is given the semblance of being based on scientific evidence. For the publication of scientific knowledge, an efficient control system has matured and proved successful over many years: peer review. The Internet is not the only medium to dodge this system, but the Internet is certainly the cheapest, fastest, most widespread and therefore the most efficient (and probably dangerous way to do so. A recent example is Arpad Pusztai's claim in the press and on television programmes in Great Britain that genetically modified (GM potatoes may stunt the growth of rats. His ‘findings', although not published in a peer-reviewed journal, were welcomed and exploited by lobby groups and triggered widespread concern over the issue of GM food. A year later the paper was published in The Lancet accompanied by a critical commentary (A. Pusztai: Lancet 354 (1999 1314-1315. One benefit of the publication in this prestigious journal certainly was that Pusztai had to retract his original claims because the data simply do not support them (N. Loder: Nature 401 (1999 731.A similar case, we believe, is the Internet publication of July 14, 1999, on the website of ‘Action on Smoking and Health’ (ASH entitled ‘Tobacco Additives - Cigarette Engineering and Nicotine Addiction', authored by C. Bates, M. Jarvis and G. Connolly (http://www.ash.org.uk/papers/additives.html. In this report, the authors claim, among other things, that the cigarette industry uses pharmacologically active additives in order to influence the smoking behaviour. The scientific evidence for their claim is mainly

  2. List of scientific publications of Nuclear Research Center Karlsruhe 1983

    International Nuclear Information System (INIS)

    1984-04-01

    This report contains the titles of the publications edited in the year 1983. The scientific and technical-scientific publications of the Nuclear Research Center Karlsruhe are printed as books, as original contributions in scientific or technical specialists' journals, as scripts for habilitation, thesis, scripts for diploma, as patents, as KfK-Reports (KfK=Kernforschungszentrum Karlsruhe) and are being presented as lectures on scientific meetings. No further separate abstracts of this list of publications were prepared. (orig./HBR) [de

  3. The NASA Ames Research Center Institutional Scientific Collection: History, Best Practices and Scientific Opportunities

    Science.gov (United States)

    Rask, Jon C.; Chakravarty, Kaushik; French, Alison; Choi, Sungshin; Stewart, Helen

    2017-01-01

    The NASA Ames Life Sciences Institutional Scientific Collection (ISC), which is composed of the Ames Life Sciences Data Archive (ALSDA) and the Biospecimen Storage Facility (BSF), is managed by the Space Biosciences Division and has been operational since 1993. The ALSDA is responsible for archiving information and animal biospecimens collected from life science spaceflight experiments and matching ground control experiments. Both fixed and frozen spaceflight and ground tissues are stored in the BSF within the ISC. The ALSDA also manages a Biospecimen Sharing Program, performs curation and long-term storage operations, and makes biospecimens available to the scientific community for research purposes via the Life Science Data Archive public website (https:lsda.jsc.nasa.gov). As part of our best practices, a viability testing plan has been developed for the ISC, which will assess the quality of archived samples. We expect that results from the viability testing will catalyze sample use, enable broader science community interest, and improve operational efficiency of the ISC. The current viability test plan focuses on generating disposition recommendations and is based on using ribonucleic acid (RNA) integrity number (RIN) scores as a criteria for measurement of biospecimen viablity for downstream functional analysis. The plan includes (1) sorting and identification of candidate samples, (2) conducting a statiscally-based power analysis to generate representaive cohorts from the population of stored biospecimens, (3) completion of RIN analysis on select samples, and (4) development of disposition recommendations based on the RIN scores. Results of this work will also support NASA open science initiatives and guides development of the NASA Scientific Collections Directive (a policy on best practices for curation of biological collections). Our RIN-based methodology for characterizing the quality of tissues stored in the ISC since the 1980s also creates unique

  4. Scientific Reasoning and Argumentation: Advancing an Interdisciplinary Research Agenda in Education

    Science.gov (United States)

    Fischer, Frank; Kollar, Ingo; Ufer, Stefan; Sodian, Beate; Hussmann, Heinrich; Pekrun, Reinhard; Neuhaus, Birgit; Dorner, Birgit; Pankofer, Sabine; Fischer, Martin; Strijbos, Jan-Willem; Heene, Moritz; Eberle, Julia

    2014-01-01

    Scientific reasoning and scientific argumentation are highly valued outcomes of K-12 and higher education. In this article, we first review main topics and key findings of three different strands of research, namely research on the development of scientific reasoning, research on scientific argumentation, and research on approaches to support…

  5. 75 FR 66388 - Scientific Earthquake Studies Advisory Committee

    Science.gov (United States)

    2010-10-28

    ..., including the multi-hazards demonstration project and earthquake early warning prototype development. The... DEPARTMENT OF THE INTERIOR U.S. Geological Survey [USGS-GX11GG009950000] Scientific Earthquake... Public Law 106-503, the Scientific Earthquake Studies Advisory Committee (SESAC) will hold its next...

  6. 75 FR 2159 - Scientific Earthquake Studies Advisory Committee

    Science.gov (United States)

    2010-01-14

    ... DEPARTMENT OF THE INTERIOR U.S. Geological Survey Scientific Earthquake Studies Advisory Committee... Scientific Earthquake Studies Advisory Committee (SESAC) will hold its next meeting at the U.S. Geological... participation in the National Earthquake Hazards Reduction Program. The Committee will receive updates and...

  7. Adherence to Scientific Method while Advancing Exposure Science

    Science.gov (United States)

    Paul Lioy was simultaneously a staunch adherent to the scientific method and an innovator of new ways to conduct science, particularly related to human exposure. Current challenges to science and the application of the scientific method are presented as they relate the approaches...

  8. 48 CFR 1435.010 - Scientific and technical reports.

    Science.gov (United States)

    2010-10-01

    ... 48 Federal Acquisition Regulations System 5 2010-10-01 2010-10-01 false Scientific and technical reports. 1435.010 Section 1435.010 Federal Acquisition Regulations System DEPARTMENT OF THE INTERIOR SPECIAL CATEGORIES OF CONTRACTING RESEARCH AND DEVELOPMENT CONTRACTING 1435.010 Scientific and technical...

  9. 48 CFR 35.010 - Scientific and technical reports.

    Science.gov (United States)

    2010-10-01

    ... reports. (a) R&D contracts shall require contractors to furnish scientific and technical reports... 48 Federal Acquisition Regulations System 1 2010-10-01 2010-10-01 false Scientific and technical reports. 35.010 Section 35.010 Federal Acquisition Regulations System FEDERAL ACQUISITION REGULATION...

  10. [On the evolution of scientific thought].

    Science.gov (United States)

    de Micheli, Alfredo; Iturralde Torres, Pedro

    2015-01-01

    The Nominalists of the XIV century, precursors of modern science, thought that science's object was not the general, vague and indeterminate but the particular, which is real and can be known directly. About the middle of the XVII Century the bases of the modern science became established thanks to a revolution fomented essentially by Galileo, Bacon and Descartes. During the XVIII Century, parallel to the development of the great current of English Empiricism, a movement of scientific renewal also arose in continental Europe following the discipline of the Dutch Physicians and of Boerhaave. In the XIX Century, Claude Bernard dominated the scientific medicine but his rigorous determinism impeded him from taking into account the immense and unforeseeable field of the random. Nowadays, we approach natural science and medicine, from particular groups of facts; that is, from the responses of Nature to specific questions, but not from the general laws. Furthermore, in recent epistemology, the concept that experimental data are not pure facts, but rather, facts interpreted within a hermeneutical context has been established. Finally a general tendency to retrieve philosophical questions concerning the understanding of essence and existence can frequently be seen in scientific inquiry. In the light of the evolution of medical thought, it is possible to establish the position of scientific medicine within the movement of ideas dominating in our time. Copyright © 2014 Instituto Nacional de Cardiología Ignacio Chávez. Published by Masson Doyma México S.A. All rights reserved.

  11. Scientific Revolutions and Political Attitudes

    Czech Academy of Sciences Publication Activity Database

    Mervart, Jan

    2014-01-01

    Roč. 2, č. 2 (2014), s. 185-190 ISSN 2336-3142 Institutional support: RVO:67985955 Keywords : Scientific revolution * party historiography * Czechoslovakia * communist reformism Subject RIV: AB - History

  12. Ethical principles of scientific communication

    Directory of Open Access Journals (Sweden)

    Baranov G. V.

    2017-03-01

    Full Text Available the article presents the principles of ethical management of scientific communication. The author approves the priority of ethical principle of social responsibility of the scientist.

  13. Tools for Reproducibility and Extensibility in Scientific Research

    CERN Multimedia

    CERN. Geneva

    2018-01-01

    Open inquiry through reproducing results is fundamental to the scientific process. Contemporary research relies on software engineering pipelines to collect, process, and analyze data. The open source projects within Project Jupyter facilitate these objectives by bringing software engineering within the context of scientific communication. We will highlight specific projects that are computational building blocks for scientific communication, starting with the Jupyter Notebook. We will also explore applications of projects that build off of the Notebook such as Binder, JupyterHub, and repo2docker. We will discuss how these projects can individually and jointly improve reproducibility in scientific communication. Finally, we will demonstrate applications of Jupyter software that allow researchers to build upon the code of other scientists, both to extend their work and the work of others.    There will be a follow-up demo session in the afternoon, hosted by iML. Details can be foun...

  14. I Can Make a Scientific Research: A Course about Scientific Research Methods, in Which Learning Management System (LMS) Is Used

    Science.gov (United States)

    Özden, Bülent

    2016-01-01

    The purpose of this study was to determine the changes in the perception of teacher candidates towards scientific research process and their self-efficacy in this process, during Scientific Research Methods course that has been conducted using "Learning Management System" based on out-of-class learning activities. Being designed as a…

  15. Scientific evaluation at the CEA; Evaluation scientifique au CEA

    Energy Technology Data Exchange (ETDEWEB)

    NONE

    1999-11-01

    This report presents a statement of the scientific and technical activity of the French atomic energy commission (CEA) for the year 1998. This evaluation is made by external and independent experts and requires some specific dispositions for the nuclear protection and safety institute (IPSN) and for the direction of military applications (DAM). The report is divided into 5 parts dealing successively with: part 1 - the CEA, a public research organization (civil nuclear research, technology research and transfers, defence activities); the scientific and technical evaluation at the CEA (general framework, evaluation of the IPSN and DAM); part 2 - the scientific and technical councils (directions of fuel cycle, of nuclear reactors, and of advanced technologies); part 3 - the scientific councils (directions of matter and of life sciences); the nuclear protection and safety institute; the direction of military applications; part 4 - the corresponding members of the evaluation; part 5 - the list of scientific and technical councils and members. (J.S.)

  16. Federal Agency Scientific Integrity Policies and the Legal Landscape

    Science.gov (United States)

    Kurtz, L.

    2017-12-01

    Federal agencies have worked to develop scientific integrity policies to promote the use of scientific and technical information in policymaking, reduce special-interest influences, and increase transparency. Following recent allegations of agency misconduct, these policies are now more important than ever. In addition to setting standards, scientific integrity policies also provide avenues for whistleblowers to complain about perceived violations. While these policies have their shortcomings (which may differ by agency), they are also one of the better available options for upholding principles of scientific integrity within the federal government. A legal perspective will be offered on what sorts of issues might rise to the threshold to make an official complaint, and the process of actually making a complaint. Other legal avenues for complaining about scientific integrity violations will also be discussed, such as complaints filed with the U.S. Office of Special Counsel or an agency's Office of Inspector General, and bringing the matter to federal court.

  17. A Componential Analysis of Gender Differences in Scientific Creativity

    Directory of Open Access Journals (Sweden)

    N. Nazlı Ozdemir

    2013-12-01

    Full Text Available In this study, an investigation was carried out to explore if there were any gender differences in scientific creativity and its components. Par-ticipants included 704 sixth grade students who applied to the Education Programs for Talented Students (EPTS at Anadolu University in the City of Eskişehir in Turkey. Of the total sam-ple, 345 were female and 359 were male. Stu-dents’ scientific creativity was measured using the Creative Scientific Ability Test (C-SAT. It measures fluency, flexibility and creativity and hypothesis generation, hypothesis testing and evidence evaluation. The analysis showed that male students scored significantly higher on fluency and creativity and hypothesis genera-tion components of scientific creativity. Alt-hough male students had higher scores on flex-ibility, hypothesis testing and evidence evalua-tion components too, the differences between the groups were not significant. The findings shows that gender differences in scientific crea-tivity in childhood and adolescence might re-sult from differences in some particular pro-cesses.

  18. Distribution of authorship in a scientific work.

    Science.gov (United States)

    Petroianu, Andy

    2012-01-01

    To publish became almost compulsory in Medicine. There is no doubt about the importance of publishing research, but the ordering of its authors is not easy. The lack of internationally accepted criteria led to the establishment of several groups or conventions particularized medical and scientific sectors. To present numerical method to establish rule of value to people who carried out the research, and whether or not incorporated as authors. The proposed score is based on the needs of each step when conducting a scientific work. They were divided into topics in which the main ones were: 1) scientific criteria for authorship; 2) create the idea that originated the work and develop hypotheses; 3) structure the method of work; 4) guiding the work; 5) write the manuscript; 6) coordinate the group that carried out the work; 7) reviewing the literature; 8) suggestions incorporated into the work; 9) to solve fundamental problems of labor; 10) to collect data; 11) presentation at scientific meetings; 12 ) lead the job and raise funds; 13) providing patients or material; 14) to do the routine needs; 15) specific fee to participate; 16) criteria for ranking the authors; 17) honorary author; 18) usurpation of the main authorship, 19) acknowledgments . It is important to emphasize that, to prevent major conflicts, the group that is willing to conduct a scientific work should establish at the outset, as objectively as possible, the criteria to be adopted for distribution of authorship. The subjective criteria here proposed avoid interference and prevent conflicts of interest.

  19. Conceiving, Writing and Publishing a Scientific Paper

    Directory of Open Access Journals (Sweden)

    Marta Christina Suciu

    2018-02-01

    Full Text Available I consider that the second edition of the book “Conceiving, Writing and Publishing a Scientific Paper. An approach in the context of economic research” is a work of high scientific standing, excellently documented, addressed to knowledgeable readers but also to the new generations of PhD students and researchers interested in attaining the highest academic and scientific performances in the field of Economics. From my point of view, both editions of the book are highly useful for the academic environment. I especially appreciate the authors’ efforts to improve and expand the second edition. This fact is due to the changes occurred in the evolution of scientometric indicators, to the feedback received from readers, but also as the result of the desire to include multiple networks and platforms that take into account professional and institutional profiles, such as to facilitate the researchers’ dissemination of their results obtained in the scientific research activity. The authors benefit on an unanimous recognition and are highly appreciated., fact proven for example by the ten existing reviews of the book’s first edition, published in journals indexed in Web of Science, Scopus and other international databases. I am mostly impressed by the authors’ permanent concern to improve their book’s scientific content. The first edition was awarded the distinction “The Best Book in the Field of Economics” published in 2016 in Romania by the Association of Romanian Economic Faculties, but also by The Association of Cultural-Educational Cooperation from Suceava (ACCES prize in 2016

  20. Result of some valuable scientific searches

    Directory of Open Access Journals (Sweden)

    Sergiu VLĂDICĂ

    2017-06-01

    Full Text Available Annually, the Editorial Activity division of the Academy of Public Administration edits the proceedings of the scientific-practical conferences with international participation „Theory and Practice of Public Administration”, in a separate volume. This year collection contains 120 articles signed by the researchers of the Academy, of other national higher education institutions and from the similar institutions abroad, of central and local public authorities. The most relevant scientific researches presented in the plenary session of the Conference as well as within six workshops are emphasized in the article.

  1. Advanced Excel for scientific data analysis

    CERN Document Server

    De Levie, Robert

    2004-01-01

    Excel is by far the most widely distributed data analysis software but few users are aware of its full powers. Advanced Excel For Scientific Data Analysis takes off from where most books dealing with scientific applications of Excel end. It focuses on three areas-least squares, Fourier transformation, and digital simulation-and illustrates these with extensive examples, often taken from the literature. It also includes and describes a number of sample macros and functions to facilitate common data analysis tasks. These macros and functions are provided in uncompiled, computer-readable, easily

  2. Constructing Scientific Explanations: a System of Analysis for Students' Explanations

    Science.gov (United States)

    de Andrade, Vanessa; Freire, Sofia; Baptista, Mónica

    2017-08-01

    This article describes a system of analysis aimed at characterizing students' scientific explanations. Science education literature and reform documents have been highlighting the importance of scientific explanations for students' conceptual understanding and for their understanding of the nature of scientific knowledge. Nevertheless, and despite general agreement regarding the potential of having students construct their own explanations, a consensual notion of scientific explanation has still not been reached. As a result, within science education literature, there are several frameworks defining scientific explanations, with different foci as well as different notions of what accounts as a good explanation. Considering this, and based on a more ample project, we developed a system of analysis to characterize students' explanations. It was conceptualized and developed based on theories and models of scientific explanations, science education literature, and from examples of students' explanations collected by an open-ended questionnaire. With this paper, it is our goal to present the system of analysis, illustrating it with specific examples of students' collected explanations. In addition, we expect to point out its adequacy and utility for analyzing and characterizing students' scientific explanations as well as for tracing their progression.

  3. The Formation of Methodical Approach to Estimation of Scientific-Research, Scientific-Technical, and Innovative Activity of Institutions of Higher Education

    Directory of Open Access Journals (Sweden)

    Yermachenko Volodymyr Ye.

    2017-12-01

    Full Text Available The research is aimed at developing a methodical approach to the construction of an innovative system of estimation of research, scientific, technical, and innovative activities of higher education institutions (HEI on the basis of elaborate structured system of indicators. The proposed methodical approach contains five stages, the research discloses the content of each of them. Based on the results of a comparative analysis of international and national systems of HEI-rating, as well as the usage of economic and mathematical instrumentarium, a list of indicators for estimating their scientific activities in terms of the selected factors and directions of estimation was formed and substantiated. An approach to formation of cluster aggregates of HEI by the criterion of their scientific performance has been suggested. Proposals on formation of a HEI-rating within the limits of the allocated homogeneous groups by means of the system of integral indicators were developed. Prospects for further scientific researches in this direction imply formation of directions of development of managerial decisions in accordance with the obtained results of rating, which will be directed on strengthening and search for new ways of development of scientific activity of HEI, increase of its level of competitiveness and image, and also strengthening of its contribution to the solution of actual problems of economy and society.

  4. Budapest scientific a guidebook

    CERN Document Server

    Hargittai, István

    2015-01-01

    This guidebook introduces the reader—the scientific tourist and others—to the visible memorabilia of science and scientists in Budapest—statues, busts, plaques, buildings, and other artefacts. According to the Hungarian–American Nobel laureate Albert Szent-Györgyi, this metropolis at the crossroads of Europe has a special atmosphere of respect for science. It has been the venue of numerous scientific achievements and the cradle, literally, of many individuals who in Hungary, and even more beyond its borders became world-renowned contributors to science and culture. Six of the eight chapters of the book cover the Hungarian Nobel laureates, the Hungarian Academy of Sciences, the university, the medical school, agricultural sciences, and technology and engineering. One chapter is about selected gimnáziums from which seven Nobel laureates (Szent-Györgyi, de Hevesy, Wigner, Gabor, Harsanyi, Olah, and Kertész) and the five “Martians of Science” (von Kármán, Szilard, Wigner, von Neumann, and Teller...

  5. Cyber-Enabled Scientific Discovery

    International Nuclear Information System (INIS)

    Chan, Tony; Jameson, Leland

    2007-01-01

    It is often said that numerical simulation is third in the group of three ways to explore modern science: theory, experiment and simulation. Carefully executed modern numerical simulations can, however, be considered at least as relevant as experiment and theory. In comparison to physical experimentation, with numerical simulation one has the numerically simulated values of every field variable at every grid point in space and time. In comparison to theory, with numerical simulation one can explore sets of very complex non-linear equations such as the Einstein equations that are very difficult to investigate theoretically. Cyber-enabled scientific discovery is not just about numerical simulation but about every possible issue related to scientific discovery by utilizing cyberinfrastructure such as the analysis and storage of large data sets, the creation of tools that can be used by broad classes of researchers and, above all, the education and training of a cyber-literate workforce

  6. 78 FR 19004 - Scientific Earthquake Studies Advisory Committee

    Science.gov (United States)

    2013-03-28

    ... Hazards Program. Focus topics for this meeting include induced seismicity, earthquake early warning and... DEPARTMENT OF THE INTERIOR U.S. Geological Survey [GX13GG009950000] Scientific Earthquake Studies... Law 106-503, the Scientific Earthquake Studies Advisory Committee (SESAC) will hold its next meeting...

  7. 48 CFR 935.010 - Scientific and technical reports.

    Science.gov (United States)

    2010-10-01

    ... 48 Federal Acquisition Regulations System 5 2010-10-01 2010-10-01 false Scientific and technical reports. 935.010 Section 935.010 Federal Acquisition Regulations System DEPARTMENT OF ENERGY SPECIAL CATEGORIES OF CONTRACTING RESEARCH AND DEVELOPMENT CONTRACTING 935.010 Scientific and technical reports. (c...

  8. Scientific Production on Open Access: A Worldwide Bibliometric Analysis in the Academic and Scientific Context

    Directory of Open Access Journals (Sweden)

    Sandra Miguel

    2016-01-01

    Full Text Available This research aims to diachronically analyze the worldwide scientific production on open access, in the academic and scientific context, in order to contribute to knowledge and visualization of its main actors. As a method, bibliographical, descriptive and analytical research was used, with the contribution of bibliometric studies, especially the production indicators, scientific collaboration and indicators of thematic co-occurrence. The Scopus database was used as a source to retrieve the articles on the subject, with a resulting corpus of 1179 articles. Using Bibexcel software, frequency tables were constructed for the variables, and Pajek software was used to visualize the collaboration network and VoSViewer for the construction of the keywords’ network. As for the results, the most productive researchers come from countries such as the United States, Canada, France and Spain. Journals with higher impact in the academic community have disseminated the new constructed knowledge. A collaborative network with a few subnets where co-authors are from different countries has been observed. As conclusions, this study allows identifying the themes of debates that mark the development of open access at the international level, and it is possible to state that open access is one of the new emerging and frontier fields of library and information science.

  9. How to respond to referee comments for scientific articles?

    Science.gov (United States)

    Kalemci, Mustafa Serdar; Turna, Burak

    2013-09-01

    Currently, the increasing number of article submissions to scientific journals forces editors to be more selective in their acceptance of papers. Consequently, editors have increased the frequency of their use of scientific referee mechanisms. For many researchers, the publication of a scientific article in a high impact factor journal is a gradual and difficult process. After preparation and submission of a manuscript, one of the most important issue is responding to the comments of referees. However, there is a paucity of published reports in the literature describing how to respond to these comments. The aim of this review is to assist researchers/authors in responding to referee comments as part of the publication process for scientific articles.

  10. An extended dual search space model of scientific discovery learning

    NARCIS (Netherlands)

    van Joolingen, Wouter; de Jong, Anthonius J.M.

    1997-01-01

    This article describes a theory of scientific discovery learning which is an extension of Klahr and Dunbar''s model of Scientific Discovery as Dual Search (SDDS) model. We present a model capable of describing and understanding scientific discovery learning in complex domains in terms of the SDDS

  11. Explaining the Alluring Influence of Neuroscience Information on Scientific Reasoning

    Science.gov (United States)

    Rhodes, Rebecca E.; Rodriguez, Fernando; Shah, Priti

    2014-01-01

    Previous studies have investigated the influence of neuroscience information or images on ratings of scientific evidence quality but have yielded mixed results. We examined the influence of neuroscience information on evaluations of flawed scientific studies after taking into account individual differences in scientific reasoning skills, thinking…

  12. Learning SciPy for numerical and scientific computing

    CERN Document Server

    Silva

    2013-01-01

    A step-by-step practical tutorial with plenty of examples on research-based problems from various areas of science, that prove how simple, yet effective, it is to provide solutions based on SciPy. This book is targeted at anyone with basic knowledge of Python, a somewhat advanced command of mathematics/physics, and an interest in engineering or scientific applications---this is broadly what we refer to as scientific computing.This book will be of critical importance to programmers and scientists who have basic Python knowledge and would like to be able to do scientific and numerical computatio

  13. The German scientific balloon and sounding rocket projects

    International Nuclear Information System (INIS)

    Dalh, A.F.

    1978-01-01

    This report contains information on the sounding rocket projects: experiment preparation for spacelab (astronomy), aeronomy, magnetosphere, and material science. Except for material science the scientific balloon projects are performed in the some scientific fields, but with a strong emphasis on astronomical research. It is tried to provide by means of tables a survey as complete as possible of the projects for the time since the last symposium in Elmau and of the plans for the future until 1981. The scientific balloon and sounding rocket projects form a small succesful part of the German space research programme. (author)

  14. Building scientific institution’s brand with online instruments

    Directory of Open Access Journals (Sweden)

    Barbara Mróz-Gorgoń

    2016-03-01

    Full Text Available The brand image is fundamental for the scientific institution. In the high- competitive market the brand may have a significant impact on students decisions but also the decisions made by other stakeholders. The usage of online tools in creating brands and the brand awareness is standard nowdays and is present in many business strategies. The aim of the article is to present the problem on the example of scientific institutions. Based on literature review and empirical study the authors described the usage of most popular online tools in creating the scientific institutions’ brands.

  15. Scientific Knowledge Management in Socio-environmental Systems Context

    Directory of Open Access Journals (Sweden)

    Luiza Beth Nunes Alonso

    2011-11-01

    Full Text Available This article focuses on the efficiency of scientific knowledge involved in the context of managing a particular socio-environmental as that composed by Amazon. In a first part, we introduce the actual tools used to create and disseminate knowledge among scientists and to stakeholders. In the second part, we give a structural framework, concerning the co-construction of an interdisciplinary scientific knowledge on a specific geographical region. This structural framework, which is as mathematical object "free of context", provides a contextual efficiency of scientific work when it combines multi-disciplinarity, interdisciplinarity and transdisciplinarity.

  16. Strengthening the scientific basis of radiological protection

    International Nuclear Information System (INIS)

    Lazo, Edward

    2016-01-01

    The overarching objective of the radiological protection system is to contribute to an appropriate level of protection against the harmful effects of radiation exposure, without unjustifiably limiting the desired results from the human activity causing exposure. Such a balance is achieved by understanding as best as possible the scientific characteristics of radiation exposure and the related health effects, and by taking this knowledge into consideration when judging which protection decisions will ensure the best balance between social and economic aspects and risks. In general, the existing radiological protection system, on which national regulations are built in virtually every country in the world, works well and does not underestimate protection needs for either individuals or exposed populations as a whole. The latest International Commission on Radiological Protection (ICRP) recommendations, which define this protection system, were formed after a long and open dialogue with the public, where expert views were actively collected and discussed at national, regional and international levels. Although the radiological protection system is very effective, and there is no current need for a prompt revision, it is important nonetheless to keep a watchful eye on the latest scientific results, and to work to ensure that the entire radiological protection community is kept up to date on evolving and emerging scientific issues. In this way, potential or actual scientific changes can be appropriately identified and in turn can stimulate reflection on changes that might be needed in the protection system, in policy, in regulation and in practice. Such reflection should benefit from the input of other scientific disciplines and interested stakeholders. To contribute to this process, the NEA Committee on Radiological Protection and Public Health (CRPPH) has periodically reviewed and released reports on the state of the art in radiological protection science (see NEA

  17. 2004 Annual Scientific Conference. Program and Abstracts

    International Nuclear Information System (INIS)

    Barborica, Andrei; Bulinski, Mircea; Stefan, Sabina

    2005-01-01

    As consequence of a long experience in educational as well as research field the Physics Department of the Bucharest University is offering high-standard undergraduate and graduate programs of higher education in physical sciences. The long-term strategy adopted by the faculty was focused on developing scientific research in modern topics of theoretical, experimental and applied physics as well as in inter-disciplinary fields as biophysics, medical physics, physics and protection of environment, physics-computer science. Following this strategy the Faculty of Physics has diversified the research activity, developing new research laboratories and encouraging the academic community to approach modern and competitive research projects. Every year the Physics Department of the University of Bucharest organizes the 'Annual Scientific Conference' to present the most interesting scientific results, obtained within the department. This 2004 scientific session is opened also to the interested physics researchers from other institutes and universities in the country. This scientific event represents a recognition and a continuation of the prestigious tradition of physics research performed within University. The scientific research in the Physics Department is performed in groups and research centers, the terminal year undergraduate students and graduate students being involved in a high extent in the research works. There are 5 research centers with the status of Center of excellence in research. The long-term strategy adopted by the faculty was focused on developing the scientific research in modern topics of theoretical, experimental and applied physics, as well as in inter-disciplinary fields as biophysics, medical physics, physics and protection of the environment, physics - computer science. Following this strategy, the Faculty of Physics has diversified the research activity, developing new research laboratories and encouraging the academic community to perform modern

  18. 2003 Annual Scientific Conference. Program and Abstracts

    International Nuclear Information System (INIS)

    Barborica, Andrei; Bulinski, Mircea

    2003-01-01

    As consequence of a long experience in educational as well as research field the Physics Department of the Bucharest University is offering high-standard undergraduate and graduate programs of higher education in physical sciences. The long-term strategy adopted by the faculty was focused on developing scientific research in modern topics of theoretical, experimental and applied physics as well as in inter-disciplinary fields as biophysics, medical physics, physics and protection of environment, physics-computer science. Following this strategy the Faculty of Physics has diversified the research activity, developing new research laboratories and encouraging the academic community to approach modern and competitive research projects. Every year the Physics Department of the University of Bucharest organizes the 'Annual Scientific Conference' to present the most interesting scientific results, obtained within the department. This scientific session is opened also to the interested physics researchers from other institutes and universities in the country. This scientific event represents a recognition and a continuation of the prestigious tradition of physics research performed within University. The scientific research in the Physics Department is performed in groups and research centers, the terminal year undergraduate students and graduate students being involved in a high extent in the research works. There are 5 research centers with the status of Center of excellence in research. The long-term strategy adopted by the faculty was focused on developing the scientific research in modern topics of theoretical, experimental and applied physics, as well as in inter-disciplinary fields as biophysics, medical physics, physics and protection of the environment, physics - computer science. Following this strategy, the Faculty of Physics has diversified the research activity, developing new research laboratories and encouraging the academic community to perform modern and

  19. 2002 Annual Scientific Conference. Program and Abstracts

    International Nuclear Information System (INIS)

    Barborica, Andrei; Bulinski, Mircea; Dinca, Mihai P.

    2002-01-01

    As consequence of a long experience in educational as well as research field the Physics Department of the Bucharest University is offering high-standard undergraduate and graduate programs of higher education in physical sciences. The long-term strategy adopted by the faculty was focused on developing scientific research in modern topics of theoretical, experimental and applied physics as well as in inter-disciplinary fields as biophysics, medical physics, physics and protection of environment, physics-computer science. Following this strategy the Faculty of Physics has diversified the research activity, developing new research laboratories and encouraging the academic community to approach modern and competitive research projects. Every year the Physics Department of the University of Bucharest organizes the 'Annual Scientific Conference' to present the most interesting scientific results, obtained within the department. This scientific session is opened also to the interested physics researchers from other institutes and universities in the country. This scientific event represents a recognition and a continuation of the prestigious tradition of physics research performed within University. The scientific research in the Physics Department is performed in groups and research centers, the terminal year undergraduate students and graduate students being involved in a high extent in the research works. There are 5 research centers with the status of Center of excellence in research. The long-term strategy adopted by the faculty was focused on developing the scientific research in modern topics of theoretical, experimental and applied physics, as well as in inter-disciplinary fields as biophysics, medical physics, physics and protection of the environment, physics - computer science. Following this strategy, the Faculty of Physics has diversified the research activity, developing new research laboratories and encouraging the academic community to perform modern and

  20. The logical foundations of scientific theories languages, structures, and models

    CERN Document Server

    Krause, Decio

    2016-01-01

    This book addresses the logical aspects of the foundations of scientific theories. Even though the relevance of formal methods in the study of scientific theories is now widely recognized and regaining prominence, the issues covered here are still not generally discussed in philosophy of science. The authors focus mainly on the role played by the underlying formal apparatuses employed in the construction of the models of scientific theories, relating the discussion with the so-called semantic approach to scientific theories. The book describes the role played by this metamathematical framework in three main aspects: considerations of formal languages employed to axiomatize scientific theories, the role of the axiomatic method itself, and the way set-theoretical structures, which play the role of the models of theories, are developed. The authors also discuss the differences and philosophical relevance of the two basic ways of aximoatizing a scientific theory, namely Patrick Suppes’ set theoretical predicate...