WorldWideScience

Sample records for facing science education

  1. Elementary science education: Dilemmas facing preservice teachers

    Science.gov (United States)

    Sullivan, Sherry Elaine

    Prospective teachers are involved in a process of induction into a culture of teaching that has rules, or codes of conduct for engaging in teaching practice. This same culture of teaching exists within a larger culture of schooling that also has values and norms for behaviors, that over time have become institutionalized. Teacher educators are faced with the challenging task of preparing preservice teachers to resolve dilemmas that arise from conflicts between the pressure to adopt traditional teaching practices of schooling, or to adopt inquiry-based teaching practices from their university methods classes. One task for researchers in teacher education is to define with greater precision what factors within the culture of schooling hinder or facilitate implementation of inquiry-based methods of science teaching in schools. That task is the focus of this study. A qualitative study was undertaken using a naturalistic research paradigm introduced by Lincoln and Guba in 1985. Participant observation, interviews, discourse analysis of videotapes of lessons from the methods classroom and written artifacts produced by prospective teachers during the semester formed the basis of a grounded theory based on inductive analysis and emergent design. Unstructured interviews were used to negotiate outcomes with participants. Brief case reports of key participants were also written. This study identified three factors that facilitated or hindered the prospective teachers in this research success in implementing inquiry-based science teaching in their field placement classrooms: (a) the culture of teaching/teacher role-socialization, (b) the culture of schooling and its resistance to change, and (c) the culture of teacher education, especially in regards to grades and academic standing. Some recommendations for overcoming these persistent obstacles to best practice in elementary science teaching include: (a) preparing prospective teachers to understand and cope with change

  2. The Multiple Faces of Peer Review in Science Education

    Science.gov (United States)

    Tobin, Kenneth

    2002-04-01

    I use autobiographical narratives to describe and analyse my involvement in peer review activities in science education and to illustrate their historical, social and cultural constitution. I explore ways in which peer review and science education have interrelated in 30-plus years in which I have been a science educator. I employ cultural sociology and activity theory to identify patterns of coherence and coexisting contradictions that create tensions able to catalyse improvements in science education. I argue that early career science educators need a gradual induction into peer review activities, preferably increasing their effectiveness by coparticipating with more experienced colleagues. Also, I critically examine my roles as a peer reviewer, within various contexts that include being an editor of journals and a book series, an examiner of dissertations and an advisor of graduate students, and as a reviewer of applications for tenure and promotion. In so doing I probe power relationships between the reviewer and the reviewed and explore the possibility that peer review is hegemonic. Finally, I present strategies for science educators to reach a collective understanding of how to enact peer review equitably.

  3. Democratizing Computer Science Knowledge: Transforming the Face of Computer Science through Public High School Education

    Science.gov (United States)

    Ryoo, Jean J.; Margolis, Jane; Lee, Clifford H.; Sandoval, Cueponcaxochitl D. M.; Goode, Joanna

    2013-01-01

    Despite the fact that computer science (CS) is the driver of technological innovations across all disciplines and aspects of our lives, including participatory media, high school CS too commonly fails to incorporate the perspectives and concerns of low-income students of color. This article describes a partnership program -- Exploring Computer…

  4. Science Education and the Challenges Facing Its Integration into the 21st Century School System in a Globalized World: A Case of Igbo Nation

    Science.gov (United States)

    Ezeudu, F. O.; Nkokelonye, C. U.; Ezeudu, S. A.

    2013-01-01

    This paper is a study of historical foundations of science education in Igboland, its nature and scope as well as the challenges facing its integration into the 21st century school system in a globalized world. The authors found that there were many scientific activities in Igbo culture, but many problems hinder their integration into the basic…

  5. Anatomy Education Faces Challenges in Pakistan

    Science.gov (United States)

    Memon, Ismail K.

    2009-01-01

    Anatomy education in Pakistan is facing many of the same challenges as in other parts of the world. Roughly, a decade ago, all medical and dental colleges in Pakistan emphasized anatomy as a core basic discipline within a traditional medical science curriculum. Now institutions are adopting problem based learning (PBL) teaching philosophies, and…

  6. Continuing Education: Facing the Issues.

    Science.gov (United States)

    Broadbent, Marianne

    1986-01-01

    Examines a number of issues facing the Australian library and information services community in the area of continuing education, including recommendations of the Library Association of Australia, the cost of continuing education activities, the role and responsibility of schools of library and information studies, and notions of coordination.…

  7. Sharing our successes II: Changing the face of science and mathematics education through teacher-focused partnerships

    Energy Technology Data Exchange (ETDEWEB)

    NONE

    1995-07-01

    Industry Initiatives for Science and Math Education (IISME) in the San Francisco Bay Area planned and convened the second national conference for representatives of scientific work experience programs for K-12 teachers (SWEPs) at Lawrence Hall of Science, University of California at Berkeley October 13-14, 1994. The goal of this conference was to further strengthen the growing community of SWEP managers and teacher participants by providing an opportunity for sharing expertise and strategies about the following: (1) How SWEPs can complement and stimulate systemic education reform efforts; (2) Assessment strategies piloted by the ambitious multi-site evaluation project funded by the U.S. Department of Energy (DOE) as well as smaller evaluation projects piloted by other SWEPs; (3) Expanding and strengthening the base of teachers served by SWEPs; (4) Ensuring that SWEPs adequately support teachers in affecting classroom transfer and offer {open_quotes}more than just a summerjob{close_quotes}; (5) Sustaining and expanding new programs. A special teacher strand focused on leadership development supporting teachers to become effective change agents in their classrooms and schools, and developing strong teacher communities.

  8. Science teaching in science education

    Science.gov (United States)

    Callahan, Brendan E.; Dopico, Eduardo

    2016-06-01

    Reading the interesting article Discerning selective traditions in science education by Per Sund , which is published in this issue of CSSE, allows us to open the discussion on procedures for teaching science today. Clearly there is overlap between the teaching of science and other areas of knowledge. However, we must constantly develop new methods to teach and differentiate between science education and teaching science in response to the changing needs of our students, and we must analyze what role teachers and teacher educators play in both. We must continually examine the methods and concepts involved in developing pedagogical content knowledge in science teachers. Otherwise, the possibility that these routines, based on subjective traditions, prevent emerging processes of educational innovation. Modern science is an enormous field of knowledge in its own right, which is made more expansive when examined within the context of its place in society. We propose the need to design educative interactions around situations that involve science and society. Science education must provide students with all four dimensions of the cognitive process: factual knowledge, conceptual knowledge, procedural knowledge, and metacognitive knowledge. We can observe in classrooms at all levels of education that students understand the concepts better when they have the opportunity to apply the scientific knowledge in a personally relevant way. When students find value in practical exercises and they are provided opportunities to reinterpret their experiences, greater learning gains are achieved. In this sense, a key aspect of educational innovation is the change in teaching methodology. We need new tools to respond to new problems. A shift in teacher education is needed to realize the rewards of situating science questions in a societal context and opening classroom doors to active methodologies in science education to promote meaningful learning through meaningful teaching.

  9. Science Teaching in Science Education

    Science.gov (United States)

    Callahan, Brendan E.; Dopico, Eduardo

    2016-01-01

    Reading the interesting article "Discerning selective traditions in science education" by Per Sund, which is published in this issue of "CSSE," allows us to open the discussion on procedures for teaching science today. Clearly there is overlap between the teaching of science and other areas of knowledge. However, we must…

  10. The Challenges Faced by New Science Teachers in Saudi Arabia

    Science.gov (United States)

    Alsharari, Salman

    Growing demand for science teachers in the Kingdom of Saudi Arabia, fed by increasing numbers of public school students, is forcing the Saudi government to attract, recruit and retain well-qualified science teachers. Beginning science teachers enter the educational profession with a massive fullfilment and satisfaction in their roles and positions as teachers to educating children in a science classroom. Nevertheless, teachers, over their early years of practice, encounter numerous challenges to provide the most effective science instruction. Therefore, the current study was aimed to identify academic and behavioral classroom challenges faced by science teachers in their first three years of teaching in the Kingdom of Saudi Arabia. In addition, new science teacher gender, school level and years of teaching experience differences in perceptions of the challenges that they encountered at work were analyzed. The present study also investigated various types of support that new science teachers may need to overcome academic and behavioral classroom challenges. In order to gain insights about ways to adequately support novice science teachers, it was important to examine new science teachers' beliefs, ideas and perceptions about effective science teaching. Three survey questionnaires were developed and distributed to teachers of both sexes who have been teaching science subjects, for less than three years, to elementary, middle and high school students in Al Jouf public schools. A total of 49 novice science teachers responded to the survey and 9 of them agreed to participate voluntarily in a face-to-face interview. Different statistical procedures and multiple qualitative methodologies were used to analyze the collected data. Findings suggested that the top three academic challenges faced by new science teachers were: poor quality of teacher preparation programs, absence of appropriate school equipment and facilities and lack of classroom materials and instructional

  11. Science Education Notes.

    Science.gov (United States)

    School Science Review, 1984

    1984-01-01

    Presents eight separate articles on science education. Topic areas addressed include: an inservice course in primary science; improving physics teaching; reducing chemistry curriculum; textbook readability measures; school-industry link for introductory engineering; local education authority initiatives in primary school science; and "Winnie…

  12. Science in General Education

    Science.gov (United States)

    Read, Andrew F.

    2013-01-01

    General education must develop in students an appreciation of the power of science, how it works, why it is an effective knowledge generation tool, and what it can deliver. Knowing what science has discovered is desirable but less important.

  13. Games in Science Education

    DEFF Research Database (Denmark)

    Magnussen, Rikke

    2014-01-01

    This paper presents a categorisation of science game formats in relation to the educational possibilities or limitations they offer in science education. This includes discussion of new types of science game formats and gamification of science. Teaching with the use of games and simulations...... or representations of knowledge in digital and physical science environments, Use and design of new types of models or tools for scientific inquiry and innovation education....... in science education dates back to the 1970s and early 80s were the potentials of games and simulations was discussed extensively as the new teaching tool ( Ellington et al. , 1981). In the early 90s the first ITC -based games for exploration of science and technical subjects was developed (Egenfeldt...

  14. Science Self-Efficacy of Preservice Teachers in Face-to-Face versus Blended Environments

    Science.gov (United States)

    Knaggs, Christine M.; Sondergeld, Toni A.; Henry, Dawn

    2017-01-01

    Using a quasi-experimental mixed methods concurrent design, this study measured the science self-efficacy of pre-service elementary teachers before and after a survey of science content course. Further, this course was delivered in two different formats: face-to-face and hybrid (approximately 50% online), and compared pre-and post-science…

  15. Remodeling Science Education

    Science.gov (United States)

    Hestenes, David

    2013-01-01

    Radical reform in science and mathematics education is needed to prepare citizens for challenges of the emerging knowledge-based global economy. We consider definite proposals to establish: (1) "Standards of science and math literacy" for all students. (2) "Integration of the science curriculum" with structure of matter,…

  16. Literacy, science, and science education

    Science.gov (United States)

    McVittie, Janet Elizabeth

    In examining the connections between literacy, science and science education, I laid out a number of questions. For example, what sorts of literate tools might facilitate writing to learn, and do children who are just becoming literate use these tools? I then examined the writing of children in science class in an attempt to determine if their writing can indeed facilitate their learning. The results of this research could help teachers make decisions about the use of writing in the learning of science. The kinds of literate tools I identified as being potentially helpful were transitionals---those words or grammatical devices which demonstrate how ideas are connected. Also, I suggested that data tables, sentences and paragraphs were also useful for students to learn. I found that grade 5/6 students used a wide range of literate tools, but that they were much more competent with those tools which were both oral and literate than those which could only be used for writing (punctuation, sentences, paragraphs, and data tables). When I attempted to determine if the children used their writing to learn, I found very little evidence that this was certainly so. However, there was some evidence that paragraphs had the potential to create a "dialogue" between student writing and thinking, so the students could make more explicit connections between science ideas. Lastly, I noticed certain gender difference in the classroom. Because of this, I contrasted the writing of the girls with the writing of the boys. I learned the girls were generally much more capable writers than the boys. More interesting, however, was that the girls generally attempted to explain their science concepts in different ways than did the boys. The girls were more likely to rely on their own reasoning, whereas the boys were more likely to persist in using culturally created science explanations. The research findings have important implications for analyzing students' learning and for finding ways to

  17. Science Education through Informal Education

    Science.gov (United States)

    Kim, Mijung; Dopico, Eduardo

    2016-01-01

    To develop the pedagogic efficiency of informal education in science teaching, promoting a close cooperation between institutions is suggested by Monteiro, Janerine, de Carvalho, and Martins (EJ1102247). In their article, they point out effective examples of how teachers and educators work together to develop programs and activities at informal…

  18. Educational science meets simulation.

    Science.gov (United States)

    Pasquale, Susan J

    2015-03-01

    With the increased use of simulation to teach the knowledge and skills demanded of clinical practice, toward the achievement of optimal patient care outcomes, it becomes increasingly important that clinician educators have fundamental knowledge about educational science and its applications to teaching and learning. As the foremost goal of teaching is to facilitate learning, it is essential that the simulation experience be oriented to the learning process. In order for this to occur, is it necessary for the clinician educator to understand the fundamentals of educational science and theories of education such that they can apply them to teaching and learning in an environment focused on medical simulation. Underscoring the rationale for the fundamentals of educational science to be applied to the simulation environment, and to work in tandem with simulation, is the importance that accurate and appropriate information is retained and applied toward establishing competence in essential practice-based skills and procedures.

  19. Globalization and Science Education

    Science.gov (United States)

    Bencze, J. Lawrence; Carter, Lyn; Chiu, Mei-Hung; Duit, Reinders; Martin, Sonya; Siry, Christina; Krajcik, Joseph; Shin, Namsoo; Choi, Kyunghee; Lee, Hyunju; Kim, Sung-Won

    2013-06-01

    Processes of globalization have played a major role in economic and cultural change worldwide. More recently, there is a growing literature on rethinking science education research and development from the perspective of globalization. This paper provides a critical overview of the state and future development of science education research from the perspective of globalization. Two facets are given major attention. First, the further development of science education as an international research domain is critically analyzed. It seems that there is a predominance of researchers stemming from countries in which English is the native language or at least a major working language. Second, the significance of rethinking the currently dominant variants of science instruction from the perspectives of economic and cultural globalization is given major attention. On the one hand, it is argued that processes concerning globalization of science education as a research domain need to take into account the richness of the different cultures of science education around the world. At the same time, it is essential to develop ways of science instruction that make students aware of the various advantages, challenges and problems of international economic and cultural globalization.

  20. Face of America Character Education Curriculum.

    Science.gov (United States)

    World T.E.A.M. Sports, Charlotte, NC.

    This document presents a description of the Face of America Classroom Program, a character education program based on a mission to bridge and build communities through sports. Three language arts lesson plans are provided on three themes: achievement, stereotypes (especially of people with disabilities), and strategies for healthy minds and…

  1. Citizenship and Science Education.

    Science.gov (United States)

    Bybee, Rodger W.

    1982-01-01

    Discusses purposes and policies of science education, including present growth trends and the resulting problems of human ecological scarcity, global nature of these problems, and the need for a global response to alter current trends. Emphasizes the role of science/technology in the amelioration of global problems. (Author/JN)

  2. Cognitive Science and Education.

    Science.gov (United States)

    Glaser, Robert

    1988-01-01

    States that renewed research on the processes of learning and teaching is necessary if all children are expected to meet high standards of educational performance. Discusses cognitive science, a federation of psychology, linguistics, and computer science which offers a reconceptualization of the nature of the learning process and new approaches to…

  3. Exploring face-to-face and Web-based pedagogy in undergraduate natural resource sciences

    Science.gov (United States)

    Mbabaliye, Theogene

    Little has been published about Internet instruction compared to traditional classroom teaching in undergraduate natural resource science (NRS) education. This study hypothesized associations between teaching environments (face-to-face only (FF), Web only (WE), mixed mode (MI)); and teaching philosophy, practices, and perceived course outcomes. A questionnaire was sent to 142 faculty members with experience teaching in these environments in Western US. Sixty percent responded. Data were analyzed using factor analysis and multivariate statistics. Only statistically significant differences are presented. Most respondents were male (68%) 50-59 years old (80%) and tenured (74%). Overall, Web-based instruction was not seen as equivalent to face to face instruction. Adoption of the Internet for teaching was beyond critical mass. Most faculty members ranked their ability to use the Internet as average (27%) or expert (22%). Faculty rarely perceived students' learning experience in a WE course as "better" than FF. Web-based courses were not usually required of majors in the offering department. Faculty age, gender and experience are significant variables in use of some teaching practices. Faculty members who used the Internet favored a constructivist teaching philosophy, while FF and MI instruction tended towards a behaviorist philosophy. Respondents' most frequent teaching practices addressed connections, collaboration, meaning making, and learner autonomy. Collaborative teaching strategies were seldom used in Web-based instruction relative to FF. Learning assessments focused on learner interactions, efforts (individual or groups), and recall. The latter assessment was used less on the Web. Respondents viewed effective teaching in all teaching environments as achieving competency and application of knowledge. Personal experience, resource availability, and feedback were the most important influences on teaching. Resource availability constrained Internet instruction most

  4. Science education through informal education

    Science.gov (United States)

    Kim, Mijung; Dopico, Eduardo

    2016-06-01

    To develop the pedagogic efficiency of informal education in science teaching, promoting a close cooperation between institutions is suggested by Monteiro, Janerine, de Carvalho, and Martins. In their article, they point out effective examples of how teachers and educators work together to develop programs and activities at informal education places such as science museums. Their study explored and discussed the viability and relevancy of school visits to museums and possibilities to enhance the connection between students' visits in informal contexts and their learning in schools. Given that students learn science by crossing the boundaries of formal and informal learning contexts, it is critical to examine ways of integrated and collaborative approach to develop scientific literacy to help students think, act and communicate as members of problem solving communities. In this forum, we suggest the importance of students' lifeworld contexts in informal learning places as continuum of Monteiro, Janerine, de Carvalho, and Martins' discussion on enhancing the effectiveness of informal learning places in science education.

  5. Humanizing science education

    Science.gov (United States)

    Donnelly, James F.

    2004-09-01

    This paper argues that the diverse curriculum reform agendas associated with science education are strongly and critically associated with the educational characteristics of the humanities. The article begins with a survey of interpretations of the distinctive contribution which the humanities make to educational purposes. From this survey four general characteristics of the humanities are identified: an appeal to an autonomous self with the right and capacity to make independent judgements and interpretations; indeterminacy in the subject matter of these judgements and interpretations; a focus on meaning, in the context of human responses, actions, and relationships, and especially on the ethical, aesthetic, and purposive; and finally, the possibility of commonality in standards of judgement and interpretation, under conditions of indeterminacy. Inquiry and science technology and society (STS) orientated curriculum development agendas within science education are explored in the light of this analysis. It is argued that the four characteristics identified are central to the educational purposes of these and other less prominent modes of curriculum development in science, though not unproblematically so. In the light of this discussion the prognosis and challenges for science curriculum development are explored.

  6. Science Fiction and Science Education.

    Science.gov (United States)

    Cavanaugh, Terence

    2002-01-01

    Uses science fiction films such as "Jurassic Park" or "Anaconda" to teach science concepts while fostering student interest. Advocates science fiction as a teaching tool to improve learning and motivation. Describes how to use science fiction in the classroom with the sample activity Twister. (YDS)

  7. Science Fiction and Science Education.

    Science.gov (United States)

    Cavanaugh, Terence

    2002-01-01

    Uses science fiction films such as "Jurassic Park" or "Anaconda" to teach science concepts while fostering student interest. Advocates science fiction as a teaching tool to improve learning and motivation. Describes how to use science fiction in the classroom with the sample activity Twister. (YDS)

  8. Science education standards

    Energy Technology Data Exchange (ETDEWEB)

    Alberts, B.

    1994-12-31

    This paper describes the National Science Education Standards that are being developed at the National Research Council. The Standards are being developed for the following areas: content, teaching, assessment, program, and system. The national science standards will call for the kind of science that provides both an understanding of the basic concepts needed for success in our high technology society, and the acquisition of process skills, or the ability to proceed step by step to solve a practical problem. Science should become a core subject like reading, writing and math in grades K-12. At all levels, the material taught should be interesting, both to students and to teachers. The profession of science teaching must become an attractive one, which is possible to do well without superhuman effort. The scientific community must accept responsibility for achieving these goals.

  9. Rural Science Education Program

    Energy Technology Data Exchange (ETDEWEB)

    Intress, C. [New Mexico Museum of Natural History and Science, Albuquerque, NM (United States)

    1994-12-31

    The Rural Science Education Project is an outreach program of the New Mexico Museum of Natural History and Science with the goal of helping rural elementary schools improve science teaching and learning by using local natural environmental resources. This program is based on the assumption that rural schools, so often described as disadvantaged in terms of curricular resources, actually provide a science teaching advantage because of their locale. The natural environment of mountains, forests, ponds, desert, or fields offers a context for the study of scientific concepts and skills that appeals to many youngsters. To tap these resources, teachers need access to knowledge about the rural school locality`s natural history. Through a process of active participation in school-based workshops and field site studies, teachers observe and learn about the native flora, fauna, geology, and paleontology of their community. In addition, they are exposed to instructional strategies, activities, and provided with materials which foster experimential learning. This school-museum partnership, now in its fifth year, has aided more than 800 rural teachers` on-going professional development. These educators have, in turn, enhanced science education throughout New Mexico for more than 25,000 students.

  10. Activating social strategies: Face-to-face interaction in technology-mediated citizen science.

    Science.gov (United States)

    Cappa, Francesco; Laut, Jeffrey; Nov, Oded; Giustiniano, Luca; Porfiri, Maurizio

    2016-11-01

    The use of crowds in research activities by public and private organizations is growing under different forms. Citizen science is a popular means of engaging the general public in research activities led by professional scientists. By involving a large number of amateur scientists, citizen science enables distributed data collection and analysis on a scale that would be otherwise difficult and costly to achieve. While advancements in information technology in the past few decades have fostered the growth of citizen science through online participation, several projects continue to fail due to limited participation. Such web-based projects may isolate the citizen scientists from the researchers. By adopting the perspective of social strategy, we investigate within a measure-manipulate-measure experiment if motivations to participate in a citizen science project can be positively influenced by a face-to-face interaction with the scientists leading the project. Such an interaction provides the participants with the possibility of asking questions on the spot and obtaining a detailed explanation of the citizen science project, its scientific merit, and environmental relevance. Social and cultural factors that moderate the effect brought about by face-to-face interactions on the motivations are also dissected and analyzed. Our findings provide an exploratory insight into a means for motivating crowds to participate in online environmental monitoring projects, also offering possible selection criteria of target audience.

  11. Issues in Science Education: Changing Purposes of Science Education.

    Science.gov (United States)

    Williamson, Stan

    This paper addresses the role of science education in today's society and the objectives of instruction in science. Observing that science cannot solve all of the problems of the world, and that science education has had little effect on the willingness of the general public to accept superstitions, the author argues that instructional approaches…

  12. Science Education in Arab States: Bright Future or Status Quo?

    Science.gov (United States)

    Dagher, Zoubeida R.; BouJaoude, Saouma

    2011-01-01

    This paper describes the current state of science education in Arab states and anticipates some of the challenges faced by those states as they reform their science education. After discussing problems of illiteracy, access and quality we provide contextual information about the structure of the educational systems and describe recent efforts to…

  13. Earth Science Education in Sudan

    Science.gov (United States)

    Abdullatif, Osman M.; Farwa, Abdalla G.

    1999-05-01

    This paper describes Earth Science Education in Sudan, with particular emphasis on the University of Khartoum. The first geological department in Sudan was founded in 1958 in the University of Khartoum. In the 1980s, six more geological departments have been added in the newer universities. The types of courses offered include Diploma, B.Sc. (General), B.Sc. (Honours), M.Sc. and Ph.D. The Geology programmes are strongly supported by field work training and mapping. Final-year students follow specialised training in one of the following topics: hydrogeology, geophysics, economic geology, sedimentology and engineering geology. A graduation report, written in the final year, represents 30-40% of the total marks. The final assessment and grading are decided with the help of internal and external examiners. Entry into the Geology programmes is based on merit and performance. The number of students who graduate with Honours and become geologists is between 20% to 40% of the initial intake at the beginning of the second year. Employment opportunities are limited and are found mainly in the Government's geological offices, the universities and research centres, and private companies. The Department of Geology at the University of Khartoum has long-standing internal and external links with outside partners. This has been manifested in the training of staff members, the donation of teaching materials and laboratory facilities. The chief problems currently facing Earth Science Education in Sudan are underfunding, poor equipment, laboratory facilities and logistics. Other problems include a shortage of staff, absence of research, lack of supervision and emigration of staff members. Urgent measures are needed to assess and evaluate the status of Earth Science Education in terms of objectives, needs and difficulties encountered. Earth Science Education is expected to contribute significantly to the exploitation of mineral resources and socio-economic development in the Sudan.

  14. Augmented Reality for Science Education

    DEFF Research Database (Denmark)

    Brandt, Harald; Nielsen, Birgitte Lund; Georgsen, Marianne

    2015-01-01

    Augmented reality (AR) holds great promise as a learning tool. So far, however, most research has looked at the technology itself – and AR has been used primarily for commercial purposes. As a learning tool, AR supports an inquiry-based approach to science education with a high level of student...... involvement. The AR-sci-project (Augmented Reality for SCIence education) addresses the issue of applying augmented reality in developing innovative science education and enhancing the quality of science teaching and learning....

  15. Augmented Reality for Science Education

    DEFF Research Database (Denmark)

    Brandt, Harald; Nielsen, Birgitte Lund; Georgsen, Marianne

    Augmented reality (AR) holds great promise as a learning tool. So far, however, most research has looked at the technology itself – and AR has been used primarily for commercial purposes. As a learning tool, AR supports an inquiry-based approach to science education with a high level of student...... involvement. The AR-sci-project (Augmented Reality for SCIence education) addresses the issue of applying augmented reality in developing innovative science education and enhancing the quality of science teaching and learning....

  16. Teaching Science in the early years of primary education from the perspective STS: a work proposal facing the technological artifacts that guide the daily lives of students

    Directory of Open Access Journals (Sweden)

    Fabiane Fabri

    2013-05-01

    Full Text Available This article presents the results of a study with sixteen students of 2nd year 2nd cycle of the early years of the School Municipal Network of the city of Ponta Grossa in relation to the technological artifacts of everyday life. The study objective was to provide students with a scientific and technological literacy, an approach STS (Science, Technology and Society, starting from the main theme proposed by Resources Technology proposed by the National Curriculum in Sciences. The methodological approach was qualitative interpretative with participant observation. Among the organized activities can be mentioned: a visit to a recycling cooperative, interview with a scientist, presentations, mini-lessons for students, making folders, written productions, as well as a Technology Fair where students made presentations to the community school and parents. At the end of the study, it was noticed that students already could make reflections on social issues of scientific and technological development, but we emphasize the need to continue these discussions taking place during their school life, since it is believed that only this way the reflective stance on Science and Technology will be internalized. Please note that these are data of a dissertation in the Graduate Program in Teaching Science and Technology of the Technological Federal University of Paraná, Campus Ponta Grossa (UTFPR, Brazil.

  17. Is Religious Education Compatible with Science Education?

    Science.gov (United States)

    Mahner, Martin; Bunge, Mario

    1996-01-01

    Addresses the problem of the compatibility of science and religion, and its bearing on science and religious education, challenges the popular view that science and religion are compatible or complementary. Discusses differences at the doctrinal, metaphysical, methodological, and attitudinal levels. Argues that religious education should be kept…

  18. Augmented Reality in Science Education

    DEFF Research Database (Denmark)

    Nielsen, Birgitte Lund; Brandt, Harald; Swenson, Hakon

    2015-01-01

    and challenges related to AR enhancing student learning in science in lower secondary school were identified by expert science teachers, ICT designers and science education researchers from four countries in a Delphi survey. Findings were condensed in a framework to categorize educational AR designs....

  19. Computer Science Education in China.

    Science.gov (United States)

    Yun-Lin, Su

    1988-01-01

    Describes the history of computer science departments at universities in China. Educational principles that characterize Chinese computer science education are discussed, selection of students for universities is described, and curricula for both undergraduate and graduate computer science studies are outlined. (LRW)

  20. Computer Science Education in China.

    Science.gov (United States)

    Yun-Lin, Su

    1988-01-01

    Describes the history of computer science departments at universities in China. Educational principles that characterize Chinese computer science education are discussed, selection of students for universities is described, and curricula for both undergraduate and graduate computer science studies are outlined. (LRW)

  1. Learner-Centered Teaching Style: Comparing Face-to-Face and Online Adult Educators' Commitment Levels

    Science.gov (United States)

    Edwards, Shanda E.

    2013-01-01

    For at least 50 years, prominent adult learning theorists have recommended that adult educators commit to a learner-centered teaching approach. Extensive teaching styles research has been conducted on face-to-face and online adult educators, albeit separately, to examine their commitment levels to the learner-centered style. In addition, there has…

  2. Learner-Centered Teaching Style: Comparing Face-to-Face and Online Adult Educators' Commitment Levels

    Science.gov (United States)

    Edwards, Shanda E.

    2013-01-01

    For at least 50 years, prominent adult learning theorists have recommended that adult educators commit to a learner-centered teaching approach. Extensive teaching styles research has been conducted on face-to-face and online adult educators, albeit separately, to examine their commitment levels to the learner-centered style. In addition, there has…

  3. Environmental Education: New Era for Science Education.

    Science.gov (United States)

    Taskin, Ozgur

    This paper presents the history of environmental education with regard to major issues, theories, and goals; environmental education in science education curriculum; and inquiry-based approaches. An example for environmental education curriculum content and an example inquiry laboratory for environmental education are included. (KHR)

  4. Education in space science

    Science.gov (United States)

    Philbrick, C. Russell

    2005-08-01

    The educational process for teaching space science has been examined as a topic at the 17th European Space Agency Symposium on European Rocket and Balloon, and Related Research. The approach used for an introductory course during the past 18 years at Penn State University is considered as an example. The opportunities for using space science topics to motivate the thinking and efforts of advanced undergraduate and beginning graduate students are examined. The topics covered in the introductory course are briefly described in an outline indicating the breath of the material covered. Several additional topics and assignments are included to help prepare the students for their careers. These topics include discussions on workplace ethics, project management, tools for research, presentation skills, and opportunities to participate in student projects.

  5. Antonio Gramsci, Education and Science

    Science.gov (United States)

    Balampekou, Matina; Floriotis, Georgis

    2012-01-01

    This paper explores how the ideas of a great political thinker and philosopher Antonio Gramsci, are relevant to education and science and to critical science education. One of the main points in Gramsci's analysis is the social value and impact of certain aspects of the superstructure. He understands that education is a means which can be used for…

  6. Nevada Underserved Science Education Program

    Energy Technology Data Exchange (ETDEWEB)

    Nicole Rourke; Jason Marcks

    2004-07-06

    Nevada Underserved Science Education Program (NUSEP) is a project to examine the effect of implementing new and innovative Earth and space science education curriculum in Nevada schools. The project provided professional development opportunities and educational materials for teachers participating in the program.

  7. A Variety of Diversity: Facing Higher Education's Educational Challenges

    Science.gov (United States)

    Dey, Eric L.

    2008-10-01

    First among the many important challenges facing American higher education is the need to improve the effectiveness of our educational programs. Public concern has heightened the sense of urgency for colleges and universities to make progress on improving and measuring educational outcomes, which is made more challenging by the varieties of diversity facing us. Diversity is not just an issue related to student recruitment or experience, but rather it is one that also relates to institutions and their faculties. New educational methods must address such diversity to be effective, and one possible example can be found in ongoing research at the University of Michigan that explores the educational implications of implementing a web-based lecture capture system in large lecture courses. Student use of and reactions to such systems is important, as is the potential to influence course performance for students in general, but also for underrepresented and at-risk student subpopulations. In addition to helping bring our current landscape into focus, this paper will identify effective practices as well as continuing challenges to improving educational practice for undergraduate students.

  8. Globalisation and science education: Rethinking science education reforms

    Science.gov (United States)

    Carter, Lyn

    2005-05-01

    Like Lemke (J Res Sci Teach 38:296-316, 2001), I believe that science education has not looked enough at the impact of the changing theoretical and global landscape by which it is produced and shaped. Lemke makes a sound argument for science education to look beyond its own discourses toward those like cultural studies and politics, and to which I would add globalisation theory and relevant educational studies. Hence, in this study I draw together a range of investigations to argue that globalisation is indeed implicated in the discourses of science education, even if it remains underacknowledged and undertheorized. Establishing this relationship is important because it provides different frames of reference from which to investigate many of science education's current concerns, including those new forces that now have a direct impact on science classrooms. For example, one important question to investigate is the degree to which current science education improvement discourses are the consequences of quality research into science teaching and learning, or represent national and local responses to global economic restructuring and the imperatives of the supranational institutions that are largely beyond the control of science education. Developing globalisation as a theoretical construct to help formulate new questions and methods to examine these questions can provide science education with opportunities to expand the conceptual and analytical frameworks of much of its present and future scholarship.

  9. Can face-to-face patient education be replaced by computer-based patient education? A randomised trial.

    NARCIS (Netherlands)

    Keulers, B.J.; Welters, C.F.; Spauwen, P.H.M.; Houpt, P.

    2007-01-01

    OBJECTIVE: Computer-based patient education is an effective (therapeutic) tool. More and more studies prove that it can be an effective additive for face-to-face education, but it is still unclear if it is possible to educate patients by only using a computer. Our objective was to compare knowledge

  10. Can face-to-face patient education be replaced by computer-based patient education? A randomised trial

    NARCIS (Netherlands)

    Keulers, Bram J.; Welters, Carlo F. M.; Spauwen, Paul H. M.; Houpt, Peter

    2007-01-01

    Objective: Computer-based patient education is an effective (therapeutic) tool. More and more studies prove that it can be an effective additive for face-to-face education, but it is still unclear if it is possible to educate patients by only using a computer. Our objective was to compare knowledge

  11. Face to face interventions for informing or educating parents about early childhood vaccination.

    Science.gov (United States)

    Kaufman, Jessica; Synnot, Anneliese; Ryan, Rebecca; Hill, Sophie; Horey, Dell; Willis, Natalie; Lin, Vivian; Robinson, Priscilla

    2013-05-31

    Childhood vaccination (also described as immunisation) is an important and effective way to reduce childhood illness and death. However, there are many children who do not receive the recommended vaccines because their parents do not know why vaccination is important, do not understand how, where or when to get their children vaccinated, disagree with vaccination as a public health measure, or have concerns about vaccine safety.Face to face interventions to inform or educate parents about routine childhood vaccination may improve vaccination rates and parental knowledge or understanding of vaccination. Such interventions may describe or explain the practical and logistical factors associated with vaccination, and enable parents to understand the meaning and relevance of vaccination for their family or community. To assess the effects of face to face interventions for informing or educating parents about early childhood vaccination on immunisation uptake and parental knowledge. We searched the Cochrane Central Register of Controlled Trials (CENTRAL) (The Cochrane Library 2012, Issue 7); MEDLINE (OvidSP) (1946 to July 2012); EMBASE + Embase Classic (OvidSP) (1947 to July 2012); CINAHL (EbscoHOST) (1981 to July 2012); PsycINFO (OvidSP) (1806 to July 2012); Global Health (CAB) (1910 to July 2012); Global Health Library (WHO) (searched July 2012); Google Scholar (searched September 2012), ISI Web of Science (searched September 2012) and reference lists of relevant articles. We searched for ongoing trials in The International Clinical Trials Registry Platform (ICTRP) (searched August 2012) and for grey literature in The Grey Literature Report and OpenGrey (searched August 2012). We also contacted authors of included studies and experts in the field. There were no language or date restrictions. Randomised controlled trials (RCTs) and cluster RCTs evaluating the effects of face to face interventions delivered to individual parents or groups of parents to inform or educate

  12. Lessons from forest FACE experiments provide guidance for Amazon-FACE science plan (Invited)

    Science.gov (United States)

    Norby, R. J.; Lapola, D. M.

    2013-12-01

    Free-air CO2 enrichment (FACE) experiments have provided novel insights into the ecological mechanisms controlling the cycling and storage of carbon in terrestrial ecosystems, and they provide a strong foundation for next-generation experiments in unexplored biomes. Specific lessons from FACE experiments include: (1) Carbon cycle responses are time-dependent because component processes have different rate constants: for example, net primary productivity is increased by elevated CO2, but the response may diminish with time as N cycling feedbacks become important. (2) Carbon partitioning patterns determine the fate of the extra C taken up by CO2-enriched plants, but partitioning responses remain an important challenge for ecosystem models. (3) The influence of N cycling on plant and ecosystem C cycling continues to be a critical uncertainty, and new experiments, especially in the tropics, must also consider P cycling. (4) Plant community structure can influence the ecosystem response to elevated CO2, but dynamic vegetation effects have not been adequately addressed. These experiences from FACE experiments in temperate forests are now guiding the development of a science plan for a FACE experiment in Amazonia. Models and small-scale experimental results agree that elevated CO2 will affect the metabolism of tropical ecosystems, but the qualitative and quantitative expression of the effects are largely unknown, representing a major source of uncertainty that limits our capacity to assess the vulnerability of the Amazon forest to climate change. Recognizing the high importance of the forests of the Amazon basin on global carbon, water, and energy cycles, biodiversity conservation, and the provision of essential services in Latin America, a consortium of Brazilian researchers and international collaborators have developed a science plan for Amazon-FACE. While the challenges presented both by infrastructure needs (roads, electricity, and provision of CO2) and biology (the

  13. [Educational science, 'the hardest science of all'].

    Science.gov (United States)

    van Tartwijk, J; Driessen, E W; van der Vleuten, C P M; Wubbels, T

    2012-06-01

    Educational research not only showed that student characteristics are of major importance for study success, but also that education does make a difference. Essentially, teaching is about stimulating students to invest time in learning and to use that time as effectively as possible. Assessment, goal-orientated work, and feedback have a major effect. The teacher is the key figure. With the aim to better understand teaching and learning, educational researchers usefindingsfrom other disciplines more and more often. A pitfall is to apply the findings of educational research without taking into consideration the context and the specific characteristics of students and teachers. Because of the large number offactors that influence the results ofeducation, educational science is referred as 'the hardest science of all'.

  14. Desettling Expectations in Science Education

    Science.gov (United States)

    Bang, M.; Warren, B.; Rosebery, A. S.; Medin, D.

    2012-01-01

    Calls for the improvement of science education in the USA continue unabated, with particular concern for the quality of learning opportunities for students from historically nondominant communities. Despite many and varied efforts, the field continues to struggle to create robust, meaningful forms of science education. We argue that "settled…

  15. Blended Learning Improves Science Education.

    Science.gov (United States)

    Stockwell, Brent R; Stockwell, Melissa S; Cennamo, Michael; Jiang, Elise

    2015-08-27

    Blended learning is an emerging paradigm for science education but has not been rigorously assessed. We performed a randomized controlled trial of blended learning. We found that in-class problem solving improved exam performance, and video assignments increased attendance and satisfaction. This validates a new model for science communication and education.

  16. Science Education Notes.

    Science.gov (United States)

    School Science Review, 1987

    1987-01-01

    Provides perspectives and background information on selected aspects of science instruction. Addresses concerns related to physics teaching, academic assessment, problem-solving, integrated science, readability, college science for pre-nursing students, and a graded assessment scheme. (ML)

  17. Science Education After Dainton

    Science.gov (United States)

    Keohane, Kevin

    1969-01-01

    The Dainton committee indicated that science must not be directed simply at the committed students. Curriculum changes, including those related to teaching science as a unity, could have a profound effect in making science more attractive and relevant. (JK)

  18. Training versus Education: eLearning, Hybrid, and Face-to-Face Modalities - a Participatory Debate

    Directory of Open Access Journals (Sweden)

    Risa Blair

    2016-10-01

    Full Text Available Is training education or is education training? Universities and organizations treat training and education synonymously, but it is worth exploring the differences. Universities are scrambling to standardize a preferred delivery method of education and training. With the blended modalities of eLearning, face-to-face, and hybrid learning, the educational delivery seems to be equalizing. The disruptive shift with technology in education or training is complicated by the expectations of our millennial, Gen Y, and Gen Z students. As an added pressure at the university level, even more importantly, the expectation of the administration and the accrediting bodies keep changing the 'play book' on requirements. Given the ever changing complexities of today's paradigm-shift in education and learning, we explored the complexities of navigating the delivery methods to achieve educational goals in higher education or training goals in corporate America.

  19. Science and religion: implications for science educators

    Science.gov (United States)

    Reiss, Michael J.

    2010-03-01

    A religious perspective on life shapes how and what those with such a perspective learn in science; for some students a religious perspective can hinder learning in science. For such reasons Staver's article is to be welcomed as it proposes a new way of resolving the widely perceived discord between science and religion. Staver notes that Western thinking has traditionally postulated the existence and comprehensibility of a world that is external to and independent of human consciousness. This has led to a conception of truth, truth as correspondence, in which our knowledge corresponds to the facts in this external world. Staver rejects such a conception, preferring the conception of truth as coherence in which the links are between and among independent knowledge claims themselves rather than between a knowledge claim and reality. Staver then proposes constructivism as a vehicle potentially capable of resolving the tension between religion and science. My contention is that the resolution between science and religion that Staver proposes comes at too great a cost—both to science and to religion. Instead I defend a different version of constructivism where humans are seen as capable of generating models of reality that do provide richer and more meaningful understandings of reality, over time and with respect both to science and to religion. I argue that scientific knowledge is a subset of religious knowledge and explore the implications of this for science education in general and when teaching about evolution in particular.

  20. Multicultural Science Education and Curriculum Materials

    Science.gov (United States)

    Atwater, Mary M.

    2010-01-01

    This article describes multicultural science education and explains the purposes of multicultural science curricula. It also serves as an introductory article for the other multicultural science education activities in this special issue of "Science Activities".

  1. FACE-IT. A Science Gateway for Food Security Research

    Energy Technology Data Exchange (ETDEWEB)

    Montella, Raffaele [Univ. of Naples Federico II (Italy); Argonne National Lab. (ANL), Argonne, IL (United States); Univ. of Chicago, IL (United States); Kelly, David [Argonne National Lab. (ANL), Argonne, IL (United States); Univ. of Chicago, IL (United States); Xiong, Wei [Univ. of Florida, Gainesville, FL (United States); Brizius, Alison [Argonne National Lab. (ANL), Argonne, IL (United States); Univ. of Chicago, IL (United States); Elliott, Joshua [Argonne National Lab. (ANL), Argonne, IL (United States); Univ. of Chicago, IL (United States); Madduri, Ravi [Argonne National Lab. (ANL), Argonne, IL (United States); Univ. of Chicago, IL (United States); Maheshwari, Ketan [Argonne National Lab. (ANL), Argonne, IL (United States); Porter, Cheryl [Univ. of Florida, Gainesville, FL (United States); Vilter, Peter [Argonne National Lab. (ANL), Argonne, IL (United States); Wilde, Michael [Argonne National Lab. (ANL), Argonne, IL (United States); Univ. of Chicago, IL (United States); Zhang, Meng [Univ. of Florida, Gainesville, FL (United States); Foster, Ian [Argonne National Lab. (ANL), Argonne, IL (United States); Univ. of Chicago, IL (United States)

    2015-07-14

    Progress in sustainability science is hindered by challenges in creating and managing complex data acquisition, processing, simulation, post-processing, and intercomparison pipelines. To address these challenges, we developed the Framework to Advance Climate, Economic, and Impact Investigations with Information Technology (FACE-IT) for crop and climate impact assessments. This integrated data processing and simulation framework enables data ingest from geospatial archives; data regridding, aggregation, and other processing prior to simulation; large-scale climate impact simulations with agricultural and other models, leveraging high-performance and cloud computing; and post-processing to produce aggregated yields and ensemble variables needed for statistics, for model intercomparison, and to connect biophysical models to global and regional economic models. FACE-IT leverages the capabilities of the Globus Galaxies platform to enable the capture of workflows and outputs in well-defined, reusable, and comparable forms. We describe FACE-IT and applications within the Agricultural Model Intercomparison and Improvement Project and the Center for Robust Decision-making on Climate and Energy Policy.

  2. Multiculturalism, universalism, and science education

    Science.gov (United States)

    Stanley, William B.; Brickhouse, Nancy W.

    Multiculturalists have recently raised a number of important challenges to the school curriculum, including whose knowledge are we teaching? and who benefits and loses by existing approaches to the curriculum? In this article we examine a number of issues in this debate that are of primary importance to science educators. These issues include: (1) problems with the universalist account of the nature of science that has been the most powerful defense against multiculturalism; (2) an examination of some historical cases that illuminate the consequences of maintaining a universalist perspective on science; and (3) an argument for a multicultural perspective on scientific knowledge. These issues are examined in the context of a national science education reform in which there is considerable consensus that the science curriculum should include teaching about the nature of science. We argue that the nature of science taught in school should reflect a multicultural perspective on scientific knowledge.

  3. Unmasking: On Violence, Masculinity, and Superheroes in Science Education

    Science.gov (United States)

    Broadway, Francis S.; Leafgren, Sheri L.

    2012-01-01

    Through exploration of public mask/private face, the authors trouble violence and its role in science education through three media: schools, masculinity, and science acknowledging a violence of hate, but dwelling on a violence of caring. In schools, there is the poisonous "for your own good" pedagogy that becomes a "for your own good" curriculum…

  4. Business involvement in science education

    Energy Technology Data Exchange (ETDEWEB)

    Winter, P. [General Atomics, San Diego, CA (United States)

    1995-12-31

    Science and math education in grades K through 12 directly affects America`s ability to meet tomorrow`s challenges. If America is to stay competitive in the world, we will need highly qualified scientists and engineers in industry and government and at universities. Jobs of the future will require greater technical and mathematical literacy than jobs of the past. Our goal is both to improve the quality of science education and to encourage more students to pursue science careers. General Atomics, a privately held research and development company, has joined the growing list of businesses that are committed to helping educators prepare students to meet these challenges.

  5. Preparing informal science educators perspectives from science communication and education

    CERN Document Server

    2017-01-01

    This book provides a diverse look at various aspects of preparing informal science educators. Much has been published about the importance of preparing formal classroom educators, but little has been written about the importance, need, and best practices for training professionals who teach in aquariums, camps, parks, museums, etc. The reader will find that as a collective the chapters of the book are well-related and paint a clear picture that there are varying ways to approach informal educator preparation, but all are important. The volume is divided into five topics: Defining Informal Science Education, Professional Development, Designing Programs, Zone of Reflexivity: The Space Between Formal and Informal Educators, and Public Communication. The authors have written chapters for practitioners, researchers and those who are interested in assessment and evaluation, formal and informal educator preparation, gender equity, place-based education, professional development, program design, reflective practice, ...

  6. Is religious education compatible with science education?

    Science.gov (United States)

    Mahner, Martin; Bunge, Mario

    1996-04-01

    This paper tackles a highly controversial issue: the problem of the compatibility of science and religion, and its bearing on science and religious education respectively. We challenge the popular view that science and religion are compatible or even complementary. In order to do so, we give a brief characterization of our conceptions of science and religion. Conspicuous differences at the doctrinal, metaphysical, methodological and attitudinal level are noted. Regarding these aspects, closer examination reveals that science and religion are not only different but in fact incompatible. Some consequences of our analysis for education as well as for education policy are explored. We submit that a religious education, particularly at an early age, is an obstacle to the development of a scientific mentality. For this and other reasons, religious education should be kept away from public schools and universities. Instead of promoting a religious world view, we should teach our children what science knows about religion, i.e., how science explains the existence of religion in historical, biological, psychological and sociological terms.

  7. Problems with German Science Education

    Science.gov (United States)

    Riess, Falk

    The main problems of science (especially physics) teaching in Germany are students'' lack of interest and motivation in the subject, their poor understanding of scientific concepts, ideas, methods,and results, and their lack of comprehension of the social, political, and epistemological role of science. These circumstances result in a growing `scientific illiteracy'' of the population and adecline in democratic quality concerning decision making processes about scientific and technological projects. One means of improving this situation lies in the use of history and philosophy of science in science teaching. School science curricula and textbooks neglect almost completely the importance of history and philosophy of science. In this paper, the main empirical results concerning motivation and knowledge are given. Some examples from science curricula and textbooks are presented, and some of the few reform projects in Germany are listed. As a consequence a compensatory program is proposed in order to create the prerequisites for raising science education in Germany to an international standard.

  8. Extending the Purposes of Science Education: Addressing Violence within Socio-Economic Disadvantaged Communities

    Science.gov (United States)

    Castano, Carolina

    2012-01-01

    Current discourses about science education show a wide concern towards humanisation and a more socio-cultural perspective of school science. They suggest that science education can serve diverse purposes and be responsive to social and environmental situations we currently face. However, these discourses and social approaches to science education…

  9. Science education in a multiscience perspective

    Science.gov (United States)

    Ogawa, Masakata

    The effects of the multiculturalism movement have emerged, especially in the West, in the form of multicultural science education. Multiculturalism can be a powerful and significant tool to reflect on science education and to improve classroom practices. However, this article argues that a multiscience perspective on science education affords richer implications for reflection and practice. A multiscience perspective recognizes the existence of various types of science at play in all science classrooms, especially personal science, indigenous science, and Western modem science.

  10. Constructivism, Education, Science, and Technology

    Science.gov (United States)

    Boudourides, Moses A.

    2003-01-01

    The purpose of this paper is to present a brief review of the various streams of constructivism in studies of education, society, science and technology. It is intended to present a number of answers to the question (what really is constructivism?) in the context of various disciplines from the humanities and the sciences (both natural and…

  11. Romanticism and Romantic Science: Their Contribution to Science Education

    Science.gov (United States)

    Hadzigeorgiou, Yannis; Schulz, Roland

    2014-01-01

    The unique contributions of romanticism and romantic science have been generally ignored or undervalued in history and philosophy of science studies and science education. Although more recent research in history of science has come to delineate the value of both topics for the development of modern science, their merit for the educational field…

  12. Romanticism and Romantic Science: Their Contribution to Science Education

    Science.gov (United States)

    Hadzigeorgiou, Yannis; Schulz, Roland

    2014-01-01

    The unique contributions of romanticism and romantic science have been generally ignored or undervalued in history and philosophy of science studies and science education. Although more recent research in history of science has come to delineate the value of both topics for the development of modern science, their merit for the educational field…

  13. Science Education and Worldview

    Science.gov (United States)

    Keane, Moyra

    2008-01-01

    Is there a place for Indigenous Knowledge in the science curriculum for a Zulu community in rural Kwa-Zulu Natal, South Africa? This article argues "yes," based on a participative research and development project that discovered relevant science learning in a Zulu community. Among community concerns for relevant factual and performative…

  14. Science in early childhood education

    DEFF Research Database (Denmark)

    Broström, Stig

    2015-01-01

    Based on an action research project with 12 preschools in a municipality north of Copenhagen the article investigates and takes a first step in order to create a preschool science Didaktik. The theoretical background comprises a pedagogical/didactical approach based on German critical constructive...... Bildung Didaktik, and a learning approach based on a Vygotskian cultural-historical activity theory. A science-oriented dynamic contextual didactical model was developed as a tool for educational thinking and planning. The article presents five educational principles for a preschool science Didaktik...

  15. Symposium 1: Science Education in Brazil: advances and challenges

    Directory of Open Access Journals (Sweden)

    Tânia C. de Araújo-Jorge

    2014-08-01

    Full Text Available Science Education in Brazil: advances and challenges Tania C. de Araujo-Jorge and Marcus Vinicius Campos MatracaLab. of Innovations in Therapies, Education and Bioproducts, Instituto Oswaldo Cruz, Fiocruz-Rio, Brazil. In Brazil the consensus that education is essential for the growth of a development country is insufficient to cover the gap between desires, public policies and results, contrasting with countries like Korea and Japan. The international success of Brazilian experiences in social policies to reduce poverty reflects on a sustainable fall in the Gini index, but the PISA indicators for science education deserves impact measures. Besides, Education in Brazil came up among the priority claims in popular movements that exploded June 2013, leading governments and social actors to try to recover the lost time. In 2014 the Federal Congress should conclude discussions of the 2011-2020 Plan for National Education (PNE and a National Education Conference is organized for February 2014. Science Education is essential for industry and social innovation and all the players in this scene face challenges, especially scientists. How is it possible to improve science teaching at schools? At different education grades what is the relative role for improvement of science curriculum, science teacher formation, science practices in formal and non-formal education, public communication of science, and learning-cognition-teaching mechanisms/theories? What is the role of artscience fusion in science education culture? What are de priorities for research and test and for implementation at short time? How is it possible to integrate and to articulate efforts of scientists and teachers, and insert science thinking for creativity since the initial basic education, through in middle fundamental education, and attaining biology, physics and chemical teachers in high school and university levels? These are some of the present questions in post-graduate productions

  16. Knowledge, Belief, and Science Education

    Science.gov (United States)

    Ferreira, Tiago Alfredo S.; El-Hani, Charbel N.; da Silva-Filho, Waldomiro José

    2016-10-01

    This article intends to show that the defense of "understanding" as one of the major goals of science education can be grounded on an anti-reductionist perspective on testimony as a source of knowledge. To do so, we critically revisit the discussion between Harvey Siegel and Alvin Goldman about the goals of science education, especially where it involves arguments based on the epistemology of testimony. Subsequently, we come back to a discussion between Charbel N. El-Hani and Eduardo Mortimer, on the one hand, and Michael Hoffmann, on the other, striving to strengthen the claim that rather than students' belief change, understanding should have epistemic priority as a goal of science education. Based on these two lines of discussion, we conclude that the reliance on testimony as a source of knowledge is necessary to the development of a more large and comprehensive scientific understanding by science students.

  17. Science Identity in Informal Education

    Science.gov (United States)

    Schon, Jennifer A.

    The national drive to increase the number of students pursuing Science Technology, Engineering, and Math (STEM) careers has brought science identity into focus for educators, with the need to determine what encourages students to pursue and persist in STEM careers. Science identity, the degree to which students think someone like them could be a scientist is a potential indicator of students pursuing and persisting in STEM related fields. Science identity, as defined by Carlone and Johnson (2007) consists of three constructs: competence, performance, and recognition. Students need to feel like they are good at science, can perform it well, and that others recognize them for these achievements in order to develop a science identity. These constructs can be bolstered by student visitation to informal education centers. Informal education centers, such as outdoor science schools, museums, and various learning centers can have a positive impact on how students view themselves as scientists by exposing them to novel and unique learning opportunities unavailable in their school. Specifically, the University of Idaho's McCall Outdoor Science School (MOSS) focuses on providing K-12 students with the opportunity to learn about science with a place-based, hands-on, inquiry-based curriculum that hopes to foster science identity development. To understand the constructs that lead to science identity formation and the impact the MOSS program has on science identity development, several questions were explored examining how students define the constructs and if the MOSS program impacted how they rate themselves within each construct. A mixed-method research approach was used consisting of focus group interviews with students and pre, post, one-month posttests for visiting students to look at change in science identity over time. Results from confirmatory factor analysis indicate that the instrument created is a good fit for examining science identity and the associated

  18. Guidelines for Building Science Education

    Energy Technology Data Exchange (ETDEWEB)

    Metzger, Cheryn E. [Pacific Northwest National Lab. (PNNL), Richland, WA (United States); Rashkin, Samuel [Pacific Northwest National Lab. (PNNL), Richland, WA (United States); Huelman, Pat [Pacific Northwest National Lab. (PNNL), Richland, WA (United States)

    2015-11-01

    The U.S. Department of Energy’s (DOE) residential research and demonstration program, Building America, has triumphed through 20 years of innovation. Partnering with researchers, builders, remodelers, and manufacturers to develop innovative processes like advanced framing and ventilation standards, Building America has proven an energy efficient design can be more cost effective, healthy, and durable than a standard house. As Building America partners continue to achieve their stretch goals, they have found that the barrier to true market transformation for high performance homes is the limited knowledge-base of the professionals working in the building industry. With dozens of professionals taking part in the design and execution of building and selling homes, each person should have basic building science knowledge relevant to their role, and an understanding of how various home components interface with each other. Instead, our industry typically experiences a fragmented approach to home building and design. After obtaining important input from stakeholders at the Building Science Education Kick-Off Meeting, DOE created a building science education strategy addressing education issues preventing the widespread adoption of high performance homes. This strategy targets the next generation and provides valuable guidance for the current workforce. The initiative includes: • Race to Zero Student Design Competition: Engages universities and provides students who will be the next generation of architects, engineers, construction managers and entrepreneurs with the necessary skills and experience they need to begin careers in clean energy and generate creative solutions to real world problems. • Building Science to Sales Translator: Simplifies building science into compelling sales language and tools to sell high performance homes to their customers. • Building Science Education Guidance: Brings together industry and academia to solve problems related to

  19. Guidelines for Building Science Education

    Energy Technology Data Exchange (ETDEWEB)

    Metzger, Cheryn E.; Rashkin, Samuel; Huelman, Pat

    2015-03-11

    The U.S. Department of Energy’s (DOE) residential research and demonstration program, Building America, has triumphed through 20 years of innovation. Partnering with researchers, builders, remodelers, and manufacturers to develop innovative processes like advanced framing and ventilation standards, Building America has proven an energy efficient design can be more cost effective, healthy, and durable than a standard house. As Building America partners continue to achieve their stretch goals, they have found that the barrier to true market transformation for high performance homes is the limited knowledge-base of the professionals working in the building industry. With dozens of professionals taking part in the design and execution of building and selling homes, each person should have basic building science knowledge relevant to their role, and an understanding of how various home components interface with each other. Instead, our industry typically experiences a fragmented approach to home building and design. After obtaining important input from stakeholders at the Building Science Education Kick-Off Meeting, DOE created a building science education strategy addressing education issues preventing the widespread adoption of high performance homes. This strategy targets the next generation and provides valuable guidance for the current workforce. The initiative includes: • Race to Zero Student Design Competition: Engages universities and provides students who will be the next generation of architects, engineers, construction managers and entrepreneurs with the necessary skills and experience they need to begin careers in clean energy and generate creative solutions to real world problems. • Building Science to Sales Translator: Simplifies building science into compelling sales language and tools to sell high performance homes to their customers. • Building Science Education Guidance: Brings together industry and academia to solve problems related to

  20. Trends in Computational Science Education

    Science.gov (United States)

    Landau, Rubin

    2002-08-01

    Education in computational science and engineering (CSE) has evolved through a number of stages, from recognition in the 1980s to its present early growth. Now a number of courses and degree programs are being designed and implemented at both the graduate and undergraduate levels, and students are beginning to receive degrees. This talk will discuss various aspects of this development, including the impact on faculty and students, the nature of the job market, the intellectual content of CSE education, and the types of programs and degrees now being offered. Analytic comparisons will be made between the content of Physics degrees versus those of other disciplines, and reasons for changes should be apparent. This talk is based on the papers "Elements of Computational Science Education" by Osman Yasar and Rubin Landau, and "Computational Science Education" by Charles Swanson.

  1. Scientific Literacy and Thailand Science Education

    Science.gov (United States)

    Yuenyong, Chokchai; Narjaikaew, Pattawan

    2009-01-01

    Education and political leaders worldwide are increasingly placing emphasis on developing scientific literacy. This also is the case in Thailand with science education influenced by educational reform in 1999, in which the goals of science education are shaped by the notion of scientific literacy. Thai science education emphasizes the scientific…

  2. Challenges and Opportunities Facing Technology Education in Taiwan

    Science.gov (United States)

    Lee, Lung-Sheng Steven

    2009-01-01

    The technology education in Taiwan is prescribed in the national curriculum and provided to all students in grades 1-12. However, it faces the following challenges: (1) Lack of worthy image, (2) Inadequate teachers in elementary schools, (3) Deficient teaching vitality in secondary schools, and (4) Diluted technology teacher education programs. In…

  3. The Impediments Facing Community Engagement in Omani Educational Tertiary Institutions

    Science.gov (United States)

    Issa, Jinan Hatem

    2016-01-01

    Prior to the vital role that social capital plays in accomplishing prosperity for any educational tertiary institution, it was emphasised in several countries' agendas, including the Sultanate of Oman. This study endeavours to explore the impediments facing the enhancement of the social capital in Omani educational tertiary institutions through…

  4. [Nursing school facing new educational challenges].

    Science.gov (United States)

    Osuna Torres, Blanca Herlinda; Gonzáles Rendón, M C Cristina

    2013-06-01

    The current avatars situate education schools and colleges in training students for competitions so that they be able to: perform successfully in the labor market, develop in a globalized world and deliver "human sense" services these can offer. The pillars of education [1] or the four ways to acquire significant knowledge for life are the basic premises on which is built the new educational dynamics in the context of globalization and global village, prepare students for internationalizaition is now imperative. In a globalized world in which we now live, acquire an ecological awareness, sense of solidarity, responsibility, social justice, peace, harmony, democracy, equity and learn to know, are actions that are thought together and as indispensable for complex life on the planet. The socio-cultural, economic, technological and political demand new ways of understanding the world and require fundamental changes in lifestyles for sustainable development.

  5. Joint Science Education Project: Learning about polar science in Greenland

    Science.gov (United States)

    Foshee Reed, Lynn

    2014-05-01

    their states, regions, and countries with one another. A subset of the Field School students continue their polar science exploration by traveling to and experiencing science at the top of the Greenlandic ice sheet, as participants in Arctic Science Education Week. They launched weather balloons, took measurements of reflectivity to learn more about albedo, studied glaciers and ice sheets and created hands-on models to study their flow, shadowed the Summit science technicians on their rounds, practiced taking clean snow samples, examined a back-lit snow pit to observe the differences between seasonal snows and ice formation, and assisted researchers by taking samples from the snow pit for isotope analysis. Lastly, I will share one group multi- and interdisciplinary activity used at JSEP which illustrates how to combine mathematics and science with global studies. As noted in the Mathematics of Planet Earth 2013 initiative: "The challenges facing our planet and our civilization are multidisciplinary and multifaceted, and the mathematical sciences play a central role in the scientific effort to understand and to deal with these challenges." In particular, this group activity uses mathematical modeling and data representation to spark a discussion of civic engagement and to raise awareness that the polar regions are critically important to the global system.

  6. Education science and biological anthropology.

    Science.gov (United States)

    Krebs, Uwe

    2014-01-01

    This contribution states deficits and makes proposals in order to overcome them. First there is the question as to why the Biological Anthropology--despite all its diversifications--hardly ever deals with educational aspects of its subject. Second it is the question as to why Educational Science neglects or even ignores data of Biological Anthropology which are recognizably important for its subject. It is postulated that the stated deficits are caused by several adverse influences such as, the individual identity of each of the involved single sciences; aspects of the recent history of the German Anthropology; a lack of conceptual understanding of each other; methodological differences and, last but not least, the structure of the universities. The necessity to remedy this situation was deduced from two groups of facts. First, more recent data of the Biological Anthropology (e.g. brain functions and learning, sex specificity and education) are of substantial relevance for the Educational Science. Second, the epistemological requirements of complex subjects like education need interdisciplinary approaches. Finally, a few suggestions of concrete topics are given which are related to both, Educational Science and Biological Anthropology.

  7. The Challenges of Multidisciplinary Education in Computer Science

    Institute of Scientific and Technical Information of China (English)

    Fred S. Roberts

    2011-01-01

    Some of the most important problems facing the United States and China,indeed facing our entire planet,require approaches that are fundamentally multidisciplinary in nature.Many of those require skills in computer science (CS),basic understanding of another discipline,and the ability to apply the skills in one discipline to the problems of another.Modern training in computer science needs to prepare students to work in other disciplines or to work on multidisciplinary problems.What do we do to prepare them for a multidisciplinary world when there are already too many things we want to teach them about computer science? This paper describes successful examples of multidisciplinary education at the interface between CS and the biological sciences,as well as other examples involving CS and security,CS and sustainability,and CS and the social and economic sciences.It then discusses general principles for multidisciplinary education of computer scientists.

  8. Professional learning communities (PLCs) for early childhood science education

    Science.gov (United States)

    Eum, Jungwon

    beliefs toward science teaching. Face-to-face group teachers' comfort with planning and doing different science activities increased significantly after the workshop and after the combination of workshop and face-to-face PLC. This study contributes to the research about various forms of professional development and their process and outcome in early childhood science education and informs early childhood professional communities of creative ways to improve science teaching and learning.

  9. Inquiry-based science education

    DEFF Research Database (Denmark)

    Østergaard, Lars Domino; Sillasen, Martin Krabbe; Hagelskjær, Jens

    2010-01-01

    Inquiry-based science education (IBSE) er en internationalt afprøvet naturfagsdidaktisk metode der har til formål at øge elevernes interesse for og udbytte af naturfag. I artiklen redegøres der for metoden, der kan betegnes som en elevstyret problem- og undersøgelsesbaseret naturfagsundervisnings......Inquiry-based science education (IBSE) er en internationalt afprøvet naturfagsdidaktisk metode der har til formål at øge elevernes interesse for og udbytte af naturfag. I artiklen redegøres der for metoden, der kan betegnes som en elevstyret problem- og undersøgelsesbaseret...

  10. Cognitive science and mathematics education

    CERN Document Server

    Schoenfeld, Alan H

    2013-01-01

    This volume is a result of mathematicians, cognitive scientists, mathematics educators, and classroom teachers combining their efforts to help address issues of importance to classroom instruction in mathematics. In so doing, the contributors provide a general introduction to fundamental ideas in cognitive science, plus an overview of cognitive theory and its direct implications for mathematics education. A practical, no-nonsense attempt to bring recent research within reach for practicing teachers, this book also raises many issues for cognitive researchers to consider.

  11. NASA Earth Science Education Collaborative

    Science.gov (United States)

    Schwerin, T. G.; Callery, S.; Chambers, L. H.; Riebeek Kohl, H.; Taylor, J.; Martin, A. M.; Ferrell, T.

    2016-12-01

    The NASA Earth Science Education Collaborative (NESEC) is led by the Institute for Global Environmental Strategies with partners at three NASA Earth science Centers: Goddard Space Flight Center, Jet Propulsion Laboratory, and Langley Research Center. This cross-organization team enables the project to draw from the diverse skills, strengths, and expertise of each partner to develop fresh and innovative approaches for building pathways between NASA's Earth-related STEM assets to large, diverse audiences in order to enhance STEM teaching, learning and opportunities for learners throughout their lifetimes. These STEM assets include subject matter experts (scientists, engineers, and education specialists), science and engineering content, and authentic participatory and experiential opportunities. Specific project activities include authentic STEM experiences through NASA Earth science themed field campaigns and citizen science as part of international GLOBE program (for elementary and secondary school audiences) and GLOBE Observer (non-school audiences of all ages); direct connections to learners through innovative collaborations with partners like Odyssey of the Mind, an international creative problem-solving and design competition; and organizing thematic core content and strategically working with external partners and collaborators to adapt and disseminate core content to support the needs of education audiences (e.g., libraries and maker spaces, student research projects, etc.). A scaffolded evaluation is being conducted that 1) assesses processes and implementation, 2) answers formative evaluation questions in order to continuously improve the project; 3) monitors progress and 4) measures outcomes.

  12. Does science education need the history of science?

    Science.gov (United States)

    Gooday, Graeme; Lynch, John M; Wilson, Kenneth G; Barsky, Constance K

    2008-06-01

    This essay argues that science education can gain from close engagement with the history of science both in the training of prospective vocational scientists and in educating the broader public about the nature of science. First it shows how historicizing science in the classroom can improve the pedagogical experience of science students and might even help them turn into more effective professional practitioners of science. Then it examines how historians of science can support the scientific education of the general public at a time when debates over "intelligent design" are raising major questions over the kind of science that ought to be available to children in their school curricula. It concludes by considering further work that might be undertaken to show how history of science could be of more general educational interest and utility, well beyond the closed academic domains in which historians of science typically operate.

  13. Blogs: Applications in Science Education

    Science.gov (United States)

    Brownstein, Erica; Klein, Robert

    2006-01-01

    Blogs are reshaping our political, social, and cultural environment. Education is affected by blogs because of their potential for learning and teaching, and also their risks. This article elaborates a set of rules for evaluating and implementing blogs in teaching college science. (Contains 5 figures.)

  14. The Utopia of Science Education

    Science.gov (United States)

    Castano, Carolina

    2012-01-01

    In this forum I expand on the ideas I initially presented in "Extending the purposes of science education: addressing violence within socio-economic disadvantaged communities" by responding to the comments provided by Matthew Weinstein, Francis Broadway and Sheri Leafgren. Focusing on their notion of utopias and superheroes, I ask us to reconsider…

  15. Artificial intelligence and science education

    Science.gov (United States)

    Good, Ron

    Artificial intelligence (AI) is defined and related to intelligent computer-assisted instruction (ICAI) and science education. Modeling the student, the teacher, and the natural environment are discussed as important parts of ICAI and the concept of microworlds as a powerful tool for science education is presented. Optimistic predictions about ICAI are tempered with the complex, persistent problems of: 1) teaching and learning as a soft or fuzzy knowledge base, 2) natural language processing, and 3) machine learning. The importance of accurate diagnosis of a student's learning state, including misconceptions and naive theories about nature, is stressed and related to the importance of accurate diagnosis by a physician. Based on the cognitive science/AI paradigm, a revised model of the well-known Karplus/Renner learning cycle is proposed.

  16. Creationism, Evolution, and Science Education

    Energy Technology Data Exchange (ETDEWEB)

    Scott, Eugenie C. (National Center for Science Education)

    2005-06-22

    Many topics in the curriculum of American schools are controversial, but perhaps the one with the longest tenure is evolution. Three arguments are made against evolution: that it is allegedly weak science ('evolution is a theory in crisis'); that it is incompatible with religion; and that it is only 'fair' to 'balance' evolution with creationism. Regardless of the appropriateness of their application to science education, all three of the arguments are made to try to restrict the teaching of evolution. Variants of the fairness argument such as balancing evolution with 'scientific alternatives to evolution' or balancing evolution with 'arguments against evolution' have in fact become the current predominant antievolutionist strategy. Current events in the creationism/evolution controversy will be reviewed, and suggestions made for how to promote sound science education in the schools.

  17. A comparison of online versus face-to-face teaching delivery in statistics instruction for undergraduate health science students.

    Science.gov (United States)

    Lu, Fletcher; Lemonde, Manon

    2013-12-01

    The objective of this study was to assess if online teaching delivery produces comparable student test performance as the traditional face-to-face approach irrespective of academic aptitude. This study involves a quasi-experimental comparison of student performance in an undergraduate health science statistics course partitioned in two ways. The first partition involves one group of students taught with a traditional face-to-face classroom approach and the other through a completely online instructional approach. The second partition of the subjects categorized the academic aptitude of the students into groups of higher and lower academically performing based on their assignment grades during the course. Controls that were placed on the study to reduce the possibility of confounding variables were: the same instructor taught both groups covering the same subject information, using the same assessment methods and delivered over the same period of time. The results of this study indicate that online teaching delivery is as effective as a traditional face-to-face approach in terms of producing comparable student test performance but only if the student is academically higher performing. For academically lower performing students, the online delivery method produced significantly poorer student test results compared to those lower performing students taught in a traditional face-to-face environment.

  18. E-learning challenges faced by academics in higher education

    OpenAIRE

    Islam, Nurul; Beer, Martin; Slack, Frances

    2015-01-01

    E-learning has become a necessity in higher education institutions and is being deployed in educational establishments throughout the world. Researchers have made much emphasis on its benefits but not much is discussed on the disadvantages of e-learning technology. This paper references some of the research work on the limitations of e-learning technology, categorises it in five challenges that teachers are faced with and suggestions for a successful e-learning outcome. This paper also discus...

  19. Urban Science Education: Examining Current Issues through a Historical Lens

    Science.gov (United States)

    McLaughlin, Cheryl A.

    2014-01-01

    This paper reviews and synthesizes urban science education studies published between 2000 and 2013 with a view to identifying current challenges faced by both teachers and students in urban classrooms. Additionally, this paper considers the historical events that have shaped the conditions, bureaucracies, and interactions of urban institutions.…

  20. Urban Science Education: Examining Current Issues through a Historical Lens

    Science.gov (United States)

    McLaughlin, Cheryl A.

    2014-01-01

    This paper reviews and synthesizes urban science education studies published between 2000 and 2013 with a view to identifying current challenges faced by both teachers and students in urban classrooms. Additionally, this paper considers the historical events that have shaped the conditions, bureaucracies, and interactions of urban institutions.…

  1. Science and education as a key to development

    Energy Technology Data Exchange (ETDEWEB)

    Erdelen, W.R. [UNESCO, Paris (France)

    2004-09-01

    We face a vital challenge to enhance our efforts to focus research, education and training on renewable energy for the benefit of developing countries. Promoting access to energy and the benefits of science and technology is a vital dimension for poverty reduction in developing and least developed countries. (orig.)

  2. The Challenges Facing Catholic Education in France Today

    Science.gov (United States)

    Moog, François

    2016-01-01

    The effects of secularisation on society demand a rethinking of the identity and mission of Catholic schools in France. In 2013, the French bishops published a new directory which offers new approaches, described here, based on the three challenges facing Catholic education in France: linking social responsibility and evangelisation, setting up…

  3. Making Philosophy of Science Education Practical for Science Teachers

    Science.gov (United States)

    Janssen, F. J. J. M.; van Berkel, B.

    2015-01-01

    Philosophy of science education can play a vital role in the preparation and professional development of science teachers. In order to fulfill this role a philosophy of science education should be made practical for teachers. First, multiple and inherently incomplete philosophies on the teacher and teaching on what, how and why should be…

  4. Making Philosophy of Science Education Practical for Science Teachers

    Science.gov (United States)

    Janssen, F. J. J. M.; van Berkel, B.

    2015-01-01

    Philosophy of science education can play a vital role in the preparation and professional development of science teachers. In order to fulfill this role a philosophy of science education should be made practical for teachers. First, multiple and inherently incomplete philosophies on the teacher and teaching on what, how and why should be…

  5. Rethinking Science Education: Meeting the Challenge of "Science for All"

    Science.gov (United States)

    Millar, Robin

    2012-01-01

    This article presents the author's Presidential Address delivered to the Association for Science Education Annual Conference, University of Liverpool, January 2012. "Science for all" has been an aspiration of the Association for Science Education and the organisations from which it evolved for almost a century. It has, however, proved an elusive…

  6. Innovation in Science Education - World-Wide.

    Science.gov (United States)

    Baez, Albert V.

    The purpose of this book is to promote improvements in science education, world-wide, but particularly in developing countries. It is addressed to those in positions to make effective contributions to the improvement of science education. The world-wide role of science education, the goals of innovative activities, past experience in efforts to…

  7. Leadership, Responsibility, and Reform in Science Education.

    Science.gov (United States)

    Bybee, Rodger W.

    1993-01-01

    Regards leadership as central to the success of the reform movement in science education. Defines leadership and introduces a model of leadership modified from the one developed by Edwin Locke and his associates. Provides an overview of the essential qualities of leadership occurring in science education. Discusses reforming science education and…

  8. Innovation in Science Education - World-Wide.

    Science.gov (United States)

    Baez, Albert V.

    The purpose of this book is to promote improvements in science education, world-wide, but particularly in developing countries. It is addressed to those in positions to make effective contributions to the improvement of science education. The world-wide role of science education, the goals of innovative activities, past experience in efforts to…

  9. Facing Climate Change: Connecting Coastal Communities with Place-Based Ocean Science

    Science.gov (United States)

    Pelz, M.; Dewey, R. K.; Hoeberechts, M.; McLean, M. A.; Brown, J. C.; Ewing, N.; Riddell, D. J.

    2016-12-01

    As coastal communities face a wide range of environmental changes, including threats from climate change, real-time data from cabled observatories can be used to support community members in making informed decisions about their coast and marine resources. Ocean Networks Canada (ONC) deploys and operates an expanding network of community observatories in the Arctic and coastal British Columbia, which enable communities to monitor real-time and historical data from the local marine environment. Community observatories comprise an underwater cabled seafloor platform and shore station equipped with a variety of sensors that collect environmental data 24/7. It is essential that data being collected by ONC instruments are relevant to community members and can contribute to priorities identified within the community. Using a community-based science approach, ONC is engaging local parties at all stages of each project from location planning, to instrument deployment, to data analysis. Alongside the science objectives, place-based educational programming is being developed with local educators and students. As coastal populations continue to grow and our use of and impacts on the ocean increase, it is vital that global citizens develop an understanding that the health of the ocean reflects the health of the planet. This presentation will focus on programs developed by ONC emphasizing the connection to place and local relevance with an emphasis on Indigenous knowledge. Building programs which embrace multiple perspectives is effective both in making ocean science more relevant to Indigenous students and in linking place-based knowledge to ocean science. The inclusion of Indigenous Knowledge into science-based monitoring programs also helps develop a more complete understanding of local conditions. We present a case study from the Canadian Arctic, in which ONC is working with Inuit community members to develop a snow and ice monitoring program to assist with predictions and

  10. Tanzania post-colonial educational system and perspectives on secondary science education, pedagogy, and curriculum: A qualitative study

    Science.gov (United States)

    Wandela, Eugenia L.

    The development of technology and innovation in any country depends on a strong investment in science education from the lower to the upper levels of education. In most of the Sub-Saharan African nations, science education curriculum and teaching still faces many issues and problems that are inhibiting the growth of technology and innovation in these nations. In order to address these issues, an interpretive qualitative study that aims to examine how Tanzanian secondary science educators perceive secondary science education was conducted in the summer of 2013. The purpose of this study is to investigate problems and educational issues that might be limiting the growth of science, technology, and innovation in the Tanzanian society. Additionally, this research investigates the impacts of the colonial legacy that relates to language, politics, and economics, as they affect science education in Tanzania secondary schools. This study focuses on the governmental four-year ordinary level secondary science education; it took place in Dar-es-Salaam, Tanzania. The researcher interviewed nine secondary science educators: three secondary science teachers and six secondary science education administrators. The researcher also conducted classroom observations. The data results from both interview and classroom observations were contextualized with data from existing documentation on Tanzanian secondary science education and data from previous research. The emergent themes from the study indicate that most of the problems and issues that are currently facing secondary science education are historically connected to the impact of the colonization period in 19th and 20th centuries. This study suggests that in order to improve science education in Tanzanian society, the people, especially the elites, need to break away from an "Orientalist" mindset and start integrating the Tanzanian culture and science into the still existing Eurocentric science curriculum. In addition, the

  11. Tutorial Instruction in Science Education

    Directory of Open Access Journals (Sweden)

    Rhea Miles

    2015-06-01

    Full Text Available The purpose of the study is to examine the tutorial practices of in-service teachers to address the underachievement in the science education of K-12 students. Method: In-service teachers in Virginia and North Carolina were given a survey questionnaire to examine how they tutored students who were in need of additional instruction. Results: When these teachers were asked, “How do you describe a typical one-on-one science tutorial session?” the majority of their responses were categorized as teacher-directed. Many of the teachers would provide a science tutorial session for a student after school for 16-30 minutes, one to three times a week. Respondents also indicated they would rely on technology, peer tutoring, scientific inquiry, or themselves for one-on-one science instruction. Over half of the in-service teachers that responded to the questionnaire stated that they would never rely on outside assistance, such as a family member or an after school program to provide tutorial services in science. Additionally, very few reported that they incorporated the ethnicity, culture, or the native language of ELL students into their science tutoring sessions.

  12. Crow Education Partnership: Science in a Cultural Context

    Science.gov (United States)

    Kelly, S. B.; NASA Astrobiology Institute Icy Worlds Science Team; Whillans Ice Stream Subglacial Access Research Drilling (Wissard) Science Team

    2011-12-01

    Join us to learn more about a developing science education partnership on the Crow Indian Reservation, in South Central Montana. Through this partnership we are designing culturally-relevant STEM science enrichment activites that focus on extreme environments for the Upper Elementary grades in the Hardin School District. The district encompasses three intermediate schools in a rural setting, with a largely Native American student body. Intermediate School teachers from Hardin, scientists and graduate students at Montana State University, and Crow tribal members are working together to develop inquiry-based science activities for students and teachers. Through the use of hands-on interactions, online technologies and field experiences, we are providing monthly science interaction for the classroom, and modeling inquiry-based activities for the teachers and community members. In addition to developing activities, we are working with Crow tribal members and teachers to tie science activities to the national standards and school district curriculum, while at the same time connecting science activities to Crow history and culture. Our blended education model which utilizes face to face interactions and video-conferencing, engages MSU graduate students in the teaching process. Graduate students are developing science communication skills and learning the importance of cross-cultural communication, while the teachers and intermediate students are gaining science content knowledge and direct interactions with authentic science experiences. We are developing a true partnership and community of learning through our efforts.

  13. Effecting change in elementary school science education

    Energy Technology Data Exchange (ETDEWEB)

    Parravano, C.

    1994-12-31

    The mission of the Merck Institute for Science Education is to improve the quality of science education during the formative years of kindergarten through eighth grade. To accomplish this mission, the Institute has three primary goals: Transform the teaching of science to communicate the excitement and relevance of science; Reform the education of teachers to instill in tomorrow`s teachers an understanding and appreciation of science; and Create a consensus on the importance of elementary science education among leaders in education, business, and science. Merck has made a minimum ten year commitment of funding and resources to the Institute. The Institute will work very closely with faculty, administration, and community leaders in target school districts to enhance science education in the elementary grades of their schools. Once the Institute`s goals have been achieved in these initial partner districts, the Institute will replicate its programs in other districts.

  14. Educational challenges faced by international medical graduates in the UK

    Directory of Open Access Journals (Sweden)

    Hashim A

    2017-06-01

    Full Text Available Ahmed Hashim Gastroenterology Department, Brighton and Sussex University Hospitals NHS Trust, Brighton, UK Introduction: International medical graduates (IMGs in the UK constitute approximately one-quarter of the total number of doctors registered in the General Medical Council (GMC. The transition of IMGs into the health care system in the UK is accompanied by significant sociocultural and educational challenges. This study aims to explore the views of IMGs in medical training on the educational challenges they face.Methods: This study was conducted in the Kent, Surrey and Sussex region in 2015. All IMGs who work in medical (physicianly training programs were included. Data were collected through a questionnaire and semi-structured interviews. Thematic approach was used to analyze the qualitative data.Results: Of the total 61 IMGs included, 17 responded to the survey and 3 were interviewed. The common educational barriers faced by IMGs were related to lack of appreciation of the values and structure of the National Health Service (NHS, ethical and medicolegal issues, receiving feedback from colleagues and the different learning strategies in the UK. IMGs suggested introduction of a mandatory dedicated induction program in the form of formal teaching sessions. They also believed that a supervised shadowing period prior in the first job in the UK would be beneficial. Further assessment areas should be incorporated into the prequalifying examinations to address specific educational needs such as NHS structure and hospital policies. Other measures such as buddying schemes with senior IMGs and educating NHS staff on different needs of IMGs should also be considered.Conclusion: This study highlighted important educational challenges faced by IMGs and generated relevant solutions. However, the opinions of the supervisors and other health care professionals need to be explored. Keywords: international medical graduates, IMG, educational barriers

  15. Science and Religion: Implications for Science Educators

    Science.gov (United States)

    Reiss, Michael J.

    2010-01-01

    A religious perspective on life shapes how and what those with such a perspective learn in science; for some students a religious perspective can hinder learning in science. For such reasons Staver's article is to be welcomed as it proposes a new way of resolving the widely perceived discord between science and religion. Staver notes that Western…

  16. Philosophy of Science and Education

    Science.gov (United States)

    Jung, Walter

    2012-08-01

    This is a vast and vague topic. In order to do justice to it one has to write a book or maybe more than one. For it can be understood in quite different ways and on different levels For example you may think mainly of the historical aspect, that is how philosophy of science developed in the last hundred or so years and how its influence on education changed; you may think of quite different schools of philosophy, from Marxist or positivist to such exotic but at some places influential philosophic positions like that of Rudolph Steiner; of course, you may limit the subject to special fields like epistemology, theory of scientific methodology, or, what has become fashionable recently, sociology of knowledge which may have a considerable bearing on physics teaching (Collins and Shapin 1983; Jung 1985). Again we may think of the topic treated by a philosopher, a scientist, an educationalist, a teacher, which would mean quite a difference. I am trying here to speak as an educationalist, with the physics teacher in mind: this is my vocational perspective as someone who educates physics teachers. Of course, our main concern is the contribution of science, especially physics, to general education, which integrates many of the special topics mentioned. Philosophy of science comes in because it is not at all clear what science and physics is, and what of it should be taught, and how such chosen parts should be taught. I also take this opportunity to give an idea of the longstanding tradition of this discussion in Germany, connected with names like Wagenshein, Litt, Heisenberg and many others.

  17. A methodology for enhancing implementation science proposals: comparison of face-to-face versus virtual workshops

    OpenAIRE

    Marriott, Brigid R.; Rodriguez, Allison L.; Landes, Sara J.; Lewis, Cara C; Comtois, Katherine A.

    2016-01-01

    Background With the current funding climate and need for advancements in implementation science, there is a growing demand for grantsmanship workshops to increase the quality and rigor of proposals. A group-based implementation science-focused grantsmanship workshop, the Implementation Development Workshop (IDW), is one methodology to address this need. This manuscript provides an overview of the IDW structure, format, and findings regarding its utility. Results The IDW methodology allows res...

  18. Romanticism and Romantic Science: Their Contribution to Science Education

    Science.gov (United States)

    Hadzigeorgiou, Yannis; Schulz, Roland

    2014-10-01

    The unique contributions of romanticism and romantic science have been generally ignored or undervalued in history and philosophy of science studies and science education. Although more recent research in history of science has come to delineate the value of both topics for the development of modern science, their merit for the educational field has not been explored. Romanticism was not only an obvious historical period, but a particular state of mind with its own extraordinary emotional sensitivity towards nature. It is especially the latter which we hope to revisit and reclaim for science education. After discussing several key historical contributions, we describe nine characteristics of `Romantic Science' in order to focus on six ideas/possibilities that we believe hold much value for transforming current science education: (1) the emotional sensitivity toward nature, (2) the centrality of sense experience, (3) the importance of "holistic experience", (4) the importance of the notions of mystery and wonder, (5) the power of science to transform people's outlook on the natural world, and (6) the importance of the relationship between science and philosophy. It is argued that in view of a pragmatist/utilitarian conception of school science prevalent today the aforementioned ideas (especially the notion of wonder and the poetic/non-analytical mode of knowledge), can provide food for thought for both science teachers and researchers seeking to work out an aesthetic conception, one that complements current approaches such as inquiry science and conceptual change.

  19. Computer science education for medical informaticians.

    Science.gov (United States)

    Logan, Judith R; Price, Susan L

    2004-03-18

    The core curriculum in the education of medical informaticians remains a topic of concern and discussion. This paper reports on a survey of medical informaticians with Master's level credentials that asked about computer science (CS) topics or skills that they need in their employment. All subjects were graduates or "near-graduates" of a single medical informatics Master's program that they entered with widely varying educational backgrounds. The survey instrument was validated for face and content validity prior to use. All survey items were rated as having some degree of importance in the work of these professionals, with retrieval and analysis of data from databases, database design and web technologies deemed most important. Least important were networking skills and object-oriented design and concepts. These results are consistent with other work done in the field and suggest that strong emphasis on technical skills, particularly databases, data analysis, web technologies, computer programming and general computer science are part of the core curriculum for medical informatics.

  20. Controlled trial of worksite health education through face-to-face counseling vs. e-mail on drinking behavior modification.

    Science.gov (United States)

    Araki, Ikuno; Hashimoto, Hideki; Kono, Keiko; Matsuki, Hideaki; Yano, Eiji

    2006-07-01

    This study examined the effectiveness of a traditional face-to-face health education and e-mail health education on alcohol usage among male workers in comparison with a control group. Male workers at a manufacturing plant (N=36) who had abnormal serum gamma-GTP were stratified by age and job types, then randomized into three groups: face-to-face education, e-mail education, and the control. The subjects were assessed on their knowledge about and attitude towards drinking, reported alcohol consumption, and serum gamma-GTP before the start of education and 2 months later after comparison of the education. Paired t-test and repeated ANOVA were conducted to test the significance of changes pre and post the intervention and across groups. In the face-to-face group, knowledge (p=0.001), attitude (p=0.026), alcohol consumption (p=0.003) and serum gamma-GTP showed significant improvement. In the e-mail group, only alcohol consumption showed marginal improvement (p=0.077). In the control group, no variables remarkably changed. These results indicate that the face-to-face health education was more effective than the e-mail program. We discuss why the face-to-face approach was superior to the e-mail approach in this study by referring to self-monitoring, goal setting processes and timely feedback. We concluded that further studies are warranted to identify the effect of health education using e-mails and other network tools in consideration of the above three factors.

  1. Preparing Future Secondary Computer Science Educators

    Science.gov (United States)

    Ajwa, Iyad

    2007-01-01

    Although nearly every college offers a major in computer science, many computer science teachers at the secondary level have received little formal training. This paper presents details of a project that could make a significant contribution to national efforts to improve computer science education by combining teacher education and professional…

  2. Preparing Future Secondary Computer Science Educators

    Science.gov (United States)

    Ajwa, Iyad

    2007-01-01

    Although nearly every college offers a major in computer science, many computer science teachers at the secondary level have received little formal training. This paper presents details of a project that could make a significant contribution to national efforts to improve computer science education by combining teacher education and professional…

  3. Historical Approaches in German Science Education

    Science.gov (United States)

    Heering, Peter

    2014-01-01

    Particularly in the second half of the 20th century, historical approaches became relevant in science education. This development can at least in part be explained with the growing awareness of the importance to address Nature of Science aspects in science education. In comparison to the international publications, some particularities can be…

  4. Persuasion and Attitude Change in Science Education.

    Science.gov (United States)

    Koballa, Thomas R., Jr.

    1992-01-01

    Persuasion is presented as it may be applied by science educators in research and practice. The orientation taken is that science educators need to be acquainted with persuasion in the context of social influence and learning theory to be able to evaluate its usefulness as a mechanism for developing and changing science-related attitudes. (KR)

  5. Promoting Science in Secondary School Education.

    Science.gov (United States)

    Chiovitti, Anthony; Duncan, Jacinta C; Jabbar, Abdul

    2017-03-05

    Engaging secondary school students with science education is crucial for a society that demands a high level of scientific literacy in order to deal with the economic and social challenges of the 21st century. Here we present how parasitology could be used to engage and promote science in secondary school students under the auspice of a 'Specialist Centre' model for science education.

  6. Earth Science Education in Zimbabwe

    Science.gov (United States)

    Walsh, Kevin L.

    1999-05-01

    Zimbabwe is a mineral-rich country with a long history of Earth Science Education. The establishment of a University Geology Department in 1960 allowed the country to produce its own earth science graduates. These graduates are readily absorbed by the mining industry and few are without work. Demand for places at the University is high and entry standards reflect this. Students enter the University after GCE A levels in three science subjects and most go on to graduate. Degree programmes include B.Sc. General in Geology (plus another science), B.Sc. Honours in Geology and M.Sc. in Exploration Geology and in Geophysics. The undergraduate curriculum is broad-based and increasingly vocationally orientated. A well-equipped building caters for relatively large student numbers and also houses analytical facilities used for research and teaching. Computers are used in teaching from the first year onwards. Staff are on average poorly qualified compared to other universities, but there is an impressive research element. The Department has good links with many overseas universities and external funding agencies play a strong supporting role. That said, financial constraints remain the greatest barrier to future development, although increasing links with the mining industry may cushion this.

  7. Reconceptualising inquiry in science education

    Science.gov (United States)

    Bevins, Stuart; Price, Gareth

    2016-01-01

    Decades of discussion and debate about how science is most effectively taught and learned have resulted in a number of similar but competing inquiry models. These aim to develop students learning of science through approaches which reflect the authenticity of science as practiced by professional scientists while being practical and manageable within the school context. This paper offers a collection of our current reflections and suggestions concerning inquiry and its place in science education. We suggest that many of the current models of inquiry are too limited in their vision concerning themselves, almost exclusively, with producing a scaffold which reduces the complex process of inquiry into an algorithmic approach based around a sequence of relatively simple steps. We argue that this restricts students' experience of authentic inquiry to make classroom management and assessment procedures easier. We then speculate that a more integrated approach is required through an alternative inquiry model that depends on three dimensions (conceptual, procedural and personal) and we propose that it will be more likely to promote effective learning and a willingness to engage in inquiry across all facets of a students' school career and beyond.

  8. Unmasking: on violence, masculinity, and superheroes in science education

    Science.gov (United States)

    Broadway, Francis S.; Leafgren, Sheri L.

    2012-09-01

    Through exploration of public mask/private face, the authors trouble violence and its role in science education through three media: schools, masculinity, and science acknowledging a violence of hate, but dwelling on a violence of caring. In schools, there is the poisonous "for your own good" pedagogy that becomes a "for your own good" curriculum or a coercive curriculum for science teaching and learning; however, the antithetical curriculum of I'm here entails violence—the shedding of the public mask and the exposing of the private face. Violence, likewise, becomes social and political capital for masculinity that is a pubic mask for private face. Lastly, science, in its self-identified cultural, political and educational form of a superhero, creates permanent harm most often as palatable violence in order to save and to redeem not the private face, but the public mask. The authors conclude that they do not know what violence to say one should not do, but they know the much of the violence has been and is being committed. All for which we can hope is not that we cease all violence or better yet not hate, but that we violently love.

  9. Science education for sustainability, epistemological reflections and educational practices: from natural sciences to trans-disciplinarity

    Science.gov (United States)

    Colucci-Gray, Laura; Perazzone, Anna; Dodman, Martin; Camino, Elena

    2013-03-01

    In this three-part article we seek to establish connections between the emerging framework of sustainability science and the methodological basis of research and practice in science education in order to bring forth knowledge and competences for sustainability. The first and second parts deal with the implications of taking a sustainability view in relation to knowledge processes. The complexity, uncertainty and urgency of global environmental problems challenge the foundations of reductionist Western science. Within such debate, the proposal of sustainability science advocates for inter-disciplinary and inter-paradigmatic collaboration and it includes the requirements of post- normal science proposing a respectful dialogue between experts and non-experts in the construction of new scientific knowledge. Such a change of epistemology is rooted into participation, deliberation and the gathering of extended-facts where cultural framings and values are the hard components in the face of soft facts. A reflection on language and communication processes is thus the focus of knowledge practices and educational approaches aimed at sustainability. Language contains the roots of conceptual thinking (including scientific knowledge) and each culture and society are defined and limited by the language that is used to describe and act upon the world. Within a scenario of sustainability, a discussion of scientific language is in order to retrace the connections between language and culture, and to promote a holistic view based on pluralism and dialogue. Drawing on the linguistic reflection, the third part gives examples of teaching and learning situations involving prospective science teachers in action-research contexts: these activities are set out to promote linguistic integration and to introduce reflexive process into science learning. Discussion will focus on the methodological features of a learning process that is akin to a communal and emancipatory research process within

  10. The Mystery in Science: A Neglected Tool for Science Education

    Science.gov (United States)

    Papacosta, Pangratios

    2008-01-01

    Of the many valuable tools available to science education, the mystery in science is the one that is most ignored, underused, or misunderstood. whenever it is used, it is only as mere entertainment or as an attention grabber. In this article, the author discusses how the mystery in science can improve student attitudes, generate a life-long…

  11. Faces and Photography in 19th-Century Visual Science.

    Science.gov (United States)

    Wade, Nicholas J

    2016-09-01

    Reading faces for identity, character, and expression is as old as humanity but representing these states is relatively recent. From the 16th century, physiognomists classified character in terms of both facial form and represented the types graphically. Darwin distinguished between physiognomy (which concerned static features reflecting character) and expression (which was dynamic and reflected emotions). Artists represented personality, pleasure, and pain in their paintings and drawings, but the scientific study of faces was revolutionized by photography in the 19th century. Rather than relying on artistic abstractions of fleeting facial expressions, scientists photographed what the eye could not discriminate. Photography was applied first to stereoscopic portraiture (by Wheatstone) then to the study of facial expressions (by Duchenne) and to identity (by Galton and Bertillon). Photography opened new methods for investigating face perception, most markedly with Galton's composites derived from combining aligned photographs of many sitters. In the same decade (1870s), Kühne took the process of photography as a model for the chemical action of light in the retina. These developments and their developers are described and fixed in time, but the ideas they initiated have proved impossible to stop.

  12. "Accounting Education at a Crossroad in 2010" and "Challenges Facing Accounting Education in Australia"

    Science.gov (United States)

    de Lange, Paul; Watty, Kim

    2011-01-01

    Of the various reports released in 2010, two purport to examine the state of accounting education in Australia. These are "Accounting Education at a Crossroad in 2010" and "Challenges Facing Accounting Education in Australia". Both were released as collaborations of the leading academic organisation, the Accounting and Finance…

  13. "Accounting Education at a Crossroad in 2010" and "Challenges Facing Accounting Education in Australia"

    Science.gov (United States)

    de Lange, Paul; Watty, Kim

    2011-01-01

    Of the various reports released in 2010, two purport to examine the state of accounting education in Australia. These are "Accounting Education at a Crossroad in 2010" and "Challenges Facing Accounting Education in Australia". Both were released as collaborations of the leading academic organisation, the Accounting and Finance…

  14. Discovering Science Education in the USA

    Science.gov (United States)

    Teaching Science, 2014

    2014-01-01

    Science is amazing for many reasons. One of them is its immeasurable size as a subject, and the breadth of its application. From nanotech to astrophysics, from our backyards to the global arena, science links everything and everyone on Earth. Our understanding of science--and science education--needs to be just as diverse and all-encompassing.…

  15. Library and Information Science Education in Japan.

    Science.gov (United States)

    Kim, Yong Won

    1998-01-01

    Reviews the historical background and current trends of library- and information science-education in Japan. Analyzes the various types of curriculum and the teaching staff of these institutions, while identifying factors influencing library and information-science education. Mentions present issues of the education system and discusses future…

  16. Testing the Benefits of Blended Education: Using Social Technology to Foster Collaboration and Knowledge Sharing in Face-to-Face LIS Courses

    Science.gov (United States)

    Agosto, Denise E.; Copeland, Andrea J.; Zach, Lisl

    2013-01-01

    Blended education, which mixes elements of face-to-face and online educational delivery, can occur at the activity, course, program, or administrative level. This study examined the use of student blogs to test the benefits of course-level blended educational delivery for LIS students enrolled in a face-to-face course. Data collected from…

  17. Reconceptualizing the Nature of Science for Science Education

    Science.gov (United States)

    Dagher, Zoubeida R.; Erduran, Sibel

    2016-03-01

    Two fundamental questions about science are relevant for science educators: (a) What is the nature of science? and (b) what aspects of nature of science should be taught and learned? They are fundamental because they pertain to how science gets to be framed as a school subject and determines what aspects of it are worthy of inclusion in school science. This conceptual article re-examines extant notions of nature of science and proposes an expanded version of the Family Resemblance Approach (FRA), originally developed by Irzik and Nola (International handbook of research in history, philosophy and science teaching. Springer, Dordrecht, pp 999-1021, 2014) in which they view science as a cognitive-epistemic and as an institutional-social system. The conceptual basis of the expanded FRA is described and justified in this article based on a detailed account published elsewhere (Erduran and Dagher in Reconceptualizing the nature of science for science education: scientific knowledge, practices and other family categories. Springer, Dordrecht, 2014a). The expanded FRA provides a useful framework for organizing science curriculum and instruction and gives rise to generative visual tools that support the implementation of a richer understanding of and about science. The practical implications for this approach have been incorporated into analysis of curriculum policy documents, curriculum implementation resources, textbook analysis and teacher education settings.

  18. Higher education in the face of social challenges

    Directory of Open Access Journals (Sweden)

    Adrián Cuevas Jiménez

    2016-08-01

    Full Text Available Higher education refers to the subsequent training to high school education; that is undergraduate and graduate; whose mission is to preserve; develop and disseminate culture. Throughout the history of higher education it has undergone a process of transformation; mainly due to the development of knowledge and the transformation of society. In the process they highlighted two great moments; in the first; which culminated in the mid-twentieth century; it conceived the higher education institution encompassing all knowledge of society; and who graduated was ready to perform professionally throughout life; the second time; after those dates; it is conceivable that knowledge is no longer exclusive to the institution of higher education; and there can be no efficient performance without continuous training and continuous updating of knowledge. The objective of this work is to point out the general goals and some strategies of the students’ formation of superior education; to confront the big challenges that it faces today the society. To define this goals and strategies four challenge levels are considered: a physical; structural and politicalideological challenges; b challenges around the scientifictechnician and of the knowledge advances; c challenges of the internal structure of the formative process and the access to the superior education; and d challenges in the formation of values in the students. 

  19. 76 FR 11765 - Education Research and Special Education Research Grant Programs; Institute of Education Sciences...

    Science.gov (United States)

    2011-03-03

    ... Education Research and Special Education Research Grant Programs; Institute of Education Sciences; Overview Information; Education Research and Special Education Research Grant Programs; Notice Inviting Applications... support education research and special education research. The Director takes this action under the...

  20. Making Philosophy of Science Education Practical for Science Teachers

    Science.gov (United States)

    Janssen, F. J. J. M.; van Berkel, B.

    2015-04-01

    Philosophy of science education can play a vital role in the preparation and professional development of science teachers. In order to fulfill this role a philosophy of science education should be made practical for teachers. First, multiple and inherently incomplete philosophies on the teacher and teaching on what, how and why should be integrated. In this paper we describe our philosophy of science education (ASSET approach) which is composed of bounded rationalism as a guideline for understanding teachers' practical reasoning, liberal education underlying the why of teaching, scientific perspectivism as guideline for the what and educational social constructivism as guiding choices about the how of science education. Integration of multiple philosophies into a coherent philosophy of science education is necessary but not sufficient to make it practical for teachers. Philosophies are still formulated at a too abstract level to guide teachers' practical reasoning. For this purpose, a heuristic model must be developed on an intermediate level of abstraction that will provide teachers with a bridge between these abstract ideas and their specific teaching situation. We have developed and validated such a heuristic model, the CLASS model in order to complement our ASSET approach. We illustrate how science teachers use the ASSET approach and the CLASS model to make choices about the what, the how and the why of science teaching.

  1. Science and Society - Problems, issues and dilemmas in science education

    CERN Multimedia

    2001-01-01

    Next in CERN's series of Science and Society speakers is Jonathan Osborne, Senior Lecturer in Science Education at King's College London. On Thursday 26 April, Dr Osborne will speak in the CERN main auditorium about current issues in science education in the light of an ever more science-based society. Jonathan Osborne, Senior Lecturer in Science Education at King's College London. Does science deserve a place at the curriculum high table of each student or is it just a gateway to a set of limited career options in science and technology? This question leads us to an important change in our ideas of what science education has been so far and what it must be. Basic knowledge of science and technology has traditionally been considered as just a starting point for those who wanted to build up a career in scientific research. But nowadays, the processes of science, the analysis of risks and benefits, and a knowledge of the social practices of science are necessary for every citizen. This new way of looking at s...

  2. The role of science education in education for the environment

    Energy Technology Data Exchange (ETDEWEB)

    Lucas, A.M.

    Although it is commonly believed that environmental education requires input from several disciplines, including science, there is little evidence that science education has made a successful contribution to the preservation of the environment. Some of the literature relating science and environmental education is reviewed. The belief that environmental education should focus on the development of attitudes as its major goal is probably the most pervasive position in the literature. (29 references)

  3. Earth System Science Education Modules

    Science.gov (United States)

    Hall, C.; Kaufman, C.; Humphreys, R. R.; Colgan, M. W.

    2009-12-01

    The College of Charleston is developing several new geoscience-based education modules for integration into the Earth System Science Education Alliance (ESSEA). These three new modules provide opportunities for science and pre-service education students to participate in inquiry-based, data-driven experiences. The three new modules will be discussed in this session. Coastal Crisis is a module that analyzes rapidly changing coastlines and uses technology - remotely sensed data and geographic information systems (GIS) to delineate, understand and monitor changes in coastal environments. The beaches near Charleston, SC are undergoing erosion and therefore are used as examples of rapidly changing coastlines. Students will use real data from NASA, NOAA and other federal agencies in the classroom to study coastal change. Through this case study, learners will acquire remotely sensed images and GIS data sets from online sources, utilize those data sets within Google Earth or other visualization programs, and understand what the data is telling them. Analyzing the data will allow learners to contemplate and make predictions on the impact associated with changing environmental conditions, within the context of a coastal setting. To Drill or Not To Drill is a multidisciplinary problem based module to increase students’ knowledge of problems associated with nonrenewable resource extraction. The controversial topic of drilling in the Arctic National Wildlife Refuge (ANWR) examines whether the economic benefit of the oil extracted from ANWR is worth the social cost of the environmental damage that such extraction may inflict. By attempting to answer this question, learners must balance the interests of preservation with the economic need for oil. The learners are exposed to the difficulties associated with a real world problem that requires trade-off between environmental trust and economic well-being. The Citizen Science module challenges students to translate scientific

  4. University Science and Mathematics Education in Transition

    DEFF Research Database (Denmark)

    Skovsmose, Ole; Valero, Paola; Christensen, Ole Ravn

    configuration poses to scientific knowledge, to universities and especially to education in mathematics and science. Traditionally, educational studies in mathematics and science education have looked at change in education from within the scientific disciplines and in the closed context of the classroom...... clear that the transformation of knowledge outside universities has implied a change in the routes that research in mathematics, science and technology has taken in the last decades. In this context, it is difficult to avoid considering seriously the challenges that such a complex and uncertain social...... of educational, cultural, administrative and ideological views and practices that permeate and constitute science and mathematics education in universities today. University Science and Mathematics Education in Transition contributes to an understanding of the multiple aspects and dimensions of the transition...

  5. Blending Face-to-Face Higher Education with Web-Based Lectures: Comparing Different Didactical Application Scenarios

    Science.gov (United States)

    Montrieux, Hannelore; Vangestel, Sandra; Raes, Annelies; Matthys, Paul; Schellens, Tammy

    2015-01-01

    Blended learning as an instructional approach is getting more attention in the educational landscape and has been researched thoroughly. Yet, this study reports the results of an innovation project aiming to gain insight into three different scenarios of applying web-based lectures: as preparation for face-to-face practical exercises, as a…

  6. Increasing Anonymity in Peer Assessment by Using Classroom Response Technology within Face-to-Face Higher Education

    Science.gov (United States)

    Raes, Annelies; Vanderhoven, Ellen; Schellens, Tammy

    2015-01-01

    Peer assessment is becoming more popular in higher education, however it often goes together with undesirable social effects like peer pressure and favoritism, especially when students need to evaluate peers in a face-to-face setting. The present study was set up to investigate increased anonymity in peer assessment to counter these undesirable…

  7. Research Methodologies in Science Education: Qualitative Data.

    Science.gov (United States)

    Libarkin, Julie C.; Kurdziel, Josepha P.

    2002-01-01

    Introduces the concepts and terminology of qualitative research methodologies in the context of science education. Discusses interviewing, observing, validity, reliability, and confirmability. (Author/MM)

  8. Reforming Science and Mathematics Education

    Science.gov (United States)

    Lagowski, J. J.

    1995-09-01

    Since 1991, the National Science Foundation has signed cooperative agreements with 26 states to undertake ambitious and comprehensive initiatives to reform science, mathematics, and technology education. Collectively, those agreements are known as the State Systemic Initiatives (SSI's). Two complimentary programs, The Urban and Rural Systemic Initiatives (USI's and RSI's), address similar reforms in the nation's largest cities and poorest rural areas. The SSI Program departs significantly from past NSF practice in several ways. The funding is for a longer term and is larger in amount, and the NSF is taking a more activist role, seeking to leverage state and private funds and promote the coordination of programs within states. The Initiatives also have a stronger policy orientation than previous NSF programs have had. The NSF strategy is a reflection of the growing and widely held view that meaningful reforms in schools are most likely to be achieved through state initiatives that set clear and ambitious learning goals and standards; align all of the available policy levers in support of reform; stimulate school-level initiatives; and mobilize human and financial resources to support these changes. Two premises underlie systemic reform: (1) all children can meet significantly higher standards if they are asked to do so and given adequate opportunities to master the content, and (2) state and local policy changes can create opportunities by giving schools strong and consistent signals about the changes in practice and performance that are expected. Because this is an enormous investment of Federal resources that is intended to bring about deep, systemic improvement in the nation's ability to teach science and mathematics effectively, the NSF has contracted with a consortium of independent evaluators to conduct a review of the program. The first of the SSI's were funded in 1991, sufficiently long ago to begin to formulate some initial impressions of their impact. Take

  9. Educational Technology Classics: The Science Teacher and Educational Technology

    Science.gov (United States)

    Harbeck, Richard M.

    2015-01-01

    The science teacher is the key person who has the commitment and the responsibility for carrying out any brand of science education. All of the investments, predictions, and expressions of concern will have little effect on the accomplishment of the broad goals of science education if these are not reflected in the situations in which learning…

  10. Mainstreaming ESd into Science teacher Education Courses:

    African Journals Online (AJOL)

    2007-12-11

    Dec 11, 2007 ... ESD in the context of mathematics and science teacher education. ... effective pedagogical approaches, teacher education, teaching ..... concepts do not add any value to the students' personal lives (Open-response text).

  11. Research facility access & science education

    Energy Technology Data Exchange (ETDEWEB)

    Rosen, S.P. [Univ. of Texas, Arlington, TX (United States); Teplitz, V.L. [Southern Methodist Univ., Dallas, TX (United States). Physics Dept.

    1994-10-01

    As Congress voted to terminate the Superconducting Super Collider (SSC) Laboratory in October of 1993, the Department of Energy was encouraged to maximize the benefits to the nation of approximately $2 billion which had already been expended to date on its evolution. Having been recruited to Texas from other intellectually challenging enclaves around the world, many regional scientists, especially physicists, of course, also began to look for viable ways to preserve some of the potentially short-lived gains made by Texas higher education in anticipation of {open_quotes}the SSC era.{close_quotes} In fact, by November, 1993, approximately 150 physicists and engineers from thirteen Texas universities and the SSC itself, had gathered on the SMU campus to discuss possible re-uses of the SSC assets. Participants at that meeting drew up a petition addressed to the state and federal governments requesting the creation of a joint Texas Facility for Science Education and Research. The idea was to create a facility, open to universities and industry alike, which would preserve the research and development infrastructure and continue the educational mission of the SSC.

  12. Science Education: Issues, Approaches and Challenges

    Directory of Open Access Journals (Sweden)

    Shairose Irfan Jessani

    2015-06-01

    Full Text Available In today’s global education system, science education is much more than fact-based knowledge. Science education becomes meaningless and incomprehensible for learners, if the learners are unable to relate it with their lives. It is thus recommended that Pakistan, like many other countries worldwide should adopt Science Technology Society (STS approach for delivery of science education. The purpose of the STS approach lies in developing scientifically literate citizens who can make conscious decisions about the socio-scientific issues that impact their lives. The challenges in adopting this approach for Pakistan lie in four areas that will completely need to be revamped according to STS approach. These areas include: the examination system; science textbooks; science teacher education programs; and available resources and school facilities.

  13. Science education in a secular age

    Science.gov (United States)

    Long, David E.

    2013-03-01

    A college science education instructor tells his students he rejects evolution. What should we think? The scene unfolds in one of the largest urban centers in the world. If we are surprised, why? Expanding on Federica Raia's (2012) first-hand experience with this scenario, I broaden her discussion by considering the complexity of science education in a secular age. Enjoining Raia within the framework of Charles Taylor's A Secular Age, I task the science education community to consider the broad strokes of science, religious faith, and the complexity of modernity in its evolving, hybridized forms. Building upon anthropological approaches to science education research, I articulate a framework to more fully account for who, globally, is a Creationist, and what this means for our views of ethically responsive science education.

  14. The Nature of Science and Science Education: A Bibliography

    Science.gov (United States)

    Bell, Randy; Abd-El-Khalick, Fouad; Lederman, Norman G.; Mccomas, William F.; Matthews, Michael R.

    Research on the nature of science and science education enjoys a long history, with its origins in Ernst Mach's work in the late nineteenth century and John Dewey's at the beginning of the twentieth century. As early as 1909 the Central Association for Science and Mathematics Teachers published an article - A Consideration of the Principles that Should Determine the Courses in Biology in Secondary Schools - in School Science and Mathematics that reflected foundational concerns about science and how school curricula should be informed by them. Since then a large body of literature has developed related to the teaching and learning about nature of science - see, for example, the Lederman (1992)and Meichtry (1993) reviews cited below. As well there has been intense philosophical, historical and philosophical debate about the nature of science itself, culminating in the much-publicised Science Wars of recent time. Thereferences listed here primarily focus on the empirical research related to the nature of science as an educational goal; along with a few influential philosophical works by such authors as Kuhn, Popper, Laudan, Lakatos, and others. While not exhaustive, the list should prove useful to educators, and scholars in other fields, interested in the nature of science and how its understanding can be realised as a goal of science instruction. The authors welcome correspondence regarding omissions from the list, and on-going additions that can be made to it.

  15. San Diego Science Alliance Education Outreach Activities

    Science.gov (United States)

    Blue, Anne P.

    1996-11-01

    The General Atomics Science Education Outreach Activities as well as those of several other San Diego area institutions led to the formation in 1994 of the San Diego Science Alliance. The Science Alliance is a consortium of science-related industries, institutions of research and higher education, museums, medical health networks, and science competitions in support of K-12 science education. Some Alliance accomplishments include printing over 4000 resource catalogs for teachers, workshops presented by over 20 of their business members at the San Diego Science Education Conference, and hosting of 3 eight-week courses for teachers. The Alliance provides an important forum for interaction between schools and teachers and local industries and institutions. The Science Alliance maintains a World Wide Web Home Page at elvbf http://www.cerf.net/sd_science/. General Atomics' role in the San Diego Science Alliance will be presented.(Presented by Patricia S. Winter for the General Atomics Science Education Groups and San Diego Science Alliance.)

  16. Symposium 1: Challenges in science education and popularization of Science

    Directory of Open Access Journals (Sweden)

    Ildeo de Castro Moreira

    2014-08-01

    Full Text Available Science education and popularization of science are important elements for social inclusion. The Brazil exhibits strong inequalities regarding the distribution of wealth, access to cultural assets and appropriation of scientific and technological knowledge. Each Brazilian should have the opportunity to acquire a basic knowledge of science and its operation that allow them to understand their environment and expand their professional opportunities. However, the overall performance of Brazilian students in science and math is bad. The basic science education has, most often, few resources and is discouraging, with little appreciation of experimentation, interdisciplinarity and creativity. Beside the shortage of science teachers, especially teachers with good formation, predominate poor wage and working conditions, and deficiencies in instructional materials and laboratories. If there was a significant expansion in access to basic education, the challenge remains to improve their quality. According to the last National Conference of STI, there is need of a profound educational reform at all levels, in particular with regard to science education. Already, the popularization of science can be an important tool for the construction of scientific culture and refinement of the formal teaching instrument. However, we still lack a comprehensive and adequate public policy to her intended. Clearly, in recent decades, an increase in scientific publication occurred: creating science centers and museums; greater media presence; use of the internet and social networks; outreach events, such as the National Week of CT. But the scenario is shown still fragile and limited to broad swathes of Brazilians without access to scientific education and qualified information on CT. In this presentation, from a general diagnosis of the situation, some of the main challenges related to education and popularization of science in the country will address herself.

  17. Science Education Research vs. Physics Education Research: A Structural Comparison

    Science.gov (United States)

    Akarsu, Bayram

    2010-01-01

    The main goal of this article is to introduce physics education research (PER) to researchers in other fields. Topics include discussion of differences between science education research (SER) and physics education research (PER), physics educators, research design and methodology in physics education research and current research traditions and…

  18. Science Education Research vs. Physics Education Research: A Structural Comparison

    OpenAIRE

    Akarsu, Bayram

    2011-01-01

    The main goal of this article is to introduce physics education research (PER) to researchers in other fields. Topics include discussion of differences between science education research (SER) and physics education research (PER), physics educators, research design and methodology in physics education research and current research traditions and trends (e.g. current research ideas) within PER.

  19. Pre-Service Science Teachers' Cognitive Structures Regarding Science, Technology, Engineering, Mathematics (STEM) and Science Education

    Science.gov (United States)

    Hacioglu, Yasemin; Yamak, Havva; Kavak, Nusret

    2016-01-01

    The aim of this study is to reveal pre-service science teachers' cognitive structures regarding Science, Technology, Engineering, Mathematics (STEM) and science education. The study group of the study consisted of 192 pre-service science teachers. A Free Word Association Test (WAT) consisting of science, technology, engineering, mathematics and…

  20. The Nature of Science in Science Education: An Introduction

    Science.gov (United States)

    McComas, William F.; Almazroa, Hiya; Clough, Michael P.

    After providing a definition of the nature of science (NOS) for science education, we argue that a pragmatic consensus exists regarding NOS topics most important for a scientifically literate society. Hence, NOS instruction should take a more prominent role in the science curriculum. While the relationship between a teacher's NOS knowledge and their pedagogical decision-making is not straight- forward, we maintain that a complex interplay does exist. While more science coursework and research experience have been suggested to improve science teachers' understanding of NOS, neither approach is empirically supported. However, explicit attempts at NOS instruction in science teacher education have been effective. This article, which is an abridged version of one appearing in McComas (1998), concludes with the suggestion of a desired state for NOS instruction.Hence, it is vital that science teachers and their students gain an understanding of the nature of science, a hybrid field blending aspects of various social studies of science such as the history, sociology and philosophy of science with research from the cognitive science into a rich and useful description of what science is and how it functions.

  1. Modern Engineering : Science and Education

    CERN Document Server

    2016-01-01

    This book draws together the most interesting recent results to emerge in mechanical engineering in Russia, providing a fascinating overview of the state of the art in the field in that country which will be of interest to a wide readership. A broad range of topics and issues in modern engineering are discussed, including dynamics of machines, materials engineering, structural strength and tribological behavior, transport technologies, machinery quality and innovations. The book comprises selected papers presented at the conference "Modern Engineering: Science and Education", held at the Saint Petersburg State Polytechnic University in 2014 with the support of the Russian Engineering Union. The authors are experts in various fields of engineering, and all of the papers have been carefully reviewed. The book will be of interest to mechanical engineers, lecturers in engineering disciplines and engineering graduates.

  2. Mediated Modeling in Science Education

    Science.gov (United States)

    Halloun, Ibrahim A.

    2007-08-01

    Following two decades of corroboration, modeling theory is presented as a pedagogical theory that promotes mediated experiential learning of model-laden theory and inquiry in science education. Students develop experiential knowledge about physical realities through interplay between their own ideas about the physical world and particular patterns in this world. Under teacher mediation, they represent each pattern with a particular model that they develop through a five-phase learning cycle, following particular modeling schemata of well-defined dimensions and rules of engagement. Significantly greater student achievement has been increasingly demonstrated under mediated modeling than under conventional instruction of lecture and demonstration, especially in secondary school and university physics courses. The improved achievement is reflected in more meaningful understanding of course materials, better learning styles, higher success rates, lower attrition rates and narrower gaps between students of different backgrounds.

  3. Romanian spatial planning research facing the challenges of globalizing sciences

    Directory of Open Access Journals (Sweden)

    Alexandru-Ionuţ Petrişor

    2018-03-01

    Full Text Available There shouldn’t be any doubt that globalization not only affects economies, but also other areas of scholarly interest, such as the research environment. Within research, multi-disciplinary approaches are now being utilized on a grand scale. As a result, the joint evolution of scale and multi-disciplinarity seems to direct modern research from the ‘potholing’ towards the ‘sky-diving’ approach. In this context, many countries where the research tradition was affected by isolation are trying to catch up fast and compete within the global research ecosystem. However, some of the research domains have a longer tradition and developed their own rules, which are rapidly adopted by other fields, in order to equal the visibility of their predecessors. The positivist approach, consisting of statistically analyzing data resulting from experiments, which are, in turn, designed to test hypotheses derived from empirical observations or theoretical reasoning based on a literature review, has left an important fingerprint on current research practices. It also appears to be related to the pressure of publishing research, translated into the ‘publish or perish’ adage, and more recently, to the use of scientometric approaches to assess the value of articles, based on their citations. These new trends, along with an emerging competition between the scientometric giants, Thomson-Reuters and Scopus, facilitated the evolution of ‘predatory journals’, but also engendered a propensity towards designing hybrids between science and economy or between science and social networking. At the same time, the pressure resulted into individual unethical behaviors; some authors are no longer interested in delivering their results to the appropriate audience, but are looking instead for those means that could facilitate their academic or research promotion. Consequently, some journals are also attempting to meet these needs. The global race for research

  4. Finding Science in the School Body: Reflections on Transgressing the Boundaries of Science Education and the Social Studies of Science

    Science.gov (United States)

    Weinstein, Matthew

    2008-01-01

    This paper examines the framings that the fields of the social studies of science and science education use for each other. It is shown that the social studies of science frames science education as passive and timeless. Science education frames science studies as a set of representations to better capture how science works. The paper then…

  5. Game based learning for computer science education

    NARCIS (Netherlands)

    Schmitz, Birgit; Czauderna, André; Klemke, Roland; Specht, Marcus

    2011-01-01

    Schmitz, B., Czauderna, A., Klemke, R., & Specht, M. (2011). Game based learning for computer science education. In G. van der Veer, P. B. Sloep, & M. van Eekelen (Eds.), Computer Science Education Research Conference (CSERC '11) (pp. 81-86). Heerlen, The Netherlands: Open Universiteit.

  6. Game based learning for computer science education

    NARCIS (Netherlands)

    Schmitz, Birgit; Czauderna, André; Klemke, Roland; Specht, Marcus

    2011-01-01

    Schmitz, B., Czauderna, A., Klemke, R., & Specht, M. (2011). Game based learning for computer science education. In G. van der Veer, P. B. Sloep, & M. van Eekelen (Eds.), Computer Science Education Research Conference (CSERC '11) (pp. 81-86). Heerlen, The Netherlands: Open Universiteit.

  7. Global Reproduction and Transformation of Science Education

    Science.gov (United States)

    Tobin, Kenneth

    2011-01-01

    Neoliberalism has spread globally and operates hegemonically in many fields, including science education. I use historical auto/ethnography to examine global referents that have mediated the production of contemporary science education to explore how the roles of teachers and learners are related to macrostructures such as neoliberalism and…

  8. Information Search Process in Science Education.

    Science.gov (United States)

    McNally, Mary Jane; Kuhlthau, Carol C.

    1994-01-01

    Discussion of the development of an information skills curriculum focuses on science education. Topics addressed include information seeking behavior; information skills models; the search process of scientists; science education; a process approach for student activities; and future possibilities. (Contains 15 references.) (LRW)

  9. Library Education in Information Science: Present Trends

    Science.gov (United States)

    Fosdick, Howard

    1978-01-01

    Discussed are present trends in library education in information science, as based on a survey of course offerings found in library school catalogs. The courses offered are divided into five basic categories, and new directions in library education for information science are discussed. Recommendations for improvement of curricula are included.…

  10. Should Science and Arts Education Be Separated?

    Institute of Scientific and Technical Information of China (English)

    2009-01-01

    China’s practice of separating science and arts education has a long and complicated history. Back in the early 1950s, China decided to adopt the Soviet Union’s practice of separating science and arts education into two systems, the upshot of which was many universities finding themselves divided into

  11. Convergence between science and environmental education

    NARCIS (Netherlands)

    Wals, A.E.J.; Brody, M.; Dillon, J.; Stevenson, R.B.

    2014-01-01

    Urgent issues such as climate change, food scarcity, malnutrition, and loss of biodiversity are highly complex and contested in both science and society (1). To address them, environmental educators and science educators seek to engage people in what are commonly referred to as sustainability challe

  12. Developing Intercultural Science Education in Ecuador

    Science.gov (United States)

    Schroder, Barbara

    2008-01-01

    This article traces the recent development of intercultural science education in Ecuador. It starts by situating this development within the context of a growing convergence between Western and indigenous sciences. It then situates it within the larger historical, political, cultural, and educational contexts of indigenous communities in Ecuador,…

  13. Enhancing science education in the elementary schools

    CERN Document Server

    Cole, M W; Cole, Milton W.; Zembal-Saul, Carla

    2002-01-01

    This article describes some collaborative activities of the authors, aimed at improving science education in elementary schools. These include curriculum enhancement, development of new apparatus (a wind tunnel), science-education web site contributions and production of a film about the physics of flight. The output of these projects is intended to be generally accessible or reproducible.

  14. Scientists Interacting With University Science Educators

    Science.gov (United States)

    Spector, B. S.

    2004-12-01

    Scientists with limited time to devote to educating the public about their work will get the greatest multiplier effect for their investment of time by successfully interacting with university science educators. These university professors are the smallest and least publicized group of professionals in the chain of people working to create science literate citizens. They connect to all aspects of formal and informal education, influencing everything from what and how youngsters and adults learn science to legislative rulings. They commonly teach methods of teaching science to undergraduates aspiring to teach in K-12 settings and experienced teachers. They serve as agents for change to improve science education inside schools and at the state level K-16, including what science content courses are acceptable for teacher licensure. University science educators are most often housed in a College of Education or Department of Education. Significant differences in culture exist in the world in which marine scientists function and that in which university science educators function, even when they are in the same university. Subsequently, communication and building relationships between the groups is often difficult. Barriers stem from not understanding each other's roles and responsibilities; and different reward systems, assumptions about teaching and learning, use of language, approaches to research, etc. This presentation will provide suggestions to mitigate the barriers and enable scientists to leverage the multiplier effect saving much time and energy while ensuring the authenticity of their message is maintained. Likelihood that a scientist's message will retain its authenticity stems from criteria for a university science education position. These professors have undergraduate degrees in a natural science (e.g., biology, chemistry, physics, geology), and usually a master's degree in one of the sciences, a combination of natural sciences, or a master's including

  15. Science and the Ideals of Liberal Education

    Science.gov (United States)

    Carson, Robert N.

    This article examines the influence of mathematics and science on the formation of culture. It then examines several definitions of liberal education, including the notion that languages and fields of study constitute the substrate of articulate intelligence. Finally, it examines the linkages between science, scientific culture, liberal education, and democracy, and proposes that science cannot be taught merely as a body of facts and theories, but must be presented to students as integral with cultural studies. The use of a contextualist approach to science education is recommended.

  16. Into the Curriculum. Art: Dewey Decimal Jewelry: Paper Crafts [and] Family Life Education/Reading/Language Arts: The Face of AIDS in Realistic Fiction [and] Reading/Language Arts: Making Arguments-Persuading People [and] Science/Reading/Language Arts: Living Communities on a Sloth [and] Science: Weather Maps [and] Social Studies: Postal Workers [and] Social Studies: From Capture to Freedom: Slavery in America.

    Science.gov (United States)

    Strobach, Stasia; Doren, Kathy

    1999-01-01

    Provides seven fully developed library media activities that are designed for use with specific curriculum units in art, family life education, reading, language arts, science, and social studies. Library media skills, objectives, grade levels, instructional roles, procedures, evaluation, and follow-up are described for each activity. (LRW)

  17. Constructivism in Science and Science Education: A Philosophical Critique

    Science.gov (United States)

    Nola, Robert

    This paper argues that constructivist science education works with an unsatisfactory account of knowledge which affects both its account of the nature of science and of science education. The paper begins with a brief survey of realism and anti-realism in science and the varieties of constructivism that can be found. In the second section the important conception of knowledge and teaching that Plato develops in the Meno is contrasted with constructivism. The section ends with an account of the contribution that Vico (as understood by constructivists), Kant and Piaget have made to constructivist doctrines. Section three is devoted to a critique of the theory of knowledge and the anti-realism of von Glaserfeld. The final section considers the connection, or lack of it, between the constructivist view of science and knowledge and the teaching of science.

  18. Science, Education, and the Ideology of "How"

    Science.gov (United States)

    Lang, Charles

    2010-01-01

    The aim of this work is to relate discussions of ideology and science within the Radical Science movement of the 1960s-1980s with present conversations on the integration of biology, psychology, and education. The argument is that an ideological analysis yields useful direction with respect to how a learning science might develop and how we might…

  19. Science, Education, and the Ideology of "How"

    Science.gov (United States)

    Lang, Charles

    2010-01-01

    The aim of this work is to relate discussions of ideology and science within the Radical Science movement of the 1960s-1980s with present conversations on the integration of biology, psychology, and education. The argument is that an ideological analysis yields useful direction with respect to how a learning science might develop and how we might…

  20. Science Education: From Separation to Integration

    Science.gov (United States)

    Linn, Marcia C.; Gerard, Libby; Matuk, Camillia; McElhaney, Kevin W.

    2016-01-01

    Advances in technology, science, and learning sciences research over the past 100 years have reshaped science education. This chapter focuses on how investigators from varied fields of inquiry who initially worked separately began to interact, eventually formed partnerships, and recently integrated their perspectives to strengthen science…

  1. Hermeneutics and science education: An introduction

    Science.gov (United States)

    Eger, Martin

    1992-12-01

    This paper is a programmatic sketch of a line of theoretical investigation in the philosophy of science education. The basic idea is that philosophical hermeneutics is an appropriate framework for science education in most of its aspects. A brief discussion is given of hermeneutics in general, of the version of it developed by H. G. Gadamer, and of the reasons for its relevance to science and to the problem of meaning in science education. A key element in this approach is the suggestion that each science be biewed as a language. Arguments against the appropriateness of hermeneutics to natural science are also discussed. One application of the theory to ongoing educational research — ‘misconceptions’ — is specifically treated.

  2. Building a Regional Science Education Infrastructure: The Accomplishments of the Sanford Science Education Center

    Science.gov (United States)

    Inverness Research, 2016

    2016-01-01

    For the past five years, the education and outreach effort of the Sanford Underground Research Facility has been supported by a grant from the National Science Foundation (NSF) to plan, develop, prototype, and prioritize the suite of educational outreach activities of the lab. Now known as the Sanford Science Education Center (SSEC), education and…

  3. Informal Science: Family Education, Experiences, and Initial Interest in Science

    Science.gov (United States)

    Dabney, Katherine P.; Tai, Robert H.; Scott, Michael R.

    2016-01-01

    Recent research and public policy have indicated the need for increasing the physical science workforce through development of interest and engagement with informal and formal science, technology, engineering, and mathematics experiences. This study examines the association of family education and physical scientists' informal experiences in…

  4. Hermeneutics of Science and Multi-Gendered Science Education

    Science.gov (United States)

    Ginev, Dimitri Jordan

    2008-01-01

    In this paper, I consider the relevance of the view of cognitive existentialism to a multi-gendered picture of science education. I am opposing both the search for a particular feminist standpoint epistemology and the reduction of philosophy of science to cultural studies of scientific practices as championed by supporters of postmodern political…

  5. Informal Science: Family Education, Experiences, and Initial Interest in Science

    Science.gov (United States)

    Dabney, Katherine P.; Tai, Robert H.; Scott, Michael R.

    2016-01-01

    Recent research and public policy have indicated the need for increasing the physical science workforce through development of interest and engagement with informal and formal science, technology, engineering, and mathematics experiences. This study examines the association of family education and physical scientists' informal experiences in…

  6. Concepts of matter in science education

    CERN Document Server

    Sevian, Hannah

    2013-01-01

    Bringing together a wide collection of ideas, reviews, analyses and new research on particulate and structural concepts of matter, Concepts of Matter in Science Education informs practice from pre-school through graduate school learning and teaching and aims to inspire progress in science education. The expert contributors offer a range of reviews and critical analyses of related literature and in-depth analysis of specific issues, as well as new research. Among the themes covered are learning progressions for teaching a particle model of matter, the mental models of both students and teachers of the particulate nature of matter, educational technology, chemical reactions and chemical phenomena, chemical structure and bonding, quantum chemistry and the history and philosophy of science relating to the particulate nature of matter. The book will benefit a wide audience including classroom practitioners and student teachers at every educational level, teacher educators and researchers in science education.

  7. Gender Equity in Science Education

    Science.gov (United States)

    Hall, Johanna R.

    2011-01-01

    The dearth of females in high-level science courses and professions is a well-documented phenomenon in modern society. Inequality in science instruction is a crucial component to the under representation of females in science. This paper provides a review of current literature published concerning gender inequality in K-12 science instruction.…

  8. Framing a future for soil science education.

    Science.gov (United States)

    Field, Damien

    2017-04-01

    The emerging concept of Global Soil Security highlights the need to have a renewed education framework that addresses the needs of those who want to; 1) know soil, 2) know of soil, and/or 3) be aware of soil. Those who know soil are soil science discipline experts and are concerned with soil as an object of study. With their discipline expertise focusing on what soil's are capable of they would be brokers of soil knowledge to those who know of soil. The connection with soil by the those in the second group focuses on the soil's utility and are responsible for managing the functionality and condition of the soil, the obvious example are farmers and agronomists. Reconnecting society with soil illustrates those who are members of the third group, i.e. those who are aware of soil. This is predicated on concepts of 'care' and is founded in the notion of beauty and utility. The utility is concerned with soil providing good Quality, clean food, or a source of pharmaceuticals. Soil also provides a place for recreation and those aware of soil know who this contributes to human health. The teaching-research-industry-learning (TRIL) nexus has been used to develop a framework for the learning and teaching of soil science applicable to a range of recipients, particularly campus-based students and practicing farm advisors. Consultation with academics, industry and professionals, by means of online (Delphi Study) and face-to-face forums, developed a heavily content-rich core body of knowledge (CBoK) relevant to industry, satisfying those who; know, and know of soil. Integrating the multidisciplinary approach in soil science teaching is a future aspiration, and will enable the development of curriculum that incorporates those who 'care' for soil. In the interim the application of the TRIL model allows the development of a learning framework more suited to real word needs. The development of a learning framework able to meet industry needs includes authentic complex scenarios that

  9. Pre-service Science Teacher Education in Africa: Prospects and Challenges

    Science.gov (United States)

    Ogunniyi, M. B.; Rollnick, Marissa

    2015-02-01

    Since the independence era in the 1950s and 1960s, many African countries have recognised the important role that science plays in the socio-economic development of any country. As a result, various African governments have enacted policies and allocated a large proportion of their gross national product to the science and science education sector of the economy. For instance, many African countries introduced universal primary education and to cater for the bulging student population increased the number of their secondary schools considerably. However, the rapid expansion of educational facilities has to some degree compromised the quality of the science teaching in many African schools. Among the various problems facing science education in Africa since the independence era, however, the most frequently mentioned has been the shortage of qualified science teachers. Science teachers play a critical role in laying the foundation of scientific literacy of a country. Indeed, no education system can outperform the quality of its teachers.

  10. Major Problems Facing Educational Planning in the Next Decade. The Fundamentals of Educational Planning: Lecture-Discussion Series No. 13.

    Science.gov (United States)

    Coombs, Philip H.

    Educational planners will face ten central problems in the next decade. First, there will be a rising demand for education, spurred by continued rapid population growth. Second, educational development will face increasing financial constraints in many countries. Third, educational systems will have to respond to serious shortages of specialized…

  11. Science, Worldviews and Education: An Introduction

    Science.gov (United States)

    Matthews, Michael R.

    2009-06-01

    This special issue of Science & Education deals with the theme of ‘Science, Worldviews and Education’. The theme is of particular importance at the present time as many national and provincial education authorities are requiring that students learn about the Nature of Science (NOS) as well as learning science content knowledge and process skills. NOS topics are being written into national and provincial curricula. Such NOS matters give rise to questions about science and worldviews: What is a worldview? Does science have a worldview? Are there specific ontological, epistemological and ethical prerequisites for the conduct of science? Does science lack a worldview but nevertheless have implications for worldviews? How can scientific worldviews be reconciled with seemingly discordant religious and cultural worldviews? In addition to this major curricular impetus for refining understanding of science and worldviews, there are also pressing cultural and social forces that give prominence to questions about science, worldviews and education. There is something of an avalanche of popular literature on the subject that teachers and students are variously engaged by. Additionally the modernisation and science-based industrialisation of huge non-Western populations whose traditional religions and beliefs are different from those that have been associated with orthodox science, make very pressing the questions of whether, and how, science is committed to particular worldviews. Hugh Gauch Jr. provides a long and extensive lead essay in the volume, and 12 philosophers, educators, scientists and theologians having read his paper, then engage with the theme. Hopefully the special issue will contribute to a more informed understanding of the relationship between science, worldviews and education, and provide assistance to teachers who are routinely engaged with the subject.

  12. Romanian Libray Science Distance Education. Current Context and Possible Solutions

    Directory of Open Access Journals (Sweden)

    Silvia-Adriana Tomescu

    2012-01-01

    We thought it would be very useful to propose a model of teaching, learning and assessment for distance higher librarianship tested on www.oll.ro, Open learning library platform to analyze the impact on students, and especially to test the effectiveness of teaching and assessing knowledge from distance. We set a rigorous approach that reflects the problems facing the Romanian LIS education system and emphasizes the optimal strategies that need to be implemented. The benefits of such an approach can and classified as: innovation in education, communicative facilities, and effective strategies for teaching library science.

  13. Hanford`s innovations for science education

    Energy Technology Data Exchange (ETDEWEB)

    Carter, D. [Westinghouse Hanford Company, Richland, WA (United States)

    1996-12-31

    In recognition of declining science literacy in the United States and a projected shortfall of scientists, engineers and technologists to address environmental problems nationally and internationally during the 21st century, Westinghouse Hanford Company has launched several innovative science education projects at the US Department of Energy Hanford Site. The Hanford Site is very rich in resources that can be brought to bear on the problem: world-class technical experts, state of the art facilities and equipment, and the largest environmental laboratory in the world. During the past two years, several innovative science education initiatives have been conceived and pursued at the secondary education level including the International Academy for the Environment (residential high school with an environmental theme), Environmental BATTmobile Program (mobile middle school science education program), and Multicultural Experiences in Math and Science (education program based on cultural contributions to math and science). Hanford scientists, engineers and administrators have worked with the education community (K-12 and college-university) to develop innovative approaches to science education.

  14. Trends of Science Education Research: An Automatic Content Analysis

    Science.gov (United States)

    Chang, Yueh-Hsia; Chang, Chun-Yen; Tseng, Yuen-Hsien

    2010-01-01

    This study used scientometric methods to conduct an automatic content analysis on the development trends of science education research from the published articles in the four journals of "International Journal of Science Education, Journal of Research in Science Teaching, Research in Science Education, and Science Education" from 1990 to 2007. The…

  15. Trends of Science Education Research: An Automatic Content Analysis

    Science.gov (United States)

    Chang, Yueh-Hsia; Chang, Chun-Yen; Tseng, Yuen-Hsien

    2010-01-01

    This study used scientometric methods to conduct an automatic content analysis on the development trends of science education research from the published articles in the four journals of "International Journal of Science Education, Journal of Research in Science Teaching, Research in Science Education, and Science Education" from 1990 to 2007. The…

  16. Science education needs a multilevel approach.

    Science.gov (United States)

    von Arx, Matthias; Labudde, Peter

    2012-01-01

    Triggered by an increasing consensus on the importance of science education for the economy and society as a whole, in recent years, a growing number of educational programs, initiatives and projects have been launched by various players (from educational policy makers over teacher education institutions to industry). Many of these initiatives have a direct or indirect link to molecular sciences. In this article, we develop a two-dimensional framework which can be used as a guideline in the classification and discussion of existing projects as well as in the planning and design of future initiatives. The framework incorporates three organizational levels or groups of persons and the two very central fields of objectives 'knowledge and skills' and 'motivation and interest'. On the basis of this framework, we discuss four projects in which our science and technology education center has been involved, with respect to their influence on the knowledge, skills and interest of pupils, teachers and school administration representatives in science.

  17. Untapped Potential: The Status of Middle School Science Education in California. Strengthening Science Education in California

    Science.gov (United States)

    Hartry, Ardice; Dorph, Rena; Shields, Patrick; Tiffany-Morales, Juliet; Romero, Valeria

    2012-01-01

    Despite the expressed need for high-quality science education, very little research has been conducted on what middle school science learning opportunities look like in practice. This study was conducted in support of "Strengthening Science Education in California", a research, policy, and communications initiative. Partners in this…

  18. Identifying Teacher Needs for Promoting Education through Science as a Paradigm Shift in Science Education

    Science.gov (United States)

    Holbrook, J.; Rannikmae, M.; Valdmann, A.

    2014-01-01

    This paper identifies an "education through science" philosophy for school science teaching at the secondary level and determines its interrelationship with approaches to student acquisition of key educational competences and the identification of teacher needs to promote meaningful learning during science lessons. Based on the…

  19. Beyond Nature of Science: The Case for Reconceptualising "Science" for Science Education

    Science.gov (United States)

    Erduran, Sibel

    2014-01-01

    In this paper, I argue that contemporary accounts of nature of science (NoS) are limited in their depiction of "science" and that new perspectives are needed to broaden their characterisation and appeal for science education. In particular, I refer to the role of interdisciplinary characterisations of science in informing the theory and…

  20. Videos Designed to Watch but Audience Required Telling stories is a cliché for best practice in videos. Frontier Scientists, a NSF project titled Science in Alaska: using Multimedia to Support Science Education stressed story but faced audience limitations. FS describes project's story process, reach results, and hypothesizes better scenarios.

    Science.gov (United States)

    O'Connell, E. A.

    2016-12-01

    Telling stories is a cliché for best practice in science videos. It's upheld as a method to capture audience attention in many fields. Findings from neurobiology research show character-driven stories cause the release of the neurochemical oxytocin in the brain. Oxytocin motivates cooperation with others and enhances a sense of empathy, in particular the ability to experience others' emotions. Developing character tension- as in our video design showcasing scientists along with their work- holds the viewers' attention, promotes recall of story, and has the potential to clearly broadcast the feelings and behaviors of the scientists. The brain chemical change should help answer the questions: Why should a viewer care about this science? How does it improve the world, or our lives? Is just a story-driven video the solution to science outreach? Answer: Not in our multi-media world. Frontier Scientists (FS) discovered in its three year National Science Foundation project titled 'Science in Alaska: using Multimedia to Support Science Education': the storied video is only part of the effort. Although FS created from scratch and drove a multimedia national campaign throughout the project, major reach was not achieved. Despite FS' dedicated web site, YouTube channel, weekly blog, monthly press release, Facebook and G+ pages, Twitter activity, contact with scientists' institutions, and TV broadcast, monthly activity on the web site seemed to plateau at about 3000 visitors to the FS website per month. Several factors hampered the effort: Inadequate funding for social media limited the ability of FS to get the word to untapped markets: those whose interest might be sparked by ad campaigns but who do not actively explore unfamiliar agencies' science education content. However, when institutions took advantage of promoting their scientists through the FS videos we saw an uptick in video views and the participating scientists were often contacted for additional stories or were

  1. 75 FR 65305 - National Board for Education Sciences

    Science.gov (United States)

    2010-10-22

    ... National Board for Education Sciences AGENCY: Department of Education, Institute of Education Sciences... proposed agenda of an upcoming meeting of the National Board for Education Sciences. The notice also..., Designated Federal Official, National Board for Education Sciences, 555 New Jersey Ave., NW., Room 602...

  2. Reconceptualising Inquiry in Science Education

    Science.gov (United States)

    Bevins, Stuart; Price, Gareth

    2016-01-01

    Decades of discussion and debate about how science is most effectively taught and learned have resulted in a number of similar but competing inquiry models. These aim to develop students learning of science through approaches which reflect the authenticity of science as practiced by professional scientists while being practical and manageable…

  3. Toward the sociopolitical in science education

    Science.gov (United States)

    Tolbert, Sara; Bazzul, Jesse

    2017-06-01

    In this paper, we explore how Jacques Rancière's (The ignorant schoolmaster: five lessons in intellectual emancipation. Stanford University Press, Stanford, 1991) notions of radical equality and dissensus reveal horizons for activism and sociopolitical engagement in science education theory, research, and practice. Drawing on Rochelle Gutiérrez' (J Res Math Educ 44(1):37-68, 2013a. doi: 10.5951/jresematheduc.44.1.0037; J Urban Math Educ 6(2):7-19, b) "sociopolitical turn" for mathematics education, we identify how the field of science education can/is turning from more traditional notions of equity, achievement and access toward issues of systemic oppression, identity and power. Building on the conversation initiated by Lorraine Otoide who draws from French philosopher Jacques Rancière to experiment with a pedagogy of radical equality, we posit that a sociopolitical turn in science education is not only imminent, but necessary to meet twenty-first century crises.

  4. Toward the sociopolitical in science education

    Science.gov (United States)

    Tolbert, Sara; Bazzul, Jesse

    2016-07-01

    In this paper, we explore how Jacques Rancière's (The ignorant schoolmaster: five lessons in intellectual emancipation. Stanford University Press, Stanford, 1991) notions of radical equality and dissensus reveal horizons for activism and sociopolitical engagement in science education theory, research, and practice. Drawing on Rochelle Gutiérrez' (J Res Math Educ 44(1):37-68, 2013a. doi: 10.5951/jresematheduc.44.1.0037; J Urban Math Educ 6(2):7-19, b) "sociopolitical turn" for mathematics education, we identify how the field of science education can/is turning from more traditional notions of equity, achievement and access toward issues of systemic oppression, identity and power. Building on the conversation initiated by Lorraine Otoide who draws from French philosopher Jacques Rancière to experiment with a pedagogy of radical equality, we posit that a sociopolitical turn in science education is not only imminent, but necessary to meet twenty-first century crises.

  5. Science Education in Bhutan: Issues and challenges

    Science.gov (United States)

    Childs, Ann; Tenzin, Wangpo; Johnson, David; Ramachandran, Kiran

    2012-02-01

    Science education in a developing country is pivotal in the developmental process. Bhutan, like other developing countries, places great importance in institutionalising a relevant and challenging science curriculum for all of its school-aged children. A number of factors have made the review of the science curriculum in Bhutan a priority including international debates about scientific literacy and the changing time and needs of Bhutanese society and its students. This article reports on the findings of a study to investigate the present status and challenges of the current science curriculum from interviews with teachers, students, and other key stakeholders such as higher education lecturers and employers. The study also draws on observations of science classes and key curriculum documents. This study was conducted as a prelude to the major science curriculum reform prioritised in the government's 10th Five Year Plan (2008-2012) in order to provide a research informed perspective for science curriculum development. The findings from the research are reported here and show a number of positive issues in science education including good student motivation in lower classes. Challenges are identified including issues of teacher development, resourcing, and fragmentation and discontinuity in the current curriculum. These issues and challenges are discussed in the light of literature on science education in developing countries.

  6. Beyond Evolution: Addressing Broad Interactions Between Science and Religion in Science Teacher Education

    Science.gov (United States)

    Shane, Joseph W.; Binns, Ian C.; Meadows, Lee; Hermann, Ronald S.; Benus, Matthew J.

    2016-03-01

    Science and religion are two indisputably profound and durable cultural forces with a complex history of interaction. As ASTE members are aware, these interactions often manifest themselves in classrooms and in the surrounding communities. In this essay, we encourage science teacher educators to broaden their perspectives of science-religion interactions so that they may better assist pre- and in-service science teachers with addressing topics such as the age and origins of the universe and biological evolution in an appropriate manner. We first introduce some foundational scholarship into the historical interactions between science and religion as well as current efforts to maintain healthy dialogue between perspectives that are frequently characterized as innately in conflict with or mutually exclusive of one another. Given that biological evolution is the dominant science-religion issue of our day, in particular in the USA, we next summarize the origins and strategies of anti-evolution movements via the rise and persistence of Christian Fundamentalism. We then summarize survey and qualitative sociological research indicating disparities between academic scientists and the general public with regard to religious beliefs to help us further understand our students' worldviews and the challenges they often face in campus-to-classroom transitions. We conclude the essay by providing resources and practical suggestions, including legal considerations, to assist science teacher educators with their curriculum and outreach.

  7. Comparison of Face to Face Education with Other Methods to Pregnant Mothers in Increase Exclusive Breast Feeding

    Directory of Open Access Journals (Sweden)

    M.S. Saba

    2005-10-01

    Full Text Available Introduction & Objective: There is a direct relationship between the education and exclusive breast-feeding. Most of the educational programs have given after child birth, based on " Rooming in plan”, but because of difficult situation and busy thoughts of mothers, they were not desirable way of education, therefore in this study the role of verbal & nonverbal education was evaluated on the rate of breast-feeding by mothers before delivery.Materials & Methods: This is a randomized controlled-trial study on 108 pregnant women, 20-30 yrs old, paraone, without any systemic disease referring to Health Center of Hamadan. They were divided into two groups of 54 each , group Ι was given verbal education (lecture, movie, slide, question & answer and group ΙΙ nonverbal education (pamphlet of verbal abstracts. The two groups were followed up to 6 months after delivery in respect of restricted breast-feeding.Results: The rate of restricted breast-feeding was 82.7% for mothers on verbal education and 56.5% for nonverbal ones. This difference of percentile rise in two group was statistically meaningful, which showed verbal education was more efficient on outcome of restricted breast-feeding.Conclusion: We concluded that face to face education is more efficient compared to non-verbal education in increase exclusive breast feeding.

  8. Math/science education action conference report

    Energy Technology Data Exchange (ETDEWEB)

    1990-05-01

    On October 8--10, 1989, the US Department of Energy, the Lawrence Hall of Science, and the Lawrence Berkeley Laboratory sponsored a Math/Science Education Action Conference in Berkeley, California. The conference was co-chaired by Admiral James D. Watkins, Secretary of Energy, and Dr. Glenn T. Seaborg Chairman of the Lawrence Hall of Science. Nearly 250 scientists, educators, business executives, and government leaders came together to develop a concrete plan of action for restructuring and revitalizing mathematics and science education. Their target was to improve education for an entire cohort of children--the Class of 2007, the children born this school year--and their governing principle was one of collaboration, both between Federal agencies, and between public and private sectors. The report of the conference co-chairmen and participants is provided in this document. 41 figs.

  9. Global reproduction and transformation of science education

    Science.gov (United States)

    Tobin, Kenneth

    2011-03-01

    Neoliberalism has spread globally and operates hegemonically in many fields, including science education. I use historical auto/ethnography to examine global referents that have mediated the production of contemporary science education to explore how the roles of teachers and learners are related to macrostructures such as neoliberalism and derivative sensibilities, including standards, competition, and accountability systems, that mediate enacted curricula. I investigate these referents in relation to science education in two geographically and temporally discrete contexts Western Australia in the 1960s and 1970s and more recently in an inner city high school in the US. In so doing I problematize some of the taken for granted aspects of science education, including holding teachers responsible for establishing and maintaining control over students, emphasizing competition between individuals and between collectives such as schools, school districts and countries, and holding teachers and school leaders accountable for student achievement.

  10. Catalyzing Effective Science Education: Contributions from the NASA Science Education and Public Outreach Forums

    Science.gov (United States)

    Smith, Denise A.; Bartolone, L.; Eisenhamer, B.; Lawton, B. L.; Schultz, G. R.; Peticolas, L.; Schwerin, T.; Shipp, S.; Astrophysics E/PO Community, NASA; NASA Astrophysics Forum Team

    2013-06-01

    Advancing scientific literacy and strengthening the Nation’s future workforce through stimulating, informative, and effective learning experiences are core principles of the NASA Science Mission Directorate (SMD) education and public outreach (E/PO) program. To support and coordinate its E/PO community in offering a coherent suite of activities and experiences that effectively meet the needs of the education community, NASA SMD has created four Science Education and Public Outreach Forums (Astrophysics, Planetary Science, Heliophysics, Earth Science). Forum activities include: professional development to raise awareness of the existing body of best practices and educational research; analysis and cataloging of SMD-funded education materials with respect to AAAS Benchmarks for Science Literacy; Working Groups that assemble needs assessment and best practices data relevant to Higher Education, K-12 Formal Education, and Informal Science Education audiences; and community collaborations that enable SMD E/PO community members to develop new partnerships and to learn and share successful strategies and techniques. This presentation will highlight examples of Forum and community-based activities related to astronomy education and teacher professional development, within the context of the principles articulated within the NRC Framework for K-12 Science Education and the Next Generation Science Standards. Among these are an emerging community of practice for K-12 educators and online teacher professional development and resources that incorporate misconception research and authentic experiences with NASA Astrophysics data.

  11. Teaching heroics: Identity and ethical imagery in science education

    Science.gov (United States)

    Robeck, Edward C.

    In what follows, I address ways in which science education can influence personal identity and social relationships. I do this through a consideration of ideological implications of science as it is constituted in science education. In this situation, I consider science to be a symbolic--emanating from socially derived meanings. I begin with the premise that any symbol system is permeated with ideological elements. To highlight the ideological elements of science in science education, I use another more explicitly symbolic system as a comparative framework. That system is epic heroism, primarily as Joseph Campbell (1949) describes it in The Hero With A Thousand Faces. The discussion of science education is given a practical grounding using transcripts from the interviews with twenty Grade 10 students and many of their teachers undertaken in the 1993-1994 school year. I used epic heroism as a framework for initiating interpretations of broad themes from the transcripts, but also read the transcripts in relation to aspects of epic heroism, including existing critiques of Campbell's work and heroism more broadly. Specific quotes are included to illustrations of various points. My particular focus here is on ideological elements that can be associated with racism, sexism, and other social relationships that are collectively referred to as relations involving divisive bias. In particular, two themes are discussed extensively. The first is the theme of identity formed through separation, which results in the promotion of reductive and individualistic identities. The second theme has to do with the role of boundary imagery in the formation of relationship, which establishes difference hierarchically. Both of these are pervasive in divisive bias and in the imagery of epic heroism. Ways in which they can pervade practices in science education are also discussed. The central argument of the thesis is that science education, when undertaken through practices that incorporate

  12. Philosophy of Education and Other Educational Sciences

    Science.gov (United States)

    Howe, Kenneth R.

    2014-01-01

    This article largely agrees with John White's characterizations of the relationships among philosophy of education, philosophy more generally, and the conventional world. It then extends what White identifies as the fundamental problem that should now be occupying philosophy of education--the irreconcilable opposition between education for…

  13. Philosophy of Education and Other Educational Sciences

    Science.gov (United States)

    Howe, Kenneth R.

    2014-01-01

    This article largely agrees with John White's characterizations of the relationships among philosophy of education, philosophy more generally, and the conventional world. It then extends what White identifies as the fundamental problem that should now be occupying philosophy of education--the irreconcilable opposition between education for…

  14. Rural Science Education: Valuing Local Knowledge

    Science.gov (United States)

    Avery, Leanne M.

    2013-01-01

    Whether playing outdoors or working on the farm, rural children acquire science and engineering skills throughout their daily lives. Although 11.4 million children in the United States grow up in rural areas, compared to 14.6 million in urban areas, relatively little attention is given to rural science education. This article demonstrates that…

  15. Science Education in a Secular Age

    Science.gov (United States)

    Long, David E.

    2013-01-01

    A college science education instructor tells his students he rejects evolution. What should we think? The scene unfolds in one of the largest urban centers in the world. If we are surprised, why? Expanding on Federica Raia's (2012) first-hand experience with this scenario, I broaden her discussion by considering the complexity of science education…

  16. ACSES, An Automated Computer Science Education System.

    Science.gov (United States)

    Nievergelt, Jurg; And Others

    A project to accommodate the large and increasing enrollment in introductory computer science courses by automating them with a subsystem for computer science instruction on the PLATO IV Computer-Based Education system at the University of Illinois was started. The subsystem was intended to be used for supplementary instruction at the University…

  17. Pseudoscience, the Paranormal, and Science Education.

    Science.gov (United States)

    Martin, Michael

    1994-01-01

    Given the widespread acceptance of pseudoscientific and paranormal beliefs, this article suggests that science educators need to seriously consider the problem of how these beliefs can be combated. Proposes teaching science students to critically evaluate the claims of pseudoscience and the paranormal. (LZ)

  18. Russian Science and Education: Problems and Prospects

    Science.gov (United States)

    Lebedev, S. A.

    2014-01-01

    Higher education in Russia is not able to provide the science personnel and research that the country needs for its future economic well-being. Urgent changes are needed to improve the situation, not least among them being significant increases in the salaries of scientists, bringing Russian science into line with world standards of scientific…

  19. Science Education in a Secular Age

    Science.gov (United States)

    Long, David E.

    2013-01-01

    A college science education instructor tells his students he rejects evolution. What should we think? The scene unfolds in one of the largest urban centers in the world. If we are surprised, why? Expanding on Federica Raia's (2012) first-hand experience with this scenario, I broaden her discussion by considering the complexity of science education…

  20. Pseudoscience, the Paranormal, and Science Education.

    Science.gov (United States)

    Martin, Michael

    1994-01-01

    Given the widespread acceptance of pseudoscientific and paranormal beliefs, this article suggests that science educators need to seriously consider the problem of how these beliefs can be combated. Proposes teaching science students to critically evaluate the claims of pseudoscience and the paranormal. (LZ)

  1. Final Technical Report: Science and technology reviews of FACE[Free Air Carbon Enrichment

    Energy Technology Data Exchange (ETDEWEB)

    Strain, Boyd R.

    1998-03-23

    The purpose of this grant was to bring together the principals of all known facilities that had been developed, principals who had submitted proposals to develop FACE facilities, and principals who want to develop proposals for facilities. In addition, critical program personnel from potential funding agencies and a few high level science administrators were invited to observe the proceedings and to visit a working FACE facility. The objectives of this study are to conduct a three-day international meeting on scientific aspects of research with the new and developing free air carbon enrichment (FACE) technology. Immediately following the science meeting, conduct a two-day international meeting on experimental protocols to be applied in FACE research. To conduct a four day international meeting on the assessment of the responses of forest ecosystems to elevated atmospheric carbon dioxide. The three meetings supported by this grant were all highly successful meetings and resulted in the formation of an organized and identified working group with the acronym InterFACE (International Free-Air Carbon Dioxide Enrichment) working group.

  2. Computers in Education and Education in Computer Science

    Directory of Open Access Journals (Sweden)

    José Luis SIERRA-RODRÍGUEZ

    2015-12-01

    Full Text Available Selection of the extended papers related to Computers in Education and Computer Science Education topics presented at the sixteenth edition of the International Symposium on Computers in Education (SIIE 2014, held between 12 and 14 November 2014 in Logroño, La Ri-oja, Spain.

  3. A History of Soil Science Education in the United States

    Science.gov (United States)

    Brevik, Eric C.

    2017-04-01

    The formal study of soil science is a fairly recent undertaking in academics. Fields like biology, chemistry, and physics date back hundreds of years, but the scientific study of soils only dates to the late 1800s. Academic programs to train students in soil science are even more recent, with the first such programs only developing in the USA in the early 1900s. Some of the first schools to offer soil science training at the university level included the University of North Carolina (UNC), Earlham College (EC), and Cornell University. The first modern soil science textbook published in the United States was "Soils, Their Properties and Management" by Littleton Lyon, Elmer Fippin and Harry Buckman in 1909. This has evolved over time into the popular modern textbook "The Nature and Properties of Soils", most recently authored by Raymond Weil and Nyle Brady. Over time soil science education moved away from liberal arts schools such as UNC and EC and became associated primarily with land grant universities in their colleges of agriculture. There are currently about 71 colleges and universities in the USA that offer bachelors level soil science degree programs, with 54 of these (76%) being land grant schools. In the 1990s through the early 2000s enrollment in USA soil science programs was on the decline, even as overall enrollment at USA colleges and universities increased. This caused considerable concern in the soil science community. More recently there is evidence that soil science student numbers may be increasing, although additional information on this potential trend is desirable. One challenge soil science faces in the modern USA is finding an academic home, as soils are taught by a wide range of fields and soils classes are taken by students in many fields of study, including soil science, a range of agricultural programs, environmental science, environmental health, engineering, geology, geography, and others.

  4. Reforming Science Education: Part II. Utilizing Kieran Egan's Educational Metatheory

    Science.gov (United States)

    Schulz, Roland M.

    2009-04-01

    This paper is the second of two parts and continues the conversation which had called for a shift in the conceptual focus of science education towards philosophy of education, with the requirement to develop a discipline-specific “philosophy” of science education. In Part I, conflicting conceptions of science literacy were identified with disparate “visions” tied to competing research programs as well as school-based curricular paradigms. The impasse in the goals of science education and thereto, the contending views of science literacy, were themselves associated with three underlying fundamental aims of education (knowledge-itself; personal development; socialization) which, it was argued, usually undercut the potential of each other. During periods of “crisis-talk” and throughout science educational history these three aims have repeatedly attempted to assert themselves. The inability of science education research to affect long-term change in classrooms was correlated not only to the failure to reach a consensus on the aims (due to competing programs and to the educational ideologies of their social groups), but especially to the failure of developing true educational theories (largely neglected since Hirst). Such theories, especially metatheories, could serve to reinforce science education’s growing sense of academic autonomy and independence from socio-economic demands. In Part II, I offer as a suggestion Egan’s cultural-linguistic theory as a metatheory to help resolve the impasse. I hope to make reformers familiar with his important ideas in general, and more specifically, to show how they can complement HPS rationales and reinforce the work of those researchers who have emphasized the value of narrative in learning science.

  5. Interdisciplinary Science Research and Education

    Science.gov (United States)

    MacKinnon, P. J.; Hine, D.; Barnard, R. T.

    2013-01-01

    Science history shows us that interdisciplinarity is a spontaneous process that is intrinsic to, and engendered by, research activity. It is an activity that is done rather than an object to be designed and constructed. We examine three vignettes from the history of science that display the interdisciplinary process at work and consider the…

  6. Interdisciplinary Science Research and Education

    Science.gov (United States)

    MacKinnon, P. J.; Hine, D.; Barnard, R. T.

    2013-01-01

    Science history shows us that interdisciplinarity is a spontaneous process that is intrinsic to, and engendered by, research activity. It is an activity that is done rather than an object to be designed and constructed. We examine three vignettes from the history of science that display the interdisciplinary process at work and consider the…

  7. Culture Matters in Science Education

    Science.gov (United States)

    Pang, Valerie Ooka; Lafferty, Karen Elizabeth; Pang, Jennifer M.; Griswold, Joan; Oser, Rick

    2014-01-01

    On the Saturday before Halloween, hundreds of students and their parents went from booth to booth participating in science activities at an annual Fall Festival and Learning Fair. The Fall Festival and Learning Fair is a valuable annual partnership where culturally relevant teaching engages each child in hands-on, standards-based science lessons.…

  8. Simulations as Scaffolds in Science Education

    DEFF Research Database (Denmark)

    Renken, Maggie; Peffer, Melanie; Otrel-Cass, Kathrin

    This book outlines key issues for addressing the grand challenges posed to educators, developers, and researchers interested in the intersection of simulations and science education. To achieve this, the authors explore the use of computer simulations as instructional scaffolds that provide strat...

  9. On the Reconstruction of Educational Science

    Science.gov (United States)

    Fritzell, Christer

    2006-01-01

    Ever since its formative years in the USA a century ago, the discipline of education has taken an uneasy stand on its own "scientific" status, not least with regard to the basic issue of the relationships between theory and practice. When a science of education was introduced as a panacea for rational planning in the fields of schooling and…

  10. Catalyzing curriculum evolution in graduate science education.

    Science.gov (United States)

    Gutlerner, Johanna L; Van Vactor, David

    2013-05-09

    Strategies in life science graduate education must evolve in order to train a modern workforce capable of integrative solutions to challenging problems. Our institution has catalyzed such evolution through building a postdoctoral Curriculum Fellows Program that provides a collaborative and scholarly education laboratory for innovation in graduate training.

  11. An international comparison of the science education priorities of ...

    African Journals Online (AJOL)

    South African Journal of Higher Education ... An international comparison of the science education priorities of science teachers, lecturers and students in two ... to utilise better science teaching methods; and to acquire more resources for ...

  12. University Science and Mathematics Education in Transition

    DEFF Research Database (Denmark)

    Skovsmose, Ole; Valero, Paola; Christensen, Ole Ravn

    of science and mathematics education in the current information society and provides insight essential for developing possibilities to improve science and mathematics education in universities all around the world. The uniquely broad treatment offered by University Science and Mathematics Education......More than ever, our time is characterized by rapid changes in the organization and the production of knowledge. This movement is deeply rooted in the evolution of the scientific endeavor, as well as in the transformation of the political, economic and cultural organization of society It is also...... clear that the transformation of knowledge outside universities has implied a change in the routes that research in mathematics, science and technology has taken in the last decades. In this context, it is difficult to avoid considering seriously the challenges that such a complex and uncertain social...

  13. The feasibility of educating trainee science teachers in issues of science and religion

    Science.gov (United States)

    Poole, Michael

    2016-06-01

    This article reflects on Roussel De Carvalho's paper `Science initial teacher education and superdiversity: educating science teachers for a multi-religious and globalized science classroom'. It then offers suggestions for making some of the ambitious goals of the science-and-religion components of the science initial teacher education project more manageable.

  14. Plagiarism challenges at Ukrainian science and education

    Directory of Open Access Journals (Sweden)

    Denys Svyrydenko

    2016-12-01

    Full Text Available The article analyzes the types and severity of plagiarism violations at the modern educational and scientific spheres using the philosophic methodological approaches. The author analyzes Ukrainian context as well as global one and tries to formulate "order of the day" of plagiarism challenges. The plagiarism phenomenon is intuitively comprehensible for academicians but in reality it has a very complex nature and a lot of manifestation. Using approaches of ethics, philosophical anthropology, philosophy of science and education author formulates the series of recommendation for overcoming of plagiarism challenges at Ukrainian science and education.

  15. Interactions of Economics of Science and Science Education: Investigating the Implications for Science Teaching and Learning

    Science.gov (United States)

    Erduran, Sibel; Mugaloglu, Ebru Z.

    2013-01-01

    In recent years, there has been upsurge of interest in the applications of interdisciplinary perspectives on science in science education. Within this framework, the implications of the so-called "economics of science" is virtually an uncharted territory. In this paper, we trace a set of arguments that provide a dialectic engagement with…

  16. Rhetoric and Reality: Science Teacher Educators' Views and Practice Regarding Science Process Skills

    Science.gov (United States)

    Molefe, Leonard; Stears, Michèle

    2014-01-01

    The importance of teaching science process skills in science education is well documented in the literature. Yet the issue of process skills had also been associated with debates on validity of a process approach to science education. This research was conducted to explore views of science teacher educators in initial teacher education programmes…

  17. Effectiveness and acceptance of web-based learning compared to traditional face-to-face learning for performance nutrition education.

    Science.gov (United States)

    Margolis, Lee M; Grediagin, Ann; Koenig, Chad; Sanders, LesLee F

    2009-10-01

    The objective of this study was to assess the effectiveness and acceptance of Web-based (WB) versus face-to-face (FF) lecturing. There were 48 soldiers stationed at Fort Bragg, NC who completed the study, participating in either a Web-based or face-to-face lecture on nutrition for performance. The lecture was 30 minutes long. Participants completed a prequiz and survey before the lecture and a postquiz and survey at its conclusion. Results showed there was no difference in the effectiveness of the two mediums on the basis of postquiz scores (Web-based group = 75.68; face-to-face group = 73.27; p = 0.436). Change in scores from pre to post also showed no difference between the two groups (p = 0.375). Assessing the acceptance of the two teaching mediums, there was no significant difference reported, except for the instructor's ability to answer questions (p = 0.05). The conclusion of this study is that Web-based learning can be an effective and acceptable tool for registered dietitians to educate soldiers on nutrition for performance.

  18. Problems Faced by Physical Handicapped Students in Educational Institutions in District Kohat

    Science.gov (United States)

    Hussain, Ishtiaq; Bashir, Muhammad; ud Din, Muhammad Naseer; Butt, Muhammad Naeem; Akhter, Shagufa; Inamullah, Hafiz

    2011-01-01

    The purpose of the study was to explore the problems faced by physical handicapped students in normal educational institutions and to find solutions to the problems faced by physical handicapped students. All the physical handicapped students studying in educational institutions in District Kohat constituted the population of the study. The study…

  19. Science and Common Sense: Perspectives from Philosophy and Science Education

    DEFF Research Database (Denmark)

    Green, Sara

    2016-01-01

    knowledge, distinguished by an increase in systematicity. On the other, he argues that scientific knowledge often comes to deviate from common sense as science develops. Specifically, he argues that a departure from common sense is a price we may have to pay for increased systematicity. I argue...... that to clarify the relation between common sense and scientific reasoning, more attention to the cognitive aspects of learning and doing science is needed. As a step in this direction, I explore the potential for cross-fertilization between the discussions about conceptual change in science education...... and philosophy of science. Particularly, I examine debates on whether common sense intuitions facilitate or impede scientific reasoning. While arguing that these debates can balance some of the assumptions made by Hoyningen-Huene, I suggest that a more contextualized version of systematicity theory could...

  20. Science and Common Sense: Perspectives from Philosophy and Science Education

    DEFF Research Database (Denmark)

    Green, Sara

    2016-01-01

    that to clarify the relation between common sense and scientific reasoning, more attention to the cognitive aspects of learning and doing science is needed. As a step in this direction, I explore the potential for cross-fertilization between the discussions about conceptual change in science education...... knowledge, distinguished by an increase in systematicity. On the other, he argues that scientific knowledge often comes to deviate from common sense as science develops. Specifically, he argues that a departure from common sense is a price we may have to pay for increased systematicity. I argue...... and philosophy of science. Particularly, I examine debates on whether common sense intuitions facilitate or impede scientific reasoning. While arguing that these debates can balance some of the assumptions made by Hoyningen-Huene, I suggest that a more contextualized version of systematicity theory could...

  1. Conversations about Science Education: A Retrospective of Science Education Research in "CJSTME"

    Science.gov (United States)

    Pegg, Jerine; Wiseman, Dawn; Brown, Carol

    2015-01-01

    This review focuses on science education contributions to the "Canadian Journal of Science, Mathematics and Technology Education" (CJSMTE) from January 2001 through December 2014. Through a combination of content and citation analysis, we examine the journal as a location for conversations around specific themes and broader ideas related…

  2. Comparing the Success of Students Enrolled in Distance Education Courses vs. Face-to-Face Classrooms.

    Science.gov (United States)

    Jackman, Diane H.; Swan, Michael K.

    2000-01-01

    Secondary students (n=623) enrolled in at least 1 distance education course (424 at remote sites) were studied. Distance education made no difference in grade point average (GPA); 12th graders at host sites had significantly lower GPA than those at remote sites; and student success was above average in distance education courses. (SK)

  3. Basic sciences curriculum in medical education

    Directory of Open Access Journals (Sweden)

    RITA REZAEE

    2013-01-01

    Full Text Available Introduction: Traditional methods are generally used for teaching basic science courses at Shiraz Medical School. Such courses are taught during the first and second years of a seven-year medical program. The goal of this study was to analyze teachers and students’ perceptions of basic science teaching in medical education. Methods: A descriptive cross-sectional study was conducted at the college of medicine of Shiraz University of Medical Sciences. Results: Regarding the students’ viewpoints, 71.4% reported that curriculum content in basic sciences was enough and had good relevance. 59.2% of students believed the objectives of basic sciences curriculum were clear. Conclusion: The burden of teaching basic sciences ranges from sustaining interest to clinical relevance. It is expected that medical schools will continuously monitor what works and what does not work with their curricula and make the necessary adaptations as required.

  4. Emphasizing Morals, Values, Ethics, and Character Education in Science Education and Science Teaching

    Science.gov (United States)

    Chowdhury, Mohammad

    2016-01-01

    This article presents the rationale and arguments for the presence of morals, values, ethics and character education in science curriculum and science teaching. The author examines how rapid science and technological advancements and globalization are contributing to the complexities of social life and underpinning the importance of morals, values…

  5. Sputnik's Impact on Science Education in America

    Science.gov (United States)

    Holbrow, Charles H.

    2007-04-01

    The launch of Sputnik, the world's first artificial Earth orbiting satellite, by the Soviet Union on October 4, 1957 was a triggering event. Before Sputnik pressure had been rising to mobilize America's intellectual resources to be more effective and useful in dealing with the Cold War. Sputnik released that pressure by stirring up a mixture of American hysteria, wounded self-esteem, fears of missile attacks, and deep questioning of the intellectual capabilities of popular democratic society and its educational system. After Sputnik the federal government took several remarkable actions: President Eisenhower established the position of Presidential Science Advisor; the House and the Senate reorganized their committee structures to focus on science policy; Congress created NASA -- the National Aeronautics and Space Agency -- and charged it to create a civilian space program; they tripled funding for the National Science Foundation to support basic research but also to improve science education and draw more young Americans into science and engineering; and they passed the National Defense Education Act which involved the federal government to an unprecedented extent with all levels of American education. I will describe some pre-Sputnik pressures to change American education, review some important effects of the subsequent changes, and talk about one major failure of change fostered by the national government.

  6. 75 FR 5771 - Institute of Education Sciences; Overview Information; Education Research and Special Education...

    Science.gov (United States)

    2010-02-04

    ... Institute of Education Sciences; Overview Information; Education Research and Special Education Research...'s FY 2011 competitions for grants to support education research and special education research. The... evaluation of State and local education programs and policies. The National Center for Special Education...

  7. Trends in Information Science Education.

    Science.gov (United States)

    Fosdick, Howard

    1984-01-01

    Surveys were performed in 1977 and 1982 to determine trends in graduate library and information science instruction in five main course categories: library automation, information storage and retrieval, systems analysis, interactive computer systems, and programing. Results of analyses of school course catalogs are compared and current trends are…

  8. Outdoor Education and Science Achievement

    Science.gov (United States)

    Rios, José M.; Brewer, Jessica

    2014-01-01

    Elementary students have limited opportunities to learn science in an outdoor setting at school. Some suggest this is partially due to a lack of teacher efficacy teaching in an outdoor setting. Yet the research literature indicates that outdoor learning experiences develop positive environmental attitudes and can positively affect science…

  9. Enhancing Science Education through Art

    Science.gov (United States)

    Merten, Susan

    2011-01-01

    Augmenting science with the arts is a natural combination when one considers that both scientists and artists rely on similar attitudes and values. For example, creativity is often associated with artists, but scientists also use creativity when seeking a solution to a problem or creating a new product. Curiosity is another common trait shared…

  10. Science education crisis: Problems, solutions discussed

    Science.gov (United States)

    Wolcott, John

    Public concern about the state of science education in America at the pre-college and college levels is widespread, triggered largely by the perception that we are losing ground in the global economy. Science, and particularly technology, are seen as our most likely sources of recovery. For those who recall the public reaction to the launching of Sputnik by Russia in 1957, the present mood is similar, if somewhat less intense.AGU members are in a unique position to influence debate about the science education crisis. Many of us, either as experts in some subset of physical science issues, as teachers at the college level, or even as parents observing our children's experiences in elementary or secondary school classrooms, may offer insight to this debate.

  11. Situated Learning in Computer Science Education

    Science.gov (United States)

    Ben-Ari, Mordechai

    2004-06-01

    Sociocultural theories of learning such as Wenger and Lave's situated learning have been suggested as alternatives to cognitive theories of learning like constructivism. This article examines situated learning within the context of computer science (CS) education. Situated learning accurately describes some CS communities like open-source software development, but it is not directly applicable to other CS communities, especially those that deal with non-CS application areas. Nevertheless, situated learning can inform CS education by analyzing debates on curriculum and pedagogy within this framework. CS educators should closely examine professional CS communities of practice and design educational activities to model the actual activities of those communities.

  12. Science Teachers’ Views about the Science Fair at Primary Education Level

    OpenAIRE

    Hasan Said TORTOP

    2013-01-01

    Science fair is an environment where students present their scientific research projects. Opinions of science teachers who participated as a mentor in science fair are important for determining of the science fair quality and its contribution of science education. The aim of study was to determine science teachers’ views about the science fair at primary education level in Turkey. In this qualitative study, seven science teachers who worked in A city in Turkey were interviewed regarding a nat...

  13. The Challenges Faced by Science Teachers When Teaching Outside Their Specific Science Specialism

    Science.gov (United States)

    Mizzi, Doreen

    2013-01-01

    Several research studies have been conducted with novice and experienced teachers when teaching within and outside their subject specialism. This paper aims to review a number of these studies and highlights key points concerning the teaching of different science subjects at secondary level and teachers' level of self-confidence. Teachers face…

  14. Science Education and Education for Citizenship and Sustainable Development

    Science.gov (United States)

    Johnston, Ronald

    2011-01-01

    In the United Kingdom (UK) and Europe, the need for education for sustainable development and global citizenship has recently been emphasised. This emphasis has arguably found its major home in the social studies in higher education. Concurrently, there has been a decline in interest in "the sciences" as evidenced by a reduction in the…

  15. Nordic science and technology entrepreneurship education

    DEFF Research Database (Denmark)

    Warhuus, Jan P.; Basaiawmoit, Rajiv Vaid

    As a university discipline, entrepreneurship education (EEd) has moved from whether it can be taught, to what and how it should be taught (Kuratko 2005) and beyond the walls of the business school (Hindle 2007), where a need for a tailored, disciplinary approach is becoming apparent. Within science......, findings, and knowledge. The objective of this paper is to decode this tacit knowledge within Nordic science and technology institutions, and use it to provide guidance for future EEd program designs and improvements....

  16. How can science education foster students' rooting?

    Science.gov (United States)

    Østergaard, Edvin

    2015-06-01

    The question of how to foster rooting in science education points towards a double challenge; efforts to prevent (further) uprooting and efforts to promote rooting/re-rooting. Wolff-Michael Roth's paper discusses the uprooting/rooting pair of concepts, students' feeling of alienation and loss of fundamental sense of the earth as ground, and potential consequences for teaching science in a rooted manner. However, the argumentation raises a number of questions which I try to answer. My argumentation rests on Husserl's critique of science and the "ontological reversal", an ontological position where abstract models from science are considered as more real than the everyday reality itself, where abstract, often mathematical, models are taken to be the real causes behind everyday experiences. In this paper, measures towards an "ontological re-reversal" are discussed by drawing on experiences from phenomenon-based science education. I argue that perhaps the most direct and productive way of promoting rooting in science class is by intentionally cultivating the competencies of sensing and aesthetic experience. An aesthetic experience is defined as a precognitive, sensuous experience, an experience that is opened up for through sensuous perception. Conditions for rooting in science education is discussed against three challenges: Restoring the value of aesthetic experience, allowing time for open inquiry and coping with curriculum. Finally, I raise the question whether dimensions like "reality" or "nature" are self-evident for students. In the era of constructivism, with its focus on cognition and knowledge building, the inquiry process itself has become more important than the object of inquiry. I argue that as educators of science teachers we have to emphasize more explicitly "the nature of nature" as a field of exploration.

  17. Science Teachers' Views about the Science Fair at Primary Education Level

    Science.gov (United States)

    Tortop, Hasan Said

    2013-01-01

    Science fair is an environment where students present their scientific research projects. Opinions of science teachers who participated as a mentor in science fair are important for determining of the science fair quality and its contribution of science education. The aim of study was to determine science teachers' views about the science fair at…

  18. What Is "Agency"? Perspectives in Science Education Research

    Science.gov (United States)

    Arnold, Jenny; Clarke, David John

    2014-01-01

    The contemporary interest in researching student agency in science education reflects concerns about the relevance of schooling and a shift in science education towards understanding learning in science as a complex social activity. The purpose of this article is to identify problems confronting the science education community in the development…

  19. What Is "Agency"? Perspectives in Science Education Research

    Science.gov (United States)

    Arnold, Jenny; Clarke, David John

    2014-01-01

    The contemporary interest in researching student agency in science education reflects concerns about the relevance of schooling and a shift in science education towards understanding learning in science as a complex social activity. The purpose of this article is to identify problems confronting the science education community in the development…

  20. Analogies in science education: contributions and challenges

    Directory of Open Access Journals (Sweden)

    Maria da Conceição Duarte

    2005-03-01

    Full Text Available An analogy is a comparison between domains of knowledge that have similarities at the levels of characteristics and relationships. Several authors highlight the importance of this tool in the teaching and learning of difficult scientific concepts. Nevertheless, some problems associated to the use of analogies have been found. This paper aims at contributing to a better understanding of the use of analogies in science education, by means of a review of the state of art regarding this matter. It will take into account its contribution to science education as well as the challenges to further research

  1. Initial Science Teacher Education in Portugal: The Thoughts of Teacher Educators About the Effects of the Bologna Process

    Science.gov (United States)

    Leite, Laurinda; Dourado, Luís; Morgado, Sofia

    2016-12-01

    Between the 1980s and 2007, Portugal used to have one-stage (5-year period) initial teacher education (ITE) programs. In 2007 and consistent with the Bologna process guidelines, Portuguese teacher education moved toward a two-stage model, which includes a 3-year undergraduate program of subject matter that leads to a licenciatura (or bachelor) degree and a 3-year professional master in the teaching of a subject. The way that teacher educators perceive the ITE programs effects the education of prospective teachers and consequently the future of science education. This paper aims at analyzing how science teacher educators perceived the changes that took place in this formal way of educating junior school (7th-9th grades) and high school (10th-12th grades) science teachers in Portugal, due to the implementation of the Bologna guidelines. To attain the objectives of the study, 33 science teacher educators including science specialists and science education specialists answered an open-ended online questionnaire, which focused on the strengths and weaknesses of the pre- and post-Bologna ITE programs, the overall quality of teacher education and measures for improving ITE. The results indicate that science teacher educators were quite happy with all of the ITE models, but they expressed the belief that both the science and the teaching practice components should be strengthened in the post-Bologna masters in teaching. Meanwhile, changes were introduced in Portuguese educational laws, and they proved to be consistent with the opinions of the participants. However, the professional development of teacher educators along with evidence-based ITE programs seems to be necessary conditions for overcoming the challenges that teacher education is still facing in Portugal and worldwide.

  2. Lonergan's Theory of Cognition, Constructivism and Science Education

    Science.gov (United States)

    Roscoe, Keith

    2004-01-01

    Recent research literature in science education, science curriculum documents, and science methods texts have been highly influenced by constructivist views of how students learn science. But the widespread and often uncritical acceptance of constructivism in science education does not reflect the heated debate between constructivists and…

  3. Modern Romanian Library Science Education

    Directory of Open Access Journals (Sweden)

    Elena Tîrziman

    2015-01-01

    Full Text Available Library and Information Science celebrates 25 years of modern existence. An analysis of this period shows a permanent modernisation of this subject and its synchronisation with European realities at both teaching and research levels. The evolution of this subject is determined by the dynamics of the field, the quick evolution of the information and documenting trades in close relationship with science progress and information technologies. This major ensures academic training (Bachelor, Master, and Doctor and post-graduation studies and is involved in research projects relevant for the field and the labour market. Exigencies of the information-related trades and the appearance of new jobs are challenges for this academic major.

  4. Philosophy of Science and Education

    Science.gov (United States)

    Jung, Walter

    2012-01-01

    This is a vast and vague topic. In order to do justice to it one has to write a book or maybe more than one. For it can be understood in quite different ways and on different levels. For example you may think mainly of the historical aspect, that is how philosophy of science developed in the last hundred or so years and how its influence on…

  5. Misrecognition and science education reform

    Science.gov (United States)

    Brandt, Carol B.

    2012-09-01

    In this forum, I expand upon Teo and Osborne's discussion of teacher agency and curriculum reform. I take up and build upon their analysis to further examine one teacher's frustration in enacting an inquiry-based curriculum and his resulting accommodation of an AP curriculum. In this way I introduce the concept of misrecognition (Bourdieu and Passeron 1977) to open up new ways of thinking about science inquiry and school reform.

  6. Science academy statements on water, health, and science education

    Science.gov (United States)

    Showstack, Randy

    2011-05-01

    Several days prior to the Group of 8 (G8) summit of nations on 26-27 May in Deauville, France, science academies from those nations and five others issued joint statements calling for the governments to take actions regarding water and health as well as science education. The water and health statement indicates that nearly 3 billion people will be living in water-scarce countries by 2050 and that 2.6 billion already lack access to proper sanitation and nearly 900 million lack access to a clean water supply. The statement calls for developing basic infrastructure for sanitation, promoting education to change the behavior of populations regarding water supply, funding research and development to identify pathogens, and improving water management and hygiene standards, among other measures.

  7. Rural science education as social justice

    Science.gov (United States)

    Eppley, Karen

    2017-03-01

    What part can science education play in the dismantling of obstacles to social justice in rural places? In this Forum contribution, I use "Learning in and about Rural Places: Connections and Tensions Between Students' Everyday Experiences and Environmental Quality Issues in their Community"(Zimmerman and Weible 2016) to explicitly position rural education as a project of social justice that seeks full participatory parity for rural citizens. Fraser's (2009) conceptualization of social justice in rural education requires attention to the just distribution of resources, the recognition of the inherent capacities of rural people, and the right to equal participation in democratic processes that lead to opportunities to make decisions affecting local, regional, and global lives. This Forum piece considers the potential of place-based science education to contribute to this project.

  8. Rural science education as social justice

    Science.gov (United States)

    Eppley, Karen

    2016-12-01

    What part can science education play in the dismantling of obstacles to social justice in rural places? In this Forum contribution, I use "Learning in and about Rural Places: Connections and Tensions Between Students' Everyday Experiences and Environmental Quality Issues in their Community"(Zimmerman and Weible 2016) to explicitly position rural education as a project of social justice that seeks full participatory parity for rural citizens. Fraser's (2009) conceptualization of social justice in rural education requires attention to the just distribution of resources, the recognition of the inherent capacities of rural people, and the right to equal participation in democratic processes that lead to opportunities to make decisions affecting local, regional, and global lives. This Forum piece considers the potential of place-based science education to contribute to this project.

  9. Putting the scientist in science education

    Energy Technology Data Exchange (ETDEWEB)

    Greene, J.P. [Argonne National Lab., IL (United States)

    1994-12-31

    A personal account is given of some of the ways scientists could get involved in science education at the local level. Being employed at a National Laboratory such as Argonne presents a myriad of opportunities and programs involving the educational community. There have been basically, three areas of involvement at present, through our Division of Educational Programs (DEP), through initiatives presented, in conjunction with the Argonne Chapter of Sigma Xi and a volunteer effort with the Museum of Science and Industry of Chicago, Scientists, and School Program. Some descriptions of these efforts will be outlined from a personal perspective, and hopefully a measure of the impact gained by the scientists` involvement in the education process.

  10. On the Road to Science Education for Sustainability?

    Science.gov (United States)

    Albe, Virginie

    2013-01-01

    In this paper I discuss three issues relevant to the ideas introduced by Colucci-Gray, Perazzone, Dodman and Camino (2012) in their three-part paper on epistemological reflections and educational practice for science education for sustainability: (1) social studies of science for science education, (2) education for sustainability or sustainable…

  11. The Importance of Place in Indigenous Science Education

    Science.gov (United States)

    Sutherland, Dawn; Swayze, Natalie

    2012-01-01

    In this issue of Cultural Studies of Science Education, Mack and colleagues (Mack et al. "2011") seek to identify the necessary components of science education in Indigenous settings. Using a review of current research in informal science education in Indigenous settings, along with personal interviews with American educators engaged in…

  12. The Importance of Place in Indigenous Science Education

    Science.gov (United States)

    Sutherland, Dawn; Swayze, Natalie

    2012-01-01

    In this issue of Cultural Studies of Science Education, Mack and colleagues (Mack et al. "2011") seek to identify the necessary components of science education in Indigenous settings. Using a review of current research in informal science education in Indigenous settings, along with personal interviews with American educators engaged in these…

  13. Science Education and the Science-Technology-Society (S-T-S) Theme.

    Science.gov (United States)

    Bybee, Rodger W.

    1987-01-01

    Aims to clarify the relationship between science education and the science-technology-society (STS) theme and to develop a justification for the inclusion of the STS theme. Examines the current debate over definitions in science education, and provides an historical perspective of science education's purpose as a social institution. (TW)

  14. Science-Technology-Society (STS): A New Paradigm in Science Education

    Science.gov (United States)

    Mansour, Nasser

    2009-01-01

    Changes in the past two decades of goals for science education in schools have induced new orientations in science education worldwide. One of the emerging complementary approaches was the science-technology-society (STS) movement. STS has been called the current megatrend in science education. Others have called it a paradigm shift for the field…

  15. Investigating science teachers' beliefs about science and science teaching: Struggles in implementing science education reform in Saudi Arabia

    Science.gov (United States)

    Al-Abdulkareem, Saleh A. M.

    The purposes of this quantitative, descriptive study were to investigate Saudi science teachers' beliefs about science and science teaching, and to determine how do Saudi science teachers view educational reform in science and how do they view change in education. In addition, the study sought to establish whether Saudi science teachers would be able to participate in implementing science education reform in Saudi Arabia. A questionnaire was used to collect data, addressing personal characteristics of the participant, teachers' beliefs about science and nature, about school science, about teacher - student relations in the classroom, and environmental factors affecting teaching science. Finally, the questionnaire ended with three open-ended questions about teacher's belief regarding: science and nature, teaching science, and reforming science curriculum. The sample was 329, consisting of 298 science teachers and 31 supervisors. The data were analyzed using SPSS (Statistical Package for the Social Studies). The data are analyzed and reported in percentages, means, standard deviations, and frequencies. The responses to open-ended questions were analyzed using the qualitative method. The responses were categorized in subsets using the coding method. Based on the review of the literature and the findings of this research, it was apparent that differences exist between teachers' beliefs about science and teaching and their teaching methods. Although Saudi science teachers presented inquiry-based views about science, nature, and teaching science, they do not practice these views in science class. The findings of the study imply that educational reform in science education must simultaneously address all the components of an educational system and the concept of systemic reform, as will as the need for a standards-based learning system and establishing Benchmarks for science in Saudi education. The conclusions of the study indicated that a curriculum reform project needs

  16. Questioning Two Myths in Computer Science Education

    OpenAIRE

    2014-01-01

    Part 1: Key Competencies for Educating ICT Professionals; International audience; This paper examines two statements regarding computer science as a discipline and its theoretical basis. We shall demonstrate how those statements are questionable and in addition they tend to hide the real root-causes of some significant educational issues. Those statements are very popular in the scientific community and have noteworthy negative effect on the researchers who frequently double their efforts and...

  17. Augmented Reality in Science Education

    DEFF Research Database (Denmark)

    Nielsen, Birgitte Lund; Brandt, Harald; Swensen, Hakon

    Augmented reality (AR) holds great promise as a learning tool. However, most extant studies in this field have focused on the technology itself. The poster presents findings from the first stage of the AR-sci project addressing the issue of applying AR for educational purposes. Benefits...

  18. Augmented Reality in Science Education

    DEFF Research Database (Denmark)

    Nielsen, Birgitte Lund; Brandt, Harald; Swenson, Hakon

    2015-01-01

    Augmented reality (AR) holds great promise as a learning tool. However, most extant studies in this field have focused on the technology itself. The poster presents findings from the first stage of the AR-sci project addressing the issue of applying AR for educational purposes. Benefits...

  19. Prerequisites in behavioral science and business: opportunities for dental education.

    Science.gov (United States)

    Dunning, David G; Lange, Brian M; Madden, Robert D; Tacha, Koko K

    2011-01-01

    There is increasing pressure on recent dental school graduates to understand and successfully utilize patient management and business management strategies to run a productive dental office. Dental schools are faced with the dilemma to either add more credit hours in their already crowded curriculum or adjust predental school requirements. All fifty-nine U.S. dental schools were assessed online to determine admission requirements in the areas of behavioral science and business education. Results show that only 11.9 percent of the schools require prerequisite course work in behavioral science and no school requires prerequisite course work in business. However, 64.4 percent and 30.5 percent of schools encouraged or recommended prerequisite course work in behavioral science and business, respectively. We suggest that the dental education community involve key stakeholders to discuss the incorporation of prerequisite course work in behavioral science and business. Additional courses in these disciplines would provide dental students better backgrounds from which the dental curriculum could build a more advanced and applied perspective to better prepare students for practice.

  20. Facing the educational challenges in South Africa: an educophilosophical reflection

    Directory of Open Access Journals (Sweden)

    C.T. Viljoen

    1998-03-01

    Full Text Available The educational challenge in South Africa is currently demonstrated by the fact that education is seen as a priority on all agendas, be they national, provincial or local. Developments in society compel educational thinkers to rethink the role and status of education in a democratic society. In this article an educo-philosophical perspective is applied in an attempt to analyse some of the developments that might have an influence on educational thought and practice.

  1. The Feasibility of Educating Trainee Science Teachers in Issues of Science and Religion

    Science.gov (United States)

    Poole, Michael

    2016-01-01

    This article reflects on Roussel De Carvalho's paper "Science initial teacher education and superdiversity: educating science teachers for a multi-religious and globalized science classroom" (EJ1102211). It then offers suggestions for making some of the ambitious goals of the science-and-religion components of the science initial teacher…

  2. The Philosophical and Sociological Foundations of Science Education: The Demythologizing of School Science

    Science.gov (United States)

    Smolicz, J. J.; Nunan, E. E.

    1975-01-01

    Examines the relationships and interactions between the image of science, the philosophy of science, and the philosophy of science education. Investigates the fragmentation in science and the effects of this fragmentation upon providing educationists with a theoretical support in science education. (GS)

  3. The Feasibility of Educating Trainee Science Teachers in Issues of Science and Religion

    Science.gov (United States)

    Poole, Michael

    2016-01-01

    This article reflects on Roussel De Carvalho's paper "Science initial teacher education and superdiversity: educating science teachers for a multi-religious and globalized science classroom" (EJ1102211). It then offers suggestions for making some of the ambitious goals of the science-and-religion components of the science initial teacher…

  4. Beyond Commercialization: Science, Higher Education and the Culture of Neoliberalism

    Science.gov (United States)

    Kleinman, Daniel Lee; Feinstein, Noah Weeth; Downey, Greg

    2013-10-01

    Since the 1980s, scholars and others have been engaged in a lively debate about the virtues and dangers of mingling commerce with university science. In this paper, we contend that the commercialization of academic science, and higher education more broadly, are best understood as pieces of a larger story. We use two cases of institutional change at the University of Wisconsin-Madison to shed light on the implications of neoliberalism for public research universities in the United States. We conclude that instead of neoliberalization being a timely strategy for the specific fiscal and other problems facing public universities today, it has become an omnibus solution available to be employed when any opportunity arises and, in fact, helps to define the "problems" of the university in the first place.

  5. Understanding adolescent student perceptions of science education

    Science.gov (United States)

    Ebert, Ellen Kress

    This study used the Relevance of Science Education (ROSE) survey (Sjoberg & Schreiner, 2004) to examine topics of interest and perspectives of secondary science students in a large school district in the southwestern U.S. A situated learning perspective was used to frame the project. The research questions of this study focused on (a) perceptions students have about themselves and their science classroom and how these beliefs may influence their participation in the community of practice of science; (b) consideration of how a future science classroom where the curriculum is framed by the Next Generation Science Standards might foster students' beliefs and perceptions about science education and their legitimate peripheral participation in the community of practice of science; and (c) reflecting on their school science interests and perspectives, what can be inferred about students' identities as future scientists or STEM field professionals? Data were collected from 515 second year science students during a 4-week period in May of 2012 using a Web-based survey. Data were disaggregated by gender and ethnicity and analyzed descriptively and by statistical comparison between groups. Findings for Research Question 1 indicated that boys and girls showed statistically significant differences in scientific topics of interest. There were no statistical differences between ethnic groups although. For Research Question 2, it was determined that participants reported an increase in their interest when they deemed the context of the content to be personally relevant. Results for Research Question 3 showed that participants do not see themselves as youthful scientists or as becoming scientists. While participants value the importance of science in their lives and think all students should take science, they do not aspire to careers in science. Based on this study, a need for potential future work has been identified in three areas: (a) exploration of the perspectives and

  6. How a Deweyan science education further enables ethics education

    Science.gov (United States)

    Webster, Scott

    2008-09-01

    This paper questions the perceived divide between ‘science’ subject matter and ‘moral’ or ‘ethical’ subject matter. A difficulty that this assumed divide produces is that science teachers often feel that there needs to be ‘special treatment’ given to certain issues which are of an ethical or moral nature and which are ‘brought into’ the science class. The case is made in this article that dealing with ethical issues in the science class should not call for a sensitivity that is beyond the expertise of the science teacher. Indeed it is argued here that science teachers in particular have a great deal to offer in enabling ethics education. To overcome this perceived divide between science and values it needs to be recognised that the educative development of learners is both scientific and moral. I shall be using a Deweyan perspective to make the case that we as science teachers can overcome this apparent divide and significantly contribute to an ethics education of our students.

  7. Regulatory Science in Professional Education.

    Science.gov (United States)

    Akiyama, Hiroshi

    2017-01-01

     In the field of pharmaceutical sciences, the subject of regulatory science (RS) includes pharmaceuticals, food, and living environments. For pharmaceuticals, considering the balance between efficacy and safety is a point required for public acceptance, and in that balance, more importance is given to efficacy in curing disease. For food, however, safety is the most important consideration for public acceptance because food should be essentially free of risk. To ensure food safety, first, any hazard that is an agent in food or condition of food with the potential to cause adverse health effects should be identified and characterized. Then the risk that it will affect public health is scientifically analyzed. This process is called risk assessment. Second, risk management should be conducted to reduce a risk that has the potential to affect public health found in a risk assessment. Furthermore, risk communication, which is the interactive exchange of information and opinions concerning risk and risk management among risk assessors, risk managers, consumers, and other interested parties, should be conducted. Food safety is ensured based on risk analysis consisting of the three components of risk assessment, risk management, and risk communication. RS in the field of food safety supports risk analysis, such as scientific research and development of test methods to evaluate food quality, efficacy, and safety. RS is also applied in the field of living environments because the safety of environmental chemical substances is ensured based on risk analysis, similar to that conducted for food.

  8. Education in Soil Science: the Italian approach

    Science.gov (United States)

    Benedetti, Anna; Canfora, Loredana; Dazzi, Carmelo; Lo Papa, Giuseppe

    2017-04-01

    The Italian Society of Soil Science (SISS) was founded in Florence on February 18th, 1952. It is an association legally acknowledged by Decree of the President of the Italian Republic in February 1957. The Society is member of the International Union of Soil Sciences (IUSS) of the European Confederation of Soil Science Societies (ECSSS) and collaborates with several companies, institutions and organizations having similar objectives or policy aspects. SISS promotes progress, coordination and dissemination of soil science and its applications encouraging relationships and collaborations among soil lovers. Within the SISS there are Working Groups and Technical Committees for specific issues of interest. In particular: • the Working Group on Pedotechniques; • the Working Group on Hydromorphic and Subaqueous Soils and • the Technical Committee for Soil Education and Public Awareness. In this communication we wish to stress the activities developed since its foundation by SISS to spread soil awareness and education in Italy through this last Technical Committee, focusing also the aspect concerning grants for young graduates and PhD graduates to stimulate the involvement of young people in the field of soil science. Keywords: SISS, soil education and awareness.

  9. State infrastructure support for science education reform

    Energy Technology Data Exchange (ETDEWEB)

    Buccino, A.

    1994-12-31

    Discussing state infrastructure support for science education reform is a little daunting. At the state level, there is simply nothing comparable to the federal establishment. There are state science academies, but they generally do not have the stature and influence of the National Academy of Sciences. In large states like California, governors may have formally designated science advisors, but there are no agencies comparable to NSF of NASA or the Defense Department, owing to the national character of the mission of these agencies. Although science and mathematics education has been pronounced a major national concern, some states do not agree. For example, some states did not bother to apply for a Statewide Systematic Initiative project, and at least one state declined to do so because its governor did not think his state needed it. We need to come to grips with standard-based education and support commitment to it and to its implementation. The central issue here is state and local implementation of the leadership coming from the federal government and expressed in Goals 2000 and Pathways to Excellence.

  10. The Impact of Television on Science Education

    Science.gov (United States)

    Cohen, David

    1970-01-01

    Reviews literature on effectiveness of educational television (ETV) and reports trends in ETV utilization by Victorian secondary school science teachers. Discusses potential improvements in ETV utilization using electronic video recording devices, feedback to the television teachers, and identification of effective ETV techniques. (AL)

  11. Science Education, Integral Inquiry, Transformation and Possibility

    Science.gov (United States)

    Stack, Sue

    2013-01-01

    This paper is written in response to Nancy Davis's article "Integral Methodological Pluralism in Science Education Research: Valuing Multiple Perspectives." I use Integral Theory as a framing for this response to explore how it might offer different perspectives and ways of inquiring into Nancy's paper. This process highlights…

  12. An Ethically Ambitious Higher Education Data Science

    Science.gov (United States)

    Stevens, Mitchell L.

    2014-01-01

    The new data sciences of education bring substantial legal, political, and ethical questions about the management of information about learners. This piece provides a synoptic view of recent scholarly discussion in this domain and calls for a proactive approach to the ethics of learning research.

  13. Situated Learning in Computer Science Education

    Science.gov (United States)

    Ben-Ari, Mordechai

    2004-01-01

    Sociocultural theories of learning such as Wenger and Lave's situated learning have been suggested as alternatives to cognitive theories of learning like constructivism. This article examines situated learning within the context of computer science (CS) education. Situated learning accurately describes some CS communities like open-source software…

  14. New Biological Sciences, Sociology and Education

    Science.gov (United States)

    Youdell, Deborah

    2016-01-01

    Since the Human Genome Project mapped the gene sequence, new biological sciences have been generating a raft of new knowledges about the mechanisms and functions of the molecular body. One area of work that has particular potential to speak to sociology of education, is the emerging field of epigenetics. Epigenetics moves away from the mapped…

  15. The Learning Sciences and Liberal Education

    Science.gov (United States)

    Budwig, Nancy

    2013-01-01

    This article makes the case for a new framing of liberal education based on several decades of research emerging from the learning and developmental sciences. This work suggests that general knowledge stems from acquiring both the habits of mind and repertoires of practice that develop from participation in knowledge-building communities. Such…

  16. New Biological Sciences, Sociology and Education

    Science.gov (United States)

    Youdell, Deborah

    2016-01-01

    Since the Human Genome Project mapped the gene sequence, new biological sciences have been generating a raft of new knowledges about the mechanisms and functions of the molecular body. One area of work that has particular potential to speak to sociology of education, is the emerging field of epigenetics. Epigenetics moves away from the mapped…

  17. Psychology's Role in Mathematics and Science Education

    Science.gov (United States)

    Newcombe, Nora S.; Ambady, Nalini; Eccles, Jacquelynne; Gomez, Louis; Klahr, David; Linn, Marcia; Miller, Kevin; Mix, Kelly

    2009-01-01

    Improving mathematics and science education in the United States has been a matter of national concern for over half a century. Psychology has a vital role to play in this enterprise. In this article, the authors review the kinds of contributions that psychology can make in four areas: (a) early understanding of mathematics, (b) understanding of…

  18. How Can Science Education Foster Students' Rooting?

    Science.gov (United States)

    Østergaard, Edvin

    2015-01-01

    The question of how to foster rooting in science education points towards a double challenge; efforts to "prevent" (further) uprooting and efforts to "promote" rooting/re-rooting. Wolff-Michael Roth's paper discusses the uprooting/rooting pair of concepts, students' feeling of alienation and loss of fundamental sense of the…

  19. Science Education, Integral Inquiry, Transformation and Possibility

    Science.gov (United States)

    Stack, Sue

    2013-01-01

    This paper is written in response to Nancy Davis's article "Integral Methodological Pluralism in Science Education Research: Valuing Multiple Perspectives." I use Integral Theory as a framing for this response to explore how it might offer different perspectives and ways of inquiring into Nancy's paper. This process highlights…

  20. Population Education in Science: Some Sample Lessons.

    Science.gov (United States)

    United Nations Educational, Scientific, and Cultural Organization, Bangkok (Thailand). Regional Office for Education in Asia and Oceania.

    This science teacher's manual contains nine sample population education lessons adapted from materials produced in several countries in Asia and Oceania. Activities are designed for lower primary through high school students. Included are class discussions, small group activities, and a role-playing situation. Food chains, human dependence upon…

  1. [Museums, science, and education: new challenges].

    Science.gov (United States)

    Valente, Maria Esther; Cazelli, Sibele; Alves, Fátima

    2005-01-01

    The article discusses how the social role of science museums is shaped by scientific and technological endeavor, society's demands, and educational issues, above all in negotiations with a museum's audiences. The text also analyzes the trajectory taken by Brazil's science museums in their process of consolidation and the changes current society has imposed on these institutes. Communication has become the center of the discussion on museum culture, particularly in that it adjusts the educational aspect according to the conception of social practices, which are deemed fundamental resources. Lastly, the article examines the incorporation of the ideas of 'risk' and 'uncertainty', produced by science, into this new way of thinking about museums, which values the public and the communication processes.

  2. Education in Countries in Transition Facing Globalization--A Case Study Croatia

    Science.gov (United States)

    Slaus, Ivo; Slaus-Kokotovic, Andrea; Morovic, Jasenka

    2004-01-01

    The status of the educational system of Croatia is presented and several human development indicators for Croatia are compared with those of other countries in transition. The role of education in facing globalisation and in assuring sustainable development is analysed. The aims of various levels of education: primary, secondary and higher…

  3. Peace Education Research in the Twenty-First Century: Three Concepts Facing Crisis or Opportunity?

    Science.gov (United States)

    Cremin, Hilary

    2016-01-01

    This article focuses on the concepts of peace, education and research, and the ways in which they combine to form the field of peace education and peace education research. It discusses the ways in which each can be said to be facing a crisis of legitimation, representation and praxis, and the structural and cultural violence that inhibit efforts…

  4. Re-Searching Secondary Teacher Trainees in Distance Education and Face-to-Face Mode: Study of Their Background Variables, Personal Characteristics and Academic Performance

    Science.gov (United States)

    Garg, Mamta; Gakhar, Sudesh

    2011-01-01

    The present investigation was conducted to describe and compare the background variables, personal characteristics and academic performance of secondary teacher trainees in distance education and face-to-face mode. The results indicated that teacher trainees in distance education differed from their counterparts in age, marital status, sex and…

  5. Higher Education in Hungary: Facing the Political Transition.

    Science.gov (United States)

    Kozma, Tamas

    1990-01-01

    This article stresses the importance of the integration of Hungary's higher education system into Europe's, in a discussion which covers the Hungarian system's structure and functions; participation in higher education; organization and management; and finance. (DB)

  6. Enhancing the "Science" in Elementary Science Methods: A Collaborative Effort between Science Education and Entomology.

    Science.gov (United States)

    Boardman, Leigh Ann; Zembal-Saul, Carla; Frazier, Maryann; Appel, Heidi; Weiss, Robinne

    Teachers' subject matter knowledge is a particularly important issue in science education in that it influences instructional practices across subject areas and at different grade levels. This paper provides an overview of efforts to develop a unique elementary science methods course and related field experience through a partnership between…

  7. Radiation risk and science education

    Energy Technology Data Exchange (ETDEWEB)

    Eijkelhof, H.M.C. [Utrecht Univ. (Netherlands). Centre for Science and Mathematics Education

    1996-12-31

    Almost everywhere the topic of radioactivity is taught in the physics or chemistry classes of secondary schools. The question has been raised whether the common approach of teaching this topic would contribute to a better understanding of the risks of ionising radiation: and, if the answer is negative, how to explain and improve this situation? In a Dutch research programme which took almost ten years, answers to this question have been sought by means of analyses of newspaper reports, curriculum development, consultation with radiation experts, physics textbook analysis, interviews and questionnaires with teachers and pupils, class observations and curriculum development. Th main results of this study are presented and some recommendations given for science teaching and for communication with the public in general as regards radiation risk. (author).

  8. Structural Adjustment and the Changing Face of Education.

    Science.gov (United States)

    Carnoy, Martin

    1995-01-01

    Reviews educational reforms being made in an era of economic restructuring, including those driven by competitiveness, those made in response to reduced public funding for education, and those made to improve education's role in social mobility and equalization. Suggests an alternative model based on newly industrialized Asian countries. (SK)

  9. Charter Schools: Today. Changing the Face of American Education.

    Science.gov (United States)

    Center for Education Reform, Washington, DC.

    This progress report reviews comprehensive research on the impact of the nation's charter schools on education and the education system. Chapter 1 looks at the "ripple effect" charter schools have on public schools. Charter schools' efforts to improve public education create new choices for parents. The competition causes public schools…

  10. Persuasion and attitude change in science education

    Science.gov (United States)

    Koballa, Thomas R., Jr.

    Many strategies used to induce the occurrence of desirable science-related beliefs, attitudes, and behaviors involve the use of persuasive messages. Science educators need to become acquainted with persuasion in the context of social influence and learning theory to be able to evaluate its usefulness in the science education milieu. Persuasion is the conscious attempt to bring about a jointly developed mental state common to both source and receiver through the use of symbolic cues, and it can be distinguished from other forms of social influence. Propaganda is a type of persuasion directed toward a mass audience. Coercion relies on reinforcement control, whereas persuasion is prompted by information. Brainwashing involves coercive techniques used to obtain cooperation and compliance. Persuasion and instruction are much alike; both require conscious cognitive activity by the recipient and involve communication which includes giving arguments and evidence for the purpose of getting someone to do something or to believe something.Persuasion research is anchored in learning theory. Early efforts were based on information processing. Studies following an information process approach focused on the effect of the variables harbored within the question Who says what in which channel to whom with what effect? on belief and attitude change. Cognitive processing and social exchange approaches to persuasion represent extensions to information process. Cognitive processing is concerned specifically with how people personally process the arguments presented in a persuasive message. Social exchange emphasizes the interchange that takes place between the message source and recipient. These approaches seem to be fruitful areas for future persuasion research in science education.Science educators' unfamiliarity with persuasion research stems from the fact that it is largely reported in the social psychology literature and has not been integrated into a framework familiar to

  11. On-line Versus Face-to-Face Education: Utilizing Technology to Increase Effectiveness

    Science.gov (United States)

    2012-05-17

    Company, 2001. Gould , Jay W., III. "Program Planning of Asynchronous On-Line Courses: Design Complexities and Ethics." Acquisition Review Quarterly...Vanessa, Juanita Johnson-Bailey,Scipio A.J. Colin, Elizabeth Peterson, and Stephen D. Brookfield. The Handbook of Race and Adult Education. San Francisco

  12. Radiation safety education for laboratory animal science.

    Science.gov (United States)

    Emrich, J; Lambert, K

    2000-08-01

    Students enrolled in the laboratory animal science graduate program at MCP Hahnemann University seek to gain entrance to veterinary school or to manage an animal facility within an academic institution, pharmaceutical or biotechnology company conducting biomedical research. Ongoing interaction between faculty in the radiation oncology, radiation safety, and lab animal science disciplines revealed an acute need for radiation safety education for laboratory animal science students who will likely interact with researchers either designing and writing protocols for animal studies using radiation or radioactive materials, or veterinary staff who will use sources of radiation to diagnose and/or treat possible animal injuries and diseases. A core course in the Radiation Sciences graduate program was modified to address the needs of these students, instructing them in radiation safety, detection and counting instrumentation, and radiation biology. These fundamental areas were integrated to help the students gain a sound, basic knowledge of radiation and radioactive materials used in biomedical research.

  13. Serious computer games in computer science education

    Directory of Open Access Journals (Sweden)

    Jože Rugelj

    2015-11-01

    Full Text Available The role and importance of serious computer games in contemporary educational practice is presented in this paper as well as the theoretical fundamentals that justify their use in different forms of education. We present a project for designing and developing serious games that take place within the curriculum for computer science teachers’ education as an independent project work in teams. In this project work students have to use their knowledge in the field of didactics and computer science to develop games. The developed game is tested and evaluated in schools in the framework of their practical training. The results of the evaluation can help students improve their games and verify to which extent specified learning goals have been achieved.

  14. Challenges Faced by Graduate Business Education in Southern Africa: Perceptions of MBA Participants

    Science.gov (United States)

    Temtime, Zelealem T.; Mmereki, Rebana N.

    2011-01-01

    Purpose: The purpose of this paper is to examine the degree of satisfaction and perceived relevance of the Graduate Business Education (GBE) programme at the University of Botswana. Design/methodology/approach: A self-administered questionnaire and face to face interviews were used to collect data from Master of Business Administration (MBA)…

  15. Food science instruction in undergraduate dietetic education.

    Science.gov (United States)

    Deskins, B B; Spicher, C B

    1989-09-01

    To assess the current status of food science instruction in undergraduate dietetic education, a survey was conducted of those persons responsible for teaching this subject in 267 Plan IV and 65 Coordinated Undergraduate Programs. Responses were received from 155 institutions offering a total of 177 programs. Factors examined included the number and academic background of faculty members teaching food science, the structure of the first course in food science, the structure of advanced food science courses required or offered to undergraduate dietetic students, and perceived adequacy of course content. Fifty-eight percent of the respondents had or were candidates for doctoral degrees, and 37% had master's degrees. The results indicated that although all programs offered a beginning course in food science, the required prerequisites and level of difficulty of subject matter varied. Fifty-three percent of the programs required at least one advanced food science course. More than 95% of both beginning and advanced courses are structured to include both lecture and laboratory. Although a majority of respondents indicated satisfaction with the adequacy of course content currently being offered, many made recommendations for improvements. Other concerns included difficulty in locating textbooks and other suitable instructional materials, isolation from others teaching food science, and a lack of standards for content to be included in basic and advanced courses.

  16. Facing Multiculturalism's Challenges in Korean Education and Society

    Science.gov (United States)

    Olneck, Michael R.

    2011-01-01

    Multicultural policy in South Korea faces variants of challenges endemic to multiculturalism. These challenges are "dilemmas of difference," "variable terms of inclusion," and "legitimacy." In Korea, these challenges arise in a setting in which ethnic diversity is of relatively recent origin, an ideology of ethnic homogeneity is prevalent, and…

  17. Facing Multiculturalism's Challenges in Korean Education and Society

    Science.gov (United States)

    Olneck, Michael R.

    2011-01-01

    Multicultural policy in South Korea faces variants of challenges endemic to multiculturalism. These challenges are "dilemmas of difference," "variable terms of inclusion," and "legitimacy." In Korea, these challenges arise in a setting in which ethnic diversity is of relatively recent origin, an ideology of ethnic…

  18. Examining the Obstacles and Possible Solutions for Improving Science Education in Southern Mexico

    Science.gov (United States)

    Cisneros-Cohernour, Edith Juliana; Avila, Maria Teresa Lopez; Lara, Mario Baas

    2005-01-01

    The purpose of this qualitative study was to obtain a better understanding of the obstacles and possible solutions for improving science education in Southern Mexico. It provides information about the challenges faced by teachers and school administrators, and possible alternatives for improving the quality of teaching after ten years of a…

  19. Analysing the Problems of Science Teachers That They Encounter While Teaching Physics Education

    Science.gov (United States)

    Demir, Cihat; Sincar, Burhan; Çelik, Ridvan

    2015-01-01

    Even though physical science is very important in our daily lives, it is insufficiently understood by students. In order for students to get a better physical education, the teachers who have given physics lesson should first eliminated the problems that they face during the teaching process. The aim of this survey is to specify the matters…

  20. Collaborating on Global Priorities: Science Education for Everyone--Any Time and Everywhere

    Science.gov (United States)

    Tobin, Kenneth

    2016-01-01

    Building on the key ideas from Dana Zeidler's paper I expand the conversation from the standpoint that the challenges facing humanity and the capacity of Earth to support life suggest that changes in human lifestyles are a priority. Accordingly, there is an urgent need to educate all humans about some of the science-related grand challenges, such…

  1. Theme: The Role of Science in the Agricultural Education Curriculum.

    Science.gov (United States)

    Agricultural Education Magazine, 2002

    2002-01-01

    Thirteen theme articles discuss integration of science and agriculture, the role of science in agricultural education, biotechnology, agriscience in Tennessee and West Virginia, agriscience and program survival, modernization of agricultural education curriculum, agriscience and service learning, and biotechnology websites. (SK)

  2. Informal science education: lifelong, life-wide, life-deep.

    Science.gov (United States)

    Sacco, Kalie; Falk, John H; Bell, James

    2014-11-01

    Informal Science Education: Lifelong, Life-Wide, Life-Deep Informal science education cultivates diverse opportunities for lifelong learning outside of formal K-16 classroom settings, from museums to online media, often with the help of practicing scientists.

  3. Editorial: Special Issue (SI): International Conference on Science Education (ICSE)

    Science.gov (United States)

    Liu, Xiufeng; Zhang, BaoHui

    2014-04-01

    In the context of science education globalization, the International Conference on Science Education was held in Nanjing, China, in October 2012. The purpose of this conference was to provide a forum for science education researchers from China and from the rest of the world to exchange research ideas and best practices in science education. A call for papers for a special issue of the Journal of Science Education and Technology was made to all conference participants, and a set of six articles was resulted from a standard peer review process. This set of six articles provides a snapshot of research in China and in some other countries, and represents a dialogue between Chinese science education researchers and science education researchers from other countries. We call for more exchange and collaboration in science education between China and the rest of the world.

  4. Defining integrated science education and putting it to test

    OpenAIRE

    Maria Åström

    2008-01-01

    The thesis is made up by four studies, on the comprehensive theme of integrated and subjectspecific science education in Swedish compulsory school. A literature study on the matter is followed by an expert survey, then a case study and ending with two analyses of students’ science results from PISA 2003 and PISA 2006. The first two studies explore similarities and differences between integrated and subject-specific science education, i. e. Science education and science taught as Biology, Chem...

  5. Encountering science education's capacity to affect and be affected

    Science.gov (United States)

    Alsop, Steve

    2016-09-01

    What might science education learn from the recent affective turn in the humanities and social sciences? Framed as a response to Michalinos Zembylas's article, this essay draws from selected theorizing in affect theory, science education and science and technology studies, in pursuit of diverse and productive ways to talk of affect within science education. These discussions are framed by desires to transcend traditional epistemic boundaries and practices. The article concludes offering some associated ambiguities and tensions involved.

  6. Nanotechnology and Nanoscale Science: Educational challenges

    Science.gov (United States)

    Jones, M. Gail; Blonder, Ron; Gardner, Grant E.; Albe, Virginie; Falvo, Michael; Chevrier, Joel

    2013-06-01

    Nanotechnology has been touted as the next 'industrial revolution' of our modern age. In order for successful research, development, and social discourses to take place in this field, education research is needed to inform the development of standards, course development, and workforce preparation. In addition, there is a growing need to educate citizens and students about risks, benefits, and social and ethical issues related to nanotechnology. This position paper describes the advancements that have been made in nanoscale science and nanotechnology, and the challenges that exist to educate students and the public about critical nanoscience concepts. This paper reviews the current research on nanotechnology education including curricula, educational programs, informal education, and teacher education. Furthermore, the unique risks, benefits and ethics of these unusual technological applications are described in relation to nanoeducation goals. Finally, we outline needed future research in the areas of nanoscience content, standards and curricula, nanoscience pedagogy, teacher education, and the risks, benefits, and social and ethical dimensions for education in this emerging field.

  7. Learning science and science education in a new era

    Directory of Open Access Journals (Sweden)

    Erhan Aysan

    2015-06-01

    Full Text Available Today, it takes only a few months for the amount of knowledge to double. The volume of information available has grown so much that it cannot be fully encompassed by the human mind. For this reason, science, learning, and education have to change in the third millennium. The question is thus: what is it that needs to be done? The answer may be found through three basic stages. The first stage is persuading scientists of the necessity to change science education. The second stage is more difficult, in that scientists must be told that they should not place an exaggerated importance on their own academic field and that they should see their field as being on an equal basis with other fields. In the last stage, scientists need to condense the bulk of information on their hands to a manageable size. “Change” is the magic word of our time. Change brings about new rules, and this process happens very quickly in a global world. If we scientists do not rapidly change our scientific learning and education, we will find our students and ourselves caught up in an irreversibly destructive and fatal change that sets its own rules, just like the Arab spring.

  8. Science Education & Advocacy: Tools to Support Better Education Policies

    Science.gov (United States)

    O'Donnell, Christine; Cunningham, B.; Hehn, J. G.

    2014-01-01

    Education is strongly affected by federal and local policies, such as testing requirements and program funding, and many scientists and science teachers are increasingly interested in becoming more engaged with the policy process. To address this need, I worked with the American Association of Physics Teachers (AAPT) --- a professional membership society of scientists and science teachers that is dedicated to enhancing the understanding and appreciation of physics through teaching --- to create advocacy tools for its members to use, including one-page leave-behinds, guides for meeting with policymakers, and strategies for framing issues. In addition, I developed a general tutorial to aid AAPT members in developing effective advocacy strategies to support better education policies. This work was done through the Society for Physics Students (SPS) Internship program, which provides a range of opportunities for undergraduates, including research, education and public outreach, and public policy. In this presentation, I summarize these new advocacy tools and their application to astronomy education issues.

  9. Teacher Leaders in Research Based Science Education

    Science.gov (United States)

    Rector, T. A.; Jacoby, S. H.; Lockwood, J. F.; McCarthy, D. W.

    2001-12-01

    NOAO facilities will be used in support of ``Teacher Leaders in Research Based Science Education" (TLRBSE), a new Teacher Retention and Renewal program that will be funded through the National Science Foundation's Directorate for Education and Human Resources. The goal of TLRBSE is to provide professional development for secondary teachers of mathematics and science in an effort to support novice teachers beginning their careers as well as to motivate and retain experienced teachers. Within the context of astronomy, TLRBSE will develop master teachers who will mentor a second tier of novice teachers in the exemplary method of research-based science education, a proven effective teaching method which models the process of inquiry and exploration used by scientists. Participants will be trained through a combination of in-residence workshops at Kitt Peak National Observatory and the National Solar Observatory, a distance-learning program during the academic year, interaction at professional meetings and mentor support from teacher leaders and professional astronomers. A total of 360 teachers will participate in the program over five years.

  10. Initial teacher education and continuing professional development for science teachers

    DEFF Research Database (Denmark)

    Dolin, Jens; Evans, Robert Harry

    2011-01-01

    , and belong to various cultures, both educationally and socially. Section 1 presents a review of the research literature across these dimensions and looks at the knowledge, skills and competences needed for teaching science, specific issues within science teacher education, and strategies for educating......Research into ways of improving the initial education and continuing professional development of science teachers is closely related to both common and unique strands. The field is complex since science teachers teach at different educational levels, are often educated in different science subjects...

  11. Hermeneutics of science and multi-gendered science education

    Science.gov (United States)

    Ginev, Dimitri Jordan

    2008-11-01

    In this paper, I consider the relevance of the view of cognitive existentialism to a multi-gendered picture of science education. I am opposing both the search for a particular feminist standpoint epistemology and the reduction of philosophy of science to cultural studies of scientific practices as championed by supporters of postmodern political feminism. In drawing on the theory of gender plurality and the conception of dynamic objectivity, the paper suggests a way of treating the nexus between the construction of gender within the interrelatedness of scientific practices and the constitution of particular objects of inquiry. At stake is the notion of characteristic hermeneutic situation which proves to be helpful in designing a multi-gendered pedagogy as well.

  12. Analysis of the Current Literature of Science Education.

    Science.gov (United States)

    Ayers, Jerry B.

    Presented is a study designed to analyze nine journals that contain substantial material devoted to the field of science education for the period 1970 through 1971: "American Journal of Physics,""Chemistry,""Journal of Chemical Education,""Journal of Research in Science Teaching,""Physics Today,""School Science and Mathematics,""Science and…

  13. Encountering Science Education's Capacity to Affect and Be Affected

    Science.gov (United States)

    Alsop, Steve

    2016-01-01

    What might science education learn from the recent affective turn in the humanities and social sciences? Framed as a response to Michalinos Zembylas's article, this essay draws from selected theorizing in affect theory, science education and science and technology studies, in pursuit of diverse and productive ways to talk of affect within science…

  14. ``Hit and Run Research'' with ``Hit and Miss'' Results in Early Childhood Science Education

    Science.gov (United States)

    Fleer, Marilyn; Robbins, Jill

    2003-08-01

    Constructivism has provided us with a useful pedagogy and a powerful methodological framework for over twenty years. We now know a great deal about children's thinking. Can this research paradigm take us any further? Are we locked into a particular perspective about data gathering and categorising children's thinking? Have we tended to fit early childhood data into the 'accepted science education paradigm'? As early childhood researchers, we have found the wealth of research in science education research unable to provide solutions to some fundamental challenges we face when working with young children. This paper seeks to examine the established body of literature in science education research with a view to seeking out a more inclusive research approach to support early childhood science education. Examples of early childhood data within a range of contexts are presented to illustrate some of the challenges. Some of the issues that are raised may well be helpful to the field as a whole.

  15. Library exhibits and programs boost science education

    Science.gov (United States)

    Dusenbery, Paul B.; Curtis, Lisa

    2012-05-01

    Science museums let visitors explore and discover, but for many families there are barriers—such as cost or distance—that prevent them from visiting museums and experiencing hands-on science, technology, engineering, and mathematics (STEM) learning. Now educators are reaching underserved audiences by developing STEM exhibits and programs for public libraries. With more than 16,000 outlets in the United States, public libraries serve almost every community in the country. Nationwide, they receive about 1.5 billion visits per year, and they offer their services for free.

  16. Special Education Teachers' Nature of Science Instructional Experiences

    Science.gov (United States)

    Mulvey, Bridget K.; Chiu, Jennifer L.; Ghosh, Rajlakshmi; Bell, Randy L.

    2016-01-01

    Special education teachers provide critical science instruction to students. However, little research investigates special education teacher beliefs and practices around science in general or the nature of science and inquiry in particular. This investigation is a cross-case analysis of four elementary special education teachers' initial…

  17. Special Education Teachers' Nature of Science Instructional Experiences

    Science.gov (United States)

    Mulvey, Bridget K.; Chiu, Jennifer L.; Ghosh, Rajlakshmi; Bell, Randy L.

    2016-01-01

    Special education teachers provide critical science instruction to students. However, little research investigates special education teacher beliefs and practices around science in general or the nature of science and inquiry in particular. This investigation is a cross-case analysis of four elementary special education teachers' initial…

  18. (W)rapping relationships between science education and globalisation

    Science.gov (United States)

    Gough, Annette

    2011-03-01

    This essay reviews the contribution of Rowhea Elmesky in this volume, to the field of research in science education, and places it in the context of the juncture of youth disengagement with science, multicultural education and globalisation, with an underlay of a historical context and critiques of science education from feminist and postcolonial perspectives.

  19. Imaginative science education the central role of imagination in science education

    CERN Document Server

    Hadzigeorgiou, Yannis

    2016-01-01

    This book is about imaginative approaches to teaching and learning school science. Its central premise is that science learning should reflect the nature of science, and therefore be approached as an imaginative/creative activity. As such, the book can be seen as an original contribution of ideas relating to imagination and creativity in science education. The approaches discussed in the book are storytelling, the experience of wonder, the development of ‘romantic understanding’, and creative science, including science through visual art, poetry and dramatization. However, given the perennial problem of how to engage students (of all ages) in science, the notion of ‘aesthetic experience’, and hence the possibility for students to have more holistic and fulfilling learning experiences through the aforementioned imaginative approaches, is also discussed. Each chapter provides an in-depth discussion of the theoretical background of a specific imaginative approach (e.g., storytelling, ‘wonder-full’ s...

  20. Spatial Thinking in Atmospheric Science Education

    Science.gov (United States)

    McNeal, P. M.; Petcovic, H. L.; Ellis, T. D.

    2016-12-01

    Atmospheric science is a STEM discipline that involves the visualization of three-dimensional processes from two-dimensional maps, interpretation of computer-generated graphics and hand plotting of isopleths. Thus, atmospheric science draws heavily upon spatial thinking. Research has shown that spatial thinking ability can be a predictor of early success in STEM disciplines and substantial evidence demonstrates that spatial thinking ability is improved through various interventions. Therefore, identification of the spatial thinking skills and cognitive processes used in atmospheric science is the first step toward development of instructional strategies that target these skills and scaffold the learning of students in atmospheric science courses. A pilot study of expert and novice meteorologists identified mental animation and disembedding as key spatial skills used in the interpretation of multiple weather charts and images. Using this as a starting point, we investigated how these spatial skills, together with expertise, domain specific knowledge, and working memory capacity affect the ability to produce an accurate forecast. Participants completed a meteorology concept inventory, experience questionnaire and psychometric tests of spatial thinking ability and working memory capacity prior to completing a forecasting task. A quantitative analysis of the collected data investigated the effect of the predictor variables on the outcome task. A think-aloud protocol with individual participants provided a qualitative look at processes such as task decomposition, rule-based reasoning and the formation of mental models in an attempt to understand how individuals process this complex data and describe outcomes of particular meteorological scenarios. With our preliminary results we aim to inform atmospheric science education from a cognitive science perspective. The results point to a need to collaborate with the atmospheric science community broadly, such that multiple

  1. Inside versus outside the Science Classroom: Examining the Positionality of Two Female Science Teachers at the Boundaries of Science Education

    Science.gov (United States)

    Teo, Tang Wee

    2015-01-01

    The third wave feminist studies in science education take the stance that science teaching is political and that social change is possible through interrogating power inequalities and decentering science to balance out power. For science educators, this means developing an awareness of "positionality," which I define here as a…

  2. The Changing Face of Creativity in Australian Education

    Science.gov (United States)

    Harris, Anne; Ammermann, Mark

    2016-01-01

    Traditional ties between "arts" education (that is, discipline-based arts subjects and activities in schools) and an emergent notion of "creativity" in educational discourses and policy documents are loosening, with implications for both. While creativity seems to be on the ascent, the arts may not be as fortunate; creative…

  3. Facing Bilingual Education: Kindergarten Teachers' Attitudes, Strategies and Challenges

    Science.gov (United States)

    Schwartz, Mila; Mor-Sommerfeld, Aura; Leikin, Mark

    2010-01-01

    This article examines how majority-language teachers coping with additive education view their roles in a bilingual framework, how they perceive issues of culture and language in young bilingual children, and how they understand the term "bilingual education" in an L2 non-additive context. The study has been conducted in the context of…

  4. Red Bull, Starbucks, and the Changing Face of Teacher Education

    Science.gov (United States)

    Ewbank, Ann Dutton; Foulger, Teresa S.; Carter, Heather L.

    2010-01-01

    Colleges of education are not using Facebook and other social media to their best advantage. Instead of building online communities, colleges of education tend to use social media merely for press releases. The innovative Facebook pages of five large corporations can serve as models for colleges wishing to improve their command of these media.

  5. Red Bull, Starbucks, and the Changing Face of Teacher Education

    Science.gov (United States)

    Ewbank, Ann Dutton; Foulger, Teresa S.; Carter, Heather L.

    2010-01-01

    Colleges of education are not using Facebook and other social media to their best advantage. Instead of building online communities, colleges of education tend to use social media merely for press releases. The innovative Facebook pages of five large corporations can serve as models for colleges wishing to improve their command of these media.

  6. Problems Faced by Preservice Special Education Teachers in Jordan

    Science.gov (United States)

    Al-Hiary, Ghaleb M.; Almakanin, Hisham A.; Tabbal, Suha A.

    2015-01-01

    One of the most important factors in the success of educating children with special needs is the quality of the special education teacher. While teachers are responsible for a plethora of duties, it is important that teacher preparation programs provide adequate training to ensure teachers are well prepared for the teaching profession. However,…

  7. Higher education in the face of XXI century challenges

    Directory of Open Access Journals (Sweden)

    Svyrydenko Denys

    2014-03-01

    Full Text Available The article examines “order of the day” of higher education modernization processes at the context of two major trends of social transformations at the beginning of ХХІ century – globalization processes and information society establishing ones. It is shown that as an answer to these tendencies higher education sphere is modernized by form in terms of organizational changes (actualization of distance learning ideas, virtual university model; organizational changes to correspond market realities etc. as well as by content (changes of pedagogical practices towards formation of personality of new type, transformation of educational content towards formation tolerant and multicultural world-view of students etc.. The author stands on position that there is a need of deep theoretical surveys used methods of philosophy of education to substantiate modernization processes. Mentioned surveys have potential to find the ways of qualitative incorporation of higher education sphere into complicate social dynamics of present days.

  8. The Higher Education Clearinghouse for Space Sciences

    Science.gov (United States)

    Dalton, H.; Cobabe-Ammann, E. A.; Shipp, S. S.

    2011-12-01

    The Higher Education Clearinghouse (HECl) is a searchable database of undergraduate classroom materials for faculty teaching planetary sciences and solar and space physics at both the introductory and upper division levels. Modeled after the highly successful SERC clearinghouse for geosciences assets, HECl was designed for easy submission of classroom assets - from homeworks and computer interactives to laboratories and demonstrations. All materials are peer-reviewed before posting, and authors adhere to the Creative Commons Attribution (CC BY). HECl materials are automatically cross-posted to other digital libraries (e.g., ComPADRE) and virtual higher education communities (e.g., Connexions). In addition to classroom materials, HECl provides news and information about educational research and best practices, funding opportunities, and ongoing efforts and collaborations for undergraduate education.

  9. A Family Resemblance Approach to the Nature of Science for Science Education

    Science.gov (United States)

    Irzik, Gurol; Nola, Robert

    2011-01-01

    Although there is universal consensus both in the science education literature and in the science standards documents to the effect that students should learn not only the content of science but also its nature, there is little agreement about what that nature is. This led many science educators to adopt what is sometimes called "the consensus…

  10. Malaysian Teacher Trainees' Practices on Science and the Relevance of Science Education for Sustainability

    Science.gov (United States)

    Nair, Subadrah Madhawa; Mohamed, Abdul Rashid; Marimuthu, Nagamah

    2013-01-01

    Purpose: The purpose of this paper is to investigate the practice of teacher trainees on science and the relevance of science education. The study focuses on teacher trainees' practice on science teaching and its relevance to understanding science education. Design/methodology/approach: The study employed a survey method using questionnaires. The…

  11. Science and ecological literacy in undergraduate field studies education

    Science.gov (United States)

    Mapp, Kim J.

    There is an ever-increasing number of issues that face our world today; from climate change, water and food scarcity, to pollution and resource extraction. Science and ecology play fundamental roles in these problems, and yet the understanding of these fields is limited in our society (Miller, 2002; McBride, Brewer, Berkowitz, and Borrie, 2013). Across the nation students are finishing their undergraduate degrees and are expected to enter the workforce and society with the skills needed to succeed. The deficit of science and ecological literacy in these students has been recognized and a call for reform begun (D'Avanzo, 2003 and NRC, 2009). This mixed-methods study looked at how a field studies course could fill the gap of science and ecological literacy in undergraduates. Using grounded theory, five key themes were data-derived; definitions, systems thinking, human's role in the environment, impetus for change and transference. These themes where then triangulated for validity and reliability through qualitative and quantitative assessments. A sixth theme was also identified, the learning environment. Due to limited data to support this themes' development and reliability it is discussed in Chapter 5 to provide recommendations for further research. Key findings show that this field studies program influenced students' science and ecological literacy through educational theory and practice.

  12. Research Education of New Scientists: Implications for Science Teacher Education

    Science.gov (United States)

    Feldman, Allan; Divoll, Kent; Rogan-Klyve, Allyson

    2009-01-01

    This study examined an interdisciplinary scientific research project to understand how graduate and undergraduate honors students learn to do science. It was found that the education of the students occurs as part of an apprenticeship. The apprenticeship takes place in research groups. In general, research groups are structured in two ways:…

  13. Transdisciplinary Sustainability Science at Higher Education Institutions: Science Policy Tools for Incremental Institutional Change

    Directory of Open Access Journals (Sweden)

    Tom Dedeurwaerdere

    2013-09-01

    Full Text Available At the very moment that humanity is facing a broadening ecological crisis, and that both policy makers and civil society are calling for a transition towards more sustainable societies, modern science seems incapable of providing operational solutions for managing this transition. In this context, both Noble prize laureates and high-level science officials have stressed the need of an in depth transformation of the modes of organization of scientific research for governing the transition to sustainable societies. However, existing analyses of on-going initiatives show that most of the barriers to a major, consolidated effort in sustainability science will not be removed without far-reaching institutional change. To address this challenge, this paper proposes an incremental institutional change approach, based on a gradual institutionalization process of existing initiatives. The analysis in this paper shows that strategic research for sustainability and reform of research funding mechanisms will only be effective if they are supported at the same time by reforms of career and training paths at higher education institutions. To promote this vision, the paper proposes a set of capacity building measures that can be undertaken at the level of research funding, higher education institutions and networking.

  14. The art and science of interprofessional education.

    Science.gov (United States)

    Graybeal, Clay; Long, Richard; Scalise-Smith, Dale; Zeibig, Elizabeth

    2010-01-01

    Interprofessional education (IPE) is increasingly accepted as a core element of health professions education. Its primary function is to prepare health professions students to engage in and deliver interprofessional, team-based healthcare, with the ultimate goal of improving the health and well-being of patients and clients. This paper summarizes findings from 10 interviews with institutional leaders in the field. The goal was to discover core themes than contribute to the art and science of IPE. Thematic challenges and successes are reviewed, and recommendations are provided for further research and for those interested in developing or improving IPE in their own institutions.

  15. Rocket Science 101 Interactive Educational Program

    Science.gov (United States)

    Armstrong, Dennis; Funkhouse, Deborah; DiMarzio, Donald

    2007-01-01

    To better educate the public on the basic design of NASA s current mission rockets, Rocket Science 101 software has been developed as an interactive program designed to retain a user s attention and to teach about basic rocket parts. This program also has helped to expand NASA's presence on the Web regarding educating the public about the Agency s goals and accomplishments. The software was designed using Macromedia s Flash 8. It allows the user to select which type of rocket they want to learn about, interact with the basic parts, assemble the parts to create the whole rocket, and then review the basic flight profile of the rocket they have built.

  16. Considering the changing face of social media in higher education.

    Science.gov (United States)

    Legaree, Blaine A

    2015-08-01

    There is currently much ongoing consideration as to how educators can make use of new technologies to engage students. The prevalence of social media use within both private and professional circles has made these technologies increasingly important for educators. This commentary briefly outlines some of the ways social media has been used in higher education and also some of the primary concerns. Current and future trends are also addressed. © FEMS 2015. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.

  17. Emotions, Aesthetics and Wellbeing in Science Education

    DEFF Research Database (Denmark)

    2017-01-01

    This internationally edited collection on emotions, aesthetics, and wellbeing emerged following an exploratory research workshop held in Luxembourg associated with the journal Cultural Studies of Science Education (CSSE). The workshop was entitled ‘Innovation and collaboration in cultural studies...... of science education: Towards an international research agenda.’ Authors were invited to articulate the theoretical and philosophical underpinnings of their research, offering empirical elaborations to illustrate applications of these conceptual and methodological foundations. An outcome...... of this international collaboration is the rich and diverse range of perspectives represented in this collection. This book will serve as a useful reference for those seeking to study emotions, aesthetics and wellbeing, and others who wish to develop deeper engagement with theoretical and philosophical traditions...

  18. Computer Applications in Health Science Education.

    Science.gov (United States)

    Juanes, Juan A; Ruisoto, Pablo

    2015-09-01

    In recent years, computer application development has experienced exponential growth, not only in the number of publications but also in the scope or contexts that have benefited from its use. In health science training, and medicine specifically, the gradual incorporation of technological developments has transformed the teaching and learning process, resulting in true "educational technology". The goal of this paper is to review the main features involved in these applications and highlight the main lines of research for the future. The results of peer reviewed literature published recently indicate the following features shared by the key technological developments in the field of health science education: first, development of simulation and visualization systems for a more complete and realistic representation of learning material over traditional paper format; second, portability and versatility of the applications, adapted for an increasing number of devices and operative systems; third, increasing focus on open source applications such as Massive Open Online Course (MOOC).

  19. Advances in Computer Science and Education

    CERN Document Server

    Huang, Xiong

    2012-01-01

    CSE2011 is an integrated conference concentration its focus on computer science and education. In the proceeding, you can learn much more knowledge about computer science and education of researchers from all around the world. The main role of the proceeding is to be used as an exchange pillar for researchers who are working in the mentioned fields. In order to meet the high quality of Springer, AISC series, the organization committee has made their efforts to do the following things. Firstly, poor quality paper has been refused after reviewing course by anonymous referee experts. Secondly, periodically review meetings have been held around the reviewers about five times for exchanging reviewing suggestions. Finally, the conference organizers had several preliminary sessions before the conference. Through efforts of different people and departments, the conference will be successful and fruitful

  20. Inclusive science education: learning from Wizard

    Science.gov (United States)

    Koomen, Michele Hollingsworth

    2016-06-01

    This case study reports on a student with special education needs in an inclusive seventh grade life science classroom using a framework of disability studies in education. Classroom data collected over 13 weeks consisted of qualitative (student and classroom observations, interviews, student work samples and video-taped classroom teaching and learning record using CETP-COP) methods. Three key findings emerged in the analysis and synthesis of the data: (1) The learning experiences in science for Wizard are marked by a dichotomy straddled between autonomy ["Sometimes I do" (get it)] and dependence ["Sometimes I don't (get it)], (2) the process of learning is fragmented for Wizard because it is underscored by an emerging disciplinary literacy, (3) the nature of the inclusion is fragile and functional. Implications for classroom practices that support students with learning disabilities include focusing on student strengths, intentional use of disciplinary literacy strategies, and opportunities for eliciting student voice in decision making.

  1. Spaced education activates students in a theoretical radiological science course: a pilot study

    Directory of Open Access Journals (Sweden)

    Nkenke Emeka

    2012-05-01

    Full Text Available Abstract Background The present study aimed at determining if the addition of spaced education to traditional face-to-face lectures increased the time students kept busy with the learning content of a theoretical radiological science course. Methods The study comprised two groups of 21 third-year dental students. The students were randomly assigned to a “traditional group” and a “spaced education group”. Both groups followed a traditional face-to-face course. The intervention in the spaced education group was performed in way that these students received e-mails with a delay of 14 days to each face-to-face lecture. These e-mails contained multiple choice questions on the learning content of the lectures. The students returned their answers to the questions also by e-mail. On return they received an additional e-mail that included the correct answers and additional explanatory material. All students of both groups documented the time they worked on the learning content of the different lectures before a multiple choice exam was held after the completion of the course. All students of both groups completed the TRIL questionnaire (Trierer Inventar zur Lehrevaluation for the evaluation of courses at university after the completion of the course. The results for the time invested in the learning content and the results of the questionnaire for the two groups were compared using the Mann–Whitney-U test. Results The spaced education group spent significantly more time (216.2 ± 123.9 min on keeping busy with the learning content compared to the traditional group (58.4 ± 94.8 min, p  Conclusions Adding spaced education to a face-to-face theoretical radiological science course activates students in a way that they spend significantly more time on keeping busy with the learning content.

  2. Science education for teachers of primary schools

    Science.gov (United States)

    Křížová, Michaela; Maněnová, Martina

    2017-01-01

    It is necessary to catch the interest in subject of science and forming of concepts in physics already at primary schools. We will present the summary of results of questionnaire survey, which was given to the pre-service teachers of primary schools in the Faculty of education, University of Hradec Králové and further concept of the subjects, which seemed very suitable for the preparation of pre-service teachers of the children of younger school age. Teaching, which contains not only theoretical explanation of the physical processes with emphasis on connection with our daily experience. But especially the topics for practical activities appropriate at primary schools, can lead to motivation of children and development of their science knowledge and even motoric skills. We will introduce examples of practical teaching and themes for the experiments with simple material, which could be suitably included in teaching of science on the primary school.

  3. Merging University Students into K-12 Science Education Reform

    Science.gov (United States)

    2002-01-01

    consider the effects of outreach programs on university science students. Improved communication in science , increased enrollment in science courses as a...education side. Improved communication in science , increased enrollment in science courses as a result of adding an outreach component to traditional

  4. Breathing fresh life into life science education.

    Science.gov (United States)

    Martin, Cyrus

    2014-12-15

    In the US, higher education in the life sciences is being overhauled. There is now a move both to change the way we teach biology students, emphasizing more engaging approaches, and to clearly define what it is a student should know. And for advanced degrees, there is a push to prepare students for a range of possible career paths, not just the tenure track. Cyrus Martin reports.

  5. Education Innovation: Case Studies in e-Learning and Face-to-Face Teaching in Higher Education: What is the Best?

    Science.gov (United States)

    Boon, J. A.

    Education innovation is here to stay. This chapter gives the results of a study of the application of information and communication technology to advanced teaching and learning activities. It is strategically important that the technology opens up new ways of teaching and learning. The purpose of this chapter is firstly to identify the typical advanced teaching and learning activities/functions that can be applied in e-Learning and face-to-face teaching and learning. Case studies were selected from a group of teachers who have already been involved in both teaching modes for some years and thus have experience in blended teaching and learning. A number of teaching activities/functions were seen as positive in their application in the e-Learning situation. Those that stand out are peer review and collaboration, promotion of reflection and stimulation of critical and creative thinking, team teaching, promotion of discovery/extension of knowledge, and problematization of the curriculum. In face-to-face teaching and learning, inviting engagement, how to come to know, involving metaphors and analogies, teaching that connects to learning, inspire change, promote understanding, and others stand out. As seen by the teachers in the case studies, both e-Learning and face-to-face teaching and learning are seen as complementary to each other. We define this view as blended teaching and learning.

  6. The Denali Earth Science Education Project

    Science.gov (United States)

    Hansen, R. A.; Stachnik, J. C.; Roush, J. J.; Siemann, K.; Nixon, I.

    2004-12-01

    In partnership with Denali National Park and Preserve and the Denali Institute, the Alaska Earthquake Information Center (AEIC) will capitalize upon an extraordinary opportunity to raise public interest in the earth sciences. A coincidence of events has made this an ideal time for outreach to raise awareness of the solid earth processes that affect all of our lives. On November 3, 2002, a M 7.9 earthquake occurred on the Denali Fault in central Alaska, raising public consciousness of seismic activity in this state to a level unmatched since the M 9.2 "Good Friday" earthquake of 1964. Shortly after the M 7.9 event, a new public facility for scientific research and education in Alaska's national parks, the Murie Science and Learning Center, was constructed at the entrance to Denali National Park and Preserve only 43 miles from the epicenter of the Denali Fault Earthquake. The AEIC and its partners believe that these events can be combined to form a synergy for the creation of unprecedented opportunities for learning about solid earth geophysics among all segments of the public. This cooperative project will undertake the planning and development of education outreach mechanisms and products for the Murie Science and Learning Center that will serve to educate Alaska's residents and visitors about seismology, tectonics, crustal deformation, and volcanism. Through partnerships with Denali National Park and Preserve, this cooperative project will include the Denali Institute (a non-profit organization that assists the National Park Service in operating the Murie Science and Learning Center) and Alaska's Denali Borough Public School District. The AEIC will also draw upon the resources of long standing state partners; the Alaska Division of Geological & Geophysical Surveys and the Alaska Division of Homeland Security and Emergency Services. The objectives of this project are to increase public awareness and understanding of the solid earth processes that affect life in

  7. Te Kotahitanga: Addressing Educational Disparities Facing Maori Students in New Zealand

    Science.gov (United States)

    Bishop, Russell; Berryman, Mere; Cavanagh, Tom; Teddy, Lani

    2009-01-01

    The major challenges facing education in New Zealand today are the continuing social, economic and political disparities within our nation, primarily between the descendants of the European colonisers and the Indigenous Maori people. These disparities are also reflected in educational outcomes. In this paper, an Indigenous Maori Peoples' solution…

  8. Reconceptualizing the Nature of Science for Science Education: Why Does it Matter?

    Science.gov (United States)

    Dagher, Zoubeida R.; Erduran, Sibel

    2016-01-01

    Two fundamental questions about science are relevant for science educators: (a) What is the nature of science? and (b) what aspects of nature of science should be taught and learned? They are fundamental because they pertain to how science gets to be framed as a school subject and determines what aspects of it are worthy of inclusion in school…

  9. Science Education for Democratic Citizenship through the Use of the History of Science

    Science.gov (United States)

    Kolsto, Stein Dankert

    2008-01-01

    Scholars have argued that the history of science might facilitate an understanding of processes of science. Focusing on science education for citizenship and active involvement in debates on socioscientific issues, one might argue that today's post-academic science differs from academic science in the past, making the history of academic science…

  10. Reconceptualizing the Nature of Science for Science Education: Why Does it Matter?

    Science.gov (United States)

    Dagher, Zoubeida R.; Erduran, Sibel

    2016-01-01

    Two fundamental questions about science are relevant for science educators: (a) What is the nature of science? and (b) what aspects of nature of science should be taught and learned? They are fundamental because they pertain to how science gets to be framed as a school subject and determines what aspects of it are worthy of inclusion in school…

  11. Science Education for Democratic Citizenship through the Use of the History of Science

    Science.gov (United States)

    Kolsto, Stein Dankert

    2008-01-01

    Scholars have argued that the history of science might facilitate an understanding of processes of science. Focusing on science education for citizenship and active involvement in debates on socioscientific issues, one might argue that today's post-academic science differs from academic science in the past, making the history of academic science…

  12. The Implications for Science Education of Heidegger's Philosophy of Science

    Science.gov (United States)

    Shaw, Robert

    2013-01-01

    Science teaching always engages a philosophy of science. This article introduces a modern philosophy of science and indicates its implications for science education. The hermeneutic philosophy of science is the tradition of Kant, Heidegger, and Heelan. Essential to this tradition are two concepts of truth, truth as correspondence and truth as…

  13. The Implications for Science Education of Heidegger's Philosophy of Science

    Science.gov (United States)

    Shaw, Robert

    2013-01-01

    Science teaching always engages a philosophy of science. This article introduces a modern philosophy of science and indicates its implications for science education. The hermeneutic philosophy of science is the tradition of Kant, Heidegger, and Heelan. Essential to this tradition are two concepts of truth, truth as correspondence and truth as…

  14. Online Higher Education in the Natural Sciences

    Science.gov (United States)

    Pearson, Karen; Liddicoat, Joseph

    2013-04-01

    Online courses in higher education allow traditional and non-traditional students to complete course work in all disciplines with great flexibility. Courses in the Natural Sciences are no exception because the online environment allows students to collapse time and space; to access a course anywhere; to get immediate feedback, tutoring and coaching; and to receive real-time interaction between themselves and the instructor. This presentation will highlight successful examples of course content from the areas of astronomy, environmental, and earth and physical sciences. Content examples will focus on helping students use their 'environment' as part of the laboratory experience in courses traditionally thought of as lecture and laboratory courses. These examples will include real and virtual field trips, use of multimedia content, collaboration between students and faculty to design and conduct experiments and field work, and modifications to traditional lecture methods for the online environment. Dr. Karen Pearson former director of Online-Learning and Academic Technologies and Professor Science and Mathematics at the Fashion Institute of Technology (SUNY) and Dr. Joseph Liddicoat will focus on how courses in the Natural Sciences can be delivered in the online environment while maintaining high academic standards and not losing the "hands" on experience students need while completing a laboratory science course as part of a liberal arts curriculum.

  15. Using Interactive Animations to Enhance Teaching, Learning, and Retention of Respiration Pathway Concepts in Face-to-Face and Online High School, Undergraduate, and Continuing Education Learning Environments

    Directory of Open Access Journals (Sweden)

    Sederick C. Rice

    2013-02-01

    Full Text Available One major tool set teachers/instructors can use is online interactive animations, which presents content in a way that helps pique students' interest and differentiates instructional content.  The Virtual Cell Animation Collections (VCAC, developed from the Molecular and Cellular Biology Learning Center, has developed a series of online interactive animations that provide teacher/instructors and students with immersive learning tools for studying and understanding respiration processes.  These virtual tools work as powerful instructional devices to help explain and reinforce concepts of metabolic pathways that would normally be taught traditionally using static textbook pages or by neumonic flashcards. High school, undergraduate, and continuing education students of today learn and retain knowledge differently than their predecessors.  Now teachers face new challenges and must engage and assess students, within a small window during classroom instruction, but also have the skills to provide useful content in distance learning environments.  Educators have to keep up with changing trends in education as a result of technological advances, higher student/teacher ratios, and the influence of social media on education. It is critical for teachers/instructors to be able to present content that not only keeps students interested but also helps bridge learning gaps. VCAC provides high school, undergraduate, and continuing education biology or life science teachers/instructors with classroom strategies and tools for introducing respiration content through free open source online resources. VCAC content supports the development of more inquiry-based classroom and distance-learning environments that can be facilitated by teachers/instructors, which helps improve retention of important respiration subject content and problem-based learning skills for students.

  16. Bridging the Gap Between Ocean Science and Education: Creating Effective Partnerships With Informal Science Education Centers

    Science.gov (United States)

    Peach, C.; Franks, S.; Helling, H.; Solomon, E.; Driscoll, N.; Babcock, J.

    2003-12-01

    Many scientists would describe an effective E&O partnership as one that did not take up too much of their time. The California Center for Ocean Sciences Education Excellence (CA COSEE), educators at the Ocean Institute (OI), Dana Point, and researchers at the Scripps Institution of Oceanography (SIO) have collaborated to develop a highly efficient, productive and rewarding approach to crafting scientist/educator partnerships. These efforts represent a new model for facilitated collaboration between informal science education and research partners. Each partner brings unique elements to this collaboration. The Ocean Institute's recently funded Sea Floor Science Exhibition represents an innovative approach to exhibits and programming for K-12 students and the public. The exhibits and programs are firmly grounded in the needs of the formal science education community (i.e. standards based), designed to be constructed/created on extremely short time frames (months), convertible for both public display and programming needs and easily updated. Scripps researchers, as well as those from other institutions, provide briefings on their ongoing research work, loan or donate equipment and instrumentation both for use and display, and in some cases provide research experiences for OI staff and students. CA-COSEE acts as the catalyst, identifying and engaging researchers from disciplines that are consistent with OI exhibit and program goals, serve as a liaison between newly introduced scientists and educators and facilitate the incorporation of E&O components in scientists research proposals, including funding for future exhibits. Using the example of the newest Sea Floor Science exhibit, "Slopes, Slides and Tsunamis!", we will describe the role each partner has played in creating this research based exhibit and program, the chronology of the process, and how this approach will provide the basis for a long-term, sustained partnership between the researchers and science

  17. Student Empowerment in an Environmental Science Classroom: Toward a Framework for Social Justice Science Education

    Science.gov (United States)

    Dimick, Alexandra Schindel

    2012-01-01

    Social justice education is undertheorized in science education. Given the wide range of goals and purposes proposed within both social justice education and social justice science education scholarship, these fields require reconciliation. In this paper, I suggest a student empowerment framework for conceptualizing teaching and learning social…

  18. Student Empowerment in an Environmental Science Classroom: Toward a Framework for Social Justice Science Education

    Science.gov (United States)

    Dimick, Alexandra Schindel

    2012-01-01

    Social justice education is undertheorized in science education. Given the wide range of goals and purposes proposed within both social justice education and social justice science education scholarship, these fields require reconciliation. In this paper, I suggest a student empowerment framework for conceptualizing teaching and learning social…

  19. Education for Computational Science and Engineering

    CERN Document Server

    Grcar, Joseph F

    2011-01-01

    Computational science and engineering (CSE) embodies President Obama's challenge for the future, "ours to win." For decades, CSE has been misunderstood to require massive computers, whereas breakthroughs in CSE have historically been the mathematical programs of computing rather than the machines themselves. Whether scientists and engineers become inventors who make these breakthroughs depends on circumstances and their educations. The USA currently has the largest CSE professorate, but the data suggest this prominence is ephemeral. Just one-third of the universities with very high research activity have formal programs for CSE education, and many smaller countries with strong manufacturing sectors have more CSE educators per capita. Considering the contributions that CSE has made which enable all manner of commercial, consumer, medical, military, and scientific devices and the associated industries, the future appears to be ours to lose.

  20. Facing Ambivalence in Education: A Strange(r's) Hope?

    Science.gov (United States)

    Mansson, Niclas; Langmann, Elisabet

    2011-01-01

    This article explores how our understanding of ambivalence would shift if we saw it as an inherent and essential part of the ordinary work of education. Following Bauman's sociology of the stranger and Derrida's deconstructions of hospitality, the article unfolds in three parts. In the first part we discuss the preconditions of modern education…

  1. Urban America and Crucial Issues Facing Higher Education.

    Science.gov (United States)

    Green, Robert L.

    Today's university is an active, political force within our society which must actively commit its resources to the eradication of urban problems such as racism, poverty, health care, infant mortality, drug abuse, inferior housing, unemployment, education, transportation, and so on. First and foremost, the "white mask" of the university must be…

  2. Challenges Facing Blended Learning in Higher Education in Asia

    Science.gov (United States)

    Tham, Raymond; Tham, Lesley

    2013-01-01

    This paper examines the current stage of development of blended learning in higher education in China, South Korea and Japan, with a comparison to the city state of Singapore. It is noted that blended learning and e-learning are introduced at institutes of higher learning in these countries with varying

  3. Challenges Facing Blended Learning in Higher Education in Asia

    Science.gov (United States)

    Tham, Raymond; Tham, Lesley

    2013-01-01

    This paper examines the current stage of development of blended learning in higher education in China, South Korea and Japan, with a comparison to the city state of Singapore. It is noted that blended learning and e-learning are introduced at institutes of higher learning in these countries with varying

  4. China's Social Work Education in the Face of Change

    Science.gov (United States)

    Fang, Yuan

    2013-01-01

    Between 1952 and 1979, social work was banned as an academic discipline, and social workers relied on experience alone in carrying out their duties. Since then social work training has been offered in universities and vocational schools; and existing social workers have received in-service training. However, social work education is still in its…

  5. Globalization in the Face of Standardization: Implications for Teacher Education

    Science.gov (United States)

    Delgado, Rocio; Norman, Patricia

    2008-01-01

    As globalization affects political and economic systems, cultures, and the environment, it affects the educational needs of a globalized workforce. In this complex, fast-evolving knowledge economy, workers must possess analytic skills, creativity, flexibility, and innovation. They need oral and written communication skills and the disposition to…

  6. Collaborating on global priorities: science education for everyone—any time and everywhere

    Science.gov (United States)

    Tobin, Kenneth

    2016-03-01

    Building on the key ideas from Dana Zeidler's paper I expand the conversation from the standpoint that the challenges facing humanity and the capacity of Earth to support life suggest that changes in human lifestyles are a priority. Accordingly, there is an urgent need to educate all humans about some of the science-related grand challenges, such as global warming and wellness. The key is to enact programs that have relevance to all citizens, irrespective of: age, location, language proficiency, economic resources, religion, gender, sexual preference, and level of prior education. Since significant changes are needed in human lifestyles the current emphasis on preK-12 science education needs to be expanded to cover all humans and the places in which education occurs should be everywhere. I explore the use of a multilogical framework to conceptualize science and thereby transform science education in ways that better relate to priorities of wellness and harmony in the ecosystems that sustain life on Earth. I illustrate the potential of multilogicality in a context of complementary medicine, using three frameworks: Jin Shin Jyutsu, an ancient system of medicine; a diet to reduce inflammation; and iridology. Use of a multilogical framework to conceptualize science provides opportunities for science education to focus on education for literate citizenry (birth-death) and responsible action, connect to the massive challenges of the present, and select content that has high relevance to sustainability, wellness, and well-being at local, national, and global levels.

  7. Schools In Board - Bridging Arctic Research And Environmental Science Education

    Science.gov (United States)

    Barber, D. G.; Barber, L.

    2008-12-01

    Schools on Board (www.arcticnet.ulaval.ca) was created in 2002 to address the outreach objectives of a network of Canadian scientists conducting research in the High Arctic. The program was piloted with great success with the 2004 research program called the Canadian Arctic Shelf Study (CASES). Since then, the S/B program continues as an integral outreach program of the Canadian Network of Centres of Excellence (NCE) known as ArcticNet. The primary objective of the program is to bridge Arctic climate change research with science and environmental education in the public school system. It is a vehicle for scientists and graduate students to share their research program with high schools and the general public. The program encourages schools to include Arctic Sciences into their science programs by linking Arctic research to existing curriculum, providing resources and opportunities to send high school students and teachers into the Arctic to participate in a science expedition on board the Canadian research icebreaker CCGS Amundsen. The field program is an adventure into Arctic research that exposes students and teachers to the objectives and methods of numerous science teams representing a number of research disciplines and institutions from across Canada and beyond. Face-to-face interactions with scientists of all levels (masters, PhD's, researchers, CRC chairs), hands-on experiences in the field and in the labs, and access to state-of-the-art scientific instrumentation, combine to create a powerful learning environment. In addition to hands-on research activities the program introduces participants to many aspects of Canada's North, including local knowledge related to climate change, culture, history, and politics - within the educational program on the ship and the planned visits to Northern communities. During International Polar Year (IPY) Schools on Board collaborated with international researchers and northern agencies from 11 countries to offer one

  8. Project of international science-education center and integration problems of nano science education in far eastern region of Asia

    Energy Technology Data Exchange (ETDEWEB)

    Plusnin, N I; Lazarev, G I [Vladivostok State University of Economics and Service, 41 Gogolya Str., Vladivostok (Russian Federation)], E-mail: Nikolay.Plyusnin@vvsu.ru

    2008-03-15

    Some conception of international science-education center on nano science in Vladivostok is presented. The conception is based on internal and external prerequisites. Internal one is high intellectual potential of institutes of Russian Academy of Sciences and universities of Vladivostok and external one is need of countries of Far Eastern region of Asia in high level manpower. The conception takes into account a specific distribution of science and education potential between Russian Academy of Sciences and Russian universities and a specific their dislocation in Vladivostok. First specific dictates some similarity of organization structure and function of international science-education center to typical science-education center in Russia. But as for dislocation of the international science-education center in Vladivostok, it should be near dislocation of institutes of Far Eastern Brunch of Russian Academy of Sciences in Vladivostok, which are dislocated very compactly in suburb zone of Vladivostok.

  9. Mapping the informal science education landscape: An exploratory study.

    Science.gov (United States)

    Falk, John H; Randol, Scott; Dierking, Lynn D

    2012-10-01

    This study investigated the informal science education (ISE) field to determine whether it currently functions as an effective community of practice. Research questions included: How do professionals describe and self-identify their practice, including what missions, goals and motivating factors influence their professional work? What challenges do they face and how are these resolved? Is participation in ISE activities perceived as core or peripheral to their work? Open-ended interviews were conducted with high-level representatives of 17 different ISE sub-communities; results were analyzed qualitatively. Findings showed this broad assortment of ISE sub-communities as not currently functioning as a cohesive community of practice. Although examples of shared practice and ways of talking were found, evidence of widespread, active relationship-building over time and coalescence around issues of common concern were absent. A current "map" of the ISE community is proposed and thoughts about how this map could alter in the future are suggested.

  10. Computational thinking in life science education.

    Directory of Open Access Journals (Sweden)

    Amir Rubinstein

    2014-11-01

    Full Text Available We join the increasing call to take computational education of life science students a step further, beyond teaching mere programming and employing existing software tools. We describe a new course, focusing on enriching the curriculum of life science students with abstract, algorithmic, and logical thinking, and exposing them to the computational "culture." The design, structure, and content of our course are influenced by recent efforts in this area, collaborations with life scientists, and our own instructional experience. Specifically, we suggest that an effective course of this nature should: (1 devote time to explicitly reflect upon computational thinking processes, resisting the temptation to drift to purely practical instruction, (2 focus on discrete notions, rather than on continuous ones, and (3 have basic programming as a prerequisite, so students need not be preoccupied with elementary programming issues. We strongly recommend that the mere use of existing bioinformatics tools and packages should not replace hands-on programming. Yet, we suggest that programming will mostly serve as a means to practice computational thinking processes. This paper deals with the challenges and considerations of such computational education for life science students. It also describes a concrete implementation of the course and encourages its use by others.

  11. Computational thinking in life science education.

    Science.gov (United States)

    Rubinstein, Amir; Chor, Benny

    2014-11-01

    We join the increasing call to take computational education of life science students a step further, beyond teaching mere programming and employing existing software tools. We describe a new course, focusing on enriching the curriculum of life science students with abstract, algorithmic, and logical thinking, and exposing them to the computational "culture." The design, structure, and content of our course are influenced by recent efforts in this area, collaborations with life scientists, and our own instructional experience. Specifically, we suggest that an effective course of this nature should: (1) devote time to explicitly reflect upon computational thinking processes, resisting the temptation to drift to purely practical instruction, (2) focus on discrete notions, rather than on continuous ones, and (3) have basic programming as a prerequisite, so students need not be preoccupied with elementary programming issues. We strongly recommend that the mere use of existing bioinformatics tools and packages should not replace hands-on programming. Yet, we suggest that programming will mostly serve as a means to practice computational thinking processes. This paper deals with the challenges and considerations of such computational education for life science students. It also describes a concrete implementation of the course and encourages its use by others.

  12. Education to Face the Wicked Challenges of Sustainability

    Directory of Open Access Journals (Sweden)

    Bland Tomkinson

    2011-01-01

    Full Text Available Problem statement: The nature of sustainable development requires new paradigms for education. Issues of sustainability are ‘wicked problems’ that do not lend themselves to conventional didactic approaches. The challenge for higher education is to examine interdisciplinary approaches to global societal responsibility and, within this, issues of education for sustainable development. Approach: A project, sponsored by the Royal Academy of Engineering, developed a course unit in sustainable development across several disciplines. The approach was initially pedagogic in nature, with a strong evaluative theme. At the same time, a Delphi study was undertaken by the same team and this inter-relates with the main project. The focus of the action research was a series of ‘wicked’ problems that would provide real-world challenges with no simple answers. Results: The project was evaluated in a number of ways, not least the pre-and post-testing of students’ attitudes and approaches, but also using nominal group techniques. The project demonstrated that an interdisciplinary PBL approach succeeded in deepening the learning of the students as well as developing key skills. Conclusion: The use of collaborative, group-based approaches, notably PBL, offers a key way of approaching the design of curricula for sustainable development and other areas of global societal responsibility that hinge on ‘wicked problems’.

  13. EDUCATION AND YOUNG FACE OF DEMANDING JOB MARKET BRAZILIAN.

    Directory of Open Access Journals (Sweden)

    Claudio Raza

    2013-06-01

    Full Text Available This article discusses an analysis of public policies applied to education and their influence on economic development and social rise of workers in the Brazilian labor market, which requires efficient, economically productive people in constant training. It aims at examining the overall efficiency of the management model of educational public policies, as well as the teaching process and preparation of young people to the labor market. From the results of this study, we can conclude that there is a huge gap between institutions of secondary education and the labor market; we discussed questions such as how school refusal is caused by disinterest and lack of relationship between theory and practice, required for the insertion of the young in the labor market, as well as the lack of integration among schools, businesses and society. Thus, it is proved necessary to adopt more efficient policies to decrease the distance or lack of preparation of the young to develop the country's economic and bring social development.

  14. Challenges of Virtual and Open Distance Science Teacher Education in Zimbabwe

    Directory of Open Access Journals (Sweden)

    Vongai Mpofu

    2012-01-01

    Full Text Available This paper reports on a study of the implementation of science teacher education through virtual and open distance learning in the Mashonaland Central Province, Zimbabwe. The study provides insight into challenges faced by students and lecturers on inception of the program at four centres. Data was collected from completed evaluation survey forms of forty-two lecturers who were directly involved at the launch of the program and in-depth interviews. Qualitative data analysis revealed that the programme faces potential threat from centre-, institution-, lecturer-, and student-related factors. These include limited resources, large classes, inadequate expertise in open and distance education, inappropriate science teacher education qualifications, implementer conflict of interest in program participation, students’ low self-esteem, lack of awareness of quality parameters of delivery systems among staff, and lack of standard criteria to measure the quality of services. The paper recommends that issues raised be addressed in order to produce quality teachers.

  15. Three Approaches to Gender Equity in Science Education

    Directory of Open Access Journals (Sweden)

    Astrid Sinnes

    2012-12-01

    Full Text Available In this article I use feminist critique of science as a point of departure to discuss different understandingsof how sex/gender impacts on pupils’ approaches to science education. I construct a theoreticalframework that shows three different approaches to increase gender equity in science education. Eachapproach is grounded in a distinct understanding of how sex/gender impacts pupils’ engagementin science education. The analytical frame that is developed thereby represents descriptions of threealternative ways to address gender inequity in science education. The framework shows how differentunderstandings of how sex/gender impact on pupils’ engagement in science education require distinctinitiatives to increase gender equity. The framework can be used in the planning and analysis ofhow gender initiatives work to address gender inequity in science education.

  16. RECONCILE THE RELIGION AND SCIENCE EDUCATION MANAGEMENT IN ISLAM

    Directory of Open Access Journals (Sweden)

    Syamsul Kurniawan

    2015-06-01

    Full Text Available This research is aimed to reconcile science and religion, and to seek its relevance in the management of non-dichotomous Islamic education.In addition, this research departs from the researcher’s anxiety in response to the dichotomous thought between religion and science which in turn manifests in the separation of science and religion in the history of Islamic education management. This results in the current Islamic education that suffers a setback in the development of science. Therefore, in the management of Islamic education, reintegration needs to be done without any dichotomy between religion and science.

  17. Science Student Teachers and Educational Technology: Experience, Intentions, and Value

    Science.gov (United States)

    Efe, Rifat

    2011-01-01

    The primary purpose of this study is to examine science student teachers' experience with educational technology, their intentions for their own use, their intentions for their students' use, and their beliefs in the value of educational technology in science instruction. Four hundred-forty-eight science student teachers of different disciplines…

  18. Some Aspects of Science Education in European Context

    Science.gov (United States)

    Naumescu, Adrienne Kozan; Pasca, Roxana-Diana

    2008-01-01

    Some up-to-date problems in science education in European context are treated in this paper. The characteristics of science education across Europe are presented. Science teachers' general competencies are underlined. An example of problem-solving as teaching method in chemistry is studied in knowledge based society. Transforming teacher…

  19. Flogging a Dead Horse: Pseudoscience and School Science Education

    Science.gov (United States)

    Vlaardingerbroek, Barend

    2011-01-01

    Pseudoscience is a ubiquitous aspect of popular culture which constitutes a direct challenge to science, and by association, to science education. With the exception of politically influential pseudosciences trying to impose themselves on official curricula such as creationism, science education authorities and professional organisations seem…

  20. Flogging a Dead Horse: Pseudoscience and School Science Education

    Science.gov (United States)

    Vlaardingerbroek, Barend

    2011-01-01

    Pseudoscience is a ubiquitous aspect of popular culture which constitutes a direct challenge to science, and by association, to science education. With the exception of politically influential pseudosciences trying to impose themselves on official curricula such as creationism, science education authorities and professional organisations seem…

  1. 2011 Joint Science Education Project: Research Experience in Polar Science

    Science.gov (United States)

    Wilkening, J.; Ader, V.

    2011-12-01

    The Joint Science Education Project (JSEP), sponsored by the National Science Foundation, is a two-part program that brings together students and teachers from the United States, Greenland, and Denmark, for a unique cross-cultural, first-hand experience of the realities of polar science field research in Greenland. During JSEP, students experienced research being conducted on and near the Greenland ice sheet by attending researcher presentations, visiting NSF-funded field sites (including Summit and NEEM field stations, both located on the Greenland ice sheet), and designing and conducting research projects in international teams. The results of two of these projects will be highlighted. The atmospheric project investigated the differences in CO2, UVA, UVB, temperature, and albedo in different Arctic microenvironments, while also examining the interaction between the atmosphere and water present in the given environments. It was found that the carbon dioxide levels varied: glacial environments having the lowest levels, with an average concentration of 272.500 ppm, and non-vegetated, terrestrial environments having the highest, with an average concentration of 395.143 ppm. Following up on these results, it is planned to further investigate the interaction of the water and atmosphere, including water's role in the uptake of carbon dioxide. The ecology project investigated the occurrence of unusual large blooms of Nostoc cyanobacteria in Kangerlussuaq area lakes. The water chemistry of the lakes which contained the cyanobacteria and the lakes that did not were compared. The only noticeable difference was of the lakes' acidity, lakes containing the blooms had an average pH value of 8.58, whereas lakes without the blooms had an average pH value of 6.60. Further investigation of these results is needed to determine whether or not this was a cause or effect of the cyanobacteria blooms. As a next step, it is planned to attempt to grow the blooms to monitor their effects on

  2. Meteorite Magazine: Promoting Science, Discovery, And Education

    Science.gov (United States)

    Lebofsky, Larry A.; Lebofsky, N. R.; Sears, H.; Sears, D.

    2006-09-01

    In late 2005, Larry and Nancy Lebofsky and Derek and Hazel Sears took over the editing and publishing of Meteorite magazine. We saw a great educational potential for the magazine. With a circulation over 600, the magazine reaches a broad readership: meteorite scientists, hunters, collectors, and enthusiasts. Unlike the professional journal of the Meteoritical Society, Meteoritics and Planetary Sciences, the articles in Meteorite range from scientific articles, reports from meteorite shows, and how to preserve meteorites to stories about searching for meteorites around the world. Meteorites are of interest to people. Asteroids, meteoroids, meteors, and meteorites are in many states' science standards. Yet, how many museums have meteorite collections with staff who know little about them? How many amateur astronomers, when seeing meteors or meteor showers, can explain how asteroids, comets, meteors, and meteorites are related and what they tell us about the formation of our Solar System? How many meteorite collectors are knowledgeable about how these objects are related to each other? How do we reach the broader community? Unlike the hundreds of amateur and school astronomy clubs, there are no meteorite clubs. While one can point out the wonders of the night sky and what can be seen through a telescope at star parties, there is no such thing as school meteorite hunting parties. The meteorite and planetary sciences communities working together can bring the excitement of meteorites and the science behind these fascinating objects to teachers, students, and museum and planetarium staff. We will present ideas for accomplishing this.

  3. The Kentucky Earth System Science Education Project

    Science.gov (United States)

    Whitworth, J. M.; Siewers, F. D.

    2003-12-01

    The Kentucky Earth Systems Education Project is a partnership between Western Kentucky University and Morehead State University to deliver the Earth Systems Science Alliance (ESSEA) courses via the Kentucky Virtual University to classroom teachers in Kentucky and beyond. One goal of the project has been to integrate the courses into the teacher preparation programs at both institutions, as well as providing professional development to practicing K-12 teachers. This presentation will highlight how team teaching courses with professors from different institutions at opposite ends of the state, as well as teaching in a different way, has brought new challenges and its own rewards. The instructors will present their own experiences and lessons learned that resulted in more effective ways of communicating and engaging students in the study of Earth Systems. They will also discuss how teaching strategies used in the course has changed their own teaching and student reactions to their online experience learning earth systems science.

  4. Nordic science and technology entrepreneurship education

    DEFF Research Database (Denmark)

    Warhuus, Jan P.; Basaiawmoit, Rajiv Vaid

    As a university discipline, entrepreneurship education (EEd) has moved from whether it can be taught, to what and how it should be taught (Kuratko 2005) and beyond the walls of the business school (Hindle 2007), where a need for a tailored, disciplinary approach is becoming apparent. Within science......, technology, engineering, and mathematics (STEM) EEd, tacit knowledge of what works and why is growing, while reflections to activate this knowledge are often kept local or reported to the EEd community as single cases, which are difficult compare and contrast for the purpose of deriving cross-case patterns......, findings, and knowledge. The objective of this paper is to decode this tacit knowledge within Nordic science and technology institutions, and use it to provide guidance for future EEd program designs and improvements....

  5. Evaluation of face-validity of multiple choice questions in special lessons of dentistry at Shahid Sadoughi University of Medical Sciences

    Directory of Open Access Journals (Sweden)

    M. H Toodehzaiem

    2012-09-01

    Full Text Available Introduction: Evaluation is an important part of all educational activities and considering of these evaluations help us to improve all educational institutes . The aim of this study was evaluation of face validity of multiple choice questions in faculty of dentistry in second semester of 1385-1386 at Shahid Sadughi University of medical sciences. Methods : In this study, for evaluating of face validity, all of the multiple choice questions were examined with a check list which were considered and the percentage of face validity established . Then data were analyzed. Results : Introduction page, time of the exam and name of the professor(s were written in all of the exams. The independency of the questions and the lack of vague words in the question's stem were 100%. The percentage of each professor's contribution in the exam and the length of the choices for each question were 8.7% and 27.7% respectively. Conclusion : Face validity of the questions was 92-99.7%. According to this investigation it is concluded that some of the professors need to pass the question plan courses.

  6. Engaging Latino audiences in informal science education

    Science.gov (United States)

    Bonfield, Susan B.

    Environment for the Americas (EFTA), a non-profit organization, developed a four-year research project to establish a baseline for Latino participation and to identify practical tools that would enable educators to overcome barriers to Latino participation in informal science education (ISE). Its national scope and broad suite of governmental and non-governmental, Latino and non-Latino partners ensured that surveys and interviews conducted in Latino communities reflected the cosmopolitan nature of the factors that influence participation in ISE programs. Information about economic and education levels, country of origin, language, length of residence in the US, and perceptions of natural areas combined with existing demographic information at six study sites and one control site provided a broader understanding of Latino communities. The project team's ability to work effectively in these communities was strengthened by the involvement of native, Spanish-speaking Latino interns in the National Park Service's Park Flight Migratory Bird Program. The project also went beyond data gathering by identifying key measures to improve participation in ISE and implementing these measures at established informal science education programs, such as International Migratory Bird Day, to determine effectiveness. The goals of Engaging Latino Audiences in Informal Science Education (ISE) were to 1) identify and reduce the barriers to Latino participation in informal science education; 2) provide effective tools to assist educators in connecting Latino families with science education, and 3) broadly disseminate these tools to agencies and organizations challenged to engage this audience in informal science education (ISE). The results answer questions and provide solutions to a challenge experienced by parks, refuges, nature centers, and other informal science education sites across the US. Key findings from this research documented low participation rates in ISE by Latinos, and that

  7. Integrating World Views, Knowledge and Venues in Climate Science Education

    Science.gov (United States)

    Sparrow, E. B.; Chase, M. J.; Demientieff, S.; Brunacini, J.; Pfirman, S. L.

    2015-12-01

    The Reaching Arctic Communities Facing Climate Change Project integrates traditional and western knowledge and observations in climate science to facilitate dialog and learning among Alaska Native adults about climate change and its impacts on the environment and on Alaskan communities. In one of the models we have tested, the informal education took place at a 4-day camp by the Tanana River in Fairbanks, Alaska. Participants included Alaska Native elders, leaders, educators and natural resource managers, community members and university scientists. Results of pre/post camp surveys showed increased awareness of scientific and technical language used in climate science, improved ability to locate resources, tools, and strategies for learning about climate change, enhanced capacity to communicate climate change in a relevant way to their audiences and communities, confirmed the value of elders in helping them understand, respond and adapt to climate change, and that the camp setting facilitated an in-depth discussion and sharing of knowledge. The camp also enhanced the awareness about weather, climate and the environment of the camp facilitators who also noticed a shift in their own thinking and behavior. After the camp one participant who is an educator shared some of the hands-on tools developed by Polar Learning and Responding Climate Change Education Partnership project and used at the camp, with her 6th grade students, with the other teachers in her school and also at a state conference. Another shared what she learned with her family and friends as well as at a conference sponsored by her faith community where she was an invited speaker. Another camp was scheduled for this past summer but was cancelled due to some unforeseen weather/climate related events. A camp is planned for early summer in 2016; however other models of reaching the adult Native populations in a similar culturally responsive manner as the camps will also be explored and tested.

  8. Exploring social networks of municipal science education stakeholders in Danish Science Municipalities

    DEFF Research Database (Denmark)

    von der Fehr, Ane

    development in the science and technology industry. Therefore, much effort has been invested to improve science education. The importance of school external stakeholders in development of education has been an increasingly emphasised, also in the field of science education. This has led to a growing focus...... on how conditions and structures in municipalities affect the development. Projects aiming at the municipal arena have thus been initiated and the Danish Science Municipality Project (SM project) was such a project. Part of the SM project was to create networks connecting different municipal stakeholder...... involved in science education development. These municipal science education networks (MSE networks) were identified as important for development of science education in the SM project. Therefore, it was a key interest to explore these networks in order to investigate how the central stakeholders affected...

  9. An Examination of Farmworker Pesticide Educators in a Southeastern State: Informal Science Educators and Risk Communication

    Science.gov (United States)

    LePrevost, Catherine E.

    2011-12-01

    Because pesticide exposure is a significant hazard to farmworkers in their working and living environments, basic pesticide toxicology is a topic for farmworker science education that has implications beyond scientific literacy to encompass farmworkers' safety and health. Migrant and seasonal farmworkers have been identified as an at-risk population because of the cultural and linguistic barriers they face, their temporary employment and tenuous documentation status, and their low literacy levels and limited formal education. Despite the key role of pesticide educators in promoting farmworker scientific literacy, safety, and health, data regarding pesticide educators are absent in the literature. This dissertation investigated the nature of pesticide educators in a southeastern state. Drawing on quantitative and qualitative methods, the three studies contained within this body of work characterize the personal beliefs---including pesticide risk, self-efficacy, and teaching beliefs---of pesticide educators, as well as educators' personal goals and their beliefs about the environments in which they pursue those goals. The research allowed for the creation of a profile of the organizations that and individuals who provide pesticide education to farmworkers in a highly agricultural state. The first study details the development and field testing of the Pesticide Risk Beliefs Inventory, a quantitative inventory to gauge pesticide risk beliefs, with a sample of pesticide educators (n=43) in a southeastern state. The 19-item, Likert-type inventory was found to be psychometrically sound with a Cronbach's alpha of 0.780 and a valuable tool in capturing pesticide educators' beliefs about pesticide risk, assessing beliefs in four key categories. The Pesticide Risk Beliefs Inventory could be useful in exploring beliefs about pesticide risks and guiding efforts to address misconceptions held by a variety of formal and informal science learners, educators, practitioners, the

  10. The Role of the Educator in the Reflexive Process of Science Teachers

    Directory of Open Access Journals (Sweden)

    Maisa Helena Altarugio

    2010-11-01

    Full Text Available This work aims at discussing practices and discourses of a science teacher educator, of broad experience and of great success, in initial and continuous teaching education. Our hypothesis is that, in addition to the knowledge and techniques, the elements which will sustain the teacher education process are found in the intersubjective relationship construed between the teacher educator and the group of teachers. Considering the unique aspects of the teacher educator in terms of conceiving and facing the educational task, we attempted to highlight the importance of this role, above all, in carrying out the process which focuses on educating and training reflexive teachers in their day-to-day practice. Our analysis applied some elements of the psychoanalysis in S. Freud and J. Lacan, who have revealed to us the potential in exploring aspects of subjective nature of the educational phenomena.

  11. Science Instructors' Perceptions of the Risks of Biotechnology: Implications for Science Education

    Science.gov (United States)

    Gardner, Grant Ean; Jones, M. Gail

    2011-01-01

    Developing scientifically literate students who understand the socially contextualized nature of science and technology is a national focus of science education reform. Science educators' perceptions of risks and benefits of new technologies (such as biotechnology) may shape their instructional approaches. This study examined the perceived risk of…

  12. Science IA (Agriscience). A Science Credit for Agriculture: Integrating Academic and Vocational Education.

    Science.gov (United States)

    Ricketts, Samuel C.

    Because college-bound students often had trouble fitting agricultural education courses into their schedules, and because science teachers rejected the idea of giving a science credit for 2 years of agricultural education, a new integrated course was created in Tennessee. It is now called Science IA (Agriscience). It is taught by a teacher with an…

  13. Effect of Teacher Education Program on Science Process Skills of Pre-Service Science Teachers

    Science.gov (United States)

    Yakar, Zeha

    2014-01-01

    Over the past three or more decades, many studies have been written about teacher education and the preparation of science teachers. Presented here is one which investigated the effectiveness of scientific process skills on pre-service science teachers of Pamukkale University Primary Science Teacher Education Program for four years. This study…

  14. Personal Health--Personalized Science: A New Driver for Science Education?

    Science.gov (United States)

    Roth, Wolff-Michael

    2014-01-01

    Since the 1950s, originating with and driven by the Sputnik shock, there have been tremendous efforts to improve science education. Over the past two decades, the initial focus on science content has been abandoned, at least among many science education researchers, in favor of socio-scientific issues. Yet even this social turn does not appear to…

  15. 77 FR 37891 - Notice of Proposed Information Collection Requests; Institute of Education Sciences; Education...

    Science.gov (United States)

    2012-06-25

    ... From the Federal Register Online via the Government Publishing Office DEPARTMENT OF EDUCATION Notice of Proposed Information Collection Requests; Institute of Education Sciences; Education... Feasibility Study (ELS:2002 FAFS) SUMMARY: The Education Longitudinal Study of 2002 (ELS:2002) is a...

  16. A Review of Empirical Evidence on Scaffolding for Science Education

    Science.gov (United States)

    Lin, Tzu-Chiang; Hsu, Ying-Shao; Lin, Shu-Sheng; Changlai, Maio-Li; Yang, Kun-Yuan; Lai, Ting-Ling

    2012-01-01

    This content analysis of articles in the Social Science Citation Index journals from 1995 to 2009 was conducted to provide science educators with empirical evidence regarding the effects of scaffolding on science learning. It clarifies the definition, design, and implementation of scaffolding in science classrooms and research studies. The results…

  17. Initial teacher education and continuing professional development for science teachers

    DEFF Research Database (Denmark)

    Dolin, Jens; Evans, Robert Harry

    2011-01-01

    , and belong to various cultures, both educationally and socially. Section 1 presents a review of the research literature across these dimensions and looks at the knowledge, skills and competences needed for teaching science, specific issues within science teacher education, and strategies for educating...

  18. Emerging Trends in Science Education in a Dynamic Academic Environment

    Science.gov (United States)

    Avwiri, H. E.

    2016-01-01

    Emerging Trends in Science Education in a Dynamic Academic Environment highlights the changes that have occurred in science education particularly in institutions of higher learning in southern Nigeria. Impelled by the fact that most Nigerian Universities and Colleges of Education still adhere to the practices and teaching methodologies of the…

  19. Reforming Science Education: Part I. The Search for a Philosophy of Science Education

    Science.gov (United States)

    Schulz, Roland M.

    2009-04-01

    The call for reforms in science education has been ongoing for a century, with new movements and approaches continuously reshaping the identity and values of the discipline. The HPS movement has an equally long history and taken part in the debates defining its purpose and revising curriculum. Its limited success, however, is due not only to competition with alternative visions and paradigms (e.g. STS, multi-culturalism, constructivism, traditionalism) which deadlock implementation, and which have led to conflicting meanings of scientific literacy, but the inability to rise above the debate. At issue is a fundamental problem plaguing science education at the school level, one it shares with education in general. It is my contention that it requires a guiding “metatheory” of education that can appropriately distance itself from the dual dependencies of metatheories in psychology and the demands of socialization—especially as articulated in most common conceptions of scientific literacy tied to citizenship. I offer as a suggestion Egan’s cultural-linguistic theory as a metatheory to help resolve the impasse. I hope to make reformers familiar with his important ideas in general and more specifically, to show how they can complement HPS rationales and reinforce the work of those researchers who have emphasized the value of narrative in learning science. This will be elaborated in Part II of a supplemental paper to the present one. As a prerequisite to presenting Egan’s metatheory I first raise the issue of the need for a conceptual shift back to philosophy of education within the discipline, and thereto, on developing and demarcating true educational theories (essentially neglected since Hirst). In the same vein it is suggested a new research field should be opened with the express purpose of developing a discipline-specific “philosophy of science education” (largely neglected since Dewey) which could in addition serve to reinforce science education

  20. NEON's Citizen Science Academy: Exploring online professional development courses for educators to enhance participation

    Science.gov (United States)

    Henderson, S.; Ward, D.; Wasser, L.; Meymaris, K.; Newman, S. J.

    2012-12-01

    The NEON Citizen Science Academy (CSA) (citizenscienceacademy.org) was created to explore the need for online professional development (PD) resources and opportunities that explicitly focused on citizen science in diverse educational settings. In the past decade, there has been more widespread acceptance of online PD courses as viable alternatives to face to face classes and workshops. This acceptance, along with the current proliferation of online based citizen science programs, spurred the development of the CSA dedicated to providing online courses and resources to facilitate effective implementation of citizen science programs. For the pilot, an online, self paced course for informal and formal educators was developed based on NEON' Project BudBurst (budburst.org). An intended outcome of this pilot project was the development of best practices based on lessons learned that could be used for the development of future NEON online courses and shared with the citizen science community, The pilot clearly demonstrated the interest in an online citizen science course. Initial registration far exceeded expectations and additional sessions had to be offered to meet demand. A second online course was developed and offered in the fall to similar interest. Additional courses will be offered in the winter of 2013. We will report on lessons learned and early best practices based, in large part, from field testing and feedback of over 400 educators who have taken participated in the CSA to date.

  1. An Evaluation of the Science Education Component of the Cross River State Science and Technical Education Project

    Science.gov (United States)

    Ekuri, Emmanuel Etta

    2012-01-01

    The Cross River State Science and Technical Education Project was introduced in 1992 by edict number 9 of 20 December 1991, "Cross River State Science and Technical Education Board Edit, 20 December, 1991", with the aim of improving the quality of science teaching and learning in the state. As the success of the project depends essentially on…

  2. Science initial teacher education and superdiversity: educating science teachers for a multi-religious and globalised science classroom

    Science.gov (United States)

    De Carvalho, Roussel

    2016-06-01

    Steven Vertovec (2006, 2007) has recently offered a re-interpretation of population diversity in large urban centres due to a considerable increase in immigration patterns in the UK. This complex scenario called superdiversity has been conceptualised to help illuminate significant interactions of variables such as religion, language, gender, age, nationality, labour market and population distribution on a larger scale. The interrelationships of these themes have fundamental implications in a variety of community environments, but especially within our schools. Today, London schools have over 300 languages being spoken by students, all of whom have diverse backgrounds, bringing with them a wealth of experience and, most critically, their own set of religious beliefs. At the same time, Science is a compulsory subject in England's national curriculum, where it requires teachers to deal with important scientific frameworks about the world; teaching about the origins of the universe, life on Earth, human evolution and other topics, which are often in conflict with students' religious views. In order to cope with this dynamic and thought-provoking environment, science initial teacher education (SITE)—especially those catering large urban centres—must evolve to equip science teachers with a meaningful understanding of how to handle a superdiverse science classroom, taking the discourse of inclusion beyond its formal boundaries. Thus, this original position paper addresses how the role of SITE may be re-conceptualised and re-framed in light of the immense challenges of superdiversity as well as how science teachers, as enactors of the science curriculum, must adapt to cater to these changes. This is also the first in a series of papers emerging from an empirical research project trying to capture science teacher educators' own views on religio-scientific issues and their positions on the place of these issues within science teacher education and the science classroom.

  3. Earth System Science Education in a General Education Context: Two Case Studies

    Science.gov (United States)

    Herring, J. A.

    2004-12-01

    The teaching of Earth System Science (ESS) to non-science majors is examined in a large lecture format class at a state university and in small classes with a significant research component at a liberal arts college. Quantitative and qualitative evaluations of both approaches reveal some of the challenges educators face as they work to advance students' integrated understanding of the Earth system. Student learning on selected concepts in the large lecture format class was poorly or negatively correlated with the amount of class time spent on the topic, even when the time was spent in teacher-student dialogue or in cooperative learning activities. The small class format emphasized student participation in research, which was found to be particularly effective when the class operated as a three-week intensive block and student use of computer models to simulate the dynamics of complex systems, which was found to be more effective when the class was held in a ten-week quarter. This study provides some clarification as to the utility of specific pedagogical frameworks (such as constructivism and experiential education) in the teaching of ESS to a general education audience and emphasizes the importance of carefully defining educational goals (both cognitive and affective) as a part of the curriculum design.

  4. Graduate Experience in Science Education: the development of a science education course for biomedical science graduate students.

    Science.gov (United States)

    Markowitz, Dina G; DuPré, Michael J

    2007-01-01

    The University of Rochester's Graduate Experience in Science Education (GESE) course familiarizes biomedical science graduate students interested in pursuing academic career tracks with a fundamental understanding of some of the theory, principles, and concepts of science education. This one-semester elective course provides graduate students with practical teaching and communication skills to help them better relate science content to, and increase their confidence in, their own teaching abilities. The 2-h weekly sessions include an introduction to cognitive hierarchies, learning styles, and multiple intelligences; modeling and coaching some practical aspects of science education pedagogy; lesson-planning skills; an introduction to instructional methods such as case studies and problem-based learning; and use of computer-based instructional technologies. It is hoped that the early development of knowledge and skills about teaching and learning will encourage graduate students to continue their growth as educators throughout their careers. This article summarizes the GESE course and presents evidence on the effectiveness of this course in providing graduate students with information about teaching and learning that they will use throughout their careers.

  5. Planetary Science Education - Workshop Concepts for Classrooms and Internships

    Science.gov (United States)

    Musiol, S.; Rosenberg, H.; Rohwer, G.; Balthasar, H.; van Gasselt, S.

    2014-12-01

    In Germany, education in astronomy and planetary sciences is limited to very few schools or universities and is actively pursued by only selected research groups. Our group is situated at the Freie Universität Berlin and we are actively involved in space missions such as Mars Express, Cassini in the Saturnian system, and DAWN at Vesta and Ceres. In order to enhance communication and establish a broader basis for building up knowledge on our solar-system neighborhood, we started to offer educational outreach in the form of workshops for groups of up to 20 students from primary/middle schools to high schools. Small group sizes guarantee practical, interactive, and dialog-based working environments as well as a high level of motivation. Several topical workshops have been designed which are targeted at different age groups and which consider different educational background settings. One workshop called "Impact craters on planets and moons" provides a group-oriented setting in which 3-4 students analyze spacecraft images showing diverse shapes of impact craters on planetary surfaces. It is targeted not only at promoting knowledge about processes on planetary surfaces but it also stimulates visual interpretation skills, 3D viewing and reading of map data. A second workshop "We plan a manned mission to Mars" aims at fostering practical team work by designing simple space mission scenarios which are solved within a team by collaboration and responsibility. A practical outdoor activity called "Everything rotates around the Sun" targets at developing a perception of absolute - but in particular relative - sizes, scales and dimensions of objects in our solar system. Yet another workshop "Craters, volcanoes and co. - become a geologist on Mars" was offered at the annual national "Girls' Day" aiming at motivating primary to middle school girls to deal with topics in classical natural sciences. Small groups investigated and interpreted geomorphologic features in image data of

  6. Science Teachers' Interpretations of Islamic Culture Related to Science Education versus the Islamic Epistemology and Ontology of Science

    Science.gov (United States)

    Mansour, Nasser

    2010-01-01

    The debate about Islam and science extends to a debate about the relationship between Islam and science education. In this paper, I explore Egyptian teachers' views of the relationship between science and religion within the Islamic context. Teachers' key vision of the relationship between science and religion was that "religion comes first and…

  7. Science Teachers' Interpretations of Islamic Culture Related to Science Education versus the Islamic Epistemology and Ontology of Science

    Science.gov (United States)

    Mansour, Nasser

    2010-01-01

    The debate about Islam and science extends to a debate about the relationship between Islam and science education. In this paper, I explore Egyptian teachers' views of the relationship between science and religion within the Islamic context. Teachers' key vision of the relationship between science and religion was that "religion comes first…

  8. It's not rocket science : Developing pupils’ science talent in out-of-school science education for Primary Schools

    NARCIS (Netherlands)

    Geveke, Catherina

    2017-01-01

    Out-of-school science educational activities, such as school visits to a science center, aim at stimulating pupils’ science talent. Science talent is a developmental potential that takes the form of talented behaviors such as curiosity and conceptual understanding. This dissertation investigates whe

  9. Equity in Informal Science Education: Developing an Access and Equity Framework for Science Museums and Science Centres

    Science.gov (United States)

    Dawson, Emily

    2014-01-01

    Informal science education (ISE) is a popular pursuit, with millions of people visiting science museums, science centres, zoos, botanic gardens, aquaria, science festivals and more around the world. Questions remain, however, about how accessible and inclusive ISE practices are. This article reviews research on participation in ISE through the…

  10. Taking the Lead in Science Education: Forging Next-Generation Science Standards. International Science Benchmarking Report. Appendix

    Science.gov (United States)

    Achieve, Inc., 2010

    2010-01-01

    This appendix accompanies the report "Taking the Lead in Science Education: Forging Next-Generation Science Standards. International Science Benchmarking Report," a study conducted by Achieve to compare the science standards of 10 countries. This appendix includes the following: (1) PISA and TIMSS Assessment Rankings; (2) Courses and…

  11. African Journal of Educational Studies in Mathematics and Sciences

    African Journals Online (AJOL)

    African Journal of Educational Studies in Mathematics and Sciences. ... in Mathematics and Sciences (AJESMS) is an international publication for works of ... the world with the goings-on in research endeavours and original thoughts in these ...

  12. Heisenberg's Uncertainty Principle and Interpretive Research in Science Education.

    Science.gov (United States)

    Roth, Wolff-Michael

    1993-01-01

    Heisenberg's uncertainty principle and the derivative notions of interdeterminacy, uncertainty, precision, and observer-observed interaction are discussed and their applications to social science research examined. Implications are drawn for research in science education. (PR)

  13. Learning by Doing: Science Education at the Hamburg Observatory

    Science.gov (United States)

    Wolfschmidt, Gudrun

    2015-01-01

    In my contribution I would like to offer three different examples: the activities of the association "Förderverein Hamburger Sternwarte", science education in the "astronomy workshop", and the teaching of the history of science and technology for university students.

  14. Earth-to-Orbit Education Program 'Makes Science Cool'

    Science.gov (United States)

    2002-01-01

    In this photograph, Jeff Alden (left) and Justin O'Cornor, two middle school students at Lane Middle School in Portland, Oregon are demonstrating their Earth-to-Orbit (ETO) Design Challenge project at NASA Marshall Space Flight Center (MSFC) in Huntsville, Alabama. Jeff and Justin, who are just a couple of 'typical teens,' have been spending their time tackling some of the same challenges NASA engineers face when designing propulsion systems at MSFC. The ETO Design Challenge is a hands-on educational program, targeted to middle school students, in which students are assigned a project engaging in related design challenges in their classrooms under the supervision of their teachers. The project is valuable because it can be used by any student and any teacher, even those without technical backgrounds. Students in 12 states: Alabama, Arkansas, California, Colorado, Illinois, Missouri, Montana, New York, Ohio, Tennessee, Virginia, and Washington, are taking part in the MSFC's Earth-to-Orbit program. NASA uses such programs to support educational excellence while participating in educational outreach programs through centers around the country. The Oregon students' teacher, Joanne Fluvog, commented, 'the biggest change I've seen is in the students' motivation and their belief in their ability to think.' Both Justin and Jeff said being involved in a real engineering project has made them realize that 'science is cool.'

  15. When Nature of Science Meets Marxism: Aspects of Nature of Science Taught by Chinese Science Teacher Educators to Prospective Science Teachers

    Science.gov (United States)

    Wan, Zhi Hong; Wong, Siu Ling; Zhan, Ying

    2013-01-01

    Nature of science (NOS) is beginning to find its place in the science education in China. In a study which investigated Chinese science teacher educators' conceptions of teaching NOS to prospective science teachers through semi-structured interviews, five key dimensions emerged from the data. This paper focuses on the dimension, "NOS content…

  16. The National Centers for Ocean Sciences Education Excellence Network: Building Bridges Between Ocean Scientists and Science Education

    Science.gov (United States)

    Scowcroft, G.; Hotaling, L. A.

    2009-12-01

    Since 2002 the National Centers for Ocean Sciences Education Excellence (COSEE) Network, funded by the National Science Foundation with support from the National Oceanic and Atmospheric Administration, has worked to increase the understanding of the ocean and its relevance to society. The Network is currently comprised of twelve Centers located throughout the United States and a Central Coordinating Office. COSEE focuses on innovative activities that transform and broaden participation in the ocean science education enterprise. A key player in the national ocean literacy movement, COSEE’s objectives are to develop partnerships between ocean scientists and educators and foster communication and coordination among ocean science education programs nationwide. COSEE has grown into the nation's most comprehensive ocean science and education network with over 200 partners, including universities and research institutions, community colleges, school districts, informal science education institutions, and state/federal agencies. Each Center is a consortium of one or more ocean science research institutions, informal science education organizations, and formal education entities. The mission of the National COSEE Network is to engage scientists and educators to transform ocean sciences education. Center activities include the development of catalytic partnerships among diverse institutions, the integration of ocean science research into high-quality educational materials, and the establishment of pathways that enable ocean scientists to interact with educators, students, and the public. In addition to the work and projects implemented locally and regionally by the Centers, Network-level efforts occur across Centers, such as the national promotion of Ocean Literacy Principals and encouragement of our nation’s youth to pursue ocean related areers. This presentation will offer several examples of how the National COSEE Network is playing an important and evolving role in

  17. Administrators' perspectives of support for elementary science education

    Science.gov (United States)

    Hanegan, Nikki Notias

    This investigation examines administrators' perspectives of support for elementary science education through naturalistic inquiry methodologies. Determining how administrators, as instructional leaders, define and demonstrate support for innovative reform in one curriculum area, specifically in science, has a direct impact on teacher effectiveness to implement change and new curricula into classrooms. Six major areas of current literature were reviewed for this study. They were (1) the need for Elementary Science Education, (2) the current status of Elementary Science Education, (3) the need for science professional development, (4) key components for effective professional development implementation, (5) leadership for elementary science education, and (6) administrative support. These critical issues were selected to deepen the understanding and purpose of this study. As a result of emergent interviews, five major themes developed from this study. They are: (1) knowledge of science instruction and implementation, (2) demonstration of administrative leadership to promote science education, (3) providing necessary resources or materials, (4) providing professional development opportunities, and (5) fostering teacher leadership for science instruction. These themes are discussed with supporting evidence from respondent interviews and verified through teacher interviews, newsletters, web sites, school observations, or curriculum sources. Administrative support for elementary science education is defined as action taken to ascertain that students are receiving quality science instruction. Chapter Five includes a discussion on the effectiveness of managers versus leaders in science education reform. Administrators need more direct involvement and participation in professional development aimed at science education to develop leadership skills, science content knowledge, and tools necessary to develop leaders for future district and school planning to implement science

  18. Modern Publishing Approach of Journal of Astronomy & Earth Sciences Education

    Science.gov (United States)

    Slater, Timothy F.

    2015-01-01

    Filling a needed scholarly publishing avenue for astronomy education researchers and earth science education researchers, the Journal of Astronomy & Earth Sciences Education - JAESE published its first volume and issue in 2014. The Journal of Astronomy & Earth Sciences Education - JAESE is a scholarly, peer-reviewed scientific journal publishing original discipline-based education research and evaluation, with an emphasis of significant scientific results derived from ethical observations and systematic experimentation in science education and evaluation. International in scope, JAESE aims to publish the highest quality and timely articles from discipline-based education research that advance understanding of astronomy and earth sciences education and are likely to have a significant impact on the discipline or on policy. Articles are solicited describing both (i) systematic science education research and (ii) evaluated teaching innovations across the broadly defined Earth & space sciences education, including the disciplines of astronomy, climate education, energy resource science, environmental science, geology, geography, agriculture, meteorology, planetary sciences, and oceanography education. The publishing model adopted for this new journal is open-access and articles appear online in GoogleScholar, ERIC, and are searchable in catalogs of 440,000 libraries that index online journals of its type. Rather than paid for by library subscriptions or by society membership dues, the annual budget is covered by page-charges paid by individual authors, their institutions, grants or donors: This approach is common in scientific journals, but is relatively uncommon in education journals. Authors retain their own copyright. The journal is owned by the Clute Institute of Denver, which owns and operates 17 scholarly journals and currently edited by former American Astronomical Society Education Officer Tim Slater, who is an endowed professor at the University of Wyoming and

  19. Merging University Students into K?12 Science Education Reform

    Science.gov (United States)

    2007-11-02

    limited to the K–12 classrooms but were related to the broader issue of creating university- school partnerships as a strategy for science education reform...of interest to federal policymakers who are concerned with science education reform and the development of partnerships between universities and K–12...4. TITLE AND SUBTITLE Merging University Students into K?12 Science Education Reform Unclassified 5a. CONTRACT NUMBER 5b. GRANT NUMBER 5c. PROGRAM

  20. Approaches for Improving Earth System Science Education in Middle Schools and High Schools in the United States (Invited)

    Science.gov (United States)

    Adams, P. E.

    2009-12-01

    Earth system science is an often neglected subject in the US science curriculum. The state of Kansas State Department of Education, for example, has provided teachers with a curriculum guide for incorporating earth system science as an ancillary topic within the subjects of physics, chemistry, and the biological sciences. While this does provide a means to have earth system science within the curriculum, it relegates earth system science topics to a secondary status. In practice, earth system science topics are considered optional or only taught if there is time within an already an overly crowded curriculum. Given the importance of developing an educated citizenry that is capable of understanding, coping, and deciding how to live in a world where climate change is a reality requires a deeper understanding of earth system science. The de-emphasis of earth system science in favor of other science disciplines makes it imperative to seek opportunities to provide teachers, whose primary subject is not earth system science, with professional development opportunities to develop content knowledge understanding of earth system science, and pedagogical content knowledge (i.e. effective strategies for teaching earth system science). This is a noble goal, but there is no single method. At Fort Hays State University we have developed multiple strategies from face-to-face workshops, on-line coursework, and academic year virtual and face-to-face consultations with in-service and pre-service teachers. A review of the techniques and measures of effectiveness (based on teacher and student performance), and strengths and limitations of each method will be presented as an aid to other institutions and programs seeking to improve the teaching and learning of earth system science in their region.

  1. Graduate education of library science in China:Current status and recommendations for improvement

    Institute of Scientific and Technical Information of China (English)

    KE; Ping; WANG; Ping; TANG; Chengxiu

    2008-01-01

    More than twenty years ago,Wuhan University and Nanjing University offered library science(LS)graduate programs.Since then,LS graduate education has been growing quickly in many aspects.At the same time,however,LS graduate education was also facing enormous challenges stemming from the dynamic development and wide applications of information technologies into the pedagogical arena of teaching and learning at all levels.Social evolution also made it necessary for LS educators to re-examine once again their graduate education model,curricular composition,educational philosophy and educational missions.In analyzing the present situation of LS graduate education in China,this paper focuses on the following issues:1)Growing size of LS graduate education(quantity and quality);2)educational objectives,including research direction and placement for graduates;3)structure of knowledge and curricular construction;4)conditions of administering a library school of high quality and 5)the management of teaching resources.The keystone of this paper is to pinpoint where current library science curricular deficiencies are lying.It is hoped that more serious scholarly discussions and perhaps also even concerted efforts among LS scholars and library practioners may be evoked in having the graduate education system of library and information science thoroughly realigned for the informational needs of the 21stcentury.

  2. Reconsidering social science theories in natural resource management continuing professional education

    DEFF Research Database (Denmark)

    Stumann, Cathy Brown; Gamborg, Christian

    2014-01-01

    Over 25 years ago, the ‘wicked problems’ concept was introduced into forestry to describe the increasingly complex work situations faced by many natural resource management (NRM) professionals and at the same time the demand and frequency of public involvement in NRM issues also grew. Research...... on the impact of these changes for NRM professionals resulted in many studies calling for NRM professionals to learn a host of new social science-related skills and knowledge. Twenty years later, research continues to show that NRM professionals are struggling to develop these ‘new’ skills and calls...... for integrating the social sciences in NRM education and practice endure. This paper discusses the challenge of integrating social science skills and knowledge into NRM public involvement practice and continuing professional education. The paper argues for a reconsideration of how social science theories relate...

  3. (Post) Modern Science (Education): Propositions and Alternative Paths. Counterpoints: Studies in the Postmodern Theory of Education.

    Science.gov (United States)

    Weaver, John A., Ed.; Morris, Marla, Ed.; Appelbaum, Peter, Ed.

    This collection of essays offers new perspectives for science educators, curriculum theorists, and cultural critics on science education, French post-structural thought, and the science debates. This book contains chapters on the work of Bruno Latour, Michael Serres, and Jean Baudrillard plus chapters on postmodern approaches to science education…

  4. A Science Education that Promotes the Characteristics of Science and Scientists: Features of Science Teacher Preparation

    Directory of Open Access Journals (Sweden)

    Michael P. Clough

    2015-10-01

    Full Text Available The three prior articles in this series have addressed teaching students in a manner that instills in them habits of thinking and action that reflect the characteristics of science and scientists. Achieving this is an essential part of STEM education efforts and demands overt attention to goals like those appearing in Table 1. As has been made clear in the previous two articles in this series (Clough 2015 a & b, much is known about teaching that effectively promotes these goals. For instance, Minner, Levy and Century (2010 synthesized relevant research reported between 1984 and 2002 to determine what impact, if any, inquiry science instruction has on K-12 learning.

  5. Nurses and challenges faced as clinical educators: a survey of a group of nurses in Cameroon

    Directory of Open Access Journals (Sweden)

    Vivian E A Eta

    2011-03-01

    Full Text Available BACKGROUND: Clinical teaching is an important component of clinical education. In nursing, clinical teaching is ensured by clinical nurse educators (CNEs. This study aimed at describing the major challenges faced by CNEs in Cameroon. METHODS: In a qualitative study, supplemented with quantitative methods, CNEs were enrolled from three health districts to represent their frequency in Cameroon’s health delivery system. RESULTS: A total of 56 CNEs participated in the study, of whom, as many as 58.9% acknowledged always facing challenges in clinical teaching and supervision. The major challenges identified were the lack of opportunities to update knowledge and skills, students’ lack of preparedness and the CNEs not being prepared for clinical teaching. CNEs attributed these challenges in major part to the lack of incentives and poor health policies. CONCLUSION: CNEs in Cameroon do indeed face major challenges which are of diverse origins and could adversely affect teaching in clinical settings

  6. Rationale for Students Preparation and Entrepreneurship Education in the Face of Global Economic Crisis in Nigeria

    Science.gov (United States)

    Onuma, Nwite

    2016-01-01

    The rationale for students preparation in job creation through entrepreneurship education was examined. Problems of unemployment among Nigerian university graduates and challenges to entrepreneurship in the face of global economic crisis were also highlighted. The persistent problem of unemployment among University graduates and its attendant…

  7. Using the Dynamic Model of Educational Effectiveness to Design Strategies and Actions to Face Bullying

    Science.gov (United States)

    Kyriakides, Leonidas; Creemers, Bert P. M.; Muijs, Daniel; Rekers-Mombarg, Lyset; Papastylianou, Dona; Van Petegem, Peter; Pearson, Diana

    2014-01-01

    This project investigates the impact of the dynamic approach to school improvement (DASI) aiming to help schools face and reduce bullying through integrating research on bullying with educational effectiveness research (EER). A network of approximately 15 schools in each participating country (i.e., Belgium, Cyprus, England, Greece, and The…

  8. Using the dynamic model of educational effectiveness to design strategies and actions to face bullying

    NARCIS (Netherlands)

    Kyriakides, Leonidas; Creemers, Bert P.M.; Muijs, Daniel; Rekers-Mombarg, Lyset; Papastylianou, Donna; Van Petegem, Peter; Pearson, Diana

    2014-01-01

    This project investigates the impact of the dynamic approach to school improvement (DASI) aiming to help schools face and reduce bullying through integrating research on bullying with educational effectiveness research (EER). A network of approximately 15 schools in each participating country (i.e.,

  9. Future Critical Issues and Problems Facing Technology and Engineering Education in the Commonwealth of Virginia

    Science.gov (United States)

    Katsioloudis, Petros; Moye, Johnny J.

    2012-01-01

    The purpose of this research was to determine the future critical issues and problems facing the K-12 technology and engineering education profession in the Commonwealth of Virginia. This study was based on the Wicklein nationwide studies (1993a, 2005). Even though this study did not exactly replicate the Wicklein studies--since it was limited to…

  10. Faces of Learning: 50 Powerful Stories of Defining Moments in Education

    Science.gov (United States)

    Chaltain, Sam, Ed.

    2011-01-01

    Everyone has a personal learning story, a time when they became actively engaged in their own education. Maybe it was an especially challenging teacher, or a uniquely supportive environment, or a collaborative classroom. In "Faces of Learning", both well-known public figures, such as Arne Duncan and Al Franken, and ordinary Americans recall the…

  11. Challenges Facing Women Academic Leadership in Secondary Schools of Irbid Educational Area

    Science.gov (United States)

    Al-Jaradat, Mahmoud Khaled Mohammad

    2014-01-01

    This study aimed at identifying the challenges facing women academic leadership in secondary schools of Irbid Educational Area. A random sample of 187 female leaders were chosen. They responded to a 49-item questionnaire prepared by the researcher. The items were distributed into four domains: organizational, personal, social and physical…

  12. Using the Dynamic Model of Educational Effectiveness to Design Strategies and Actions to Face Bullying

    Science.gov (United States)

    Kyriakides, Leonidas; Creemers, Bert P. M.; Muijs, Daniel; Rekers-Mombarg, Lyset; Papastylianou, Dona; Van Petegem, Peter; Pearson, Diana

    2014-01-01

    This project investigates the impact of the dynamic approach to school improvement (DASI) aiming to help schools face and reduce bullying through integrating research on bullying with educational effectiveness research (EER). A network of approximately 15 schools in each participating country (i.e., Belgium, Cyprus, England, Greece, and The…

  13. Educational Status of Dental Basic Science Course and its Correlation with Students' Educational Background in Kermanshah University of Medical Sciences

    OpenAIRE

    Mozafar Khazaei; Fatemeh Abasi; Mohammad Rasool Khazaei; Farshad Rahimi

    2014-01-01

    Introduction: Basic science course plays a pivotal role in the academic achievement of the students. The scientific background and educational performance of the students are also influential in this period. The aim of the present study was to investigate the educational status of dental basic science course in the first three admissions (2009-2011) and its association with students’ educational background in Kermanshah University of Medical Sciences (KUMS). Methods: In this descriptive cr...

  14. PHYSICAL EDUCATION BETWEEN ART AND SCIENCE

    Directory of Open Access Journals (Sweden)

    Goran Šekeljić

    2011-08-01

    Full Text Available Physical Education has its own definition inside the system of anthropomorphological sciences. But, there is a question whether it is possible to explain the phenomenon of physical education only inside of the system of abstrct atitudes based on an objective observation of reality or it is (at least some of its parts are an activity which has for an object the stimulation of human senses, mind or spirit. In this essey we discuss, in a very subjective way, the matter which concerns the culture in order to define the position of physical education inside the art system. The word "art" can relate to the variety of subjects, feelings or activities. Because of it, the fragments of art can be defined as creative interpretations of indefinite concepts or ideas. Having in mind the fact that in a world of art it is not possible to define standards that determine the art itself, according to the criteria which are generally accepted, it is still possible to make connection between sport and art by some rational observation. This work can enter the history thanks to the initiative to accept the sport as an aspect of art

  15. A Historical Analysis of the Relationship of Faith and Science and its Significance within Education

    Science.gov (United States)

    Yegge, John G.

    Science curriculum and pedagogy are at the center of a centuries-long debate concerning the appropriate relationship of faith and science. The difficulties that science educators face seem to be based in misinformation about the historical roots of this conflict. To address that conflict, the goals of this research were to separate myth from reality and to provide a necessary context to the current tensions that are disrupting science pedagogy and curriculum content within American public schools. Working within a theoretical framework of historical literacy, this qualitative, historical analysis was a comprehensive examination of the relationship of faith and science from ancient times through the Renascence to the emergence and development of Darwinism. The historical approach methodology was utilized as a means to document the systematic examination of past events, in order to illuminate and interpret the meaning of those events. The historical record revealed that science and religion are not necessarily incompatible and that the early Christian religion provided a fertile environment in which modern science could emerge. Also noted were many instances where the record was inconsistent with what educators have commonly taught as historical fact. Finally, the complex sources of tension between modern fundamentalist Christianity and Darwinism, which has appeared as a flashpoint in public discourse within science education, were examined in depth. Based on this analysis, the study includes recommendations for educators in their approach to addressing these challenges and teaching science. This analysis can produce positive social change for educators and their students, as this information is advanced as a means to enhance historical literacy among educators and their students.

  16. Lonergan's Theory of Cognition, Constructivism and Science Education

    Science.gov (United States)

    Roscoe, Keith

    Recent research literature in science education, science curriculum documents, and science methods texts have been highly influenced by constructivist views of how students learn science. But the widespread and often uncritical acceptance of constructivism in science education does not reflect the heated debate between constructivists and realist science educators over its underlying philosophy, and the curricular and pedagogical implications of constructivism. This paper aims to show that Bernard Lonergan's theory of cognition can inform this debate by (a) suggesting ways to see the merit in the views of constructivists and realists and bridge the gap between them, (b) illustrating how Lonergan's thought can be brought to bear on science curriculum documents and teaching-learning resources for science teachers. Lonergan's Theory of Cognition suggests that human knowing is not a single operation, but a dynamic and integral whole whose parts are sensory experience, understanding, and judging.

  17. Preparing Science Teachers: Strong Emphasis on Science Content Course Work in a Master's Program in Education

    Science.gov (United States)

    Ajhar, Edward A.; Blackwell, E.; Quesada, D.

    2010-05-01

    In South Florida, science teacher preparation is often weak as a shortage of science teachers often prompts administrators to assign teachers to science classes just to cover the classroom needs. This results is poor preparation of students for college science course work, which, in turn, causes the next generation of science teachers to be even weaker than the first. This cycle must be broken in order to prepare better students in the sciences. At St. Thomas University in Miami Gardens, Florida, our School of Science has teamed with our Institute for Education to create a program to alleviate this problem: A Master of Science in Education with a Concentration in Earth/Space Science. The Master's program consists of 36 total credits. Half the curriculum consists of traditional educational foundation and instructional leadership courses while the other half is focused on Earth and Space Science content courses. The content area of 18 credits also provides a separate certificate program. Although traditional high school science education places a heavy emphasis on Earth Science, this program expands that emphasis to include the broader context of astronomy, astrophysics, astrobiology, planetary science, and the practice and philosophy of science. From this contextual basis the teacher is better prepared to educate and motivate middle and high school students in all areas of the physical sciences. Because hands-on experience is especially valuable to educators, our program uses materials and equipment including small optical telescopes (Galileoscopes), several 8-in and 14-in Celestron and Meade reflectors, and a Small Radio Telescope installed on site. (Partial funding provided by the US Department of Education through Minority Science and Engineering Improvement Program grant P120A050062.)

  18. Science Communication versus Science Education: The Graduate Student Scientist as a K-12 Classroom Resource

    Science.gov (United States)

    Strauss, Jeff; Shope, Richard E., III; Terebey, Susan

    2005-01-01

    Science literacy is a major goal of science educational reform (NRC, 1996; AAAS, 1998; NCLB Act, 2001). Some believe that teaching science only requires pedagogical content knowledge (PCK). Others believe doing science requires knowledge of the methodologies of scientific inquiry (NRC, 1996). With these two mindsets, the challenge for science educators is to create models that bring the two together. The common ground between those who teach science and those who do science is science communication, an interactive process that galvanizes dialogue among scientists, teachers, and learners in a rich ambience of mutual respect and a common, inclusive language of discourse . The dialogue between science and non-science is reflected in the polarization that separates those who do science and those who teach science, especially as it plays out everyday in the science classroom. You may be thinking, why is this important? It is vital because, although not all science learners become scientists, all K-12 students are expected to acquire science literacy, especially with the implementation of the No Child Left Behind Act of 2001 (NCLB). Students are expected to acquire the ability to follow the discourse of science as well as connect the world of science to the context of their everyday life if they plan on moving to the next grade level, and in some states, to graduate from high school. This paper posits that science communication is highly effective in providing the missing link for K-12 students cognition in science and their attainment of science literacy. This paper will focus on the "Science For Our Schools" (SFOS) model implemented at California State Univetsity, Los Angeles (CSULA) as a project of the National Science Foundation s GK-12 program, (NSF 2001) which has been a huge success in bridging the gap between those who "know" science and those who "teach" science. The SFOS model makes clear the distinctions that identify science, science communication, science

  19. Science Communication versus Science Education: The Graduate Student Scientist as a K-12 Classroom Resource

    Science.gov (United States)

    Strauss, Jeff; Shope, Richard E., III; Terebey, Susan

    2005-01-01

    Science literacy is a major goal of science educational reform (NRC, 1996; AAAS, 1998; NCLB Act, 2001). Some believe that teaching science only requires pedagogical content knowledge (PCK). Others believe doing science requires knowledge of the methodologies of scientific inquiry (NRC, 1996). With these two mindsets, the challenge for science educators is to create models that bring the two together. The common ground between those who teach science and those who do science is science communication, an interactive process that galvanizes dialogue among scientists, teachers, and learners in a rich ambience of mutual respect and a common, inclusive language of discourse . The dialogue between science and non-science is reflected in the polarization that separates those who do science and those who teach science, especially as it plays out everyday in the science classroom. You may be thinking, why is this important? It is vital because, although not all science learners become scientists, all K-12 students are expected to acquire science literacy, especially with the implementation of the No Child Left Behind Act of 2001 (NCLB). Students are expected to acquire the ability to follow the discourse of science as well as connect the world of science to the context of their everyday life if they plan on moving to the next grade level, and in some states, to graduate from high school. This paper posits that science communication is highly effective in providing the missing link for K-12 students cognition in science and their attainment of science literacy. This paper will focus on the "Science For Our Schools" (SFOS) model implemented at California State Univetsity, Los Angeles (CSULA) as a project of the National Science Foundation s GK-12 program, (NSF 2001) which has been a huge success in bridging the gap between those who "know" science and those who "teach" science. The SFOS model makes clear the distinctions that identify science, science communication, science

  20. Associate in science degree education programs: organization, structure, and curriculum.

    Science.gov (United States)

    Galvin, William F

    2005-09-01

    After years of discussion, debate, and study, the respiratory care curriculum has evolved to a minimum of an associate degree for entry into practice. Although programs are at liberty to offer the entry-level or advanced level associate degree, most are at the advanced level. The most popular site for sponsorship of the associate degree in respiratory care is the community college. The basis for community college sponsorship seems to be its comprehensive curriculum, which focuses on a strong academic foundation in writing, communication, and the basic sciences as well as supporting a career-directed focus in respiratory care. Issues facing the community college are tied to literacy, outcomes, assessment, placement,cooperation with the community, partnerships with industry, and articulation arrangements with granting institutions granting baccalaureate degrees. Community colleges must produce a literate graduate capable of thriving in an information-saturated society. Assessment and placement will intensify as the laissez-faire attitudes toward attendance and allowing students to select courses without any accountability and evaluation of outcome become less acceptable. Students will be required to demonstrate steady progress toward established outcomes. Maintaining relations and cooperation with the local community and the health care industry will continue to be a prominent role for the community college. The challenge facing associate degree education in respiratory care at the community college level is the ability to continue to meet the needs of an expanding professional scope of practice and to provide a strong liberal arts or general education core curriculum. The needs for a more demanding and expanding respiratory care curriculum and for a rich general education core curriculum have led to increased interest in baccalaureate and graduate degree education. The value of associate degree education at the community college level is well established. It is

  1. Responsibility, Complexity Science and Education: Dilemmas and Uncertain Responses

    Science.gov (United States)

    Fenwick, Tara

    2009-01-01

    While complexity science is gaining interest among educational theorists, its constructs do not speak to educational responsibility or related core issues in education of power and ethics. Yet certain themes of complexity, as taken up in educational theory, can help unsettle the more controlling and problematic discourses of educational…

  2. Restructuring STM (Science, Technology, and Mathematics) Education for Entrepreneurship

    Science.gov (United States)

    Ezeudu, F. O.; Ofoegbu, T. O.; Anyaegbunnam, N. J.

    2013-01-01

    This paper discussed the need to restructure STM (science, technology, and mathematics) education to reflect entrepreneurship. This is because the present STM education has not achieved its aim of making graduates self-reliant. Entrepreneurship education if introduced in the STM education will produce graduate who can effectively manage their…

  3. French language space science educational outreach

    Science.gov (United States)

    Schofield, I.; Masongsong, E. V.; Connors, M. G.

    2015-12-01

    Athabasca University's AUTUMNX ground-based magnetometer array to measure and report geomagnetic conditions in eastern Canada is located in the heart of French speaking Canada. Through the course of the project, we have had the privilege to partner with schools, universities, astronomy clubs and government agencies across Quebec, all of which operate primarily in French. To acknowledge and serve the needs of our research partners, we have endeavored to produce educational and outreach (EPO) material adapted for francophone audiences with the help of UCLA's department of Earth, Planetary and Space Sciences (EPSS). Not only will this provide greater understanding and appreciation of the geospace environment unique to Quebec and surrounding regions, it strengthens our ties with our francophone, first nations (native Americans) and Inuit partners, trailblazing new paths of research collaboration and inspiring future generations of researchers.

  4. Conference Modern Engineering : Science and Education

    CERN Document Server

    2017-01-01

    This book draws together the most interesting recent results to emerge in mechanical engineering in Russia, providing a fascinating overview of the state of the art in the field in that country which will be of interest to a wide readership. A broad range of topics and issues in modern engineering are discussed, including dynamics of machines, materials engineering, structural strength and tribological behavior, transport technologies, machinery quality and innovations. The book comprises selected papers presented at the conference "Modern Engineering: Science and Education", held at the Saint Petersburg State Polytechnic University in 2016 with the support of the Russian Engineering Union. The authors are experts in various fields of engineering, and all of the papers have been carefully reviewed. The book will be of interest to mechanical engineers, lecturers in engineering disciplines and engineering graduates.

  5. Science, Society and Sustainability: Education and Empowerment for an Uncertain World. Routledge Research in Education

    Science.gov (United States)

    Gray, Donald, Ed.; Colucci-Gray, Laura, Ed.; Camino, Elena, Ed.

    2011-01-01

    Recent work in science and technological studies has provided a clearer understanding of the way in which science functions in society and the interconnectedness among different strands of science, policy, economy and environment. It is well acknowledged that a different way of thinking is required in order to address problems facing the global…

  6. The future of forensic and crime scene science. Part II. A UK perspective on forensic science education.

    Science.gov (United States)

    Mennell, Julie

    2006-03-14

    This paper builds on the views presented by the author at 'The Future of Forensic and Crime Scene Science Conference'. Forensic science has become an increasingly prominent area of science within the last 10 years. This increasing prominence together with popularity in the subject has seen the number of undergraduate students studying forensic science related courses at UK Universities increase rapidly in just 5 years and there are no short term signs of this trend reducing. In 2005, there were 450 courses with forensic in the title offered by higher education institutes. Although the forensic community has expressed its concern that job prospects for these students wishing to pursue careers as forensic scientists will be limited numbers of students undertaking science courses have still increased. The increase in students studying forensic science comes in an era of decreasing science numbers in higher education with the potential to produce high calibre science graduates with sought after skills in critical thinking, analysis, interpretation and communication. Technology has continued to advance at a similar pace providing those responsible for managing crime with a need and opportunity to identify and predict new and future applications of science and technology; not just in reducing and detecting crime but also in predicting how technology will be used by criminals in the future. There is therefore a need for forensic science users, providers and educators to identify the knowledge and skills required by forensic scientists and crime investigators of the future to ensure that technology continues to be used and applied to its full advantage. This provides universities an opportunity to contribute to the development of both the practice and practitioners of forensic science. This paper outlines the current issues facing universities in relation to forensic science and identifies their future role in providing high quality relevant courses for future forensic

  7. CONNECTIVISM IN SCIENCE EDUCATION WITH EMPHASIS ON INTERNATIONAL COLLABORATION

    Directory of Open Access Journals (Sweden)

    Eva Trnova

    2012-01-01

    Full Text Available The study presents the results of design-based research on the influence of connectivism on science education, with the emphasis on an international collaboration among/between teachers and students from different countries. Science and technology education is a very important part of culture as a knowledge background of society. Very fast ICT development strongly influences education. The pedagogical theory of connectivism was born as a response to this ICT development. Thus a need occurred to examine these connectivistic influences on science and technology education. This study presents a design-based research which is focussed on the following issues: identification of connectivistic factors and their influence on science education; creation of connectivistic educational methods; implementation of connectivistic educational methods into teaching/learning and teacher’s training. These methods were created within the frame of collaborative action research based on ICT which can be used as a vehicle for international collaboration with effective exploitation of ICT. The collaborative action research based on ICT was carried out by two collaborating teachers and their students in the Czech Republic and in Portugal. Concrete scenarios and strategic planning of the collaborative connectivistic teaching/learning are presented on the topic photosynthesis. Our design-based research results verify that implementation of connectivism in science education is reality. We identify the set of connectivistic factors which influence science education: selection of topic, selection of students, use of Information and Communication Technologies (ICT, collaboration schedule and elaboration of materials for teaching and learning. Connectivistic educational methods in science education are also presented. Connectivistic teaching/learning methods have a very positive influence on science education. This connectivistic approach can contribute to reducing the gap

  8. Basic Concepts of the Educational Science Sub-Discipline of Adult Education

    Science.gov (United States)

    Schneider, Kaethe

    2005-01-01

    In this study, a conceptual system is outlined for the educational science sub-discipline of adult education. Adults' attending instruction or not attending instruction is conceptually specified. Focusing as it does on a cardinal event of adult education, this represents a first step toward a system for the educational science sub-discipline of…

  9. Impact of constructivist pedagogy on science education

    Science.gov (United States)

    Chrishon-Ford, Grace E.

    This study focused on how constructivist pedagogy impacts science achievement of the fourth grade students in an elementary Department of Defense School. Constructivism is a learning or meaning-making theory that offers an explanation of the nature of knowledge and how human beings learn. The population of this study was two fourth grade classes in an elementary Department of Defense District School. Data collection was accomplished in four ways: (1) focus group interviews of students, (2) individual interviews of students selected from the focus groups, (3) interviews of teachers, and (4) unobtrusive observations of science instruction. A six-step process was followed to gain entry for this study. The steps were my university dissertation committee, Department of Defense Education Activity Research Study Request, Endorsement and Agreement form to the Headquarters Office, school superintendent, school principal, teacher participants, and the final step was to seek parental approval of the fourth graders involved in the study. The findings from this study were an increase of 47% test scores; 57% revealed experiments/projects and 64% working on the computers in groups were the fun things; 100% student interaction; 100% student attentativeness; and 70% using other resources. Implications have demonstrated that the traditional classroom can be converted if the teachers and administrators would buy into the approach that this project demonstrated. As an advocate of the constructivist model the case study demonstrated students do indeed respond to the constructivist theory. If approached in a positive manner, it could be done in any kind of school setting.

  10. On the way to a philosophy of science education

    Science.gov (United States)

    Schulz, Roland M.

    This Thesis argues the case that a philosophy of science education is required for improving science education as a research field as well as curriculum and teacher pedagogy. It seeks to re-think science education as an educational endeavor by examining why past reform efforts have been only partially successful, including why the fundamental goal of achieving scientific literacy after several "reform waves" has proven to be so elusive. The identity of such a philosophy is first defined in relation to the fields of philosophy, philosophy of science, and philosophy of education. Considering science education as a research discipline it is emphasized a new field should be broached with the express purpose of developing a discipline-specific "philosophy of science education" (largely neglected since Dewey). A conceptual shift towards the philosophy of education. is needed, thereto, on developing and demarcating true educational theories which could in addition serve to reinforce science education's growing sense of academic autonomy and independence from socio-economic demands. Two educational metatheories are contrasted, those of Kieran Egan and the Northern European Bildung tradition, to illustrate the task of such a philosophy. Egan's cultural-linguistic metatheory is presented for two primary purposes: it is offered as a possible solution to the deadlock of the science literacy conceptions within the discipline; regarding practice, examples are provided how it can better guide the instructional practice of teachers, specifically how it reinforces the work of other researchers in the History and Philosophy of Science (HPS) reform movement who value narrative in learning science. Considering curriculum and instruction, a philosophy of science education is conceptualized as a "second order" reflective capacity of the teacher. This notion is aligned with Shulman's idea of Pedagogical Content Knowledge. It is argued that for educators the nature of science learning

  11. Space Plasma Science as a Motivator for Education & Outreach

    Science.gov (United States)

    Dusenbery, Paul

    1999-11-01

    Education and public outreach (EPO) continue to play an important role in how science is funded by the federal government. The plasma science community has a responsibility to share their exciting science with the American public. Bruce Alberts, president of the National Academy of Sciences, and Neal Lane, former head of NSF, are on record as strong advocates of scientists becoming more actively and effectively engaged in K-12 science education reform. In addition, research directorates of funding agencies like NASA and NSF are increasingly encouraging (and in some cases requiring) the integration of science and education and greater scientist involvement in EPO. How does plasma science and scientists fit into this broader political and social landscape? How well does the public understand our science and technology? Are there ways to effectively engage the public that provide good visibility for plasma science? These questions and more will be addressed in this talk. The Space Science Institute (SSI), a nonprofit organization in Colorado, provides national leadership in developing innovative ways to translate the activities and resources of space and earth science research into exciting and effective K-12 and museum education programs. SSI’s mission is to link its space science research enterprise with its education programs. SSI has active programs in curriculum and exhibit development and professional development for both scientists about education and for educators about science. I will share with you one exhibit project and one curriculum project whose goals are to raise public understanding of space plasmas and by extension all of plasma science.

  12. What is `Agency'? Perspectives in Science Education Research

    Science.gov (United States)

    Arnold, Jenny; Clarke, David John

    2014-03-01

    The contemporary interest in researching student agency in science education reflects concerns about the relevance of schooling and a shift in science education towards understanding learning in science as a complex social activity. The purpose of this article is to identify problems confronting the science education community in the development of this new research agenda and to argue that there is a need for research in science education that attends to agency as a social practice. Despite increasing interest in student agency in educational research, the term 'agency' has lacked explicit operationalisation and, across the varied approaches, such as critical ethnography, ethnographies of communication, discourse analysis and symbolic interactionism, there has been a lack of coherence in its research usage. There has also been argument concerning the validity of the use of the term 'agency' in science education research. This article attempts to structure the variety of definitions of 'student agency' in science education research, identifies problems in the research related to assigning intentionality to research participants and argues that agency is a kind of discursive practice. The article also draws attention to the need for researchers to be explicit in the assumptions they rely upon in their interpretations of social worlds. Drawing upon the discursive turn in the social sciences, a definition of agency is provided, that accommodates the discursive practices of both individuals and the various functional social groups from whose activities classroom practice is constituted. The article contributes to building a focused research agenda concerned with understanding and promoting student agency in science.

  13. Science education as an exercise in foreign affairs

    Science.gov (United States)

    Cobern, William W.

    1995-07-01

    In Kuhnian terms, science education has been a process of inducting students into the reigning paradigms of science. In 1985, Duschl noted that science education had not kept pace with developments in the history and philosophy of science. The claim of certainty for scientific knowledge which science educators grounded in positivist philosophy was rendered untenable years ago and it turns out that social and cultural factors surrounding discovery may be at least as important as the justification of knowledge. Capitalizing on these new developments, Duschl, Hamilton, and Grandy (1990) wrote a compelling argument for the need to have a joint research effort in science education involving the philosophy and history of science along with cognitive psychology. However, the issue of discovery compels the research community go one step further. If the science education community has been guilty of neglecting historical and philosophical issues in science, let it not now be guilty of ignoring sociological issues in science. A collaborative view ought also to include the sociological study of cultural milieu in which scientific ideas arise. In other words, an external sociological perspective on science. The logic of discovery from a sociological point of view implies that conceptual change can also be viewed from a sociological perspective.

  14. Augmented Reality in science education – affordances for student learning

    DEFF Research Database (Denmark)

    Nielsen, Birgitte Lund; Brandt, Harald; Swensen, Hakon

    2016-01-01

    Most extant studies examining augmented reality (AR) have focused on the technology itself. This paper presents findings addressing the issue of AR for educational purposes based on a sequential survey distributed to 35 expert science teachers, ICT designers and science education researchers from...

  15. Science and Mathematics Education: International Innovations, Research, and Practices

    Science.gov (United States)

    Berlin, Donna F., Ed.; White, Arthur L., Ed.

    2011-01-01

    The chapters in this book reflect the work of science and mathematics educators who have worked for many years at the international level. As members of the International Consortium for Research in Science and Mathematics Education, their work provides readers with issues, models, practices, and research results that have applicability and…

  16. Introductory Comments on Philosophy and Constructivism in Science Education.

    Science.gov (United States)

    Matthews, Michael R.

    1997-01-01

    Distinguishes educational constructivism, which has its origins in the theories of children's learning, from constructivism in the philosophy of science and from constructivism in the sociology of science. Notes the evolution of educational constructivism and identifies some theoretical problems concerning constructivist teaching of science…

  17. Science Framework for the 2011 National Assessment of Educational Progress

    Science.gov (United States)

    National Assessment Governing Board, 2010

    2010-01-01

    The National Assessment of Educational Progress (NAEP) and its reports are a key measure in informing the nation on how well the goal of scientific literacy for all students is being met. The "Science Framework for the 2011 National Assessment of Educational Progress" sets forth the design of the NAEP Science Assessment. The 2011 NAEP…

  18. Introductory Comments on Philosophy and Constructivism in Science Education.

    Science.gov (United States)

    Matthews, Michael R.

    1997-01-01

    Distinguishes educational constructivism, which has its origins in the theories of children's learning, from constructivism in the philosophy of science and from constructivism in the sociology of science. Notes the evolution of educational constructivism and identifies some theoretical problems concerning constructivist teaching of science…

  19. The Case for Improving U.S. Computer Science Education

    Science.gov (United States)

    Nager, Adams; Atkinson, Robert

    2016-01-01

    Despite the growing use of computers and software in every facet of our economy, not until recently has computer science education begun to gain traction in American school systems. The current focus on improving science, technology, engineering, and mathematics (STEM) education in the U.S. School system has disregarded differences within STEM…

  20. An Introduction to Simulations as Scaffolds in Science Education

    DEFF Research Database (Denmark)

    Renken, Maggie; Pfeffer, Melanie; Otrel-Cass, Kathrin

    2016-01-01

    Computer simulations provide learning opportunities that make them appropriate for addressing many of the goals and challenges associated with pedagogical approaches to science education, such as inquiry-based science education and problem-based learning. Scaffolds aid students in accomplishing t...

  1. Mind Maps as Facilitative Tools in Science Education

    Science.gov (United States)

    Safar, Ammar H.; Jafer,Yaqoub J.; Alqadiri, Mohammad A.

    2014-01-01

    This study explored the perceptions, attitudes, and willingness of pre-service science teachers in the College of Education at Kuwait University about using concept/mind maps and its related application software as facilitative tools, for teaching and learning, in science education. The first level (i.e., reaction) of Kirkpatrick's/Phillips'…

  2. Turkish Science Teachers' Use of Educational Research and Resources

    Science.gov (United States)

    Ilhan, Nail; Sözbilir, Mustafa; Sekerci, Ali Riza; Yildirim, Ali

    2015-01-01

    Research results demonstrate that there is a gap between educational research and practice. Turkey is not an exception in this case. This study aims to examine to what extent and how educational research and resources are being followed,understood and used in classroom practices by science teachers in Turkey. A sample of 968 science teachers…

  3. STEM Policy and Science Education: Scientistic Curriculum and Sociopolitical Silences

    Science.gov (United States)

    Gough, Annette

    2015-01-01

    This essay responds to the contribution of Volny Fages and Virginia Albe, in this volume, to the field of research in science education, and places it in the context of the plethora of government and industry policy documents calling for more Science, Technology, Engineering and Mathematics (STEM) education in schools and universities and the…

  4. [Re]Considering Queer Theories and Science Education

    Science.gov (United States)

    Fifield, Steve; Letts, Will

    2014-01-01

    We take Mattias Lundin's "Inviting queer ideas into the science classroom: studying sexual education from a queer perspective" as a point of departure to explore some enduring issues related to the use of queer theories to interrogate science education and its practices. We consider the uneasy, polygamous relationship between gay…

  5. Building Future Directions for Teacher Learning in Science Education

    Science.gov (United States)

    Smith, Kathy; Lindsay, Simon

    2016-01-01

    In 2013, as part of a process to renew an overall sector vision for science education, Catholic Education Melbourne (CEM) undertook a review of its existing teacher in-service professional development programs in science. This review led to some data analysis being conducted in relation to two of these programs where participant teachers were…

  6. Encouraging Citizenship in Science Education: Continuing Questions and Hopeful Possibilities

    Science.gov (United States)

    Blades, David

    2015-01-01

    This special issue of the "Canadian Journal of Science, Mathematics and Technology Education" invokes questions intended to further the discourse of citizenship in science and mathematics education, such as, How do we define "citizen" and "democracy"? Is our call for student action hypocritical? Does positioning…

  7. The Use of Journal Clubs in Science Teacher Education

    Science.gov (United States)

    Tallman, Karen A.; Feldman, Allan

    2016-01-01

    This qualitative study explored how in a 7-month-long journal club pre- and inservice science teachers engaged with education research literature relevant to their practice to reduce the theory-practice gap. In the journal club they had the opportunity to critique and analyze peer-reviewed science education articles in the context of their…

  8. Comparison of Sports Sciences and Education Faculty Students' Aggression Scores

    Science.gov (United States)

    Atan, Tülin

    2016-01-01

    The aim of this study was to compare the aggression scores of Sports Sciences Faculty and Education Faculty students and also to examine the effects of some demographic variables on aggression. Two hundred Sports Sciences Faculty students (who engage in sporting activities four days a week for two hours) and 200 Education Faculty students (who do…

  9. Theory, Method and Practice of Neuroscientific Findings in Science Education

    Science.gov (United States)

    Liu, Chia-Ju; Chiang, Wen-Wei

    2014-01-01

    This report provides an overview of neuroscience research that is applicable for science educators. It first offers a brief analysis of empirical studies in educational neuroscience literature, followed by six science concept learning constructs based on the whole brain theory: gaining an understanding of brain function; pattern recognition and…

  10. New concepts of science and medicine in science and technology studies and their relevance to science education.

    Science.gov (United States)

    Wang, Hsiu-Yun; Stocker, Joel F; Fu, Daiwie

    2012-02-01

    Science education often adopts a narrow view of science that assumes the lay public is ignorant, which seemingly justifies a science education limited to a promotional narrative of progress in the form of scientific knowledge void of meaningful social context. We propose that to prepare students as future concerned citizens of a technoscientific society, science education should be informed by science, technology, and society (STS) perspectives. An STS-informed science education, in our view, will include the following curricular elements: science controversy education, gender issues, historical perspective, and a move away from a Eurocentric view by looking into the distinctive patterns of other regional (in this case of Taiwan, East Asian) approaches to science, technology, and medicine. This article outlines the significance of some major STS studies as a means of illustrating the ways in which STS perspectives can, if incorporated into science education, enhance our understanding of science and technology and their relationships with society. Copyright © 2011. Published by Elsevier B.V.

  11. Science Education Reform in Qatar: Progress and Challenges

    Science.gov (United States)

    Said, Ziad

    2016-01-01

    Science education reform in Qatar has had limited success. In the Trends in International Mathematics and Science Study (TIMMS), Qatari 4th and 8th grade students have shown progress in science achievement, but they remain significantly below the international average. Also, in the Program for International Student Assessment (PISA), Qatari…

  12. Computer science in Dutch secondary education: independent or integrated?

    NARCIS (Netherlands)

    Sijde, van der Pieter C.; Doornekamp, B. Gerard

    1992-01-01

    Nowadays, in Dutch secondary education, computer science is integrated within school subjects. About ten years ago computer science was considered an independent subject, but in the mid-1980s this idea changed. In our study we investigated whether the objectives of teaching computer science as an in

  13. Final Report on the Automated Computer Science Education System.

    Science.gov (United States)

    Danielson, R. L.; And Others

    At the University of Illinois at Urbana, a computer based curriculum called Automated Computer Science Education System (ACSES) has been developed to supplement instruction in introductory computer science courses or to assist individuals interested in acquiring a foundation in computer science through independent study. The system, which uses…

  14. Marrying Content and Process in Computer Science Education

    Science.gov (United States)

    Zendler, A.; Spannagel, C.; Klaudt, D.

    2011-01-01

    Constructivist approaches to computer science education emphasize that as well as knowledge, thinking skills and processes are involved in active knowledge construction. K-12 computer science curricula must not be based on fashions and trends, but on contents and processes that are observable in various domains of computer science, that can be…

  15. Empirical Determination of Competence Areas to Computer Science Education

    Science.gov (United States)

    Zendler, Andreas; Klaudt, Dieter; Seitz, Cornelia

    2014-01-01

    The authors discuss empirically determined competence areas to K-12 computer science education, emphasizing the cognitive level of competence. The results of a questionnaire with 120 professors of computer science serve as a database. By using multi-dimensional scaling and cluster analysis, four competence areas to computer science education…

  16. Computer science in Dutch secondary education: independent or integrated?

    NARCIS (Netherlands)

    van der Sijde, Peter; Doornekamp, B.G.

    1992-01-01

    Nowadays, in Dutch secondary education, computer science is integrated within school subjects. About ten years ago computer science was considered an independent subject, but in the mid-1980s this idea changed. In our study we investigated whether the objectives of teaching computer science as an

  17. Bourdieu, Department Chairs and the Reform of Science Education

    Science.gov (United States)

    Melville, Wayne; Hardy, Ian; Bartley, Anthony

    2011-01-01

    Using the insights of the French sociologist, Pierre Bourdieu, this article considers the role of the science department chair in the reform of school science education. Using Bourdieu's "thinking tools" of "field", "habitus" and "capital", we case study the work of two teachers who both actively pursue the teaching and learning of science as…

  18. Empirical Determination of Competence Areas to Computer Science Education

    Science.gov (United States)

    Zendler, Andreas; Klaudt, Dieter; Seitz, Cornelia

    2014-01-01

    The authors discuss empirically determined competence areas to K-12 computer science education, emphasizing the cognitive level of competence. The results of a questionnaire with 120 professors of computer science serve as a database. By using multi-dimensional scaling and cluster analysis, four competence areas to computer science education…

  19. Marrying Content and Process in Computer Science Education

    Science.gov (United States)

    Zendler, A.; Spannagel, C.; Klaudt, D.

    2011-01-01

    Constructivist approaches to computer science education emphasize that as well as knowledge, thinking skills and processes are involved in active knowledge construction. K-12 computer science curricula must not be based on fashions and trends, but on contents and processes that are observable in various domains of computer science, that can be…

  20. Transforming Science Education for the Anthropocene--Is It Possible?

    Science.gov (United States)

    Gilbert, Jane

    2016-01-01

    Since its inception, science education has been the focus of a great many reform attempts. In general, the aim has been to improve science understanding and/or make science study more interesting and/or relevant to a wider range of students. However, these reform attempts have had limited success. This paper argues that this is in part because…