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Sample records for k-12 mathematics curriculum

  1. Data Analysis in the K-12 Mathematics Curriculum: Teaching the Teachers.

    Science.gov (United States)

    Scheaffer, Richard L.

    2002-01-01

    Provides an overview of the structure of data analysis, the interrelationship between data analysis and probability, and the connection between data analysis and other components of the mathematics curriculum. Presents a possible order for topics being consistent with modern statistical practice and allows the topics to grow as students moves…

  2. Transforming Algebra from an Engine of Inequity to an Engine of Mathematical Power by "Algebrafying" the K-12 Curriculum.

    Science.gov (United States)

    Kaput, James J.

    This paper asserts that the key to algebra reform is to integrate algebraic reasoning across all grades and all topics, to "algebrafy" school mathematics. The distinction is made between algebra "the institution" and algebra "the web of knowledge and skill," which is also clarified. Finally, suggestions are made as to how the educational community…

  3. West Bloomfield Schools Social Studies Curriculum K-12.

    Science.gov (United States)

    Morse, James E.; And Others

    The curriculum guide outlines behavioral objectives, learning activities, evaluation methods, and resources to help K-12 classroom teachers develop and implement social studies programs. Major objectives are to extend knowledge, develop skills to make effective use of this knowledge, and to facilitate the socialization process. The first section…

  4. Core Curriculum for Social Studies Education K-12.

    Science.gov (United States)

    Utah State Office of Education, Salt Lake City. Office of Curriculum and Instruction.

    The Utah social studies curriculum for grades K-12 is divided into three levels: K-6, 7-8, and 9-12. For K-6, mastery of core concepts is required; for grades 7-8, 1.5 units of United States History and Utah studies are required; and for grades 9-12, three units of world cultural geography, ancient world civilizations, European history, United…

  5. Sense and Sensibility: The Case for the Nationwide Inclusion of Engineering in the K-12 Curriculum

    Science.gov (United States)

    Lindberg, Robert E.; Pinelli, Thomas E.; Batterson, James G.

    2008-01-01

    The competitive status of the United States is inextricably linked to innovation just as innovation is inseparable from science, technology, engineering, and mathematics. To stay competitive in innovation requires that the United States produce a 21st century workforce complete with requisite education, training, skills, and motivation. If we accept a priori that science, technology, engineering, and mathematics education are crucial to competitiveness and innovation and that, in terms of innovation, mathematics, science, and engineering are interdependent, why are mathematics and science uniformly ubiquitous in the K-12 curriculum while engineering is conspicuously absent? We are passionate in our belief that the uniform addition of engineering to the K-12 curriculum will help ensure that the nation has "the right" 21st Century workforce. Furthermore, we believe that a nationwide effort, led by a coalition of engineering academics, practitioners, and societies is required to turn this goal into reality. However, accomplishing this goal necessitates, as we are reminded by the title of Jane Austen's timeless novel, "Sense and Sensibility", a workable solution that seeks the "middle ground" between passion and reason. We begin our paper by making two essential points: Engineers are not scientists. Engineering exists separate from science, has its own specialized knowledge community apart from science, and it is largely responsible for many of the most significant advancements and improvements in the quality of our life. Our workable solution requires that K-12 education, nationwide, accommodate the inclusion of engineering as a stand alone curriculum and we offer three reasons to support our position: (1) workforce development, (2) stimulating interest in STEM (science, technology, engineering, and mathematics) courses and careers, and (3) creating a technologically literate society. We conclude with some thoughts on how this important goal can be accomplished.

  6. Teachers' Curriculum Guide to the Hayward Shoreline, K-12.

    Science.gov (United States)

    Bachle, Leo; And Others

    This teaching guide gives environmental education ideas for grades K-12. The field trips and activities all relate to the Hayward shoreline of the San Francisco, California, Bay. Included in the guide are 44 science activities, 15 social science activities, and 18 humanities activities. Each activity description gives the experience level, site…

  7. CESAME: Providing High Quality Professional Development in Science and Mathematics for K-12 Teachers

    Science.gov (United States)

    Hickman, Paul

    2002-04-01

    It is appropriate that after almost half a century of Science and Mathematics education reform we take a look back and a peek forward to understand the present state of this wonderfully complex system. Each of the components of this system including teaching, professional development, assessment, content and the district K-12 curriculum all need to work together if we hope to provide quality science, mathematics and technology education for ALL students. How do the state and national standards drive the system? How do state policies on student testing and teacher licensure come into play? How do we improve the preparation, retention and job satisfaction of our K-12 teachers? What initiatives have made or are making a difference? What else needs to be done? What can the physics community do to support local efforts? This job is too big for any single organization or individual but we each can contribute to the effort. Our Center at Northeastern University, with support from the National Science Foundation, has a sharply defined focus: to get high quality, research-based instructional materials into the hands of K-12 classroom teachers and provide the support they need to use the materials effectively in their classrooms.

  8. Enriching K-12 Science and Mathematics Education Using LEGOs

    Science.gov (United States)

    Williams, Keeshan; Igel, Irina; Poveda, Ronald; Kapila, Vikram; Iskander, Magued

    2012-01-01

    This paper presents a series of illustrative LEGO Mindstorms-based science and math activities, developed under an NSF GK-12 Fellows project, for elementary, middle, and high school grades. The activities, developed by engineering and science graduate Fellows in partnership with K-12 teachers, are grade appropriate, address pertinent learning…

  9. Anti-Litter Curriculum Packet, Interdisciplinary, K-12.

    Science.gov (United States)

    Tillis, Richard

    This curriculum packet consists of 20 illustrated cards with 15 activities designed to create "positive feelings" about a clean environment. Activities range from picture coloring for younger students, to lessons such as the economic and health problems litter creates for older students. Objectives include encouraging anti-litter and…

  10. Code to Learn: Where Does It Belong in the K-12 Curriculum?

    Directory of Open Access Journals (Sweden)

    Jesús Moreno León

    2016-06-01

    Full Text Available The introduction of computer programming in K-12 has become mainstream in the last years, as countries around the world are making coding part of their curriculum. Nevertheless, there is a lack of empirical studies that investigate how learning to program at an early age affects other school subjects. In this regard, this paper compares three quasi-experimental research designs conducted in three different schools (n=129 students from 2nd and 6th grade, in order to assess the impact of introducing programming with Scratch at different stages and in several subjects. While both 6th grade experimental groups working with coding activities showed a statistically significant improvement in terms of academic performance, this was not the case in the 2nd grade classroom. Notable disparity was also found regarding the subject in which the programming activities were included, as in social studies the effect size was double that in mathematics.

  11. A Developmental Program to Non-Grade Mathematics K-12.

    Science.gov (United States)

    Ferrell, Phyllis C.

    This report summarizes the first two years of study at the Elk Grove Training and Development Center. The initial program was designed to improve mathematics instruction through the use of a non-graded multi-media approach utilizing laboratory team teaching. Achievement test summaries indicate that K-5 students instructed in mathematics through…

  12. Mathematics teaching & learning in k-12 equity and professional development

    CERN Document Server

    Foote, Mary Q

    2010-01-01

    The continuing gap in achievement between traditionally underserved students (students of color, English learners, and poor children) and their middle-class white peers, however, has provoked questions of the effectiveness of current mathematics teaching practices for meeting the needs of these students.

  13. Identity and Biography as Mediators of Science and Mathematics Faculty's Involvement in K-12 Service

    Science.gov (United States)

    Skerrett, Allison; Sevian, Hannah

    2010-01-01

    This article explores aspects of science and mathematics faculty identities and biographies that mediated their involvement in K-12 service. Faculty expressed five motivations for participating in K-12 service--advancing their research agenda, advocating environmental consciousness, desiring to be involved in their children's schools, aspiring to…

  14. Identity and Biography as Mediators of Science and Mathematics Faculty's Involvement in K-12 Service

    Science.gov (United States)

    Skerrett, Allison; Sevian, Hannah

    2010-01-01

    This article explores aspects of science and mathematics faculty identities and biographies that mediated their involvement in K-12 service. Faculty expressed five motivations for participating in K-12 service--advancing their research agenda, advocating environmental consciousness, desiring to be involved in their children's schools, aspiring to…

  15. mathematics curriculum

    African Journals Online (AJOL)

    posed' with respect to connections are intended to open up possibilities for thinking ... knowledge in the teaching and learning of mathematics, it is essential to take .... two and three dimensions using various approaches in geometry and trigo-.

  16. Code to Learn: Where Does It Belong in the K-12 Curriculum?

    Science.gov (United States)

    Moreno-León, Jesús; Robles, Gregorio; Román-González, Marcos

    2016-01-01

    The introduction of computer programming in K-12 has become mainstream in the last years, as countries around the world are making coding part of their curriculum. Nevertheless, there is a lack of empirical studies that investigate how learning to program at an early age affects other school subjects. In this regard, this paper compares three…

  17. Code to Learn: Where Does It Belong in the K-12 Curriculum?

    Science.gov (United States)

    Moreno-León, Jesús; Robles, Gregorio; Román-González, Marcos

    2016-01-01

    The introduction of computer programming in K-12 has become mainstream in the last years, as countries around the world are making coding part of their curriculum. Nevertheless, there is a lack of empirical studies that investigate how learning to program at an early age affects other school subjects. In this regard, this paper compares three…

  18. Improving indicators of the quality of science and mathematics education in grades K-12

    National Research Council Canada - National Science Library

    Murnane, Richard J; Raizen, Senta A

    ... and Mathematics Education in in Grades K- -12 12 Richard J. Murnane and Senta A. Raizen, Editors Committee on Indicators of Precollege Science and Mathematics Education Commission on Behavioral and Social Sciences and Education National Research Council NATIONAL ACADEMY PRESS Washington, D.C. 1988 Copyrightthe cannot be not from book, paper however, version for...

  19. Instituting a standards-based K--12 science curriculum supplement program at the National Institutes of Health: A case study

    Science.gov (United States)

    Witherly, Jeffre

    Research on student achievement indicates the U.S. K-12 education system is not adequately preparing American students to compete in the 21st century global economy in the areas of science and mathematics. Congress has asked the scientific entities of the federal government to help increase K-12 science learning by creating standards-based learning tools for science classrooms as part of a "voluntary curriculum." One problem facing federal entities, such as the National Institutes of Health (NIH), is the need to create science-learning tools that conform to the National Science Education Standards (NSES) for curriculum materials and, therefore, are standards-based and applicable to the K-12 curriculum. This case study sought to better understand the change process at one federal agency as it went from producing K-12 learning tools that were educational in nature to a program that produced K-12 standards-based learning tools: the NIH Science Curriculum Supplement Program (NIH SCSP). The NIH SCSP was studied to gain insight into how this change in educational approach occurred, what factors enabled or inhibited the change process, and what the long-term benefits of the NIH SCSP are to the NIH. Kurt Lewin's three-step theory of change guided data gathering and data analysis. Semi-structured interviews and programmatic document review served as the major data gathering sources. Details describing the process of organizational change at the NIH were revealed during analysis of these data following the coding of interview transcripts and written record documents. The study found the process of change at the NIH proceeded in a manner generally predicted by the Lewinian change model. Enablers to the change were cost-sharing with individual institutes, support of senior leadership, and crediting the role of individual institutes prominently in each supplement. The cost of creating a supplement was reported as the single inhibitor to the program. This case study yielded a

  20. Investigating the Potential of the Flipped Classroom Model in K-12 Mathematics Teaching and Learning

    Science.gov (United States)

    Katsa, Maria; Sergis, Stylianos; Sampson, Demetrios G.

    2016-01-01

    The Flipped Classroom model (FCM) is a promising blended educational innovation aiming to improve the teaching and learning practice in various subject domains and educational levels. However, despite this encouraging evidence, research on the explicit benefits of the FCM on K-12 Mathematics education is still scarce and, in some cases, even…

  1. Integrating Robot Design Competitions into the Curriculum and K-12 Outreach Activities

    Science.gov (United States)

    Avanzato, Robert

    The Penn State Abington campus has integrated several mobile robot design competitions into project-based design activities to provide enhancement for undergraduate engineering and information sciences and technology courses and also to provide outreach to K-12 institutions. The robot competitions, which encourage interdisciplinary design, teamwork, and rapid prototyping, support a wide range of educational outcomes in a variety of courses. A survey of undergraduate students was also implemented to identify the key lessons learned and overall educational quality of the robot competition activities. Overall, the responses on the quality of the robot competition experience were very positive. The strategic selection and implementation of robot design competitions, such as described in this paper, provide a cost-effective approach to enhancing the curriculum, promoting retention, and encouraging interest in science and technology (STEM) careers in K-12 students.

  2. The Effectiveness of Educational Technology Applications for Enhancing Mathematics Achievement in K-12 Classrooms: A Meta-Analysis. Educator's Summary

    Science.gov (United States)

    Center for Research and Reform in Education, 2012

    2012-01-01

    This review summarizes research on the effects of technology use on mathematics achievement in K-12 classrooms. The main research questions included: (1) Do education technology applications improve mathematics achievement in K-12 classrooms as compared to traditional teaching methods without education technology?; and (2) What study and research…

  3. Rethinking the mathematics curriculum

    CERN Document Server

    Hoyles, Celia; Woodhouse, Geoffrey

    1998-01-01

    At a time when political interest in mathematics education is at its highest, this book demonstrates that the issues are far from straightforward. A wide range of international contributors address such questions as: What is mathematics, and what is it for? What skills does mathematics education need to provide as technology advances? What are the implications for teacher education? What can we learn from past attempts to change the mathematics curriculum? Rethinking the Mathematics Curriculum offers stimulating discussions, showing much is to be learnt from the differences in culture, national expectations, and political restraints revealed in the book. This accessible book will be of particular interest to policy makers, curriculum developers, educators, researchers and employers as well as the general reader.

  4. A Strategy for Incorporating Learning Analytics into the Design and Evaluation of a K-12 Science Curriculum

    Science.gov (United States)

    Monroy, Carlos; Rangel, Virginia Snodgrass; Whitaker, Reid

    2014-01-01

    In this paper, we discuss a scalable approach for integrating learning analytics into an online K-12 science curriculum. A description of the curriculum and the underlying pedagogical framework is followed by a discussion of the challenges to be tackled as part of this integration. We include examples of data visualization based on teacher usage…

  5. Computers in the Mathematics Curriculum.

    Science.gov (United States)

    Ediger, Marlow

    This paper examines ways that mathematics teachers and supervisors can use computers in a quality mathematics curriculum in a school setting. Teachers and supervisors continually need to appraise the present mathematics curriculum and make necessary changes. A modern mathematics curriculum makes much use of technology. Society emphasizes heavy use…

  6. First Year K-12 Teachers as High Leverage Point to Implement GEMS Space Science Curriculum Sequence

    Science.gov (United States)

    Slater, Timothy F.; Mendez, B. J.; Schultz, G.; Wierman, T.

    2013-01-01

    The recurring challenge for curriculum developers is how to efficiently prepare K-12 classroom teachers to use new curricula. First-year teachers, numbering nearly 250,000 in the US each year, have the greatest potential to impact the largest number of students because they have potential to be in the classroom for thirty years. At the same time, these novice teachers are often the most open minded about adopting curricular innovation because they are not yet deeply entrenched in existing practices. To take advantage of this high leverage point, a collaborative of space scientists and science educators at the University of California, Berkeley’s Lawrence Hall of Science and Center for Science Education at the Space Sciences Laboratory with experts from the Astronomical Society of the Pacific, the University of Wyoming, and the CAPER Center for Astronomy & Physics Education experimented with a unique professional development model focused on helping master teachers work closely with pre-service teachers during their student teaching internship field experience. The Advancing Mentor and Novice Teachers in Space Science (AMANTISS) team first identified master teachers who supervise novice, student teachers and trained these master teachers to use the GEMS Space Science Curriculum Sequence. Then, these master teachers were mentored in coaching interning student teachers assigned to them in using GEMS materials. Evaluation showed that novice teachers mentored by the master teachers felt knowledgeable after teaching the GEMS units. However, they seemed relatively less confident about the solar system and objects beyond the solar system. Overall, mentees felt strongly at the end of the year that they have acquired good strategies for teaching the various topics, suggesting that the support they received while teaching and working with a mentor was of real benefit to them. Funding provided in part by NASA ROSES AMANTISS NNX09AD51G

  7. The Changing Curriculum: Mathematics.

    Science.gov (United States)

    Davis, Robert B.

    In this 1967 booklet, influences of technology, the non-achiever and the culturally disadvantaged, and the revolt against formalism are discussed in relation to the modern mathematics curriculum. Some projects and school programs described include PLATO, the Nuffield Project, the Nova School Program, Advanced Placement Program, and teacher…

  8. 從課程學理基礎與核心素養論K-12 年級課程綱要A Research on Curriculum Theoretical Foundations and Key Competencies of K-12 Curriculum Guideline in

    Directory of Open Access Journals (Sweden)

    蔡清田Ching-Tien Tsai

    2011-09-01

    Full Text Available 本研究結合了研究者近年主持的兩件整合型研究計畫初步成果,包括國家教育研究院所委託執行的「K-12中小學一貫課程綱要核心素養與各領域之連貫體系研究」與「中小學課程相關之課程、教學、認知發展等學理基礎與理論趨向」,這些研究旨在建立我國未來幼兒教育、初等教育、前期中等教育及後期中等教育的「K-12年級課程綱要」之課程發展學理基礎,預備下一波課程改革。本文從核心素養與課程學理的教育哲學、教學理論、認知心理學、文化研究與社會變遷等角度切入,分析課程發展相關學理基礎,並依據課程學理與核心素養研究,對我國「K-12年級課程綱要」的基本理念、課程目標、核心素養、學習領域及實施通則等提出建議,冀能提升我國國民核心素養。 The main goal of this research aims to build theoretical foundations of curriculum development in order to prepare for the next curriculum reform regarding the K-12 curriculum guideline in Taiwan. So far as theoretical foundations of curriculum development is concerned, this research focuses on the relationships between key competencies and curriculum theoretical foundations regarding with five theoretical dimensions – educational philosophy, teaching theory, cognitive psychology, cultural studies and social change. First, the researcher analyses key competencies and theoretical foundations of curriculum development according to the literature review of the related curriculum theories and related studies. Second, the researcher builds up a set of theoretical foundations regarding curriculum development which is suitable for Taiwanese historical and cultural contexts. Finally, according to the new set of curriculum theoretical foundations, the researcher makes some suggestions for the future K-12 curriculum guidelines in Taiwan.

  9. Mathematical Story: A Metaphor for Mathematics Curriculum

    Science.gov (United States)

    Dietiker, Leslie

    2015-01-01

    This paper proposes a theoretical framework for interpreting the content found in mathematics curriculum in order to offer teachers and other mathematics educators comprehensive conceptual tools with which to make curricular decisions. More specifically, it describes a metaphor of "mathematics curriculum as story" and defines and…

  10. Proposed Model for a Streamlined, Cohesive, and Optimized K-12 STEM Curriculum with a Focus on Engineering

    Science.gov (United States)

    Locke, Edward

    2009-01-01

    This article presents a proposed model for a clear description of K-12 age-possible engineering knowledge content, in terms of the selection of analytic principles and predictive skills for various grades, based on the mastery of mathematics and science pre-requisites, as mandated by national or state performance standards; and a streamlined,…

  11. Designing a Mathematics Curriculum

    Directory of Open Access Journals (Sweden)

    Lee Peng Yee

    2010-07-01

    Full Text Available A decade of PMRI saw the changes in the classroom in some of the primary schools in Indonesia. Based on observation, we can say that though the mathematics syllabus in Indonesia did not change, its curriculum has changed under the movement of PMRI. In this article, we put in writing some of the experience gained through the involvement in designing curricula since 1971. Hopefully, some of the observations made may be of use to the colleagues in Indonesia. The discussion below will cover some deciding factors in designing a curriculum, some practices, and the latest trends. For convenience, we keep the discussion general, and do not refer to a specific syllabus. Also, in many cases, we refer mainly to secondary schools, that is, Grade 7 to Grade 10.

  12. The Effectiveness of Educational Technology Applications for Enhancing Mathematics Achievement in K-12 Classrooms: A Meta-Analysis

    Science.gov (United States)

    Cheung, Alan C. K.; Slavin, Robert E.

    2013-01-01

    The present review examines research on the effects of educational technology applications on mathematics achievement in K-12 classrooms. Unlike previous reviews, this review applies consistent inclusion standards to focus on studies that met high methodological standards. In addition, methodological and substantive features of the studies are…

  13. Mobile STEMship Discovery Center: K-12 Aerospace-Based Science, Technology, Engineering, and Mathematics (STEM) Mobile Teaching Vehicle

    Science.gov (United States)

    2015-08-03

    AND SUBTITLE Mobile STEMship Discovery Center: K-12 Aerospace-Based Science, Technology, Engineering, and Mathematics (STEM) Mobile Teaching Vehicle...college. Three students have gone through the NRL internships and now are full time employees at NRL. This pattern of direct corporate, government and

  14. A Conceptual Framework for Digital Libraries for K-12 Mathematics Education: Part 1, Information Organization, Information Literacy, and Integrated Learning

    Science.gov (United States)

    Chen, Hsin-liang; Doty, Philip

    2005-01-01

    This article is the first of two that present a six-part conceptual framework for the design and evaluation of digital libraries meant to support mathematics education in K-12 settings (see also pt. 2). This first article concentrates on (1) information organization, (2) information literacy, and (3) integrated learning with multimedia materials.…

  15. Handbook for Speech Correction, Grades K-12. Curriculum Bulletin 1973-74, Series Number 6.

    Science.gov (United States)

    New York City Board of Education, Brooklyn, NY. Bureau of Curriculum Development.

    The handbook describes the speech correction program of the New York City school system (Grades K-12), outlines the duties and responsibilities of the speech teacher, and presents guidelines, resource materials and lesson plans for use with speech handicapped students. Covered in the first three chapters are aspects of program organization (such…

  16. ALWAYS A RIVER - SUPPLEMENTAL ENVIRONMENTAL EDUCATION CURRICULUM ON THE OHIO RIVER AND WATER GRADES K - 12

    Science.gov (United States)

    This curriculum was developed as a significant component of the project, Always a River: The Ohio River and the American Experience, a six-state collaboration devoted to exploring the historical and cultural development of the Ohio River. The Always a River project is being joint...

  17. 美国K-12年级学校体育课程内容体系解析及启示%An analysis of and inspirations from the American K-12 physical education curriculum content system

    Institute of Scientific and Technical Information of China (English)

    殷荣宾; 季浏; 蔡赓

    2016-01-01

    分析美国 K-12年级学校体育课程内容体系,对其运动项目课程内容、运动技能课程内容和体育德育课程内容进行概述和解析,并归纳其主要特点为:依据体育素养构建课程内容;强调运动技能课程内容的递进与衔接;重视体育德育课程内容的渗透与融合;建立体育课程内容的更新机制和环境。我国可借鉴美国构建学校体育课程内容体系的经验,结合深化学校体育课程改革的现实需求,构建具有中国特色的基础教育体育课程内容体系。%The authors analyzed the American K-12 physical education curriculum content system, gave an over-view and analysis of its sports event curriculum contents, sports skill curriculum contents and sports moral educa-tion curriculum contents, and summarized its main characteristics as follows: emphasizing the progression and con-nection of sport skill curriculum contents based on sports makings building curriculum contents; valuing the per-meation and fusion of sports moral education curriculum contents; establishing a physical education curriculum content renewing mechanism and environment. China can build a physical education (in basic education) curricu-lum content system with Chinese features by referring to the United States’ beneficial experience in building a school physical education curriculum content system, coupled with the realistic need for deepening school physical education curriculum reform.

  18. Leadership in Mathematics Curriculum Development

    Science.gov (United States)

    Alford, Kenneth Ray

    2010-01-01

    This paper discusses mathematics curriculum development throughout the past century and incorporates a discussion of appropriate leadership style needed to bring about effective change. School leaders must be cognizant of the commitment and competence of the faculty within their school for successful curriculum development to take place.…

  19. Successful K-12 STEM Education: Identifying Effective Approaches in Science, Technology, Engineering, and Mathematics

    Science.gov (United States)

    National Academies Press, 2011

    2011-01-01

    Science, technology, engineering, and mathematics (STEM) are cultural achievements that reflect our humanity, power our economy, and constitute fundamental aspects of our lives as citizens, consumers, parents, and members of the workforce. Providing all students with access to quality education in the STEM disciplines is important to our nation's…

  20. Print to Braille: Preparation and Accuracy of Mathematics Materials in K-12 Education

    Science.gov (United States)

    Herzberg, Tina S.; Rosenblum, L. Penny

    2014-01-01

    Introduction: This study analyzed the accuracy of 107 mathematics worksheets prepared for tactile learners. The mean number of errors was calculated, and we examined whether there was a significant difference in the level of accuracy based on National Library Service for the Blind and Physically Handicapped (NLS) certification or job role of…

  1. Mathematics teaching and learning in K-12 equity and professional development

    CERN Document Server

    Foote, M

    2010-01-01

    The continuing gap in achievement between traditionally underserved students (students of color, English learners, and poor children) and their middle-class white peers, however, has provoked questions of the effectiveness of current mathematics teaching practices for meeting the needs of these students.

  2. What Is the Place of Algebra in the K-12 Mathematics Program?

    Science.gov (United States)

    Fendel, Dan; And Others

    1997-01-01

    As times change, so has the role of algebra in the educational program. The Interactive Mathematics Program (IMP) offers secondary students an opportunity to learn algebra in a college preparatory sequence that combines basic skills, problem solving, and conceptual understanding while integrating algebra into a problem-based program. Designed for…

  3. Mathematics across the Curriculum.

    Science.gov (United States)

    Kleiman, Glenn M.

    1991-01-01

    Except for its relationship to science, mathematics is the forgotten cousin in interdisciplinary teaching and learning. In the Journeys in Mathematics project, teachers engage children in imaginative activities that inspire them to identify patterns and relationships, solve problems, and communicate accurately, using Jonathan Swift's…

  4. Education for a Green and Resilient Economy: An Educator Framework for Teaching Climate and Energy Literacy for K-12 Teachers Across the Curriculum

    Science.gov (United States)

    Niepold, F., III; Ledley, T. S.; Lockwood, J.; Youngman, E.; Manning, C. L. B.; Sullivan, S. M.

    2015-12-01

    The U.S. is embarking on a major transition to a green and resilient economy, a monumental change requiring all sectors and segments of the population to pull together. Transforming our nation's economic, energy, and environmental systems to in this way will require a sustained level of expertise, innovation, and cooperative effort unseen since the 1940s to meet the challenges involved. Education can - and must - help people understand the true connections, the linkages and interdependencies, between the environment, our energy sources and the economy which underpin and form the very foundation of the concept of a green and resilient economy. To produce such a literate future workforce and citizenry, the United States will need to make major new investments in our educational systems. Teachers across the nation are helping to increase science-based understanding and awareness of current and future climate change, enhancing climate and energy literacy in K-12 classrooms, on college and university campuses. There has been tremendous progress to date, but there is still more work to be done. The new academic standards in mathematics and science (the Common Core State Standards in Mathematics and the Next Generation Science Standards (NGSS)) represent a sea change from the nation's previous sets of standards. Addressing these standards in the currently over 40 percent of the nation's classrooms that have adopted or adapted the NGSS will demand that we prepare new and current teachers, who can effectively address the interdisciplinary nature of climate change and societal responses. To address this opportunity and need a collaboration between NOAA, TERC and CIRES has been established to develop an Educator Framework for Teaching Climate and Energy Literacy for K-12 teachers across the curriculum based on the NRC Framework for K-12 Science Education: Practices, Crosscutting Concepts, and Core Ideas. This collaboration is developing an effective way to frame the use of

  5. Role of Public Outreach in the University Science Mission: Publishing K-12 Curriculum, Organizing Tours, and Other Methods of Engagement

    Science.gov (United States)

    Dittrich, T. M.

    2015-12-01

    Much attention has been devoted in recent years to the importance of Science, Technology, Engineering, and Math (STEM) education in K-12 curriculum for developing a capable workforce. Equally important is the role of the voting public in understanding STEM-related issues that impact public policy debates such as the potential impacts of climate change, hydraulic fracturing in oil and gas exploration, mining impacts on water quality, and science funding. Since voted officials have a major impact on the future of these policies, it is imperative that the general public have an understanding of the basic science behind these issues. By engaging with the public in a more fundamental way, university students can play an important role in educating the public while at the same time enhancing their communication skills and gaining valuable teaching experience. I will talk about my own experiences in (1) evaluating and publishing water chemistry and hazardous waste cleanup curriculum on the K-12 engineering platform TeachEngineering.org, (2) organizing public tours of water and energy sites (e.g., abandoned mine sites, coal power plants, wastewater treatment plants, hazardous waste treatment facilities), and (3) other outreach and communication activities including public education of environmental issues through consultations with customers of a landscaping/lawn mowing company. The main focus of this presentation will be the role that graduate students can play in engaging and educating their local community and lessons learned from community projects (Dittrich, 2014; 2012; 2011). References: Dittrich, T.M. 2014. Adventures in STEM: Lessons in water chemistry from elementary school to graduate school. Abstract ED13E-07 presented at 2014 Fall Meeting, AGU, San Francisco, Calif., 15-19 Dec. Dittrich, T.M. 2012. Collaboration between environmental water chemistry students and hazardous waste treatment specialists on the University of Colorado-Boulder campus. Abstract ED53C

  6. Challenging Transitions and Crossing Borders: Preparing Novice Mathematics Teacher Educators to Support Novice K-12 Mathematics Teachers

    Science.gov (United States)

    Yow, Jan A.; Eli, Jennifer A.; Beisiegel, Mary; McCloskey, Andrea; Welder, Rachael M.

    2016-01-01

    Sixty-nine recently graduated doctoral students in mathematics education completed a survey to determine their perceptions of transitioning from a doctoral program into an academic position at an institution of higher education. Research literature for novice mathematics school teachers was also reviewed to document their experiences transitioning…

  7. Quality and Quantity in the Mathematics Curriculum.

    Science.gov (United States)

    Ediger, Marlow

    This paper presents cognitive, affective, and psychomotor objectives and appraisal procedures in mathematics. It emphasizes the development of achievable mathematics curriculum and ongoing and sequential assessment to provide appropriate order of mathematical experiences for students. (KHR)

  8. K-12 Science Education Linked to Mars and the MER Mission: A New Curriculum Entitled Making Tracks on Mars Teacher Resource and Activity Guide

    Science.gov (United States)

    Aubele, J. C.; Stanley, J.; Grochowski, A.; Jones, K.; Aragon, J.

    2006-03-01

    Students' interest in Mars can be used as a "hook" to teach a wide range of topics. Mars-related science is used as the basis of a new K-12 integrated curriculum created by the New Mexico Museum of Natural History and classroom educators.

  9. Anxious for Answers: A Meta-Analysis of the E!ects of Anxiety on African American K-12 Students' Mathematics Achievement

    Science.gov (United States)

    Young, Jamaal Rashad; Young, Jemimah Lea

    2015-01-01

    Mathematics anxiety is recognized as a significant performance impediment that affects students across multiple ethnic and economic backgrounds. However, research has yet to fully examine the possible differential effect of mathematics anxiety on underrepresented K-12 students. Specifically, given the long-standing achievement gap between African…

  10. Mathematics Curriculum, the Philosophy of Mathematics and its ...

    African Journals Online (AJOL)

    It is my observation that the current school mathematics curriculum in Ethiopia is not producing ... The mathematics curriculum has a great influence on how teachers teach in a classroom. .... method. Content in schools, according to National. Council of Teachers of Mathematics ..... of challenging, unfamiliar and open-ended.

  11. Monitoring Progress: How the 2012 National Survey of Science and Mathematics Education Can Inform a National K-12 STEM Education Indicator System

    Science.gov (United States)

    Fulkerson, William O.; Banilower, Eric R.

    2014-01-01

    "Monitoring Progress Toward Successful K-12 STEM Education: A Nation Advancing?" (National Research Council, 2013) describes a set of 14 indicators for assessing and tracking the health of pre-college STEM education in the United States. This 2012 National Survey of Science and Mathematics Education (NSSME), is the fifth in a series of…

  12. Implementing a new mathematics curriculum: Mathematics teachers’ beliefs and practices

    Directory of Open Access Journals (Sweden)

    Ernest Ampadu

    2013-11-01

    Full Text Available Mathematics has become a ‘critical filter’ in the social, economic and professional development of individuals and forms a core component of the school curriculum in most countries. It is upon this utilitarian nature of mathematics to the individual and the society as a whole that the school mathematics curriculum has been undergoing a number of restructuring over the last three decades. In Ghana, a new mathematics curriculum was introduced in September 2007 which aims at shifting the teaching and learning of mathematics from a teacher-centered approach to more student-centered and participatory teaching and learning. However, since the introduction of the curriculum no study has specifically examined mathematics teachers’ teaching practices in relation to these new curriculum requirements. This study examines Junior High School (12-14 years mathematics teachers’ perceived and actual teaching practices in relation to the curriculum requirements. Participants in the study were 41 mathematics teachers’ from 22 Junior High Schools. A Semi-structured questionnaire was used to collect quantitative data about teachers’ perceived teaching practices, and classroom observation was used to collect qualitative data about actual classroom practices. The key findings include: teachers’ espoused the belief that their teaching practices are consistent with the principles and guidelines of the new mathematics curriculum. Teachers’ perceived teaching practices were not fully consistent with their actual practices. The movement towards a more constructivist approach as outlined in the curriculum was not fully evident in most of the classrooms observed.

  13. Evolution of Singapore's School Mathematics Curriculum

    Science.gov (United States)

    Kaur, Berinderjeet

    2014-01-01

    The evolution of Singapore's school mathematics curriculum is in tandem with developments in the education system of Singapore. In the last six decades, economic policies of the government that are necessary for the survival of Singapore in a fast changing world have shaped the aims of the school mathematics curriculum. The present day curriculum…

  14. Infusing Multicultural Education into the Curriculum: Preparing Pre-Service Teachers to Address Homophobia in K-12 Schools

    Science.gov (United States)

    Jones, Joseph R.

    2015-01-01

    This article discusses the role multicultural education can play in addressing homophobia in K-12 schools. The author explores the lack of multiculturalism courses in undergraduate teacher education programs. To address the lack of multiculturalism courses, three instructional activities are offered that faculty in teacher education programs can…

  15. IMPACT STATEMENTS ON THE K-12 SCIENCE PROGRAM IN THE ENHANCED BASIC EDUCATION CURRICULUM IN PROVINCIAL SCHOOLS

    Directory of Open Access Journals (Sweden)

    Marie Grace S. Cabansag,

    2014-04-01

    Full Text Available The study described the knowledge, observations, benefits, expectations or potentials and sources of misinterpretations on the K-12 science program on its first implementation in selected provincial high schools in the Philippines. The impact statements of teachers, students and parent-respondents were analyzed using thematic content coding technique. Coding frames were constructed by adopting both “a priori” and “in-vivo” codes. The results showed the respondents viewed the K-12 science program as a means of preparing students toward better employment opportunities in the country or abroad. It also reports the program is viewed for holistic development of the 21st century learners equipped with necessary life skills who can contribute for economic and social development of the family and community. The impact statements suggest the need for close monitoring of the program implementation and provision of continuous professional trainings for teachers to clear areas of misinterpretations. Misconceptions on the nature of additional years of study further suggest the provision and wide dissemination of policy standards on employment and education opportunities in the ASEAN Economic Community integration.

  16. Straight Talk about Risks: A Pre-K-12 Curriculum for Preventing Gun Violence. Grades 6-12.

    Science.gov (United States)

    Center To Prevent Handgun Violence, Washington, DC.

    Straight Talk about Risks (STAR) is a pre-kindergarten through grade 12 curriculum designed to reduce the potential for children and teens to be injured or killed in gunfire. STAR is based on sound prevention practice developed from a pilot project in Dade County (Florida). The flexible format allows activities to fit into a 3-week classroom unit…

  17. Straight Talk about Risks: A Pre-K-12 Curriculum for Preventing Gun Violence. Grades Pre-K-5.

    Science.gov (United States)

    Center To Prevent Handgun Violence, Washington, DC.

    Straight Talk about Risks (STAR) is a pre-kindergarten through grade 12 curriculum designed to reduce the potential for children and teens to be injured or killed in gunfire. STAR is based on sound prevention practices developed from a pilot project in Dade County (Florida). The flexible format allows activities to fit into a 3-week classroom unit…

  18. Engaging Scientists in K-12 Professional Development and Curriculum Development in the Context of Alaska's Large Marine Ecosystems

    Science.gov (United States)

    Sigman, M.; Anderson, A.; Deans, N. L.; Dublin, R.; Dugan, D.; Matsumoto, G. I.; Warburton, J.

    2012-12-01

    Alaska marine ecosystem-based professional development workshops have proven to be a robust context for engaging scientists from a variety of disciplines in overcoming barriers to communication and collaboration among scientists and educators. Scientists came away from scientist-teacher workshops with effective K-12 outreach strategies as well as a deeper understanding about how to contribute meaningfully to K-12 education. The establishment of the Alaskan Center for Ocean Sciences Education Excellence (COSEE-AK) in 2009 was the catalyst for a series of professional development workshops related to the North Pacific Research Board's (NPRB) marine focus areas (Bering Sea/Aleutian Islands, Gulf of Alaska, and Arctic Ocean) for Integrated Ecosystem Research Programs (IERPs). During 2010-2012, COSEE-AK and NPRB partnered with the Arctic Research Consortium of the U.S. (ARCUS), the Alaska Ocean Observing System (AOOS), and the Monterey Bay Aquarium Research Institute (MBARI) to support a five-day professional development workshop focused on each ecosystem. The workshops brought together three types of participants: 1) Alaska-focused marine ecosystem scientists; 2) rural Alaskan teachers living within each ecosystem; and 3) teachers from outside Alaska who had research experiences with scientists in the ecosystem. Over the course of the workshops, we developed a workshop model with four objectives: 1) to increase the science content knowledge of educators and their ability to teach ecosystem science; 2) to provide the scientists an opportunity to have broader impacts from their research on educators and Alaska Native and rural students; 3) to increase the knowledge and skills of educator and scientist participants to provide effective learning experiences for K-12 students; and 4) to facilitate the collaborative development of lesson plans. A total of 28 scientists and 41 educators participated in the three workshops. The success of the workshop for the educators was

  19. Ressources de mathematiques, maternelle-12e annee: Bibliographie annotee. Cadre commun des programmes d'etudes (Pre-Kindergarten-Grade 12 Mathematics Resources: Annotated Bibliography. Common Curriculum Framework).

    Science.gov (United States)

    Western Canadian Protocol for Collaboration in Basic Education, Edmonton (Alberta).

    This annotated bibliography identifies French language resources endorsed for the K-12 grade levels by all Western Canadian Protocol (WCP) jurisdictions implementing the Common Curriculum Framework for K- 12 Mathematics. Resources were selected through a collaborative review process based on their high level of fidelity with the rationale,…

  20. Imaginative Ideas for the Teacher of Mathematics, Grades K-12. Ranucci's Reservoir. A Collection of Articles by Ernest R. Ranucci.

    Science.gov (United States)

    Farrell, Margaret A., Ed.

    This book is a collection of 21 articles by mathematics teacher Ernest Ranucci (1912-1976) grouped into five categories: (1) "Patterns" (for developing inductive reasoning skills); (2) "Mathematics in the World Around Us"; (3) "Spatial Visualization"; (4) "Inventiveness in Geometry"; and (5) "Games to Learn By", which demonstrates that mathematics…

  1. Integrating long-term science projects into K-12 curriculum: Fostering teacher-student engagement in urban environmental research through an NSF UCLA GK-12 program

    Science.gov (United States)

    Hogue, T. S.; Moldwin, M.; Nonacs, P.; Daniel, J.; Shope, R.

    2009-12-01

    research projects into K-12 curriculum.

  2. Creating Effective K-12 Outreach

    Science.gov (United States)

    Hopkins, J.

    2011-12-01

    Grant opportunities require investigators to provide 'broader impacts' for their scientific research. For most researchers this involves some kind of educational outreach for the K-12 community. I have been able to participate in many different types of grant funded science teacher professional development programs. The most valuable have been outreach where the research seamlessly integrated with my classroom curriculum and was sustainable with my future classes. To accomplish these types of programs, the investigators needed to research the K-12 community and identify several key aspects of the K-12 environment where their expertise would benefit me and my students. There are a lot of different K-12 learning environments, so researchers need to be sure to match up with the right grade level and administrative environment. You might want to consider non-main stream school settings, such as magnet programs, STEM academies, and distance learning. The goal is to try to make your outreach seem natural and productive. This presentation will illustrate how researchers can create an educational outreach project that will be a win-win situation for everyone involved.

  3. The Role of Visualization in the Middle School Mathematics Curriculum.

    Science.gov (United States)

    Ben-Chaim, David; And Others

    1989-01-01

    Examines the relationship between visualization and the middle school mathematics curriculum. Gives an overview of where and how visualization interacts with the curriculum. Investigates the role of visualization in developing inductive/deductive and proportional reasoning. (YP)

  4. INCREASING ACHIEVEMENT AND HIGHER-EDUCATION REPRESENTATION OF UNDER-REPRESENTED GROUPS IN SCIENCE, TECHNOLOGY, ENGINEERING, AND MATHEMATICS FIELDS: A REVIEW OF CURRENT K-12 INTERVENTION PROGRAMS.

    Science.gov (United States)

    Valla, Jeffrey M; Williams, Wendy M

    2012-01-01

    The under-representation of women and ethnic minorities in Science, Technology, Engineering, and Mathematics (STEM) education and professions has resulted in a loss of human capital for the US scientific workforce and spurred the development of myriad STEM educational intervention programs. Increased allocation of resources to such programs begs for a critical, prescriptive, evidence-based review that will enable researchers to develop optimal interventions and administrators to maximize investments. We begin by providing a theoretical backdrop for K-12 STEM programs by reviewing current data on under-representation and developmental research describing individual-level social factors undergirding these data. Next, we review prototypical designs of these programs, highlighting specific programs in the literature as examples of program structures and components currently in use. We then evaluate these interventions in terms of overall effectiveness, as a function of how well they address age-, ethnicity-, or gender-specific factors, suggesting improvements in program design based on these critiques. Finally, program evaluation methods are briefly reviewed and discussed in terms of how their empirical soundness can either enable or limit our ability to delineate effective program components. "Now more than ever, the nation's changing demographics demand that we include all of our citizens in science and engineering education and careers. For the U.S. to benefit from the diverse talents of all its citizens, we must grow the pipeline of qualified, underrepresented minority engineers and scientists to fill positions in industry and academia."-Irving P. McPhail..

  5. Standards for K-12 Engineering Education?

    Science.gov (United States)

    National Academies Press, 2010

    2010-01-01

    The goal of this study was to assess the value and feasibility of developing and implementing content standards for engineering education at the K-12 level. Content standards have been developed for three disciplines in STEM education--science, technology, and mathematic--but not for engineering. To date, a small but growing number of K-12

  6. Development of mathematics curriculum for Medialogy studentsat Aalborg University

    DEFF Research Database (Denmark)

    Timcenko, Olga

    Abstract This paper addresses mathematics curriculum development for Medialogy education. Medialogy as a study line was established in 2002 at Faculty for Engineering and Natural Sciences at Aalborg University, and mathematics curriculum has already been revised tree times. Some of the reasoning...

  7. Curriculum Materials and Its Uses in Teaching and Learning Mathematics.

    Science.gov (United States)

    Li, Yeping; Fuson, Karen

    As an outline of school educational activities, curriculum has been the focus of educational reforms in the past several decades (e.g., National Council of Teachers of Mathematics, 1980, 2000). In contrast, there are very limited research efforts given to examine the nature of mathematics curriculum and its roles in teaching and learning…

  8. Dynamics of Curriculum Change in Mathematics--Lagos State Modern Mathematics Project

    Science.gov (United States)

    Williams, Grace Alele

    1974-01-01

    Discusses the Entebbe Modern Mathematics Project and relates it to the change in curriculum in Lagos. It also discusses problems attendant on curriculum changes in a developing country like Nigeria. (Author)

  9. The Impact of Technology on High School Mathematics Curriculum

    Directory of Open Access Journals (Sweden)

    Cengiz Alacacı

    2014-02-01

    Full Text Available The infusion of technology into school mathematics has intensified in the last two decades. This article discusses the effects of this infusion on the mathematics curriculum. After a review of the different roles technology plays in mathematics and the diversity of the tools and their functions in teaching and learning mathematics, an epistemological perspective is offered to understand how technology could affect our cognition and perception while doing mathematics. With this background, specific examples are offered for the ways in which our curricular  goals are re-prioritized in algebra and geometry. The paper is concluded with a discussion of teachers' proficiency as a factor to promote effective use of technology  in the high school mathematics curriculum based on Beaudin &Bowers' (1997  PURIA model.Key Words: Technology, mathematics curriculum, algebra, geometry, high school

  10. K-12 Bolsters Ties to Engineering

    Science.gov (United States)

    Robelen, Erik W.

    2013-01-01

    When science, technology, engineering and mathematics (STEM) education is discussed in the K-12 sphere, it often seems like shorthand for mathematics and science, with perhaps a nod to technology and even less, if any, real attention to engineering. But recent developments signal that the "e" in STEM may be gaining a firmer foothold at…

  11. A Survey Study of U.S. Collegiate and K-12 Steel Band Directors' Attitudes Relating to Steel Band Curriculum and Pedagogy

    Science.gov (United States)

    Haskett, Brandon L.

    2016-01-01

    Steel bands were introduced into U.S. schools and universities during the 1950s and 1960s. There are now more than 600 U.S. school and university steel bands. The range of teaching methods and repertoire choices must be examined to more fully understand the variety of steel band traditions present in K-12 schools and universities. U.S. steel band…

  12. Scientists Involved in K-12 Education

    Science.gov (United States)

    Robigou, V.

    2004-12-01

    The publication of countless reports documenting the dismal state of science education in the 1980s, and the Third International Mathematics and Science Study (TIMMS) report (1996) called for a wider involvement of the scientific community in K-12 education and outreach. Improving science education will not happen without the collaboration of educators and scientists working in a coordinated manner and it requires a long-term, continuous effort. To contribute effectively to K-12 education all scientists should refer to the National Science Education Standards, a set of policies that guide the development of curriculum and assessment. Ocean scientists can also specifically refer to the COSEE recommendations (www.cosee.org) that led to the creation of seven regional Centers for Ocean Sciences Education Excellence. Scientists can get involved in K-12 education in a multitude of ways. They should select projects that will accommodate time away from their research and teaching obligations, their talent, and their interest but also contribute to the education reform. A few examples of effective involvement are: 1) collaborating with colleagues in a school of education that can lead to better education of all students and future teachers, 2) acting as a resource for a national program or a local science fair, 3) serving on the advisory board of a program that develops educational material, 4) speaking out at professional meetings about the value of scientists' involvement in education, 5) speaking enthusiastically about the teaching profession. Improving science education in addition to research can seem a large, overwhelming task for scientists. As a result, focusing on projects that will fit the scientist's needs as well as benefit the science reform is of prime importance. It takes an enormous amount of work and financial and personnel resources to start a new program with measurable impact on students. So, finding the right opportunity is a priority, and stepping

  13. Curriculum Guide for Baccalaureate Oriented Courses in Mathematics.

    Science.gov (United States)

    Darnes, G. Robert, Ed.

    A mathematics curriculum guide is presented for the purpose of offering statewide guidelines to colleges for determining the content of those courses which might be considered standard courses in the first two years of the college curriculum. Courses covered include: intermediate algebra, college algebra, trigonometry, analytic geometry,…

  14. Mathematizing: An Emergent Math Curriculum Approach for Young Children

    Science.gov (United States)

    Rosales, Allen C.

    2015-01-01

    Based on years of research with early childhood teachers, author Allen Rosales provides an approach to create an emergent math curriculum that integrates children's interests with math concepts. The mathematizing approach is different from traditional math curriculums, as it immerses children in a process that is designed to develop their…

  15. Mathematizing: An Emergent Math Curriculum Approach for Young Children

    Science.gov (United States)

    Rosales, Allen C.

    2015-01-01

    Based on years of research with early childhood teachers, author Allen Rosales provides an approach to create an emergent math curriculum that integrates children's interests with math concepts. The mathematizing approach is different from traditional math curriculums, as it immerses children in a process that is designed to develop their…

  16. Secondary School Mathematics Curriculum Improvement Study Information Bulletin 7.

    Science.gov (United States)

    Secondary School Mathematics Curriculum Improvement Study, New York, NY.

    The background, objectives, and design of Secondary School Mathematics Curriculum Improvement Study (SSMCIS) are summarized. Details are given of the content of the text series, "Unified Modern Mathematics," in the areas of algebra, geometry, linear algebra, probability and statistics, analysis (calculus), logic, and computer…

  17. Examining the Place of Geography in the American Social Studies Curriculum and the Efforts toward an Effective Teacher Education in K-12 Geography

    Directory of Open Access Journals (Sweden)

    Cemalettin AYAS

    2008-12-01

    Full Text Available This paper primarily focuses on locating geography education in the American secondary social studies curriculum, and then examines the American teacher education in geography. Therefore, the paper first defines the common ground between social studies and geography, followed by a discussion regarding how geography as a school subject fits in to the social studies curriculum. It next analyzes the American experience in preparing pre- and in-service geography and/or social studies teachers as there have been quite efforts to that end due to the widespread “geographic illiteracy” in the American schools. As a result, the current paper attempts to provide the interested audience with a general perspective concerning the place of geography education in the American schools, and suggests a comprehensive teacher education model based on the related literature investigated

  18. Computational experiment approach to advanced secondary mathematics curriculum

    CERN Document Server

    Abramovich, Sergei

    2014-01-01

    This book promotes the experimental mathematics approach in the context of secondary mathematics curriculum by exploring mathematical models depending on parameters that were typically considered advanced in the pre-digital education era. This approach, by drawing on the power of computers to perform numerical computations and graphical constructions, stimulates formal learning of mathematics through making sense of a computational experiment. It allows one (in the spirit of Freudenthal) to bridge serious mathematical content and contemporary teaching practice. In other words, the notion of teaching experiment can be extended to include a true mathematical experiment. When used appropriately, the approach creates conditions for collateral learning (in the spirit of Dewey) to occur including the development of skills important for engineering applications of mathematics. In the context of a mathematics teacher education program, this book addresses a call for the preparation of teachers capable of utilizing mo...

  19. The Fragmentation of the College Mathematics Curriculum

    Science.gov (United States)

    Singleton, Cynthia

    2008-01-01

    The purpose of this paper examines to what extent and asking reason the fragmentation of college mathematics have attained the present development in the course of looking at the history of mathematics education. (Contains 1 table.)

  20. Mathematical Texts as Narrative: Rethinking Curriculum

    Science.gov (United States)

    Dietiker, Leslie

    2013-01-01

    This paper proposes a framework for reading mathematics texts as narratives. Building from a narrative framework of Meike Bal, a reader's experience with the mathematical content as it unfolds in the text (the "mathematical story") is distinguished from his or her logical reconstruction of the content beyond the text (the…

  1. Revolutionizing Arts Education in K-12 Classrooms through Technological Integration

    Science.gov (United States)

    Lemon, Narelle, Ed.

    2015-01-01

    Educational technologies are becoming more commonplace across the K-12 curriculum. In particular, the use of innovative digital technology is expanding the potential of arts education, presenting new opportunities--and challenges--to both curricular design and pedagogical practice. "Revolutionizing Arts Education in K-12 Classrooms through…

  2. Functions in the Secondary School Mathematics Curriculum

    Science.gov (United States)

    Denbel, Dejene Girma

    2015-01-01

    Functions are used in every branch of mathematics, as algebraic operations on numbers, transformations on points in the plane or in space, intersection and union of pairs of sets, and so forth. Function is a unifying concept in all mathematics. Relationships among phenomena in everyday life, such as the relationship between the speed of a car and…

  3. Cooperative Learning and Adaptive Instruction in a Mathematics Curriculum.

    Science.gov (United States)

    Terwel, Jan; And Others

    1994-01-01

    Maintains that current research suggests that heterogeneous grouping is preferable. Reports on a study of a new mathematics curriculum using 600 students in 6 Dutch schools. Finds that students in heterogeneous classes taught with cooperative-learning techniques achieved more than students in traditional ability-grouped classrooms. (CFR)

  4. Effects of an Online Mathematics Curriculum for English Language Learners

    Science.gov (United States)

    Crawford, Lindy

    2013-01-01

    This study measured the effects of an online supplementary mathematics curriculum designed for middle school English language learners who speak Spanish as a first language. A randomized experiment measured the achievement differences between middle school English language learners who used the Web-based HELP Math (Help with English Language…

  5. Effects of an Online Mathematics Curriculum for English Language Learners

    Science.gov (United States)

    Crawford, Lindy

    2013-01-01

    This study measured the effects of an online supplementary mathematics curriculum designed for middle school English language learners who speak Spanish as a first language. A randomized experiment measured the achievement differences between middle school English language learners who used the Web-based HELP Math (Help with English Language…

  6. Designing a High School Mathematics Curriculum for All Students.

    Science.gov (United States)

    Alper, Lynne; Fendel, Dan; Fraser, Sherry; Resek, Diane

    1997-01-01

    Describes the characteristics that must exist for a secondary school curriculum to be successful with all students and the crucial elements needed for its implementation. An example of one such program, the Interactive Mathematics Program, is discussed along with the program's outcomes, some political consequences of the activity, and the…

  7. Using Curriculum-Based Measurement to Monitor Kindergarteners' Mathematics Development

    Science.gov (United States)

    Seethaler, Pamela M.; Fuchs, Lynn S.

    2011-01-01

    The purpose of this study was to examine technical and instructional features of a kindergarten curriculum-based measurement (CBM) tool designed to track students' mathematics progress in terms of computational concepts, procedures, and counting strategies. Students in 10 kindergarten classrooms in three elementary schools completed alternate…

  8. Diploma Examination. Curriculum Specifications for Mathematics 30. April 1986.

    Science.gov (United States)

    Alberta Dept. of Education, Edmonton.

    Curriculum specifications are given for one secondary school mathematics course. The percentage emphases of six components in the course are stated: trigonometry, 25%; quadratic relations, 22%; sequences, series, limits, 19%; statistics, 15%; logarithms, 9%; and polynomial functions, 10%. Objectives for each component are then listed, with their…

  9. Consumer Citizenship Curriculum Guides for Social Studies, English, Science, Mathematics.

    Science.gov (United States)

    MacKenzie, Louise; Smith, Alice

    These four consumer citizenship curriculum guides for social studies, English, science, and mathematics incorporate consumer education into these subject matter areas in grades 8-12. Each guide is organized around 10 main component/goals. They are basic economics in the marketplace, credit, consumer law/protection, banking skills, comparison…

  10. Biological Applications in the Mathematics Curriculum

    Science.gov (United States)

    Marland, Eric; Palmer, Katrina M.; Salinas, Rene A.

    2008-01-01

    In this article we provide two detailed examples of how we incorporate biological examples into two mathematics courses: Linear Algebra and Ordinary Differential Equations. We use Leslie matrix models to demonstrate the biological properties of eigenvalues and eigenvectors. For Ordinary Differential Equations, we show how using a logistic growth…

  11. Biological Applications in the Mathematics Curriculum

    Science.gov (United States)

    Marland, Eric; Palmer, Katrina M.; Salinas, Rene A.

    2008-01-01

    In this article we provide two detailed examples of how we incorporate biological examples into two mathematics courses: Linear Algebra and Ordinary Differential Equations. We use Leslie matrix models to demonstrate the biological properties of eigenvalues and eigenvectors. For Ordinary Differential Equations, we show how using a logistic growth…

  12. Mathematics achievement of Serbian eighth grade students and characteristics of mathematics curriculum

    Directory of Open Access Journals (Sweden)

    Antonijević Radovan M.

    2006-01-01

    Full Text Available This paper considers the main results and some educational implications of the TIMSS 2003 assessment conducted in Serbia, in the fields of mathematics achievement of Serbian eighth grade students and the mathematics curriculum context of their achievement. It was confirmed that Serbian eighth graders have made average scale score of 477 points, and with this achievement they are placed in the zone of intermediate international benchmarking level. The average mathematics achievement of the Serbian eighth graders is somewhat above the average international mathematics achievement. The best result was achieved in the content domain of "algebra", and the lower result in the content domains of "measurement" and "data". In the defined cognitive domains the Serbian students have achieved the best results in "solving routine problems" and "knowing facts and procedures", and the weaker result in "reasoning". Statistically significant difference was found in the mathematics achievement between girls and boys in the Serbian TIMSS 2003 sample, so the girls’ average scale score was 480 points and the same value for the boys was 473 points. The achieved results raise many questions about the contents of mathematics curriculum in Serbia, its quality and basic characteristics of its implementation. These results can be eligibly used to improve the mathematics curriculum and teaching in Serbian primary school.

  13. Mathematics Teachers’ Opinions about New Sub Learning Domains in Elementary Mathematics (6-8 Curriculum

    Directory of Open Access Journals (Sweden)

    Kürşat YENİLMEZ

    2013-06-01

    Full Text Available Purpose: There are mathematical behaviors in all levels from the preschool education to higher education programs. These behaviors are in mathematics curriculum as objectives. Elementary Mathematics (6-8th grades curriculum was developed in 2005 at last and applied gradually from the 6th grade in 2006-2007 academic year. Thematic approach was considered in regulating context in new mathematics curriculum and determined learning domains and sub learning domains. Some subjects were taken out and some new subjects were added in developing program studies. Patterns and relations in integers, translation, tessellations, structural drawings, transformation geometry, fractals, geometric movements, histogram, kinds of probability, standard deviation, combination, perspective drawings, intersections of objects, polyhedral objects, symmetries of geometric objects are some new subjects in mathematics (6-8th grades curriculum. Patterns and relations in integers and special number patterns are in Patterns and Relations in Algebra learning domain, translation, reflection, rotation, geometric movements and symmetries of geometric objects, tessellations and fractal, structural drawings, intersections of objects and polyhedral objects are in Geometry learning domain, histogram, kinds of probability, standard deviation, combination are in Probability and Statistics learning domain. The purpose of this study was to determine mathematics teachers’ opinions and qualifications about new sub learning domains in elementary mathematics (6-8th grades curriculum. The descriptive survey method was used in the study. The work group of the study consists of 27 mathematics teachers from primary schools in Tekirdağ. Data were collected by a questionnaire which has been developed by the researchers. The questionnaire has 9 open-ended and 17 close-ended questions. Open-ended questions were used to determine mathematics teachers’ views about new sub learning domains were

  14. Engineering Education in K-12 Schools

    Science.gov (United States)

    Spence, Anne

    2013-03-01

    Engineers rely on physicists as well as other scientists and mathematicians to explain the world in which we live. Engineers take this knowledge of the world and use it to create the world that never was. The teaching of physics and other sciences as well as mathematics is critical to maintaining our national workforce. Science and mathematics education are inherently different, however, from engineering education. Engineering educators seek to enable students to develop the habits of mind critical for innovation. Through understanding of the engineering design process and how it differs from the scientific method, students can apply problem and project based learning to solve the challenges facing society today. In this talk, I will discuss the elements critical to a solid K-12 engineering education that integrates science and mathematics to solve challenges throughout the world.

  15. Mathematics Teachers at Work: Connecting Curriculum Materials and Classroom Instruction. Studies in Mathematical Thinking and Learning Series

    Science.gov (United States)

    Remillard, Janine T., Ed.; Herbel-Eisenmann, Beth A., Ed.; Lloyd, Gwendolyn M., Ed.

    2011-01-01

    This book compiles and synthesizes existing research on teachers' use of mathematics curriculum materials and the impact of curriculum materials on teaching and teachers, with a particular emphasis on--but not restricted to--those materials developed in the 1990s in response to the NCTM's Principles and Standards for School Mathematics. Despite…

  16. Mathematical Knowledge and Skills Expected by Higher Education in Engineering and the Social Sciences: Implications for High School Mathematics Curriculum

    Science.gov (United States)

    Basaran, Mehmet; Özalp, Gülümser; Kalender, Ilker; Alacaci, Cengiz

    2015-01-01

    One important function of school mathematics curriculum is to prepare high school students with the knowledge and skills needed for university education. Identifying them empirically will help making sound decisions about the contents of high school mathematics curriculum. It will also help students to make informed choices in course selection at…

  17. Mathematical Knowledge and Skills Expected by Higher Education in Engineering and the Social Sciences: Implications for High School Mathematics Curriculum

    Science.gov (United States)

    Basaran, Mehmet; Özalp, Gülümser; Kalender, Ilker; Alacaci, Cengiz

    2015-01-01

    One important function of school mathematics curriculum is to prepare high school students with the knowledge and skills needed for university education. Identifying them empirically will help making sound decisions about the contents of high school mathematics curriculum. It will also help students to make informed choices in course selection at…

  18. Inquiry-Based Mathematics Curriculum Design for Young Children-Teaching Experiment and Reflection

    Science.gov (United States)

    Wu, Su-Chiao; Lin, Fou-Lai

    2016-01-01

    A group of teacher educators and practitioners in mathematics education and early childhood education generalized a set of inquiry-based mathematics models for Taiwanese young children of ages 3-6 and designed a series of inquiry-based mathematics curriculum tasks in cultivate the children's diverse mathematical concepts and mathematical power. In…

  19. Classifying K-12 Blended Learning

    Science.gov (United States)

    Staker, Heather; Horn, Michael B.

    2012-01-01

    The growth of online learning in the K-12 sector is occurring both remotely through virtual schools and on campuses through blended learning. In emerging fields, definitions are important because they create a shared language that enables people to talk about the new phenomena. The blended-learning taxonomy and definitions presented in this paper…

  20. Problems Associated with a Lack of Cohesive Policy in K-12 Pre-College Engineering

    Science.gov (United States)

    Chandler, John; Fontenot, A. Dean; Tate, Derrick

    2011-01-01

    This article identifies a number of issues associated with current STEM education reform efforts, especially with regard to efforts to integrate engineering education into the K-12 curriculum. Precollege engineering is especially problematic in STEM reform since there is no well-established tradition of engineering in the K-12 curriculum. This…

  1. Teaching a High-Level Contextualized Mathematics Curriculum to Adult Basic Learners

    Science.gov (United States)

    Showalter, Daniel A.; Wollett, Chelsie; Reynolds, Sharon

    2014-01-01

    This paper reports on the implementation of a high level contextualized mathematics curriculum by 12 adult basic instructors in a midwestern state. The 10-week pilot curriculum embedded high level mathematics in contexts that were familiar to adult learners. Instructors' weekly online posts were coded, and the following themes emerged: (a)…

  2. Teaching a High-Level Contextualized Mathematics Curriculum to Adult Basic Learners

    Science.gov (United States)

    Showalter, Daniel A.; Wollett, Chelsie; Reynolds, Sharon

    2014-01-01

    This paper reports on the implementation of a high level contextualized mathematics curriculum by 12 adult basic instructors in a midwestern state. The 10-week pilot curriculum embedded high level mathematics in contexts that were familiar to adult learners. Instructors' weekly online posts were coded, and the following themes emerged: (a)…

  3. An Analysis of the New Elementary Mathematics Teacher Education Curriculum in Turkey

    Science.gov (United States)

    Isiksal, Mine; Koc, Yusuf; Bulut, Safure; Atay-Turhan, Tulay

    2007-01-01

    The purpose of this paper is to describe and reflect on the changes in the new elementary mathematics teacher education curriculum in Turkey. It is our goal to share the revised teacher education curriculum with the outside mathematics teacher education community. The paper is organized around four major sections: An overview of the teacher…

  4. An Analysis of the New 9-Year Basic Education Mathematics Curriculum in Nigeria

    Science.gov (United States)

    Awofala, Adeneye O. A.

    2012-01-01

    The intention of this paper is to describe and reflect on the changes in the new 9-year basic education mathematics curriculum in Nigeria. The paper is divided into four major themes: history of curriculum development in mathematics education at the basic education level in Nigeria, the motivations for the revision of the primary and junior…

  5. The Challenge of Learning Physics before Mathematics: A Case Study of Curriculum Change in Taiwan

    Science.gov (United States)

    Chiu, Mei-Shiu

    2016-01-01

    The aim of this study was to identify challenges in implementing a physics-before- 10 mathematics curriculum. Obviously, students need to learn necessary mathematics skills in order to develop advanced physics knowledge. In the 2010 high school curriculum in Taiwan, however, grade 11 science students study two-dimensional motion in physics without…

  6. The Metamorphosis by K. (12)

    CERN Multimedia

    CERN Bulletin

    2012-01-01

    In the last issue of the Bulletin we reported on the first run of the new NA62 experiment. In this issue, we go behind the scenes to take a look at the production of the experiment's new kaon beam.   The start of the K12 beam line as seen during the installation of the shielding. 10-2, 10-3, 10-4, 10-5, 10-6 mbar… send in the protons! Since Thursday 1 November, the P42 beam line of the SPS has once again been sending protons to the beryllium target to produce the K12 kaon beam line eagerly awaited by the NA62 collaboration. This was no trivial matter! The first step was to clear the decks by dismantling the entire H10 beam line and NA60 experiment, as well as most of the NA48 experiment - representing some 1000 tonnes of equipment in total! Next came the complete renovation of the infrastructure, which dated back to 1979. The operation called on the expertise of virtually all branches of the EN and GS departments, as well as the Radiation Protection group: from ...

  7. From Curriculum Guides to Classroom Enactment: Examining Early Career Elementary Teachers' Orientations toward Standards-Based Mathematics Curriculum Implementation

    Science.gov (United States)

    Gujarati, Joan

    2011-01-01

    This article examines three early career elementary teachers' orientations toward standards-based mathematics curriculum implementation in New York City public schools. It is important to have a greater understanding of teachers who are responsible for enacting standards-based curriculum in authentic teaching situations in order to learn more…

  8. Debates on the Basic Education Curriculum Reform and Teachers' Challenges in China: The Case of Mathematics

    Science.gov (United States)

    Li, Qiong; Ni, Yu-jing

    2012-01-01

    Focusing on the case of mathematics, this paper reviews debates on China's new Basic Education Curriculum Reform program, including the status of knowledge within the reformed curriculum, the arrangement of the curriculum system, and the push toward real-life applicability and hands-on participation. It discusses the related challenges that…

  9. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Part 1--Teacher. Experimental. Level 6. Revised.

    Science.gov (United States)

    Berman, David; And Others

    The Comprehensive Instructional Management System (CIMS) is a unified mathematics curriculum for grades K-7. The curriculum is cyclical in design, and reflects the most recent New York City and New York State guidelines. Utilizing the experience of classroom teachers, a teacher-designed curriculum was developed that includes a rich selection of…

  10. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Part 2--Teacher. Experimental. Level K.

    Science.gov (United States)

    New York City Board of Education, Brooklyn, NY. Div. of Curriculum and Instruction.

    This is the teacher's manual to accompany part 2 of the workbook for kindergarten pupils in the Comprehensive Instructional Management System, a teacher-designed unified mathematics curriculum for kindergarten through grade 7. It is composed of a curriculum, a testing component, and a computer-managed reporting system. The curriculum is organized…

  11. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Part 1--Teacher. Experimental. Level K.

    Science.gov (United States)

    New York City Board of Education, Brooklyn, NY. Div. of Curriculum and Instruction.

    This is the teacher's manual to accompany part of the workbook for kindergarten pupils in the Comprehensive Instructional Management System, a teacher-designed unified mathematics curriculum for kindergarten through grade 7. It is composed of a curriculum, a testing component, and a computer-managed reporting system. The curriculum is organized…

  12. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Part 1--Teacher. Experimental. Level 2.

    Science.gov (United States)

    New York City Board of Education, Brooklyn, NY. Div. of Curriculum and Instruction.

    This is the teacher's manual to accompany part 1 of the workbook for grade 2 pupils in the Comprehensive Instructional Management System, a teacher-designed unified mathematics curriculum for kindergarten through grade 7. It is composed of a curriculum, a testing component, and a computer-managed reporting system. The curriculum is organized into…

  13. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Part 2--Teacher. Experimental. Level 1.

    Science.gov (United States)

    New York City Board of Education, Brooklyn, NY. Div. of Curriculum and Instruction.

    This is the teacher's manual to accompany part 2 of the workbook for grade 1 pupils in the Comprehensive Instructional Management System, a teacher-designed unified mathematics curriculum for kindergarten through grade 7. It is composed of a curriculum, a testing component, and a computer-managed reporting system. The curriculum is organized into…

  14. A Curriculum Innovation Framework for Science, Technology and Mathematics Education

    Science.gov (United States)

    Tytler, Russell; Symington, David; Smith, Craig

    2011-01-01

    There is growing concern about falling levels of student engagement with school science, as evidenced by studies of student attitudes, and decreasing participation at the post compulsory level. One major response to this, the Australian School Innovation in Science, Technology and Mathematics (ASISTM) initiative, involves partnerships between schools and community and industry organisations in developing curriculum projects at the local level. This project fulfils many of the conditions advocated to engage students in learning in the sciences. ASISTM is underpinned by the notion of innovation. This paper describes the findings of case study research in which 16 ASISTM projects were selected as innovation exemplars. A definition of innovation and an innovation framework were developed, through which the case studies were analysed to make sense of the significance of the ideas and practices, participating actors, and outcomes of the projects. Through this analysis we argue that innovation is a powerful idea for framing curriculum development in the sciences at the local level that is generative for students and teachers, and that these ASISTM projects provide valuable models for engaging students, and for teacher professional learning.

  15. Mathematics Learners and Mathematics Textbooks: A Question of Identity? Whose Curriculum? Whose Mathematics?

    Science.gov (United States)

    Macintyre, Tom; Hamilton, Sheila

    2010-01-01

    One of the challenges for policy-makers and educationalists today is to increase participation levels and success rates within the study of mathematics. Patterns of inclusion and exclusion in mathematics education are difficult to tie down but it is widely recognised that there are issues about "maths" that affect participation. For…

  16. Examination of Mathematics Intended Curriculum in China from an International Perspective

    Science.gov (United States)

    Wang, Yehui; Bian, Yufang; Xin, Tao; Kher, Neelam; Houang, Richard T.; Schmidt, William H.

    2012-01-01

    This study aimed to examine and track the transformations in the mathematics intended curriculum during the latest reform in China from a neutral and objective perspective. Following the document analysis used in TIMSS (the Third International Mathematics and Science Study), the results indicated that a more modern system of mathematics knowledge…

  17. What Would the Mathematics Curriculum Look Like if Values Were the Focus?

    Science.gov (United States)

    Seah, Wee Tiong; Andersson, Annica; Bishop, Alan; Clarkson, Philip

    2016-01-01

    The crucial reason for the common dislike, fear, and even hatred of mathematics by students and others is probably not the nature of mathematics itself, but the way the subject is portrayed and taught. We propose that instead of a mathematics curriculum that focuses on concepts and techniques (which is often seen), it might be more productive if…

  18. University of Chicago School Mathematics Project 6-12 Curriculum. What Works Clearinghouse Intervention Report

    Science.gov (United States)

    What Works Clearinghouse, 2011

    2011-01-01

    The "University of Chicago School Mathematics Project ("UCSMP") 6-12 Curriculum" is a series of yearlong courses--(1) Transition Mathematics; (2) Algebra; (3) Geometry; (4) Advanced Algebra; (5) Functions, Statistics, and Trigonometry; and (6) Precalculus and Discrete Mathematics--emphasizing problem solving, real-world applications, and the use…

  19. The Development of the Estonian National School Mathematics Curriculum in 1990-2005

    Science.gov (United States)

    Afanasjev, Juri; Lepmann, Tiit

    2006-01-01

    The article describes the development of the Estonian school mathematics syllabus in 1990-2005 on the context of changes in the national general education curriculum. The major steps of the development, the background and the main problems are observed: project of the Estonian mathematics syllabus from 1989; first mathematics syllabuses…

  20. Optics education for K-12

    Science.gov (United States)

    Bilbro, James W.; Gaines Walker, Janice M.

    2000-06-01

    The SPIE Education Committee has developed an outreach program aimed at enhancing the dissemination of information about optics to children in kindergarten through the 12th grade (K-12). The main impetus behind the program was that more practicing optical scientists and engineers would be willing to give lectures and demonstrations aimed at inspiring the next generation about optics if material could be made easily available. Consequently, three instructional `outreach kits' were assembled to use in teaching optics to kids in exciting and fun ways. These kits were beta-tested over the last two years at six different U.S. regional sites. Each `outreach kit' contained: (1) a workbook on Optical Demonstrations on the Overhead Projector; (2) a Science and Math Experience Manual: Light, Color and Their Uses; (3) The Optics Discovery Classroom Kit; (4) a slide show; and (5) a video on careers in optics. The best tests were aimed at evaluating the practical ways of utilizing the kits, developing easy-to-follow instructions for guiding others in their use and providing suggestions on modifications, additions, and deletions to the kits. This paper discuses this outreach program and provides details relative to the kit's composition and future plans.

  1. The Science behind Curriculum Development and Evaluation: Taking a Design Science Approach in the Production of a Tier 2 Mathematics Curriculum

    Science.gov (United States)

    Doabler, Christian T.; Clarke, Ben; Fien, Hank; Baker, Scott K.; Kosty, Derek B.; Cary, Mari Strand

    2015-01-01

    The production of an effective mathematics curriculum begins with a scientific development, evaluation, and revision framework. The purpose of this study was to conduct an initial investigation of a recently developed Tier 2 mathematics curriculum designed to improve the outcomes of first grade students at risk for mathematics difficulties (MD).…

  2. The Science behind Curriculum Development and Evaluation: Taking a Design Science Approach in the Production of a Tier 2 Mathematics Curriculum

    Science.gov (United States)

    Doabler, Christian T.; Clarke, Ben; Fien, Hank; Baker, Scott K.; Kosty, Derek B.; Cary, Mari Strand

    2015-01-01

    The production of an effective mathematics curriculum begins with a scientific development, evaluation, and revision framework. The purpose of this study was to conduct an initial investigation of a recently developed Tier 2 mathematics curriculum designed to improve the outcomes of first grade students at risk for mathematics difficulties (MD).…

  3. Curriculum Planning and Development in Mathematics from the Formative Stages

    Science.gov (United States)

    Festus, Azuka Benard; Kurumeh, Mary Seraphina

    2015-01-01

    Curriculum of a school consists of all the experiences that a learner encounters under the direction of the school. The curriculum of any educational system is planned and developed according to the needs of the society. Just as the society is dynamic, the curriculum is also dynamic. Hence, curriculum is usually changed from time to time. This…

  4. The place of discrete mathematics in the school curriculum: An analysis of preservice teachersâ perceptions of the integration of discrete mathematics into secondary level courses

    OpenAIRE

    2007-01-01

    The integration of discrete mathematics into the secondary school curriculum (grades 7-12) is an important consideration because the mathematical area is dynamic and interesting, providing students the development of mathematical thinking. Also, it provides for teachers the opportunity to develop innovative mathematics instruction. Since the publication of the document Curriculum and Evaluation Standards for School Mathematics (NCTM, 1989), it has been difficult to determine how many schools ...

  5. School-Based Communities of Practice as Mechanisms for Standards-Based Mathematics Curriculum Implementation

    Science.gov (United States)

    Hodges, Thomas E.; Jong, Cindy

    2014-01-01

    The authors drew upon Remillard and Bryans' categorization of curriculum use in observating two middle-grade teachers' integration of Standards-based curriculum materials produced by the National Council of Teachers of Mathematics. Each teacher participated in a two-year professional development program focused on increasing content knowledge and…

  6. Mathematics Curriculum Outline and Sample Activities for Gifted Students Grades 2 through 8.

    Science.gov (United States)

    Barson, Alan; And Others

    This document includes a statement of 11 basic considerations for a mathematics curriculum for the gifted in grades two through eight and a series of activities appropriate for such a curriculum. The activities are grouped under five strands: (1) logic; (2) combinations (combinatorics), probability, introduction to statistics; (3) geometry,…

  7. Promoting brain-science literacy in the k-12 classroom.

    Science.gov (United States)

    Labriole, Michaela

    2010-07-01

    There are many simple ways to incorporate neuroscience into the K-12 classroom, even when the subject is not explicitly part of the curriculum. Here, Michaela Labriole, a science instructor at the New York Hall of Science, provides tangible examples of how teachers can encourage brain-science literacy in students at a time when growing knowledge of the brain is shaping our understanding of how to best foster learning.

  8. Mathematics curriculum development and indigenous language revitalisation: contested spaces

    Science.gov (United States)

    McMurchy-Pilkington, Colleen; Trinick, Tony; Meaney, Tamsin

    2013-09-01

    This paper examines the development of two iterations of mathematics curricula over a 15-year period for classrooms teaching in te reo Māori, the endangered Indigenous language of Aotearoa New Zealand. Similarities and differences between the two iterations are identified. Although parameters set by the New Zealand Ministry of Education about what the curricula would look like and how they would be developed were not always commensurate with Māori aspirations, analysis suggests that Māori were able to use opportunities to ensure that their agendas for language development and revitalisation were achieved. Spaces were made available because of the government's ideological assumptions, but were used by Māori to achieve their ideological aims. However, neither iteration was smooth, with Māori having to determine how to operate within these contested spaces. The result of Māori requirements to have language recognised as an important issue was that both process and product of curriculum development were affected.

  9. AIAA Educator Academy: Enriching STEM Education for K-12 Students

    Science.gov (United States)

    Slagle, E.; Bering, E. A.; Longmier, B. W.; Henriquez, E.; Milnes, T.; Wiedorn, P.; Bacon, L.

    2012-12-01

    Educator Academy is a K-12 STEM curriculum developed by the STEM K-12 Outreach Committee of the American Institute of Aeronautics and Astronautics (AIAA). Consisting of three independent curriculum modules, K-12 students participate in inquiry-based engineering challenges to improve critical thinking skills and enhance problem solving skills. The Mars Rover Celebration Curriculum Module is designed for students in grades 3-8. Throughout this module, students learn about Mars and the solar system. Working with given design criteria, students work in teams to do basic research about Mars that will determine the operational objectives and structural features of their rover. Then, students participate in the design and construction of a model of a mock-up Mars Rover to carry out a specific science mission on the surface of Mars. At the end of this project, students have the opportunity to participate in a regional capstone event where students share their rover designs and what they have learned. The Electric Cargo Plan Curriculum Module is designed for students in grades 6-12. Throughout this module, students learn about aerodynamics and the four forces of flight. Working individually or in teams, students design and construct an electrically-powered model aircraft to fly a tethered flight of at least one lap without cargo, followed by a second tethered flight of one lap carrying as much cargo as possible. At the end of this project, students have the opportunity to participate in a regional capstone event where students share what they have learned and compete with their different cargo plane designs. The Space Weather Balloon Curriculum Module is designed for students in grades 9-12. Throughout this module, students learn and refine physics concepts as well as experimental research skills. Students participate in project-based learning that is experimental in nature. Students are engaged with the world around them as they collaborate to launch a high altitude

  10. Refining "Teacher Design Capacity": Mathematics Teachers' Interactions with Digital Curriculum Resources

    Science.gov (United States)

    Pepin, B.; Gueudet, G.; Trouche, L.

    2017-01-01

    The goal of this conceptual paper is to develop enhanced understandings of mathematics teacher design and design capacity when interacting with digital curriculum resources. We argue that digital resources in particular offer incentives and increasing opportunities for mathematics teachers' design, both individually and in collectives. Indeed they…

  11. Exploring the Relationship between Music Learning and Mathematics Learning in an Interdisciplinary Pre-K Curriculum

    Science.gov (United States)

    McDonel, Jennifer S.

    2013-01-01

    The purpose of this study was to examine children's musical and mathematical behaviors as they participated in an interdisciplinary pre-K curriculum. Research questions were: 1. What connections--if any--do young children make between music learning and mathematics learning? 2. Is there a relationship between young children's emergent rhythm…

  12. Evaluation of Mathematics Curriculum in Primary Teacher Training Institute in Somalia. African Studies in Curriculum Development & Evaluation.

    Science.gov (United States)

    Jama, Mohamed A. F.

    This study sought to evaluate the mathematics curriculum of the Halane Teacher Training Institute in Somalia with a view toward: (1) determining its weaknesses and recommending measures for improvement; (2) examining its relevance to the present needs of the Somali society; (3) determining the suitability of instructional materials and other…

  13. Secondary Schools Curriculum Guide, Mathematics, Grades 10-12. Revised.

    Science.gov (United States)

    Cranston School Dept., RI.

    Behavioral objectives for grades 10 through 12 are specified for plane geometry, algebra, general mathematics, computer mathematics, slide rule mathematics, basic college mathematics, trigonometry, analytic geometry, calculus and probability. Most sections present material in terms of portions of a school year. At least one major objective is…

  14. K-12 Educational Outcomes of Immigrant Youth

    Science.gov (United States)

    Crosnoe, Robert; Turley, Ruth N. Lopez

    2011-01-01

    The children from immigrant families in the United States make up a historically diverse population, and they are demonstrating just as much diversity in their experiences in the K-12 educational system. Robert Crosnoe and Ruth Lopez Turley summarize these K-12 patterns, paying special attention to differences in academic functioning across…

  15. The Challenge of Learning Physics Before Mathematics: A Case Study of Curriculum Change in Taiwan

    Science.gov (United States)

    Chiu, Mei-Shiu

    2015-11-01

    The aim of this study was to identify challenges in implementing a physics-before- 10 mathematics curriculum. Obviously, students need to learn necessary mathematics skills in order to develop advanced physics knowledge. In the 2010 high school curriculum in Taiwan, however, grade 11 science students study two-dimensional motion in physics without prior learning experiences of trigonometry in mathematics. The perspectives of three curriculum developers, 22 mathematics and physics teachers, two principals, and 45 science students were obtained by interview. The results of qualitative data analysis revealed six challenges and suggested likely solutions. The national level includes political and social challenges, resolved by respecting teachers as professionals; the teacher level includes knowledge and teaching challenges, resolved by increasing teacher trans-literal capacities; and the student level includes learning and justice challenges, resolved by focusing on students' diverse developments in cross-domain learning.

  16. The Challenge of Learning Physics Before Mathematics: A Case Study of Curriculum Change in Taiwan

    Science.gov (United States)

    Chiu, Mei-Shiu

    2016-12-01

    The aim of this study was to identify challenges in implementing a physics-before- 10 mathematics curriculum. Obviously, students need to learn necessary mathematics skills in order to develop advanced physics knowledge. In the 2010 high school curriculum in Taiwan, however, grade 11 science students study two-dimensional motion in physics without prior learning experiences of trigonometry in mathematics. The perspectives of three curriculum developers, 22 mathematics and physics teachers, two principals, and 45 science students were obtained by interview. The results of qualitative data analysis revealed six challenges and suggested likely solutions. The national level includes political and social challenges, resolved by respecting teachers as professionals; the teacher level includes knowledge and teaching challenges, resolved by increasing teacher trans-literal capacities; and the student level includes learning and justice challenges, resolved by focusing on students' diverse developments in cross-domain learning.

  17. The Development of e-tutorial on Implementation National Curriculum 2013 for Mathematics Teacher

    Science.gov (United States)

    Roza, Yenita; Satria, Gita; Nur Siregar, Syarifah

    2017-06-01

    Curriculum 2013 is the new national Curriculum in Indonesia that is targeted to be used in all Indonesian schools in 2019. At this time the teacher training continues but the number and locations of teachers very diffuse and time constraints to be an obstacle for the government to be able to conduct training for teachers. This research resulted in the e-tutorial which is designed for mathematics teachers in studying the process of Curriculum implementation. This product will assist the government in accelerating the preparation of teachers in implementation of Curriculum 2013. This e-tutorial contains the dynamics of Curriculum development, learning model, learning assessment, lesson plan, curriculum stages of implementation and government regulation that is relevant to the implementation of Curriculum 2013. The product development started with a needs analysis through discussions with mathematics teachers about their difficulties in the implementation of the Curriculum 2013. This e-tutorial was developed using Application of Adobe Director 11. This paper discusses the results of need analysis, process development and results of product revisions made based on input from teachers during the FGD. From the discussion, it can be concluded that this e-tutorial easily understood by teachers and help them to understand the implementation of Curriculum 2013

  18. Discrete Mathematics in Deaf Education: A Survey of Teachers' Knowledge and Use

    Science.gov (United States)

    Pagliaro, C.; Kritzer, K. L.

    2005-01-01

    The study documents what deaf education teachers know about discrete mathematics topics and determines if these topics are present in the mathematics curriculum. Survey data were collected from 290 mathematics teachers at center and public school programs serving a minimum of 120 students with hearing loss, grades K-8 or K-12, in the United…

  19. Curriculum-Based Measurement and Standards-Based Mathematics: Monitoring the Arithmetic Word Problem-Solving Performance of Third-Grade Students at Risk for Mathematics Difficulties

    Science.gov (United States)

    Jitendra, Asha K.; Dupuis, Danielle N.; Zaslofsky, Anne F.

    2014-01-01

    This purpose of this study was to examine the reliability and validity of a curriculum-based measure of word problem solving (CBM-WPS) as an indicator of performance and progress in a sample of 136 third-grade students at risk for mathematics difficulties (MDs) instructed in a standards-based mathematics curriculum. Students completed the CBM-WPS…

  20. Effects of Curriculum Reform on Mathematics Achievement in Grade Six.

    Science.gov (United States)

    Moray, Joseph

    This investigation measured effects of the modern mathematics on achievement in traditional arithmetic and in modern mathematics. Material on Sets, Variables, and Statistics was taught as a separate subject to an experimental group of 207 sixth-grade students. Instruction in the new mathematics content was given over a four-month period, using…

  1. 中小学教师生成性移动培训课程设计研究%The Study of K-12 Teacher Training Emergent Mobile Curriculum

    Institute of Scientific and Technical Information of China (English)

    梁文鑫

    2016-01-01

    With the development of various mobile devices, teacher training via mobile devices has attracted more attentions. The advantages of teacher training via mobile devices were proposed, and the emergent teacher training curriculum design via mobile devices was also elaborated. The design template and process of training curriculum of How to cultivate Pupils’ literacy of solving problems in reading Picture Books was elaborated in details. According to the teachers’ feedback, the emergent training curriculum could enhance teachers’ learning.%随着各种移动设备的不断普及,通过移动终端开展教师培训最近几年也逐渐引起关注。该文探讨了移动终端在教师培训中体现的优越性,针对教师培训效果回归到工作现场后的衰减问题,提出了生成性移动培训课程的设计,并以《绘本教学中学生问题解决能力培养》这一培训课程为例,具体介绍了生成性移动培训课程的制作模板、制作过程。通过教师的实践反馈,发现生成性移动培训课程的设计与学习有助于提升教师培训的效果,减少教师回归到工作现场后培训效果的衰减。

  2. A Framework for Quality K-12 Engineering Education: Research and Development

    Science.gov (United States)

    Moore, Tamara J.; Glancy, Aran W.; Tank, Kristina M.; Kersten, Jennifer A.; Smith, Karl A.; Stohlmann, Micah S.

    2014-01-01

    Recent U.S. national documents have laid the foundation for highlighting the connection between science, technology, engineering and mathematics at the K-12 level. However, there is not a clear definition or a well-established tradition of what constitutes a quality engineering education at the K-12 level. The purpose of the current work has been…

  3. Applying the Quadratic Usage Framework to Research on K-12 STEM Digital Learning Resources

    Science.gov (United States)

    Luetkemeyer, Jennifer R.

    2016-01-01

    Numerous policymakers have called for K-12 educators to increase their effectiveness by transforming science, technology, engineering, and mathematics (STEM) learning and teaching with digital resources and tools. In this study we outline the significance of studying pressing issues related to use of digital resources in the K-12 environment and…

  4. Nebraska Science Standards: Grades K-12

    Science.gov (United States)

    Nebraska Department of Education, 2010

    2010-01-01

    This publication presents the Nebraska Science Standards for Grades K-12. The standards are presented according to the following grades: (1) Grades K-2; (2) Grades 3-5; (3) Grades 6-8; and (4) Grades 9-12.

  5. Developing Technology-Mediated Entries into Hidden Mathematics Curriculum as a Vehicle for "Good Learning" by Elementary Pre-Teachers

    Science.gov (United States)

    Abramovich, Sergei; Brouwer, Peter

    2004-01-01

    This paper suggests that knowledge of the school mathematics curriculum, as one of the key components of teachers' education, can be extended to include concepts and structures that generally belong to hidden domains of the curriculum. Motivated by work done with elementary pre-service teachers in a mathematics course employing a hidden…

  6. Enhancing Undergraduate Mathematics Curriculum via Coding Theory and Cryptography

    Science.gov (United States)

    Aydin, Nuh

    2009-01-01

    The theory of error-correcting codes and cryptography are two relatively recent applications of mathematics to information and communication systems. The mathematical tools used in these fields generally come from algebra, elementary number theory, and combinatorics, including concepts from computational complexity. It is possible to introduce the…

  7. Reaction Paper on Remediation in the Community College Mathematics Curriculum.

    Science.gov (United States)

    Robinson, Shawn

    Remedial mathematics has taken several forms over the years--across the nation, within departments, and among mathematics instructors. There is a growing debate over the effectiveness of remedial courses in relationship to eventual student matriculation, which increases institution funding. The use of technology, real-life problems and projects,…

  8. Contradictions and shifts in teaching with a new curriculum: The role of mathematics

    DEFF Research Database (Denmark)

    Stouraitis, Konstantinos; Potari, Despina; Skott, Jeppe

    2015-01-01

    In the framework of Cultural Historical Activity Theory (AT) contradictions are sources of change and development. Borrowing concepts from AT we attempt an interpretation of identified contradictions in a collaborative context where teachers plan and evaluate their teaching in the process...... of enacting a new mathematics curriculum. We examine the connection between contradictions and shifts in teaching activity, with a special focus on the mathematical character of these contradictions. We claim that dialectical oppositions lying in the background of these contradictions promote teachers...

  9. Examining Development of Curriculum Knowledge of Prospective Mathematics Teachers

    Science.gov (United States)

    Sahin, Ömer; Soylu, Yasin

    2017-01-01

    Explanatory-confirmatory research design, one of the mixed methods research designs, was used in this study to investigate Curriculum Knowledge developments of prospective teachers regarding algebra. Cross-sectional study method, as a type of descriptive research and one of the non-experimental research designs, was used to collect quantitative…

  10. Some Implications of Function Graphers for the Mathematics Curriculum.

    Science.gov (United States)

    Kissane, Barry

    1989-01-01

    Discusses the use of function graphers for teaching some mathematical concepts, including roots of a function; system of equations; inequality; relative extreme of function; trigonometric identities; limit of function; and convergent/divergent of sequence. (YP)

  11. Predominant Teaching Strategies in Schools: Implications for Curriculum Implementation in Mathematics, Science and Technology

    Science.gov (United States)

    Achuonye, Keziah Akuoma

    2015-01-01

    This descriptive survey is hinged on predominant teaching strategies in schools, implications for curriculum implementation in Mathematics, Science and Technology. Target population consisted of teachers in primary, secondary and tertiary schools. However, purposive sample of 900 respondents was drawn from the six BRACED states namely Bayelsa,…

  12. Destrezas de Matematica: Curriculo Basico. Guia para el Maestro (Mathematics Skills: Basic Curriculum. Teacher's Guide).

    Science.gov (United States)

    Puerto Rico State Dept. of Education, Hato Rey. Office of Special Education.

    The fundamental importance of basic mathematics to daily life is emphasized in this teacher's guide for special education teachers in Puerto Rico. While it is necessary for the teacher to determine the needs and abilities of each student and adapt the curriculum accordingly, this guide presents, in Spanish, a set of lesson plans, each with an…

  13. Developing Fair Tests for Mathematics Curriculum Comparison Studies: The Role of Content Analyses

    Science.gov (United States)

    Chavez, Oscar; Papick, Ira; Ross, Daniel J.; Grouws, Douglas A.

    2011-01-01

    This article describes the process of development of assessment instruments for a three-year longitudinal comparative study that focused on evaluating American high school students' mathematics learning from two distinct approaches to content organization: curriculum built around a sequence of three full-year courses (Algebra 1, Geometry, and…

  14. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Part 1--Teacher. Experimental. Level 3.

    Science.gov (United States)

    Fox, Joan; And Others

    The major goal of the Comprehensive Instructional Management System for mathematics is to provide the classroom teacher in New York City with a well-structured, objective-based curriculum. This first part of the manual for Level 3 includes modules for 14 topics: (1) numbers and numeration; (2) addition of whole numbers; (3) subtraction of whole…

  15. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Part 2, Teacher. Experimental. Level 2.

    Science.gov (United States)

    New York City Board of Education, Brooklyn, NY. Div. of Curriculum and Instruction.

    The major goal of the Comprehensive Instructional Management System (CIMS) for mathematics is to provide classroom teachers in New York City with a well-structured, objective-based curriculum. This second part of the manual for Level 2 includes modules for 12 topics: numbers and numeration; addition of whole numbers; subtraction of whole numbers;…

  16. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Part 2--Teacher. Experimental. Level 4.

    Science.gov (United States)

    Fox, Joan; And Others

    The major goal of the Comprehensive Instructional Management System for mathematics is to provide the classroom teacher in New York City with a well-structured, objective-based curriculum. This second part of the manual for Level 4 includes modules for 14 topics: (1) numbers and numeration; (2) addition of whole numbers; (3) subtraction of whole…

  17. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Part 1--Teacher. Experimental. Level 4.

    Science.gov (United States)

    Fox, Joan; And Others

    The major goal of the Comprehensive Instructional Management System for mathematics is to provide the classroom teacher in New York City with a well-structured, objective-based curriculum. This first part of the manual for Level 4 includes modules for 14 topics: (1) numbers and numeration; (2) addition of whole numbers; (3) subtraction of whole…

  18. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Experimental. [Level 1] Answer Key.

    Science.gov (United States)

    New York City Board of Education, Brooklyn, NY. Div. of Curriculum and Instruction.

    This document is the answer key for level 1 of the teacher-developed mathematics curriculum for New York City Schools. Approximately 220 performance objectives are listed, with reference to the appropriate worksheet for each. The answers are indicated on replicas of the pages in the children's workbooks. (MNS)

  19. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Experimental. [Level 6] Answer Key.

    Science.gov (United States)

    Johnson, Dorothy C.; And Others

    This document is the answer key for level 6 of the teacher-developed experimental mathematics curriculum for New York City schools. Approximately 250 performance objectives are listed, with reference to the appropriate worksheet(s) for each. The answers are typed in the appropriate space on each sheet. (YP)

  20. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Part 1, Teacher, Experimental. Level 2.

    Science.gov (United States)

    New York City Board of Education, Brooklyn, NY. Div. of Curriculum and Instruction.

    The major goal of the Comprehensive Instructional Management System (CIMS) for mathematics is to provide the classroom teacher in New York City with a well-structured, objective-based curriculum. This first part of the manual for Level 2 includes varied numbers of modules for 12 topics: numbers and numeration; addition of whole numbers;…

  1. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Part 2--Teacher. Experimental. Level 3.

    Science.gov (United States)

    Fox, Joan; And Others

    The major goal of the Comprehensive Instructional Management System for mathematics is to provide the classroom teacher in New York City with a well-structured, objective-based curriculum. This second part of the manual for Level 3 includes modules for 14 topics: (1) numbers and numeration; (2) addition of whole numbers; (3) subtraction of whole…

  2. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Workbook Part 1. Experimental. Level 1.

    Science.gov (United States)

    New York City Board of Education, Brooklyn, NY. Div. of Curriculum and Instruction.

    This document is part 1 of the workbook for grade 1 pupils in the Comprehensive Instructional Management System, a unified mathematics curriculum for kindergarten through grade 7. Each objective is developed by a variety of strategies, with mastery of objectives diagnosed through a testing component. The activities in the student workbook are…

  3. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Workbook Part 1. Experimental. Level K.

    Science.gov (United States)

    New York City Board of Education, Brooklyn, NY. Div. of Curriculum and Instruction.

    This document is part 1 of the workbook for kindergarten pupils in the Comprehensive Instructional Management System, a unified mathematics curriculum for kindergarten through grade 7. Each objective is developed by a variety of strategies, with mastery of objectives diagnosed through a testing component. The activities in the student workbook are…

  4. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Workbook Part 2. Experimental. Level 1.

    Science.gov (United States)

    New York City Board of Education, Brooklyn, NY. Div. of Curriculum and Instruction.

    This document is part 2 of the workbook for grade 1 pupils in the Comprehensive Instructional Management System, a unified mathematics curriculum for kindergarten through grade 7. Each objective is developed by a variety of strategies, with mastery of objectives diagnosed through a testing component. The activities in the student workbook are…

  5. Predominant Teaching Strategies in Schools: Implications for Curriculum Implementation in Mathematics, Science and Technology

    Science.gov (United States)

    Achuonye, Keziah Akuoma

    2015-01-01

    This descriptive survey is hinged on predominant teaching strategies in schools, implications for curriculum implementation in Mathematics, Science and Technology. Target population consisted of teachers in primary, secondary and tertiary schools. However, purposive sample of 900 respondents was drawn from the six BRACED states namely Bayelsa,…

  6. An Analysis of the Competency-Based Secondary Mathematics Curriculum in Sri Lanka

    Science.gov (United States)

    Egodawatte, Gunawardena

    2014-01-01

    In education, there is a growing interest in the concept of "competency" especially in vocational training and professional development. The concept is strongly associated with the ability to apply knowledge and skills in effective ways in unanticipated situations. In Sri Lanka, a new competency-based mathematics curriculum was…

  7. Co-operative learning and adaptive instruction in a mathematics curriculum

    NARCIS (Netherlands)

    Terwel, J.; Herfs, P.G.P.; Mertens, E.H.M.; Perrenet, J.Chr.

    1994-01-01

    The AGO 12 to 16 Project (the acronym AGO stands for the Dutch equivalent of 'Adaptive Instruction and Co-operative Learning') seeks to develop and evaluate a mathematics curriculum which is suitable for mixed-ability groups in secondary education. The research questions we will address here are, fi

  8. Soil Science Society of America - K-12 Outreach

    Science.gov (United States)

    Lindbo, David L.; Loynachan, Tom; Mblia, Monday; Robinson, Clay; Chapman, Susan

    2013-04-01

    The Soil Science Society of America created its K12 Committee in 2006 in part to compliment the Dig It! The Secrets of Soil exhibit that opened in July 2008 at the Smithsonian's Institution's Nation Museum of Natural History (of which SSS was a founding sponsor). The committee's work began quickly with a website designed to provide resources for K12 teachers. The first accomplishments included reviewing and posting links to web based information already available to teachers. These links were sorted by subject and grade level to make it easier for teachers to navigate the web and find what they needed quickly. Several presentations and lessons designed for K12 teachers were also posted at this time. Concurrent with this effort a subcommittee review and organized the national teaching standards to show where soils could fit into the overall K12 curriculum. As the website was being developed another subcommittee developed a soils book (Soil! Get the Inside Scoop, 2008) to further compliment the Dig It! exhibit. This was a new endeavor for SSSA having never worked with the non-academic audience in developing a book. Peer-reviews of this book included not only scientist but also students in order to make sure the book was attractive to them. Once the book was published and the website developed it became clear more outreach was needed. SSSA K12 Committee has attended both the National Science Teachers Association (since 2008) the USA Science and Engineering Festival (since 2010) with exhibits and workshops. It has cooperated and contributed to the American Geologic Institutes' Earth Science Week materials with brochures and lesson plans and with National Association of Conservation Districts by providing peer-review and distribution of materials. The most recent developments from the committee include a web redesign that is more student and teacher friendly, the development of a peer-review system to publish K12 Lesson Plans, and finally the publication of a new soils

  9. Teaching K-12 Students to Combat Obesity

    Science.gov (United States)

    Wallhead, Tristan

    2007-01-01

    Physical education is one of the most viable intervention programs to reach overweight and obese children. Since physical activity habits developed early in life are more likely to persist into adulthood, it is important for K-12 physical educators to teach the skills, knowledge, and attitudes that will motivate students to become more active. Two…

  10. Alberta K-12 ESL Proficiency Benchmarks

    Science.gov (United States)

    Salmon, Kathy; Ettrich, Mike

    2012-01-01

    The Alberta K-12 ESL Proficiency Benchmarks are organized by division: kindergarten, grades 1-3, grades 4-6, grades 7-9, and grades 10-12. They are descriptors of language proficiency in listening, speaking, reading, and writing. The descriptors are arranged in a continuum of seven language competences across five proficiency levels. Several…

  11. Legitimizing Community Engagement with K-12 Schools

    Science.gov (United States)

    Furco, Andrew

    2013-01-01

    This article examines the issue of internal legitimization and its importance in securing high-quality community engagement in K-12 schools. Drawing on the literature from the fields of community engagement, school reform, school-university partnerships, and school-community partnerships, this article describes some of the prevailing challenges…

  12. Legitimizing Community Engagement with K-12 Schools

    Science.gov (United States)

    Furco, Andrew

    2013-01-01

    This article examines the issue of internal legitimization and its importance in securing high-quality community engagement in K-12 schools. Drawing on the literature from the fields of community engagement, school reform, school-university partnerships, and school-community partnerships, this article describes some of the prevailing challenges…

  13. Copyright Updates for K-12 Librarians

    Science.gov (United States)

    Johnson, Wendell G.

    2016-01-01

    Copyright concerns continue to bedevil K-12 librarians, who are often called upon to act as the copyright officers in public schools. This article describes recent copyright developments of concern to these librarians in three areas: a recent court case involving a university library, pending legislation supported by ALA, and a regulatory update.…

  14. The Complexities and Challenges Associated with the Implementation of a STEM Curriculum

    Science.gov (United States)

    Holstein, Krista A.; Keene, Karen Allen

    2013-01-01

    There have been recent calls for the integration of STEM (science, technology, engineering, and mathematics) in K-12 education. In this collective case study, we describe three teachers' implementations of a new STEM curriculum that integrates mathematics, engineering, and technology. These teachers ranged in their faithfulness to the curriculum…

  15. A Case Study of the Pedagogical Tensions in Teacher's Questioning Practices When Implementing Reform-Based Mathematics Curriculum in China

    Science.gov (United States)

    Dong, Lianchun; Seah, Wee Tiong; Clarke, David

    2015-01-01

    This study examines a teacher's questioning strategies in mathematics classrooms in China when implementing reform-based mathematics curriculum. It explores teacher's strategies to deal with the tensions involved in the creation of opportunities for students to express and communicate mathematics ideas while ensuring the productivity of…

  16. Designing and Developing Lesson Plans for K-12 Classrooms

    Science.gov (United States)

    Shores, Melanie L.; Smith, Tommy G.

    2011-01-01

    The overarching goal of this four-phase, in-service project--Girls Engaged in Mathematics and Science--was to change attitudes, behavior, pedagogy, and curriculum for girls through the provision of a vibrant, engaging, digital portal program with media that extends learning beyond the traditional classroom. Described here, Phases I and II were…

  17. Teaching Mathematical Knowledge for Teaching: Curriculum and Challenges

    Science.gov (United States)

    Kim, Yeon

    2013-01-01

    Over the last decade, researchers have investigated the nature and scope of mathematical knowledge for teaching (MKT) and have provided evidence that teachers' MKT plays a critical role in the effectiveness of teaching and learning. This dissertation focuses on the problem of helping teachers develop MKT. Two goals shape the research: (1) to…

  18. Mathematics Curriculum Development and Indigenous Language Revitalisation: Contested Spaces

    Science.gov (United States)

    McMurchy-Pilkington, Colleen; Trinick, Tony; Meaney, Tamsin

    2013-01-01

    This paper examines the development of two iterations of mathematics curricula over a 15-year period for classrooms teaching in te reo Maori, the endangered Indigenous language of Aotearoa New Zealand. Similarities and differences between the two iterations are identified. Although parameters set by the New Zealand Ministry of Education about what…

  19. A Curriculum Innovation Framework for Science, Technology and Mathematics Education

    Science.gov (United States)

    Tytler, Russell; Symington, David; Smith, Craig

    2011-01-01

    There is growing concern about falling levels of student engagement with school science, as evidenced by studies of student attitudes, and decreasing participation at the post compulsory level. One major response to this, the Australian School Innovation in Science, Technology and Mathematics (ASISTM) initiative, involves partnerships between…

  20. Mathematics Curriculum Development and Indigenous Language Revitalisation: Contested Spaces

    Science.gov (United States)

    McMurchy-Pilkington, Colleen; Trinick, Tony; Meaney, Tamsin

    2013-01-01

    This paper examines the development of two iterations of mathematics curricula over a 15-year period for classrooms teaching in te reo Maori, the endangered Indigenous language of Aotearoa New Zealand. Similarities and differences between the two iterations are identified. Although parameters set by the New Zealand Ministry of Education about what…

  1. Mathematics across the Curriculum: Poetry and the Haiku

    Science.gov (United States)

    Gough, John

    2014-01-01

    In this article, John Gough describes the "haiku" and its link to mathematics. A haiku is a short Japanese form of poetry, of three lines, with five syllables in the first, seven in the second, and five in the last. Although brief, a haiku is like a meditation on, or observation of, an experience, conveyed directly through objective…

  2. Mathematics Enrichment: Grade 4. Curriculum Bulletin Number 236.

    Science.gov (United States)

    Johnston, Patsy

    Enrichment activities for fourth-grade mathematics are presented. Some of the activities reinforce principles taught in the regular program; others introduce new concepts to challenge students. The activities are divided into the following categories: number pictures; multiplying or dividing by 10, 100, or 1000; tic-tac-toe word problems; map…

  3. Concerns about the South African Mathematical Literacy curriculum arising from experience of materials development

    Directory of Open Access Journals (Sweden)

    Lynn Bowie

    2006-10-01

    Full Text Available In this paper we reflect on our experience of developing mathematical literacy material for the Further Education and Training (FET band in South African schools, adult learners, university students and for participants in a youth development project. We use this experience to highlight some problems and concerns about the South African Mathematical Literacy curriculum for learners in the FET band and offer some cautions and suggestions. In particular we highlight the importance of the educational community in South Africa developing a shared understanding of what Mathematical Literacy is. We discuss the importance of distinguishing between Mathematics and Mathematical Literacy and of clarifying the role of Technology in Mathematical Literacy. We explore the difficulties and importance of a proper understanding of the contexts used to teach Mathematical Literacy and argue that more attention needs to be paid to the integration of Mathematical Literacy with other school subjects.  Finally we raise some of the issues that a common final assessment task might have on the learning and teaching of Mathematical Literacy.

  4. Middle school integrated science, mathematics and technology curriculum. Final report, September 30, 1991--December 31, 1993

    Energy Technology Data Exchange (ETDEWEB)

    Brecher, K.

    1994-03-01

    The Project ``Middle School Integrated Science, Mathematics and Technology Curriculum`` had two goals: (1) to survey the literature of energy education; and (2) to develop a theme for a possible integrated middle school energy based curriculum. We aimed to respond to the challenge of developing thematic integrated curricula as advocated by the NSTA, AAAS and other organizations analyzing the future of American science and mathematics education. The survey of middle school energy curriculum materials has been completed. A list of the resources surveyed are included in this report. Though many energy based curriculum materials have been produced, none of them appears to be broadly disseminated throughout the country. Some energy based curriculum materials are far less well developed than others. We found that an integrated set of modular materials concerning the energy based theme of light and optics does not now exist. If they were developed, they could be broadly disseminated throughout middle school courses in the physical and biological sciences, as well as in new integrated science courses proposed as part of the current science education reform movement. These types of modular materials could also provide a powerful means of student exploration of new technologies such as microcomputers.

  5. A Tale of Two Countries: Successes and Challenges in K-12 Computer Science Education in Israel and the United States

    Science.gov (United States)

    Gal-Ezer, Judith; Stephenson, Chris

    2014-01-01

    This article tells a story of K-12 computer science in two different countries. These two countries differ profoundly in culture, language, government and state structure, and in their education systems. Despite these differences, however, they share the pursuit of excellence and high standards in K-12 education. In Israel, curriculum is…

  6. A Tale of Two Countries: Successes and Challenges in K-12 Computer Science Education in Israel and the United States

    Science.gov (United States)

    Gal-Ezer, Judith; Stephenson, Chris

    2014-01-01

    This article tells a story of K-12 computer science in two different countries. These two countries differ profoundly in culture, language, government and state structure, and in their education systems. Despite these differences, however, they share the pursuit of excellence and high standards in K-12 education. In Israel, curriculum is…

  7. New Standards Require Teaching More Statistics: Are Preservice Secondary Mathematics Teachers Ready?

    Science.gov (United States)

    Lovett, Jennifer N.; Lee, Hollylynne S.

    2017-01-01

    Mathematics teacher education programs often need to respond to changing expectations and standards for K-12 curriculum and accreditation. New standards for high school mathematics in the United States include a strong emphasis in statistics. This article reports results from a mixed methods cross-institutional study examining the preparedness of…

  8. Reflections of Mathematics Student Teachers’ Knowledge Related to the Purposes of the Curriculum on Their Limit Teaching

    Directory of Open Access Journals (Sweden)

    Semiha KULA

    2015-01-01

    Full Text Available The aim of the study is to examine reflections of the mathematics student teachers’ knowledge related to the purposes of the national mathematics curriculum on their limit teaching. The participants were four mathematics student teachers in the final year of their program. The data were obtained from participants’ lessons plans, video recordings of their lessons in which they taught the concept of limit, and semi-structured interviews. The reflections of the mathematics student teachers’ knowledge related to the purposes of the mathematics curriculum on their limit teaching was composed of under the titles of relating real life with limit concept, relating with different areas, providing mathematical thinking and reasoning, improving ability to communicate, using mathematical language, relating mathematics with art, and using technology effectively.

  9. The Impact of a Standards-Based Mathematics Curriculum on Students' Mathematics Achievement: The Case of Investigations in Number, Data, and Space

    Science.gov (United States)

    Budak, Ayfer

    2015-01-01

    The purpose of this research is to examine the impact of a Standards-based elementary mathematics curriculum on third grade students' mathematics performance. A total of 707 students participated in this study. Of this total, 368 students were from eight schools located within the same school district in a racially and ethnically diverse large…

  10. Conversations about Curriculum Change: Mathematical Thinking and Team-Based Learning in a Discrete Mathematics Course

    Science.gov (United States)

    Paterson, Judy; Sneddon, Jamie

    2011-01-01

    This article reports on the learning conversations between a mathematician and a mathematics educator as they worked together to change the delivery model of a third year discrete mathematics course from a traditional lecture mode to team-based learning (TBL). This change prompted the mathematician to create team tasks which increasingly focused…

  11. The Mathematics Curriculum: Issues and Perspectives. Pennsylvania Council of Teachers of Mathematics 1987 Yearbook.

    Science.gov (United States)

    Nicely, Robert F., Jr., Ed.; Sigmund, Thomas F., Ed.

    One of the strengths of the Pennsylvania Council of Teachers of Mathematics (PCTM) is that it gives mathematicians and mathematics educators the opportunity to exchange and contribute to each other's professional growth. The topic for each yearbook is chosen to coincide with the annual PCTM meeting. This 1987 yearbook contains 14 articles which…

  12. Science, Technology, Engineering, and Mathematics (STEM) Curriculum and Seventh Grade Mathematics and Science Achievement

    Science.gov (United States)

    James, Jamie Smith

    2014-01-01

    The purpose of this quantitative research study was to evaluate to what degree Science, Technology, Engineering and Mathematics (STEM) education influenced mathematics and science achievement of seventh grade students in one Middle Tennessee school district. This research used an independent samples t test at the a = 0.05 level to evaluate…

  13. Preventing Early Mathematics Difficulties: The Feasibility of a Rigorous Kindergarten Mathematics Curriculum

    Science.gov (United States)

    Chard, David J.; Baker, Scott K.; Clarke, Ben; Jungjohann, Kathleen; Davis, Karen; Smolkowski, Keith

    2008-01-01

    Concern about poor mathematics achievement in U.S. schools has increased in recent years. In part, poor achievement may be attributed to a lack of attention to early instruction and missed opportunities to build on young children's early understanding of mathematics. This study examined the development and feasibility testing of a kindergarten…

  14. Promoting social justice in and through the mathematics curriculum: Exploring the connections with epistemologies of mathematics

    Science.gov (United States)

    Povey, Hilary

    2002-12-01

    This article rehearses the argument that being a critical mathematics educator is associated with a particular epistemological stance, one which views the truths of mathematics as historically located, influenced by the knower and mutable. Case study data, collected in England, is offered which exemplifies this connection between epistemology and openness to equity issues in the thinking of some beginning secondary mathematics teachers. Teachers' responses are analysed around four themes: their beliefs about the nature of mathematics, how those beliefs affect their pedagogy, how they explain student failure, and their views on initial teacher education. These are linked to their commitment to social justice in and through mathematics. The links between subject studies in teacher education and equity issues in the classroom are discussed.

  15. How Do Mathematics Teachers Decide What to Teach? Curriculum Authority and Sources of Information Accessed by Australian Teachers

    Science.gov (United States)

    Clarke, David J.; Clarke, Doug M.; Sullivan, Peter

    2012-01-01

    Essential to teachers' planning are decisions regarding what should be taught. Curriculum documents are the most obvious authority. But what is a "curriculum document" for a mathematics teacher in Australia? Are there other credible sources of information that Australian teachers draw on when deciding what to teach? This article examines…

  16. How Do Mathematics Teachers Decide What to Teach? Curriculum Authority and Sources of Information Accessed by Australian Teachers

    Science.gov (United States)

    Clarke, David J.; Clarke, Doug M.; Sullivan, Peter

    2012-01-01

    Essential to teachers' planning are decisions regarding what should be taught. Curriculum documents are the most obvious authority. But what is a "curriculum document" for a mathematics teacher in Australia? Are there other credible sources of information that Australian teachers draw on when deciding what to teach? This article examines…

  17. Mathematics Curriculum Changes in Republic of Serbia for Grades 5-8 After the Break-Up of Socialist Federal Republic of Yugoslavia

    Science.gov (United States)

    Vlajic, Jovana

    2011-01-01

    The purpose of this study was to determine the changes in the mathematics curriculum for grades 5-8 in the Republic of Serbia after the break-up of SFRY. In particular, the research sought to identify the changes in the mathematics curriculum in terms of curriculum content and learning objectives, textbooks, and high school entrance examination…

  18. K-12 science education: A teacher`s view

    Energy Technology Data Exchange (ETDEWEB)

    Moore, P.

    1994-12-31

    Science education has experienced significant changes over the past two decades. Science is now vital to good citizenship, performance in the workplace, and everyday life.It is time to re-tool and re-design the entire K-12 science education system, employing the same principles and methods used in the practice of science itself. We can no longer ignore the special needs of science instruction. All students need a course that develops their scientific literacy and critical thinking skills every year. Each science program needs meaningful, useful content and skill standards to drive and continuously update the curriculum content and enabel usefull assessment. Science teachers must articulate their needs and develop opportunities for professional development and the strengthening of their profession. We need a national plan that gets the many different participants working coherently towards a common goal.

  19. Engaging Scientists in NASA Education and Public Outreach: K - 12 Formal Education

    Science.gov (United States)

    Bartolone, Lindsay; Smith, D. A.; Eisenhamer, B.; Lawton, B. L.; Universe Professional Development Collaborative, Multiwavelength; NASA Data Collaborative, Use of; SEPOF K-12 Formal Education Working Group; E/PO Community, SMD

    2014-01-01

    The NASA Science Education and Public Outreach Forums support the NASA Science Mission Directorate (SMD) and its education and public outreach (E/PO) community through a coordinated effort to enhance the coherence and efficiency of SMD-funded E/PO programs. The Forums foster collaboration between scientists with content expertise and educators with pedagogy expertise. We present opportunities for the astronomy community to participate in collaborations supporting the NASA SMD efforts in the K - 12 Formal Education community. Members of the K - 12 Formal Education community include classroom educators, homeschool educators, students, and curriculum developers. The Forums’ efforts for the K - 12 Formal Education community include a literature review, appraisal of educators’ needs, coordination of audience-based NASA resources and opportunities, professional development, and support with the Next Generation Science Standards. Learn how to join in our collaborative efforts to support the K - 12 Formal Education community based upon mutual needs and interests.

  20. Six Qualities of Socially Engaged Design: Emerging Possibilities for K-12 Art Education Programs

    Science.gov (United States)

    O'Donoghue, Dónal; Berard, Marie-France

    2014-01-01

    In this article, we consider socially engaged design practice, and examine its potential for informing design curriculum and pedagogy in K-12 art education programs. Our hope is to prompt discussion and debate about socially engaged design's potentiality for preparing students to participate in a world in which "nothing is truly, or can…

  1. Perceptions of Professional and Educational Skills Learning Opportunities Made Available through K-12 Robotics Programming

    Science.gov (United States)

    Bakke, Christine K.

    2013-01-01

    The purpose of this study is to examine whether participation in robotics provides opportunities for educational and professional skill development, significant enough to merit the recommendation of robotics courses as a part of mainstream curriculum offerings in K-12 schools. This non-experimental, mixed methods study examined current junior high…

  2. Integrating Emerging Technologies in Teaching Ugandan Traditional Dances in K-12 Schools in New York City

    Science.gov (United States)

    Mabingo, Alfdaniels

    2015-01-01

    Schools in New York City have made attempts to embrace and support the strand of "making connections", which is laid out in the New York City Department of Dance blueprint for teaching and learning in dance for grades PreK-12. Accordingly, some schools have integrated Ugandan traditional dances into the dance curriculum, and dance…

  3. GIS in the K-12 Classroom: Research Agenda from EDGIS '96

    OpenAIRE

    National Center for Geographic Information and Analysis (NCGIA); National Council for Geographic Education (NCGE); Technical Education Research Centers (TERC)

    1996-01-01

    This meeting of education researchers and teachers immediately followed the November 1996 Annual Meeting of the National Council for Geographic Education (NCGE) in Santa Barbara, California. Participants explored the issues facing the use of Geographic Information Systems (GIS) in the K-12 classroom and developed a research agenda related to Pedagogy Issues, Curriculum Issues, Software Issues, and Cognitive Issues.

  4. Integrating Emerging Technologies in Teaching Ugandan Traditional Dances in K-12 Schools in New York City

    Science.gov (United States)

    Mabingo, Alfdaniels

    2015-01-01

    Schools in New York City have made attempts to embrace and support the strand of "making connections", which is laid out in the New York City Department of Dance blueprint for teaching and learning in dance for grades PreK-12. Accordingly, some schools have integrated Ugandan traditional dances into the dance curriculum, and dance…

  5. Perceptions of Professional and Educational Skills Learning Opportunities Made Available through K-12 Robotics Programming

    Science.gov (United States)

    Bakke, Christine K.

    2013-01-01

    The purpose of this study is to examine whether participation in robotics provides opportunities for educational and professional skill development, significant enough to merit the recommendation of robotics courses as a part of mainstream curriculum offerings in K-12 schools. This non-experimental, mixed methods study examined current junior high…

  6. The Preparation of Teacher Candidates for K-12 Online Learning Environments: A Case Study

    Science.gov (United States)

    Williams, Nicole V.

    2015-01-01

    The purpose of this study was to determine how teacher education programs may better prepare teacher candidates to teach in K-12 online learning environments. The primary research question addressed was: What specific knowledge, skills, and dispositions should teacher education programs include in their curriculum to better prepare teacher…

  7. Cisco Networking Academy: Next-Generation Assessments and Their Implications for K-12 Education

    Science.gov (United States)

    Liu, Meredith

    2014-01-01

    To illuminate the possibilities for next-generation assessments in K-12 schools, this case study profiles the Cisco Networking Academy, which creates comprehensive online training curriculum to teach networking skills. Since 1997, the Cisco Networking Academy has served more than five million high school and college students and now delivers…

  8. Spreadsheets Across the Curriculum, 3: Finding a List of Mathematical Skills for Quantitative Literacy Empirically

    Directory of Open Access Journals (Sweden)

    H L. Vacher

    2011-01-01

    Full Text Available What mathematical topics do educators committed to teaching mathematics in context choose for their students when given the opportunity to develop an educational resource explicitly to teach mathematics in context? This paper examines the choices made for the 55 modules by 40 authors in the General Collection of the Spreadsheets Across the Curriculum (SSAC library. About half of the modules were made by authors from natural science, and about 60% of the other modules were by authors from mathematics. The modules are tagged with terms of a search vocabulary developed for the browse page of the collection. The four terms most frequently used to tag the modules are: visual display of data (particularly XY plots and bar graphs; ratio and proportion; rates; and forward modeling (e.g., what-if?. Subdividing the modules into those authored by instructors from mathematics vs. natural science vs. other disciplines shows universal popularity of the first three choices. Forward modeling was a favorite of authors from mathematics and natural science. Manipulating equations, unit conversions, and logarithms (orders of magnitude, scientific notation were called for by authors from natural science. The paper concludes with a list of 15 concepts and skills that received the most “votes.”

  9. Web Adventures in K-12 Science.

    Science.gov (United States)

    Friedman, Edward A.; McGrath, Beth; Baron, Joshua

    1997-01-01

    Describes activities at the Center for Improved Engineering and Science Education at Stevens Institute of Technology (New Jersey) that have explored applications of the Internet in elementary and secondary school science classrooms. Highlights include working with real-time data, teacher training for the Web, and examples of curriculum activities.…

  10. K-12 Students' Perceptions of Scientists: Finding a Valid Measurement and Exploring Whether Exposure to Scientists Makes an Impact

    Science.gov (United States)

    Hillman, Susan J.; Bloodsworth, Kylie H.; Tilburg, Charles E.; Zeeman, Stephan I.; List, Henrietta E.

    2014-01-01

    This study was launched from a National Science Foundation GK-12 grant in which graduate fellows in Science, Technology, Engineering, and Mathematics (STEM) are placed in classrooms to engage K-12 students in STEM activities. The investigation explored whether the STEM Fellows' presence impacted the K-12 students' stereotypical image of a…

  11. Scientific and Engineering Practices in K-12 Classrooms: Understanding "A Framework for K-12 Science Education"

    Science.gov (United States)

    Bybee, Rodger W.

    2011-01-01

    In this article, the author presents the science and engineering practices from the recently released "A Framework for K-12 Science Education: Practices, Crosscutting Concepts, and Core Ideas" (NRC 2011). The author recognizes the changes implied by the new framework, and eventually a new generation of science education standards will present new…

  12. Responding to a Relevance Imperative in School Science and Mathematics: Humanising the Curriculum Through Story

    Science.gov (United States)

    Darby-Hobbs, Linda

    2013-02-01

    There has been a recent push to reframe curriculum and pedagogy in ways that make school more meaningful and relevant to students' lives and perceived needs. This `relevance imperative' is evident in contemporary rhetoric surrounding quality education, and particularly in relation to the junior secondary years where student disengagement with schooling continues to abate. This paper explores how teachers translate this imperative into their mathematics and science teaching. Interview data and critical incidents from classroom practice are used to explore how six teachers attempted to make the subject matter meaningful for their students. Four `Categories of Meaning Making' emerged, highlighting key differences in how the nature of science and mathematics content constrained or enabled linkages between content and students' lifeworlds. While the teachers demonstrated a commitment to humanising the subject at some level, this analysis has shown that expecting teachers to make the curriculum relevant is not unproblematic because the meaning of relevance as a construct is complex, subject-specific, and embedded in understanding the human dimensions of learning, using, and identifying with, content. Through an examination of the construct of relevance and a humanistic turn in mathematics and science literature I argue for an expanded notion of relevance.

  13. Mathematics, curriculum and assessment: The role of taxonomies in the quest for coherence

    Directory of Open Access Journals (Sweden)

    Caroline Long

    2014-12-01

    Full Text Available A challenge encountered when monitoring mathematics teaching and learning at high school is that taxonomies such as Bloom’s, and variations of this work, are not entirely adequate for providing meaningful feedback to teachers beyond very general cognitive categories that are difficult to interpret. Challenges of this nature are also encountered in the setting of examinations, where the requirement is to cover a range of skills and cognitive domains. The contestation as to the cognitive level is inevitable as it is necessary to analyse the relationship between the problem and the learners’ background experience. The challenge in the project described in this article was to find descriptive terms that would be meaningful to teachers. The first attempt at providing explicit feedback was to apply the assessment frameworks that include a content component and a cognitive component, namely knowledge, routine procedures, complex procedures and problem solving, currently used in the South African curriculum documents. The second attempt investigated various taxonomies, including those used in international assessments and in mathematics education research, for constructs that teachers of mathematics might find meaningful. The final outcome of this investigation was to apply the dimensions required to understand a mathematical concept proposed by Usiskin (2012: the skills-algorithm, property-proof, use-application and representation-metaphor dimension. A feature of these dimensions is that they are not hierarchical; rather, within each of the dimensions, the mathematical task may demand recall but may also demand the highest level of creativity. For our purpose, we developed a two-way matrix using Usiskin’s dimensions on one axis and a variation of Bloom’s revised taxonomy on the second axis. Our findings are that this two-way matrix provides an alternative to current taxonomies, is more directly applicable to mathematics and provides the

  14. Test Of Astronomy STandards TOAST Survey of K-12 Teachers

    Science.gov (United States)

    Slater, Timothy F.; Slater, Stephanie; Stork, Debra J.

    2015-01-01

    Discipline-based education research in astronomy is focused on understanding the underlying mental mechanisms used by students when learning astronomy and teachers when teaching astronomy. Systematic surveys of K-12 teacher' knowledge in the domain of astronomy are conducted periodically in order to better focus and improve professional development. These surveys are most often done when doing contemporary needs assessments or when new assessment instruments are readily available. Designed by Stephanie J. Slater of the CAPER Center for Astronomy & Physics Education Research, the 29-item multiple-choice format Test Of Astronomy STandards - TOAST is a carefully constructed, criterion-referenced instrument constructed upon a solid list of clearly articulated and widely agreed upon learning objectives. The targeted learning concepts tightly align with the consensus learning goals stated by the American Astronomical Society - Chair's Conference on ASTRO 101, the American Association of the Advancement of Science's Project 2061 Benchmarks, and the National Research Council's 1996 National Science Education Standards. Without modification, the TOAST is also aligned with the significantly less ambitious 2013 Next Generation Science Standards created by Achieve, Inc., under the auspices of the National Research Council. This latest survey reveals that K-12 teachers still hold many of the same fundamental misconceptions uncovered by earlier surveys. This includes misconceptions about the size, scale, and structure of the cosmos as well as misconceptions about the nature of physical processes at work in astronomy. This suggests that professional development in astronomy is still needed and that modern curriculum materials are best served if they provide substantial support for implementation.

  15. Supporting Geoscientists in Partnerships for K-12 Education at NSF

    Science.gov (United States)

    Leinen, M.

    2001-12-01

    NSF Directorate for Geosciences (GEO) education activities have evolved over the last decade based on advice from a broad segment of the geosciences community. These activities gained momentum when a Geosciences Education Working Group (GEWG, 1996) recognized the shift from traditional priorities that emphasized only research, to those that support education in geosciences as well. The GEWG report embraced this increased emphasis on education as a component of NSF's role in assuring the long-term health of the geosciences and endorsed the principle that research and education should be well integrated. While many geosciences education activities are funded by the Education and Human Resources Directorate (EHR) of NSF, the GEWG report highlighted the need to have more active participation by research geoscientists in K-12 education activities, and the need to train them to be able to do so. While some roles in education are clearly best left to educational professionals (e.g. large-scale systemic reform projects, pedagogical development at the K-12 level, and many teacher enhancement projects), activities such as undergraduate research, technology advancement, curriculum content development and informal science are ones in which GEO should actively seek to collaborate with programs in EHR. The GEO education program has expanded over the last decade. Our first education activity, Awards to Facilitate Geoscience Education (AFGE), was very successful in attracting some of the leading researchers in geosciences. This program evolved to become the Geoscience Education Program. An important program funded by GEO that developed from community activity is the Digital Library for Earth System Education (DLESE). This program grew out of a joint EHR/GEO award and a series of community workshops. The program will establish an Internet portal for geoscience curricular materials and other teacher resources that will enable further collaboration between the research and education

  16. K-12 Teaching and Physics Enrollment

    CERN Document Server

    Masood, Samina S

    2014-01-01

    We have collected and analyzed the relevant data from public schools in greater Houston area of Texas. Based and analyzed. Since the data is only limited to a few school, we are still working on getting more data so that we can compare and contrast the results adequately and understand the core of the enrollment issue at the national level. However, based on the raw data and partial analysis, we propose a few recommendations towards the improvement of science education in Texas Schools, in general, and greater Houston area schools in particular. Our results indicate that the quality of science education can be improved significantly if we focus on the improvement of high school education or even intermediate schools when students are first time exposed to science in a little technical way. Simply organizing teacher training programs at K-12 level as school education plays a pivotal role in the decrease in physics enrollment at the higher level. Similar analysis can actually be generalized to other states to f...

  17. Monitoring Progress toward Successful K-12 STEM Education: A Nation Advancing?

    Science.gov (United States)

    National Academies Press, 2012

    2012-01-01

    Following a 2011 report by the National Research Council (NRC) on successful K-12 education in science, technology, engineering, and mathematics (STEM), Congress asked the National Science Foundation to identify methods for tracking progress toward the report's recommendations. In response, the NRC convened the Committee on an Evaluation Framework…

  18. Examining the Views of Undergraduate STEM Majors Regarding K-12 Teaching as a Profession

    Science.gov (United States)

    Plecki, Margaret; St. John, Elise; Elfers, Ana

    2013-01-01

    This study explores how undergraduates enrolled in STEM (science, technology, engineering, and mathematics) courses view the K-12 teaching profession. A survey was conducted with a sample of undergraduates in community college and university settings (n = 610). We examine whether undergraduates believe that teaching offers what they value in a…

  19. Empowering K-12 Students with Disabilities to Learn Computational Thinking and Computer Programming

    Science.gov (United States)

    Israel, Maya; Wherfel, Quentin M.; Pearson, Jamie; Shehab, Saadeddine; Tapia, Tanya

    2015-01-01

    This article's focus is on including computing and computational thinking in K-12 instruction within science, technology, engineering, and mathematics (STEM) education, and to provide that instruction in ways that promote access for students traditionally underrepresented in the STEM fields, such as students with disabilities. Providing computing…

  20. An interdisciplinary collaboration between computer engineering and mathematics/bilingual education to develop a curriculum for underrepresented middle school students

    Science.gov (United States)

    Celedón-Pattichis, Sylvia; LópezLeiva, Carlos Alfonso; Pattichis, Marios S.; Llamocca, Daniel

    2013-12-01

    There is a strong need in the United States to increase the number of students from underrepresented groups who pursue careers in Science, Technology, Engineering, and Mathematics. Drawing from sociocultural theory, we present approaches to establishing collaborations between computer engineering and mathematics/bilingual education faculty to address this need. We describe our work through the Advancing Out-of-School Learning in Mathematics and Engineering project by illustrating how an integrated curriculum that is based on mathematics with applications in image and video processing can be designed and how it can be implemented with middle school students from underrepresented groups.

  1. An Evaluation of Curriculum-Based Measurement of Mathematics Word Problem--Solving Measures for Monitoring Third-Grade Students' Mathematics Competence

    Science.gov (United States)

    Leh, Jayne M.; Jitendra, Asha K.; Caskie, Grace I. L.; Griffin, Cynthia C.

    2007-01-01

    The purpose of this study was to examine the tenability of a curriculum-based mathematical word problem-solving (WPS) measure as a progress-monitoring tool to index students' rate of growth or slope of achievement over time. Participants consisted of 58 third-grade students, who were assessed repeatedly over 16 school weeks. Students were measured…

  2. SYMBIOSIS: development, implementation, and assessment of a model curriculum across biology and mathematics at the introductory level.

    Science.gov (United States)

    Depelteau, Audrey M; Joplin, Karl H; Govett, Aimee; Miller, Hugh A; Seier, Edith

    2010-01-01

    "It takes a lot of courage to release the familiar and seemingly secure, to embrace the new. But there is no real security in what is no longer meaningful. There is more security in the adventurous and exciting, for in movement there is life, and in change there is power." Alan Cohen (Used by permission. All rights reserved. For more information on Alan Cohen's books and programs, see (www.alancohen.com.) With the support of the East Tennessee State University (ETSU) administration and a grant from Howard Hughes Medical Institute, the departments of Biological Sciences, Mathematics and Statistics, and Curriculum and Instruction have developed a biology-math integrated curriculum. An interdisciplinary faculty team, charged with teaching the 18 curriculum modules, designed this three-semester curriculum, known as SYMBIOSIS. This curriculum was piloted to two student cohorts during the developmental stage. The positive feedback and assessment results of this project have given us the foundation to implement the SYMBIOSIS curriculum as a replacement for the standard biology majors curriculum at the introductory level. This article addresses the history and development of the curriculum, previous assessment results and current assessment protocol, and the future of ETSU's approach to implementing the SYMBIOSIS curriculum.

  3. SYMBIOSIS: Development, Implementation, and Assessment of a Model Curriculum across Biology and Mathematics at the Introductory Level

    Science.gov (United States)

    Joplin, Karl H.; Govett, Aimee; Miller, Hugh A.; Seier, Edith

    2010-01-01

    “It takes a lot of courage to release the familiar and seemingly secure, to embrace the new. But there is no real security in what is no longer meaningful. There is more security in the adventurous and exciting, for in movement there is life, and in change there is power.”Alan Cohen (Used by permission. All rights reserved. For more information on Alan Cohen's books and programs, see (www.alancohen.com.) With the support of the East Tennessee State University (ETSU) administration and a grant from Howard Hughes Medical Institute, the departments of Biological Sciences, Mathematics and Statistics, and Curriculum and Instruction have developed a biology–math integrated curriculum. An interdisciplinary faculty team, charged with teaching the 18 curriculum modules, designed this three-semester curriculum, known as SYMBIOSIS. This curriculum was piloted to two student cohorts during the developmental stage. The positive feedback and assessment results of this project have given us the foundation to implement the SYMBIOSIS curriculum as a replacement for the standard biology majors curriculum at the introductory level. This article addresses the history and development of the curriculum, previous assessment results and current assessment protocol, and the future of ETSU's approach to implementing the SYMBIOSIS curriculum. PMID:20810967

  4. Turkish Primary School Students' Strategies in Solving a Non-Routine Mathematical Problem and Some Implications for the Curriculum Design and Implementation

    Science.gov (United States)

    Erdogan, Abdulkadir

    2015-01-01

    Turkish primary mathematics curriculum emphasizes the role of problem solving for teaching mathematics and pays particular attention to problem solving strategies. Patterns as a subject and the use of patterns as a non-routine problem solving strategy are also emphasized in the curriculum. The primary purpose of this study was to determine how…

  5. Females and STEM: Determining the K-12 Experiences that Influenced Women to Pursue STEM Fields

    Science.gov (United States)

    Petersen, Anne Marie

    In the United States, careers in the fields of Science, Technology, Engineering, and Mathematics (STEM) are increasing yet there are not enough trained personnel to meet this demand. In addition, of those that seek to pursue STEM fields in the United States, only 26% are female. In order to increase the number of women seeking STEM based bachelor's degrees, K-12 education must provide a foundation that prepares students for entry into these fields. The purpose of this phenomenological study was to determine the perceived K-12 experiences that influenced females to pursue a STEM field. Twelve college juniors or seniors seeking a degree in Biology, Mathematics, or Physics were interviewed concerning their K-12 experiences. These interviews were analyzed and six themes emerged. Teacher passion and classroom characteristics such as incorporating challenging activities played a significant role in the females' decisions to enter STEM fields. Extra-curricular activities such as volunteer and mentor opportunities and the females' need to benefit others also influenced females in their career choice. Both the formal (within the school) and informal (outside of the traditional classroom) pipeline opportunities that these students encountered helped develop a sense of self-efficacy in science and mathematics; this self-efficacy enabled them to persist in pursuing these career fields. Several participants cited barriers that they encountered in K-12 education, but these barriers were primarily internal as they struggled with overcoming self-imposed obstacles in learning and being competitive in the mathematics and science classrooms. The experiences from these female students can be used by K-12 educators to prepare and encourage current female students to enter STEM occupations.

  6. Curriculum-Based Assessment, Socio-Demographic and Educational Measures as Predictors of Mathematics FCAT: Implications for Emancipatory Inquiry

    Science.gov (United States)

    Behar-Horenstein, Linda S.; Hudson-Vassell, Michael; Hudson-Vassell, Charisse N.; Garvan, Cynthia W.

    2015-01-01

    Using critical lenses, this study examined the predictive value added of curriculum-based assessment (CBA), with socio-demographic and educational variables on the mathematics portion of Florida Comprehensive Assessment Test (FCAT). Gender, race, socio-economic status, and exceptional student education (ESE) were compared in a de-identified post…

  7. A Practice-Oriented Professional Development Programme to Support the Introduction of a New Mathematics Curriculum in Portugal

    Science.gov (United States)

    da Ponte, Joao Pedro

    2012-01-01

    This article presents the extended workshop, a national professional development programme that was used in the preparatory stages of the introduction of a new mathematics curriculum for basic education (grades 1-9) in Portugal. These workshops are based on five major ideas-orientation towards practice, focus on students' learning, collaboration,…

  8. Mathematical Contributions of the Mayas, Aztecs & Incas: A Native American Curriculum Unit for Middle and High School. NATAM XIX.

    Science.gov (United States)

    Stodola, Janet

    Written to fulfill the requirements for a University of Minnesota College of Education off-campus Indian education course for public school teachers, this Native American curriculum unit for middle and high school reflects the mathematical achievements of the Maya, Aztec, and Inca Indians. The number systems, notation, and calendar techniques of…

  9. Satellite Applications for K-12 Geoscience Education

    Science.gov (United States)

    Mooney, M.; Ackerman, S.; Lettvin, E.; Emerson, N.; Whittaker, T. M.

    2007-12-01

    This presentation will highlight interactive on-line curriculum developed at the Cooperative Institute for Meteorological Satellite Studies (CIMSS) at the University of Wisconsin in Madison. CIMSS has been on the forefront of educational software design for over two decades, routinely integrating on-line activities into courses on satellite remote sensing. In 2006, CIMSS began collaborating with education experts and researchers from the University of Washington to create an NSF-funded distance learning course for science teachers called Satellite Applications for Geoscience Education. This course includes numerous web-based learning activities, including a distance education tool called VISITview which allows instructors to connect with multiple students simultaneously to conduct a lesson. Developed at CIMSS to facilitate training of National Weather Service forecasters economically and remotely, VISITview is especially effective for groups of people discussing and analyzing maps or images interactively from many locations. Along with an on-line chat function, VISITview participants can use a speaker phone or a networked voice-enabled application to create a learning environment similar to a traditional classroom. VISITview will be used in two capacities: first, instructors will convey topics of current relevance in geoscience disciplines via VISITview. Second, the content experts will participate in "virtual visits" to the classrooms of the educators who take the course for full credit. This will enable scientists to interact with both teachers and students to answer questions and discuss exciting or inspiring examples that link satellite data to their areas of research. As long as a school has Internet access, an LCD projector and a speakerphone, VISITview sessions can be shared with an entire classroom. The geoscientists who developed material for the course and conducting VISITview lectures include a geologist from the University of Wisconsin-Richland, an

  10. La Evolucion del Curriculo de las Matematicas: Un Folleto para los Padres de Familia. (The Changing Mathematics Curriculum: A Booklet for Parents).

    Science.gov (United States)

    California State Dept. of Education, Sacramento.

    This booklet, written in Spanish, provides a guide for parents to help their children become successful in school mathematics. The information is divided into four sections: (1) important facts about the mathematics curriculum and mathematics instruction; (2) expectations about participation, calculators, cooperative learning, dialogue, and…

  11. Are We Preparing the Next Generation? K-12 Teacher Knowledge and Engagement in Teaching Core STEM Practices

    OpenAIRE

    Nadelson, Louis; Seifert, Anne; Hendricks, J. Kade

    2015-01-01

    Background: Several of the recent reform efforts in K-12 STEM education (e.g. Next Generation Science Standards [NGSS and Common Core State Standards-Mathematics [CCSS-M]) have included significant emphasis on the practices of STEM. We argue that K-12 teachers' ability to effectively engage their students in these core STEM practices is fundamental to the success of potential and current engineering students and their subsequent careers as engineers. Practices such as identifying problems, mo...

  12. Monitoring the CO2 injection site: K12-B

    NARCIS (Netherlands)

    Vandeweijer, V.; Meer, B. van der; Hofstee, C.; Mulders, F.; D'Hoore, D.; Graven, H.

    2011-01-01

    The K12-B gas field is located in the Dutch sector of the North Sea. The top of the reservoir lies approximately 3800 meters below sea level, and the ambient temperature of the reservoir is over 127 °C. The K12-B gas field has been producing natural gas from 1987 onwards and is currently operated by

  13. Influences of Globalization on K-12 Language Teacher Education Programs

    Science.gov (United States)

    Singh, Navin Kumar

    2012-01-01

    The purpose of this study was to explore the effects of globalization on K-12 language teacher education at Northern Arizona University (NAU) in terms of multilingual practices in the US, with reference to an English-only-state, Arizona. This study explored influences of globalization on K-12 language education practices in the US through teacher…

  14. A Critique of the Brave New World of K-12

    Science.gov (United States)

    Salmani-Nodoushan, Mohammad Ali

    2008-01-01

    Over the past few decades has changed so rapidly that remote areas of the Earth are now inhabited by human beings. Technology has also developed and people can stay at home and have access to virtual schools. This has stimulated the need for K-12 education. K-12 education has emerged from the no-child-left-behind concerns of governments for…

  15. KUSPACE: Embedding Science Technology and Mathematics Ambassador Activities in the Undergradiuate Engineering Curriculum

    Science.gov (United States)

    Welch, C.; Osborne, B.

    The UK national STEM Ambassadors programme provides inspiring role models for school students in science, technology, engineering, mathematics (STEM) subjects. STEMNET, the national body responsible for STEM Ambassa- dors aims to provide more than 27,000 STEM Ambassadors nationwide by the end of 2011. This paper reports on a project at Kingston University to embed STEM Ambassador training and activity in Year 2 of the undergraduate Aerospace Engineering, Astronautics and Space Technology degree. The project, known as KUSPACE (Kingston University Students Providing Amazing Classroom Experiences), was conceived to develop students' communication, planning and presentation skills and build links between different cohort years, while providing a valuable contribution to local primary schools' STEM programmes and simultaneously raising the public engagement profile of the university. This paper describes the pedagogical conception of the KUSPACE, its implementation in the curriculum, the delivery of it in the university and schools and its effect on the undergraduate students, as well as identifying good practice and drawing attention to lessons learned.STEMNET (www.stemnet.org) is the UK's Science, Technol- ogy, Engineering and Mathematics Network. Working with a broad range of UK partners and funded by the UK govern- ment's Department for Business Innovation and Skills, STEMNET plays a significant role in ensuring that five to nineteen year olds and their teachers can experience a wide range of activities and schemes which enhance and enrich the school curriculum [1]. Covering all aspects of Science, Tech- nology, Engineering and Maths (STEM), these activities and schemes are designed both to increase STEM awareness and literacy in the young people and also to encourage more of them to undertake post-16 STEM qualifications and associated careers [2]. STEMNET operates through forty-five local con- tract holders around the UK which help the network deliver its

  16. Streptococcus salivarius K12 Limits Group B Streptococcus Vaginal Colonization.

    Science.gov (United States)

    Patras, Kathryn A; Wescombe, Philip A; Rösler, Berenice; Hale, John D; Tagg, John R; Doran, Kelly S

    2015-09-01

    Streptococcus agalactiae (group B streptococcus [GBS]) colonizes the rectovaginal tract in 20% to 30% of women and during pregnancy can be transmitted to the newborn, causing severe invasive disease. Current routine screening and antibiotic prophylaxis have fallen short of complete prevention of GBS transmission, and GBS remains a leading cause of neonatal infection. We have investigated the ability of Streptococcus salivarius, a predominant member of the native human oral microbiota, to control GBS colonization. Comparison of the antibacterial activities of multiple S. salivarius strains by use of a deferred-antagonism test showed that S. salivarius strain K12 exhibited the broadest spectrum of activity against GBS. K12 effectively inhibited all GBS strains tested, including disease-implicated isolates from newborns and colonizing isolates from the vaginal tract of pregnant women. Inhibition was dependent on the presence of megaplasmid pSsal-K12, which encodes the bacteriocins salivaricin A and salivaricin B; however, in coculture experiments, GBS growth was impeded by K12 independently of the megaplasmid. We also demonstrated that K12 adheres to and invades human vaginal epithelial cells at levels comparable to GBS. Inhibitory activity of K12 was examined in vivo using a mouse model of GBS vaginal colonization. Mice colonized with GBS were treated vaginally with K12. K12 administration significantly reduced GBS vaginal colonization in comparison to nontreated controls, and this effect was partially dependent on the K12 megaplasmid. Our results suggest that K12 may have potential as a preventative therapy to control GBS vaginal colonization and thereby prevent its transmission to the neonate during pregnancy.

  17. Integrating Online GIS into the K-12 Curricula: Lessons from the Development of a Collaborative GIS in Michigan

    Science.gov (United States)

    Henry, Paul; Semple, Hugh

    2012-01-01

    GIS has shown promise in Project Based Learning (PBL) environments, but many obstacles exist in its integration into school curriculums. This article discusses the development and utilization of an online GIS tool that was created to illustrate that the perceptual gap between relevance and ease of use of GIS software can be bridged at the K-12

  18. A Review of Computer Science Resources for Learning and Teaching with K-12 Computing Curricula: An Australian Case Study

    Science.gov (United States)

    Falkner, Katrina; Vivian, Rebecca

    2015-01-01

    To support teachers to implement Computer Science curricula into classrooms from the very first year of school, teachers, schools and organisations seek quality curriculum resources to support implementation and teacher professional development. Until now, many Computer Science resources and outreach initiatives have targeted K-12 school-age…

  19. Computational Thinking for All: Pedagogical Approaches to Embedding 21st Century Problem Solving in K-12 Classrooms

    Science.gov (United States)

    Yadav, Aman; Hong, Hai; Stephenson, Chris

    2016-01-01

    The recent focus on computational thinking as a key 21st century skill for all students has led to a number of curriculum initiatives to embed it in K-12 classrooms. In this paper, we discuss the key computational thinking constructs, including algorithms, abstraction, and automation. We further discuss how these ideas are related to current…

  20. A Review of Computer Science Resources for Learning and Teaching with K-12 Computing Curricula: An Australian Case Study

    Science.gov (United States)

    Falkner, Katrina; Vivian, Rebecca

    2015-01-01

    To support teachers to implement Computer Science curricula into classrooms from the very first year of school, teachers, schools and organisations seek quality curriculum resources to support implementation and teacher professional development. Until now, many Computer Science resources and outreach initiatives have targeted K-12 school-age…

  1. The Elephant in the (Class)Room: Parental Perceptions of LGBTQ-Inclusivity in K-12 Educational Contexts

    Science.gov (United States)

    Ullman, Jacqueline; Ferfolja, Tania

    2016-01-01

    While little is known about parental beliefs and desires regarding LGBTQ-inclusive education, assumptions about these appear to justify teachers', curriculum writers' and policy makers' silences regarding sexuality and gender diversity in the K-12 classroom. Thus, in order to better inform educators' practices, this paper presents an analysis of…

  2. Incremental Improvement of a K-12 Career Education Program. Final Report, July 1, 1977-June 30, 1978.

    Science.gov (United States)

    Monterey Peninsula Unified School District, Monterey, CA.

    A project was designed to promote innovation in instructional procedures, curriculum development, collaborative community involvement, and staff development for incremental improvements in a comprehensive K-12 career education program. The fifteen project components focused on (1) applications of basic skills (reading, writing, and math) in…

  3. Effects of M[superscript 3] Curriculum on Mathematics and English Proficiency Achievement of Mathematically Promising English Language Learners

    Science.gov (United States)

    Cho, Seokhee; Yang, Jenny; Mandracchia, Marcella

    2015-01-01

    The purpose of this study was to examine the effects of Mentoring Mathematical Minds (M3) units on gains in mathematics achievement and English proficiency of mathematically promising English language learners (MPELLs) in the third grade. The M3 program, developed by Gavin et al., was implemented for 1 year with treatment MPELLs (n = 86) but not…

  4. K-12 Students' Perceptions of Scientists: Finding a Valid Measurement and Exploring Whether Exposure to Scientists Makes an Impact

    Science.gov (United States)

    Hillman, Susan J.; Bloodsworth, Kylie H.; Tilburg, Charles E.; Zeeman, Stephan I.; List, Henrietta E.

    2014-01-01

    This study was launched from a National Science Foundation GK-12 grant in which graduate fellows in Science, Technology, Engineering, and Mathematics (STEM) are placed in classrooms to engage K-12 students in STEM activities. The investigation explored whether the STEM Fellows' presence impacted the K-12 students' stereotypical image of…

  5. Interactive Teaching as a Recruitment and Training Tool for K-12 Science Teachers

    Science.gov (United States)

    Rosenberg, J. L.

    2004-12-01

    The Science, Technology, Engineering, and Mathematics Teacher Preparation (STEMTP) program at the University of Colorado has been designed to recruit and train prospective K-12 science teachers while improving student learning through interactive teaching. The program has four key goals: (1) recruit undergraduate students into K-12 science education, (2) provide these prospective teachers with hands-on experience in an interactive teaching pedagogy, (3) create an intergrated program designed to support (educationally, socially, and financially) and engage these prospective science teachers up until they obtain liscensure and/or their masters degree in education, and (4) improve student learning in large introductory science classes. Currently there are 31 students involved in the program and a total of 72 students have been involved in the year and a half it has been in existence. I will discuss the design of the STEMTP program, the success in recruiting K-12 science teachers, and the affect on student learning in a large lecture class of implementing interactive learning pedagogies by involving these prospective K-12 science teachers. J. L. Rosenberg would like to acknowledge the NSF Astronomy and Astrophysics Fellowship for support for this work. The course transformation project is also supported by grants from the National Science Foundation.

  6. Trends of Technology Education in American K-12 Education%美国K-12阶段技术教育的发展趋势

    Institute of Scientific and Technical Information of China (English)

    邵长兰

    2016-01-01

    The United States is a developed country in technology and technology education. In the 21st century, in response to the new social and economic problems, there are some new trends in technology education:establishing the technology literacy and STEM literacy as the technology educational goal, so as to build a technologically and STEM literate society;integrating the engineering and engineering design into K-12 curriculum framework, forming a variety of integrated technology engineering education courses, such as “pre-Engineering”curriculum and“project-based”curriculum;and adopting“issue-based”teaching strategies.%美国是技术和技术教育发达国家。进入21世纪,为应对新的社会、经济问题,技术教育出现了新的发展趋势:把技术教育培养目标转向培养学生的技术素养再到STEM素养,建构具有技术素养乃至STEM素养的社会;把工程学及工程设计内容整合进K-12技术教育课程框架,形成多种整合的技术工程教育课程,如“准工程”课程模式和“以项目为基础”的课程模式;“以问题为基础”的教学策略和方法的采用等。

  7. Undergraduate interest in K--12 teaching and the perceived 'climate' for the K--12 education profession in the natural sciences

    Science.gov (United States)

    Gerdeman, Robert Dean

    Previous research suggests that the natural science setting in universities does not offer a supportive environment for undergraduates interested in K--12 education careers, an important problem given the need for K--12 science teachers. A mixed-method approach was used to examine student perspectives toward K--12 education careers, and the influence of the college experience on perspectives, at a public research university. Quantitative data come from a cross-sectional survey sample (N = 444) of upper-division natural science majors in the university. The survey focused on student background characteristics, undergraduate experiences, perceptions of the college environment, career interests, and satisfaction. Pursuit of K--12 education as a top current career choice was rare among the respondents (3.6%). However, about one-fourth of them indicated some interest in this career and overall interest increased slightly during the college experience. Based on student perceptions, K--12 education was substantially less emphasized within the natural sciences than other career fields. Regression analyses revealed that the most important predictors (aside from initial career interests) of interest in and attitude toward K--12 teaching were self-concept and personality measures. Several college experience measures were also predictors, including perceptions about faculty and peers in the natural sciences. The effect of college experiences differed for students initially more inclined toward K--12 teaching, who reported a net decrease in interest, versus those more disinclined, who reported a net gain in interest. Satisfaction with the college experience was similar for the two groups. Qualitative data come from follow-up interviews conducted with eight survey respondents who recalled a top choice of K--12 teaching upon entering college but had decided to pursue another career. These students perceived other career fields to offer better professional opportunities for

  8. Matematicas en la vida actual. Volumen III, edicion para el maestro. (Mathematics: A Practical View. Volume III, Teacher Edition). Applied Basic Curriculum Series.

    Science.gov (United States)

    Evaluation, Dissemination and Assessment Center, Dallas.

    This Spanish language teacher's edition of a practical mathematics text for the intermediate grades contains three components which can be structured in different combinations according to different student needs. Built around a review of selected objectives in the mathematics basic curriculum, the material is intended to stimulate interest in…

  9. Guida Didattica per l'Insegnamento della Matematica. Livelli G, H = Mathematics Curriculum Guide for Italian-Speaking Students, Levels G and H. Working Draft.

    Science.gov (United States)

    Chicago Board of Education, IL. Dept. of Curriculum.

    The curriculum guide is for levels G and H of the mathematics segment of Chicago's bilingual education program for limited-English-speaking native Italian-speaking students. It includes specific instructional objectives and worksheets for teaching the mathematical concepts of place value, whole numbers, rational numbers, measurement, geometry, and…

  10. Matematicas en la vida actual. Volumen I, edicion para el maestro. (Mathematics: A Practical View. Volume I, Teacher Edition). Applied Basic Curriculum Series.

    Science.gov (United States)

    Evaluation, Dissemination and Assessment Center, Dallas.

    This Spanish language teacher's edition of a practical mathematics text for the intermediate grades contains three components which can be structured in different combinations according to different student needs. Built around a review of selected objectives in the mathematics basic curriculum, the material is intended to stimulate interest in…

  11. Matematicas en la vida actual. Volumen II, edicion para el maestro. (Mathematics: A Practical View. Volume II, Teacher Edition). Applied Basic Curriculum Series.

    Science.gov (United States)

    Evaluation, Dissemination and Assessment Center, Dallas.

    This Spanish language teacher's edition of a practical mathematics text for the intermediate grades contains three components which can be structured in different combinations according to different student needs. Built around a review of selected objectives in the mathematics basic curriculum, the material is intended to stimulate interest in…

  12. Curriculum-Based Measurement for Mathematics at the High School Level: What We Do Not Know...What We Need to Know

    Science.gov (United States)

    Calhoon, Mary Beth

    2008-01-01

    The purpose of this article is to explore the research and developmental needs for curriculum-based measurement (CBM) at the secondary level (9th through 12th grades) for mathematics. Much has been accomplished empirically on the validity, reliability, and utility of CBM as an assessment measure in mathematics at the elementary level.…

  13. Guida Didattica per l'Insegnamento della Matematica. Livelli G, H = Mathematics Curriculum Guide for Italian-Speaking Students, Levels G and H. Working Draft.

    Science.gov (United States)

    Chicago Board of Education, IL. Dept. of Curriculum.

    The curriculum guide is for levels G and H of the mathematics segment of Chicago's bilingual education program for limited-English-speaking native Italian-speaking students. It includes specific instructional objectives and worksheets for teaching the mathematical concepts of place value, whole numbers, rational numbers, measurement, geometry, and…

  14. The Effects of Implementing Bloom's Taxonomy and Utilizing the Virginia Standards of Learning Curriculum Framework to Develop Mathematics Lessons for Elementary Students

    Science.gov (United States)

    Hawks, Kristel W.

    2010-01-01

    The purpose of this study was to determine if teachers who developed lessons based on Bloom's Taxonomy and the "Virginia Standards of Learning Curriculum Framework" saw increased scores on the mathematics benchmark assessment for fourth grade. Two classes taught by different mathematics teachers participated. The mean of the posttest scores for…

  15. The Effects of Implementing Bloom's Taxonomy and Utilizing the Virginia Standards of Learning Curriculum Framework to Develop Mathematics Lessons for Elementary Students

    Science.gov (United States)

    Hawks, Kristel W.

    2010-01-01

    The purpose of this study was to determine if teachers who developed lessons based on Bloom's Taxonomy and the "Virginia Standards of Learning Curriculum Framework" saw increased scores on the mathematics benchmark assessment for fourth grade. Two classes taught by different mathematics teachers participated. The mean of the posttest…

  16. 论教师在数学课程改革中的角色和作用%A Research on Mathematics Teachers Role and Function in a Mathematical Curriculum Reform

    Institute of Scientific and Technical Information of China (English)

    杨玉东; 孙名符; 冯振杰

    2001-01-01

    通过分析数学教师在数学课程改革中各阶段的角色,打破了那种认为“数学教师仅仅是数学课程改革中的实践者”的传统观念,并得出了这样一个结论:在一次数学课程改革中,任何一个教师都有可能以动力或阻力的形式出现.从而使人们重新估价数学教师在一次数学课程改革中所具有的关键性作用.%This thesis,on the basis of analyzing the mathematics teachers role on each stage of a mathematical curriculum reform,attempts to challenge the traditional opinion that “A mathematics teacher is only an operator of the mathematical curriculum in the reform”, and also draws a conclusion that each mathematics teacher would probably be an advocator or an objector in the mathematical curriculum reform.So the paper suggests that the mathematics teachersfunction in the mathematical curriculum reform should be evaluated again by the society.

  17. Informal Math Coaching by Instant Messaging: Two Case Studies of How University Students Coach K-12 Students

    Science.gov (United States)

    Hrastinski, Stefan; Edman, Anneli; Andersson, Fredrik; Kawnine, Tanvir; Soames, Carol-Ann

    2014-01-01

    The aim of this study is to describe and explore how instant messaging (IM) can be used to support informal math coaching. We have studied two projects where university students use IM to coach K-12 students in mathematics. The coaches were interviewed with a focus on how informal coaching works by examining coaching challenges, how coaching can…

  18. Studying Teachers' Degree of Classroom Implementation, Teachers' Implementation Practices, and Students' Learning as Outcomes of K-12 STEM Professional Development

    Science.gov (United States)

    Lin, Peiyi

    2013-01-01

    With a growing demand for an enhanced K-12 education for strengthening students' conceptual learning, interest, and career awareness in science, technology, engineering, and mathematics, teacher professional development projects have been viewed as an efficient approach. However, a variety of external and teacher factors may prevent such projects…

  19. Curriculum Analysis

    Institute of Scientific and Technical Information of China (English)

    Xu Xiaoying

    2011-01-01

    The English as a Second Language (ESL) Curriculum for grades K - 12 is a scope that builds and develops linguistic proficiency for students between the ages of six and 21 years. The ESL professionals defines ESL students as those students who are non - native English speakers and who may or may not have English proficiency.

  20. Connecting Three Pivotal Concepts in K-12 Science State Standards and Maps of Conceptual Growth to Research in Physics Education

    CERN Document Server

    Singh, Chandralekha

    2016-01-01

    This paper describes three conceptual areas in physics that are particularly important targets for educational interventions in K-12 science. These conceptual areas are force and motion, conservation of energy, and geometrical optics, which were prominent in the US national and four US state standards that we examined. The four US state standards that were analyzed to explore the extent to which the K-12 science standards differ in different states were selected to include states in different geographic regions and of different sizes. The three conceptual areas that were common to all the four state standards are conceptual building blocks for other science concepts covered in the K-12 curriculum. Since these three areas have been found to be ripe with deep student misconceptions that are resilient to conventional physics instruction, the nature of difficulties in these areas is described in some depth, along with pointers towards approaches that have met with some success in each conceptual area.

  1. K-12 Neuroscience Education Outreach Program: Interactive Activities for Educating Students about Neuroscience.

    Science.gov (United States)

    Deal, Alex L; Erickson, Kristen J; Bilsky, Edward J; Hillman, Susan J; Burman, Michael A

    2014-01-01

    The University of New England's Center for Excellence in the Neurosciences has developed a successful and growing K-12 outreach program that incorporates undergraduate and graduate/professional students. The program has several goals, including raising awareness about fundamental issues in neuroscience, supplementing science education in area schools and enhancing undergraduate and graduate/professional students' academic knowledge and skill set. The outreach curriculum is centered on core neuroscience themes including: Brain Safety, Neuroanatomy, Drugs of Abuse and Addiction, Neurological and Psychiatric Disorders, and Cognition and Brain Function. For each theme, lesson plans were developed based upon interactive, small-group activities. Additionally, we've organized our themes in a "Grow-up, Grow-out" approach. Grow-up refers to returning to a common theme, increasing in complexity as we revisit students from early elementary through high school. Grow-out refers to integrating other scientific fields into our lessons, such as the chemistry of addiction, the physics of brain injury and neuronal imaging. One of the more successful components of our program is our innovative team-based model of curriculum design. By creating a team of undergraduate, graduate/professional students and faculty, we create a unique multi-level mentoring opportunity that appears to be successful in enhancing undergraduate students' skills and knowledge. Preliminary assessments suggest that undergraduates believe they are enhancing their content knowledge and professional skills through our program. Additionally, we're having a significant, short-term impact on K-12 interest in science. Overall, our program appears to be enhancing the academic experience of our undergraduates and exciting K-12 students about the brain and science in general.

  2. K-12 Engineering Education Standards: Opportunities and Barriers

    Science.gov (United States)

    Bybee, Rodger W.

    2011-01-01

    Does the nation need K-12 engineering education standards? The answer to this question is paradoxically both simple and complex, and requires an examination of a rationale for such standards as well as the opportunities and barriers to developing and implementing the standards. In two decades since 1989, the idea of national standards for…

  3. Designing GIS Learning Materials for K-12 Teachers

    Science.gov (United States)

    Hong, Jung Eun

    2017-01-01

    Although previous studies have proven the usefulness and effectiveness of geographic information system (GIS) use in the K-12 classroom, the rate of teacher adoption remains low. The identified major barrier to its use is a lack of teachers' background and experience. To solve this limitation, many organisations have provided GIS-related teacher…

  4. Inspiring the Next Generation: Astronomy Catalyzes K12 STEM Education

    Science.gov (United States)

    Borders, Kareen; Thaller, Michelle; Winglee, Robert; Borders, Kyla

    2017-06-01

    K-12 educators need effective and relevant astronomy professional development. NASA's Mission Science provides innovative and accessible opportunities for K-12 teachers. Science questions involve scale and distance, including Moon/Earth scale, solar system scale, and distance of objects in the universe. Teachers can gain an understanding of basic telescopes, the history of telescopes, ground and satellite based telescopes, and models of JWST Telescope. An in-depth explanation of JWST and Spitzer telescopes gave participants background knowledge for infrared astronomy observations. During teacher training, we taught the electromagnetic spectrum through interactive stations. The stations included an overview via lecture and power point, the use of ultraviolet beads to determine ultraviolet exposure, the study of lenticulars and diagramming of infrared data, looking at visible light through diffraction glasses and diagramming the data, protocols for using astronomy based research in the classroom, and infrared thermometers to compare environmental conditions around the observatory. An overview of LIDAR physics was followed up by a simulated LIDAR mapping of the topography of Mars.We will outline specific steps for K-12 infrared astronomy professional development, provide data demonstrating the impact of the above professional development on educator understanding and classroom use, and detail future plans for additional K-12 professional development.Funding was provided by Washington STEM, NASA, and the Washington Space Grant Consortium.

  5. Engaging K-12 Language Learners in Media Literacy

    Science.gov (United States)

    Egbert, Joy; Neville, Chon

    2015-01-01

    Calls to integrate media literacy into K-12 language classrooms appear to have gone largely unheeded. However, media literacy skills are seen as crucial for 21st-century learners. This article answers the calls for a focus on media literacy in the language classroom by addressing both why and how systematic attention might be brought to this issue…

  6. The Green Pages: Environmental Education Activities K-12.

    Science.gov (United States)

    Clearing, 1991

    1991-01-01

    Presented are 38 environmental education activities for grades K-12. Topics include seed dispersal, food chains, plant identification, sizes and shapes, trees, common names, air pollution, recycling, temperature, litter, water conservation, photography, insects, urban areas, diversity, natural cycles, rain, erosion, phosphates, human population,…

  7. Information Security Management Practices of K-12 School Districts

    Science.gov (United States)

    Nyachwaya, Samson

    2013-01-01

    The research problem addressed in this quantitative correlational study was the inadequacy of sound information security management (ISM) practices in K-12 school districts, despite their increasing ownership of information assets. Researchers have linked organizational and sociotechnical factors to the implementation of information security…

  8. Leadership Analysis in K-12 Case Study: "Divided Loyalties"

    Science.gov (United States)

    Alsubaie, Merfat Ayesh

    2016-01-01

    This report mainly aims to provide a critical and in-depth analysis of the K-12 Case, "Divided Loyalty" by Holy and Tartar (2004). The case recounts how the manifestation of inadequate leadership skills in a school setting could affect negatively the performance of students.

  9. Education Nation: Obama, Romney Outline Different K-12, Postsecondary Priorities

    Science.gov (United States)

    Dervarics, Charles

    2012-01-01

    With negative ads already rampant on radio and TV, it's clear that President Obama and Republican presidential nominee Mitt Romney differ on most issues. That statement carries over to education as well, as both offer starkly different views on K-12 and higher education policy for the fall campaign. Obama is touting a large increase in Pell Grants…

  10. 2008 Public Opinion Survey on K-12 Education in Indiana

    Science.gov (United States)

    Plucker, Jonathan A.; Spradlin, Terry E.; Burroughs, Nathan A.; Hiller, Stephen C.

    2008-01-01

    During the course of each calendar year since 2003, staff of the Center for Evaluation & Education Policy (CEEP) at Indiana University evaluates the benefits of continuing the Annual Public Opinion Survey on K-12 Education in Indiana. In 2008, the Indiana legislature determined that school corporations would no longer use property tax revenues…

  11. Gender Sorting across K-12 Schools in the United States

    Science.gov (United States)

    Long, Mark C.; Conger, Dylan

    2013-01-01

    This article documents evidence of nonrandom gender sorting across K-12 schools in the United States. The sorting exists among coed schools and at all grade levels, and it is highest in the secondary school grades. We observe some gender sorting across school sectors and types: for instance, males are slightly underrepresented in private schools…

  12. K-12 Marketplace Sees Major Flow of Venture Capital

    Science.gov (United States)

    Ash, Katie

    2012-01-01

    The flow of venture capital into the K-12 education market has exploded over the past year, reaching its highest transaction values in a decade in 2011, industry observers say. They attribute that rise to such factors as a heightened interest in educational technology; the decreasing cost of electronic devices such as tablet computers, laptops,…

  13. Transforming K-12 Rural Education through Blended Learning: Teacher Perspectives

    Science.gov (United States)

    Kellerer, Paula; Kellerer, Eric; Werth, Eric; Werth, Lori; Montgomery, Danielle; Clyde, Rozella; Cozart, Joe; Creach, Laura; Hibbard, Laura; LaFrance, Jason; Rupp, Nadine; Walker, Niki; Carter, Theresa; Kennedy, Kathryn

    2014-01-01

    A qualitative study exploring rural teacher perspectives on the impact of blended learning on students and teachers was conducted in Idaho during the Fall of 2013. Researchers from Northwest Nazarene University's DOCEO Center in partnership with Idaho Digital Learning Academy (IDLA) and the International Association for K-12 Online Learning…

  14. Best Practices in Administration of K-12 Dance Programs

    Science.gov (United States)

    Henneman, Suzanne E.

    2013-01-01

    The role of administering K-12 dance education programs is both exciting and invigorating. Being part of the decision-making process, problem solving with teams of colleagues, establishing routines and initiatives, creating "something from nothing," and watching programs grow is appealing to dance teachers as creative and critical…

  15. Green Power Partnership Top 30 K-12 Schools

    Science.gov (United States)

    The U.S. EPA's Green Power Partnership is a voluntary program designed to reduce the environmental impact of electricity generation by promoting renewable energy. On this list are the largest green power users among K-12 school partners within the GPP.

  16. A Framework for Educational Computer Usage. K-12.

    Science.gov (United States)

    Berry, Julia; And Others

    A framework for educational computer usage in grades K-12 is outlined. For each grade level, objectives are shown for the following knowledge areas: computer-related terminology and use; history and development of computers; the use of the computer as a tool; communicating instructions to the computer; social implications; and robotics. Suggested…

  17. Florida's Opinion on K-12 Public Education Spending

    Science.gov (United States)

    Forster, Greg

    2006-01-01

    This scientifically representative poll of 1,200 Floridians finds that public opinion about K-12 public education spending is seriously misinformed. Floridians think public schools need more money, but the main reason is that they are badly mistaken about how much money the public schools actually get. Key findings of the study include: (1) Half…

  18. The Green Pages: Environmental Education Activities K-12.

    Science.gov (United States)

    Clearing, 1991

    1991-01-01

    Presented are 38 environmental education activities for grades K-12. Topics include seed dispersal, food chains, plant identification, sizes and shapes, trees, common names, air pollution, recycling, temperature, litter, water conservation, photography, insects, urban areas, diversity, natural cycles, rain, erosion, phosphates, human population,…

  19. Unifying K-12 Learning Processes: Integrating Curricula through Learning

    Science.gov (United States)

    Bosse, Michael J.; Fogarty, Elizabeth A.

    2011-01-01

    This study was designed to examine whether a set of cross-curricular learning processes could be found in the respective K-12 US national standards for math, language arts, foreign language, science, social studies, fine arts, and technology. Using a qualitative research methodology, the standards from the national associations for these content…

  20. Best Practices in Administration of K-12 Dance Programs

    Science.gov (United States)

    Henneman, Suzanne E.

    2013-01-01

    The role of administering K-12 dance education programs is both exciting and invigorating. Being part of the decision-making process, problem solving with teams of colleagues, establishing routines and initiatives, creating "something from nothing," and watching programs grow is appealing to dance teachers as creative and critical…

  1. Designer Librarian: Embedded in K12 Online Learning

    Science.gov (United States)

    Boyer, Brenda

    2015-01-01

    Over the past two decades, shifts in technology have altered the roles of school librarians in a multitude of ways. New rigorous standards, proliferation of devices, and steady growth of online and blended learning for the K12 market now demand librarians engage with learners in online environments. Taking an instructional design approach is the…

  2. Bringing Engineering Research Coupled With Art Into The K-12 Classroom

    Science.gov (United States)

    Cola, J.

    2016-12-01

    The Partnerships for Research, Innovation and Multi-Scale Engineering Program, a Research Experiences for K-12 Teachers at Georgia Institute of Technology demonstrates a successful program that blends the fine arts with engineering research. Teachers selected for the program improve their science and engineering content knowledge, as well as their understanding of how to use STEAM to increase student comprehension and engagement. Participants in the program designed Science, Technology, Engineering, Art, and Mathematics (STEAM)- based lessons based on faculty engineering research. Examples of some STEAM lessons created will be discussed along with lessons learned.

  3. Competency Based Teacher Education Component. Curriculum Methods and Materials, Elementary Mathematics and Social Studies.

    Science.gov (United States)

    Woodworth, William D.

    Four mathematical/social studies module clusters are presented in an effort to develop proficiency in instruction and in inductive and deductive teaching procedures. Modules within the first cluster concern systems of numeration, set operations, numbers, measurement, geometry, mathematics, and reasoning. The second mathematical cluster presents…

  4. The research of 4th grade mathematical curriculum electronic picture book construction and development in integrating indigenous culture

    Science.gov (United States)

    Chen, Yen Ting; Hsin Wang, Juei

    2017-02-01

    This research aimed at integrating Seediq culture and mathematical course design for fourth-grade elementary school, and then transforming this mathematical course into an electronic picture book. During the process of electronic book development, the researchers collected videos of six participants engaged in discussion, reflection minutes after the meeting written by the attendants, the researchers' observation and review journals, and conversations with the participants. Then, researchers utilized Content Analysis to explore, try, review and retry steps of electronic book making process. The main findings: There are four periods of electronic book making process, research occurrence period, curriculum design period, electronic book transformation period, and result evaluation period. The picture book included the White Stone Legend born from Seediq seniors, historical battle for hunting field between tribes, and concepts of approximation, angle, triangle, and quadrangle features. At last, with the research result, this article presents the corroboration of related works, and then proposes suggestions of electronic book teaching and follow-up studies.

  5. K-12 Students Flock To ToxTown In San Diego: Results of an SOT K-12 Education Outreach Workshop

    Science.gov (United States)

    Just prior to the start of the 2015 Annual Meeting in San Diego, hundreds of K-12 students, teachers, and science enthusiasts visited the ToxTown booth at the annual San Diego Festival of Science and Engineering grand finale event, EXPO Day. Over 20,000 attendees participated in ...

  6. K-12 Math and Science Education: A Physicist Meets Reality

    Science.gov (United States)

    Eisenstein, Robert

    2009-05-01

    Can professional engineers, mathematicians, and scientists have a positive impact on K-12 math and science education? The experience of the Santa Fe Alliance for Science, and several other like-minded organizations, indicates that they can indeed. But success is by no means assured. Good scientists are not automatically good educators, but they can learn enough about pedagogy, classroom, and community to do well. For example, their experiences working on research topics of great societal interest (e.g. the energy supply or global warming) can be a great attraction to young people. This discussion will be oriented around three major points: lessons learned, prospects for the future, and how our effort fits into state-wide plans for re-inventing K-12 math and science education in New Mexico.

  7. Connecting with Teachers and Students through K-12 Outreach Activities

    Science.gov (United States)

    Chapman, Susan; Lindbo, David; Robinson, Clay

    2014-05-01

    The Soil Science Society of America has invested heavily in a significant outreach effort to reach teachers and students in the primary/secondary grades (K-12 grades in US/Canada) to raise awareness of soil as a critical resource. The SSSA K-12 committee has been charged with increasing interest and awareness of soil science as a scientific pursuit and career choice, and providing resources that integrate more information on soil science into biology, chemistry, physics, and earth science areas taught at multiple grade levels. Activities center around five main areas: assessment and standards, learning modules/lesson plans, website development, and books and materials, and partnership activities. Members (professionals and students) of SSSA are involved through committee participation, local events, materials review, and project development.

  8. Technical Feasibility Study for Zero Energy K-12 Schools

    Energy Technology Data Exchange (ETDEWEB)

    Pless, Shanti D.; Torcellini, Paul A.; Bonnema, Eric; Goldwasser, David

    2016-08-26

    A simulation-based technical feasibility study was completed to show the types of technologies required to achieve ZEB status with this building type. These technologies are prioritized across the building's subsystem such that design teams can readily integrate the ideas. Energy use intensity (EUI) targets were established for U.S. climate zones such that K-12 schools can be zero-ready or can procure solar panels or other renewable energy production sources to meet the zero energy building definition. Results showed that it is possible for K-12 schools to achieve zero energy when the EUI is between 20 and 26 kBtu/ft2/yr. Temperate climates required a smaller percentage of solar panel coverage than very hot or very cold climates. The paper provides a foundation for technically achieving zero energy schools with a vision of transforming the school construction market to mainstream zero energy buildings within typical construction budgets.

  9. Technical Feasibility Study for Zero Energy K-12 Schools

    Energy Technology Data Exchange (ETDEWEB)

    Bonnema, Eric [National Renewable Energy Lab. (NREL), Golden, CO (United States); Goldwasser, David [National Renewable Energy Lab. (NREL), Golden, CO (United States); Torcellini, Paul [National Renewable Energy Lab. (NREL), Golden, CO (United States); Pless, Shanti [National Renewable Energy Lab. (NREL), Golden, CO (United States); Studer, Daniel [National Renewable Energy Lab. (NREL), Golden, CO (United States)

    2016-11-01

    This technical feasibility study provides documentation and research results supporting a possible set of strategies to achieve source zero energy K-12 school buildings as defined by the U.S. Department of Energy (DOE) zero energy building (ZEB) definition (DOE 2015a). Under this definition, a ZEB is an energy-efficient building in which, on a source energy basis, the actual annual delivered energy is less than or equal to the on-site renewable exported energy.

  10. Neutrofiilisten granulosyyttien E. coli K12 -kannan fagosytoosi

    OpenAIRE

    Kautonen, Riina

    2011-01-01

    Tässä työssä tutkittiin bioluminesoivan E. coli K12 pEGFPABCDEamp -kannan viabiliteettiä, mittaamalla bakteerin emittoimaa bioluminesenssia reaaliaikaisesti. Bakteerisolujen tappamiseen käytettiin fagosytoivia neutrofiilisiä granulosyyttejä, jotka eristettiin ihmisen perifeerisestä verestä. Työssä tutkittiin myös veren soluttoman osan seerumin vaikutusta solujen viabiliteettiin ja neutrofiilisten granulosyyttien fagosytoositehokkuuteen. Bakteerisolujen kuolevuutta pyrittiin todistamaan maljaa...

  11. 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

  12. Investigating the criteria and processes used in the selection, implementation, and evaluation of STEM within K-12 education

    Science.gov (United States)

    Delp, Matthew J.

    This study utilized survey research to investigate how school districts within K-12 education select, implement, and evaluate Science, Technology, Engineering, and Mathematics (STEM) programs. Thirty school districts within the Math and Science Collaborative located in Western Pennsylvania participated in this research. In addition to characterizing the STEM programs of the participating school districts, this study also analyzed the alignment of these programs to the components of comprehensive STEM programs and critical approaches to substantiate STEM program implementation as stated in the literature (Augustine, 2005; Bybee, 2010a, 2010b; Carnevale et al., 2011; DeJarnette, 2010; Epstein & Miller, 2011b; Gardner et al., 1983; Hossain & Robinson, 2011, 2012; Kuenzi, 2008). Findings suggest that the primary goal for school districts, as it relates to STEM program implementation, is to influence students' interest and pursuit of STEM-related careers and degrees. In order to achieve this goal, results of this study indicate the focus of STEM program implementation occurs with the greatest frequency at the middle school (grades seven and eight) level, are developed as an adaptation to the curriculum, and are very diverse from one school district to the next. In addition, findings suggest that although school districts maintain they aim to promote careers and degrees in STEM, districts rely on traditional methods of evaluating STEM program implementation (i.e. standardized test scores) and do not track the longitudinal impact their STEM programs as they related to degrees and careers in STEM. Furthermore, results indicate district STEM programs are not aligned to the characteristics of comprehensive STEM programs as defined by the literature. In order to address the misalignment of school district goals and evaluation processes involved in STEM program implementation and the absence of the characteristics commensurate with comprehensive STEM programs, this study has

  13. Involving Practicing Scientists in K-12 Science Teacher Professional Development

    Science.gov (United States)

    Bertram, K. B.

    2011-12-01

    The Science Teacher Education Program (STEP) offered a unique framework for creating professional development courses focused on Arctic research from 2006-2009. Under the STEP framework, science, technology, engineering, and math (STEM) training was delivered by teams of practicing Arctic researchers in partnership with master teachers with 20+ years experience teaching STEM content in K-12 classrooms. Courses based on the framework were offered to educators across Alaska. STEP offered in-person summer-intensive institutes and follow-on audio-conferenced field-test courses during the academic year, supplemented by online scientist mentorship for teachers. During STEP courses, teams of scientists offered in-depth STEM content instruction at the graduate level for teachers of all grade levels. STEP graduate-level training culminated in the translation of information and data learned from Arctic scientists into standard-aligned lessons designed for immediate use in K-12 classrooms. This presentation will focus on research that explored the question: To what degree was scientist involvement beneficial to teacher training and to what degree was STEP scientist involvement beneficial to scientist instructors? Data sources reveal consistently high levels of ongoing (4 year) scientist and teacher participation; high STEM content learning outcomes for teachers; high STEM content learning outcomes for students; high ratings of STEP courses by scientists and teachers; and a discussion of the reasons scientists indicate they benefited from STEP involvement. Analyses of open-ended comments by teachers and scientists support and clarify these findings. A grounded theory approach was used to analyze teacher and scientist qualitative feedback. Comments were coded and patterns analyzed in three databases. The vast majority of teacher open-ended comments indicate that STEP involvement improved K-12 STEM classroom instruction, and the vast majority of scientist open-ended comments

  14. A Modular Approach to Teaching Mathematical Modeling in Biotechnology in the Undergraduate Curriculum

    Science.gov (United States)

    Larripa, Kamila R.; Mazzag, Borbala

    2016-01-01

    Our paper describes a solution we found to a still existing need to develop mathematical modeling courses for undergraduate biology majors. Some challenges of such courses are: (i) relatively limited exposure of biology students to higher-level mathematical and computational concepts; (ii) availability of texts that can give a flavor of how…

  15. Mathematics Teachers' Perceptions of Resources and Curriculum Availability in Post-Apartheid Schooling

    Science.gov (United States)

    Waller, Patrice Parker; Maxwell, Kori L. H.

    2017-01-01

    This study explored similarities and differences in mathematics teaching and learning between public and private schools in post-apartheid South Africa. These conditions are viewed through the perceptions of mathematics teachers who navigate these two distinct spaces. This investigation was conducted during a cultural immersion component of a…

  16. Effects of Integrating Multimedia into the Third Grade Mathematics Curriculum to Improve Student Learning

    Science.gov (United States)

    Liu, Yuliang

    2012-01-01

    This project was designed to test Mayer's multimedia theory in an elementary school to improve students' mathematics learning for low-income children. The study designed and developed two multimedia mathematics experiments in 3rd grade: 9's multiplication experiment and geometric solids experiment. The two experimental lessons were implemented in…

  17. Correlation Educational Model in Primary Education Curriculum of Mathematics and Computer Science

    Science.gov (United States)

    Macinko Kovac, Maja; Eret, Lidija

    2012-01-01

    This article gives insight into methodical correlation model of teaching mathematics and computer science. The model shows the way in which the related areas of computer science and mathematics can be supplemented, if it transforms the way of teaching and creates a "joint" lessons. Various didactic materials are designed, in which all…

  18. Mathematics Teachers' Perceptions of Resources and Curriculum Availability in Post-Apartheid Schooling

    Science.gov (United States)

    Waller, Patrice Parker; Maxwell, Kori L. H.

    2017-01-01

    This study explored similarities and differences in mathematics teaching and learning between public and private schools in post-apartheid South Africa. These conditions are viewed through the perceptions of mathematics teachers who navigate these two distinct spaces. This investigation was conducted during a cultural immersion component of a…

  19. Applying Mathematical Concepts with Hands-On, Food-Based Science Curriculum

    Science.gov (United States)

    Roseno, Ashley T.; Carraway-Stage, Virginia G.; Hoerdeman, Callan; Díaz, Sebastián R.; Geist, Eugene; Duffrin, Melani W.

    2015-01-01

    This article addresses the current state of the mathematics education system in the United States and provides a possible solution to the contributing issues. As a result of lower performance in primary mathematics, American students are not acquiring the necessary quantitative literacy skills to become successful adults. This study analyzed the…

  20. Slope across the Curriculum: Principles and Standards for School Mathematics and Common Core State Standards

    Science.gov (United States)

    Nagle, Courtney; Moore-Russo, Deborah

    2014-01-01

    This article provides an initial comparison of the Principles and Standards for School Mathematics and the Common Core State Standards for Mathematics by examining the fundamental notion of slope. Each set of standards is analyzed using eleven previously identified conceptualizations of slope. Both sets of standards emphasize Functional Property,…

  1. Implications of the Next Generation Science Standards for K-12, EPO, and Higher Education

    Science.gov (United States)

    Schultz, G.; Barber, J.; Pomeroy, R.; Reagan, G.

    2014-07-01

    The newly-released Next Generation Science Standards (NGSS) have been under development for a few years with broad community input and explicit involvement of many states likely to adopt these as their own science standards. Several key features of the NGSS make these a substantial advance from the existing National Science Education Standards (NRC 1996), including focus on three dimensions previously outlined in A Framework for K-12 Science Education (NRC 2011): Science and Engineering Practices; Cross-cutting Concepts; and Disciplinary Core Ideas. What are the implications of all this now for K-12 educators, in the immediate term and in the long-term? What do the NGSS imply for EPO professionals, especially those involved in science curriculum development and teacher professional development? What should higher education faculty know about the NGSS, especially as it relates to the preparation of incoming college students, as well as the education of future elementary and secondary science teachers in college (including in Astro 101-type courses)?

  2. Infrared Astronomy Professional Development for K-12 Educators: WISE Telescope

    Science.gov (United States)

    Borders, Kareen; Mendez, B. M.

    2010-01-01

    K-12 educators need effective and relevant astronomy professional development. WISE Telescope (Wide-Field Infrared Survey Explorer) and Spitzer Space Telescope Education programs provided an immersive teacher professional development workshop at Arecibo Observatory in Puerto Rico during the summer of 2009. As many common misconceptions involve scale and distance, teachers worked with Moon/Earth scale, solar system scale, and distance of objects in the universe. Teachers built and used basic telescopes, learned about the history of telescopes, explored ground and satellite based telescopes, and explored and worked on models of WISE Telescope. An in-depth explanation of WISE and Spitzer telescopes gave participants background knowledge for infrared astronomy observations. We taught the electromagnetic spectrum through interactive stations. The stations included an overview via lecture and power point, the use of ultraviolet beads to determine ultraviolet exposure, the study of WISE lenticulars and diagramming of infrared data, listening to light by using speakers hooked up to photoreceptor cells, looking at visible light through diffraction glasses and diagramming the data, protocols for using astronomy based research in the classroom, and infrared thermometers to compare environmental conditions around the observatory. An overview of LIDAR physics was followed up by a simulated LIDAR mapping of the topography of Mars. We will outline specific steps for K-12 infrared astronomy professional development, provide data demonstrating the impact of the above professional development on educator understanding and classroom use, and detail future plans for additional K-12 professional development. Funding was provided by WISE Telescope, Spitzer Space Telescope, Starbucks, Arecibo Observatory, the American Institute of Aeronautics and Astronautics, and the Washington Space Grant Consortium.

  3. The Impact of Curriculum Looping on Standardized Literacy and Mathematics Test Scores

    Science.gov (United States)

    Nessler, Ralph D.

    2010-01-01

    There is a lack of research on the practice of curriculum looping and student achievement. The purpose of this study was to examine academic achievement between students in looping classes and those in nonlooping classes. The theoretical model of this study was based on the social cognitive theory of Bandura and Maslow's hierarchy of needs theory.…

  4. Consumer Education in Eighth Grade Core and Mathematics 1970. Curriculum Guide.

    Science.gov (United States)

    Schaum, June; And Others

    This curriculum guide outlines a one-to-two week consumer education unit for eighth grade students. It was written in response to Illinois Senate Bill 977 which required that all students in grades 8-12 be given instruction in consumer education. The lessons were developed to involve the students in stating problems, writing definitions,…

  5. The Impact of Curriculum Looping on Standardized Literacy and Mathematics Test Scores

    Science.gov (United States)

    Nessler, Ralph D.

    2010-01-01

    There is a lack of research on the practice of curriculum looping and student achievement. The purpose of this study was to examine academic achievement between students in looping classes and those in nonlooping classes. The theoretical model of this study was based on the social cognitive theory of Bandura and Maslow's hierarchy of needs theory.…

  6. A Trivium Curriculum for Mathematics Based on Literacy, Matheracy, and Technoracy: An Ethnomathematics Perspective

    Science.gov (United States)

    Rosa, Milton; Orey, Daniel Clark

    2015-01-01

    In an ethnomathematics-based program there exists the need for teachers to identify pedagogical actions in the form of teaching-learning practices. In this theoretical paper we outline a curriculum proposal based on D'Ambrosio's "Trivium," composed of "literacy," "matheracy," and "technoracy." The Trivium…

  7. Cataclysms and Catastrophes: A Case Study of Improving K-12 Science Education Through a University Partnership

    Science.gov (United States)

    Fennell, T.; Ellins, K. K.; Morris, M.; Christeson, G.

    2003-12-01

    The K-12 science teacher is always seeking ways of improving and updating their curriculum by integrating the latest research into their most effective classroom activities. However, the daily demands of delivering instruction to large numbers of students coupled with the rapid advances in some fields of science can often overwhelm this effort. The NSF-sponsored Cataclysms and Catastrophes curriculum, developed by scientists from the The University of Texas at Austin Institute for Geophysics (UTIG) and Bureau of Economic Geology (BEG), middle and high school teachers, and UT graduate students (NSF GK-12 fellows) working together through the GK-12 program, is a textbook example of how universities can facilitate this quest, benefiting education at both K-12 and university levels. In 1992, "The Great K-T Extinction Debate" was developed as an activity in the Planet Earth class at the Liberal Arts and Science Academy of Austin as an interdisciplinary approach to science. Taking advantage of the media attention generated by the impact scenario for the K-T extinction, the activity consists of students participating in a simulated senate hearing on the potential causes of the K-T extinction and their implications for society today. This activity not only exposes students to the wide range of science involved in understanding mass extinctions, but also to the social, political and economic implications when this science is brought into the public arena and the corresponding use of data in decision making and disaster preparedness. While "The Great K-T Extinction Debate" was always a popular and effective activity with students, it was in desperate need of updating to keep pace with the evolving scientific debate over the cause of the K-T extinction and the growing body of impact evidence discovered over the past decade. By adding two inquiry-based learning activities that use real geophysical data collected by scientists studying the buried Chicxulub feature as a

  8. Gender Effects on Curriculum Elements Based on Mathematics and Science and Technology Teachers' Opinions: A Meta-Analysis for Turkish Studies

    Science.gov (United States)

    Küçüktepe, Seval Eminoglu; Yildiz, Nilgün

    2016-01-01

    The purpose of this study is to investigate the gender effect on elementary mathematics and science and technology teachers' opinions regarding curriculum elements which are objectives, content, learning situation and evaluation. Meta-analysis was used in order to analyze data. Two articles, 11 master and one doctorate thesis which were conducted…

  9. Mathematics Curriculum Guide for Spanish-Speaking Students, Levels E, F. Field Test. Working Draft = Guia didactica de matematicas, Niveles E, F. Edicion Experimental.

    Science.gov (United States)

    Chicago Board of Education, IL. Dept. of Curriculum.

    The curriculum guide for mathematics instruction in the bilingual education program of the Chicago public schools is designed to assist teachers in the instruction of limited-English-speaking students in their native language. The guide outlines, for each of two levels, lessons on absolute and relative values of numbers, whole number operations,…

  10. Mathematics Curriculum Guide for Spanish-Speaking Students, Levels A, B, C, D, Field Test. Working Draft = Guia didactica de Matematicas, Niveles A, B, C, D. Edicion Experimental.

    Science.gov (United States)

    Chicago Board of Education, IL. Dept. of Curriculum.

    The introductory level curriculum guide for bilingual education for Spanish-speaking children in the Chicago public schools is divided into four difficulty levels and is designed to facilitate acquisition of mathematical concepts by presenting them in the children's native language. At each level, the concepts covered include the meaning of…

  11. Mathematics Curriculum Guide for Spanish-Speaking Students, Levels A, B, C, D, Field Test. Working Draft = Guia didactica de Matematicas, Niveles A, B, C, D. Edicion Experimental.

    Science.gov (United States)

    Chicago Board of Education, IL. Dept. of Curriculum.

    The introductory level curriculum guide for bilingual education for Spanish-speaking children in the Chicago public schools is divided into four difficulty levels and is designed to facilitate acquisition of mathematical concepts by presenting them in the children's native language. At each level, the concepts covered include the meaning of…

  12. Mathematics Curriculum Guide for Spanish-Speaking Students, Levels E, F. Field Test. Working Draft = Guia didactica de matematicas, Niveles E, F. Edicion Experimental.

    Science.gov (United States)

    Chicago Board of Education, IL. Dept. of Curriculum.

    The curriculum guide for mathematics instruction in the bilingual education program of the Chicago public schools is designed to assist teachers in the instruction of limited-English-speaking students in their native language. The guide outlines, for each of two levels, lessons on absolute and relative values of numbers, whole number operations,…

  13. A List of Currently Credible Biology Concepts Judged by a National Panel To Be Important for Inclusion in K-12 Curricula, Parts 1, 2, and 3.

    Science.gov (United States)

    Thompson, Benjamin Edwin

    This three-part document identified 114 currently credible biology concepts judged important for inclusion in the K-12 curriculum. The literature related to the production of lists of scientific concepts was reviewed, emphasizing the techniques available for such studies. The technique for this study was to ask individual biological scientists at…

  14. 数学教师课程资源的开发与利用%Strategies on the development and utilization of mathematics teachers as curriculum resources

    Institute of Scientific and Technical Information of China (English)

    赵艳会

    2014-01-01

    Curriculum resources are thought to be essential to achieve the goal of the course. The teachers are the first course resources. Based on the understanding of mathematics teachers as teaching resources,certain points are put forward as follows:mathematics teachers should cultivate the awareness of the curriculum resources;the construction of the team of math-ematics teachers should be emphasized;mathematics teachers should improve their abilities of developing the the curriculum re-sources;maths teachers should fully display their uses as teaching materials in mathematics teaching;how can a maths teacher maximize resources.%教师是第一位的课程资源。数学教师要确立课程资源的意识,提高开发课程资源的能力,使自己的知识素质结构不断充实优化,心理及人格素质不断升华提高,促进数学课程资源的开发利用。

  15. Reflecting on the Mathematics Curriculum Construction of Higher Vocational Education%反思中国高职院校的数学课程建设

    Institute of Scientific and Technical Information of China (English)

    游安军

    2015-01-01

    The mathematics curriculum of the higher vocational college was in danger situation, the mathematics curriculum construction of the higher vocational education should be changed from logical system to applied system, the important of all tasks was the mixture of mathematics and professional knowledge.%高职院校《高等数学》课程已经陷入严重的危机之中。根据职业教育的目标和学生的基础水平,高职数学课程建设必须实现由逻辑体系向应用体系的转变,其中最核心的任务是加强数学与相关专业知识的融合。

  16. The comprehensive updated regulatory network of Escherichia coli K-12

    Directory of Open Access Journals (Sweden)

    Karp Peter D

    2006-01-01

    Full Text Available Abstract Background Escherichia coli is the model organism for which our knowledge of its regulatory network is the most extensive. Over the last few years, our project has been collecting and curating the literature concerning E. coli transcription initiation and operons, providing in both the RegulonDB and EcoCyc databases the largest electronically encoded network available. A paper published recently by Ma et al. (2004 showed several differences in the versions of the network present in these two databases. Discrepancies have been corrected, annotations from this and other groups (Shen-Orr et al., 2002 have been added, making the RegulonDB and EcoCyc databases the largest comprehensive and constantly curated regulatory network of E. coli K-12. Results Several groups have been using these curated data as part of their bioinformatics and systems biology projects, in combination with external data obtained from other sources, thus enlarging the dataset initially obtained from either RegulonDB or EcoCyc of the E. coli K12 regulatory network. We kindly obtained from the groups of Uri Alon and Hong-Wu Ma the interactions they have added to enrich their public versions of the E. coli regulatory network. These were used to search for original references and curate them with the same standards we use regularly, adding in several cases the original references (instead of reviews or missing references, as well as adding the corresponding experimental evidence codes. We also corrected all discrepancies in the two databases available as explained below. Conclusion One hundred and fifty new interactions have been added to our databases as a result of this specific curation effort, in addition to those added as a result of our continuous curation work. RegulonDB gene names are now based on those of EcoCyc to avoid confusion due to gene names and synonyms, and the public releases of RegulonDB and EcoCyc are henceforth synchronized to avoid confusion due to

  17. Life skills, mathematical reasoning and critical thinking: a curriculum for the prevention of problem gambling.

    Science.gov (United States)

    Turner, Nigel E; Macdonald, John; Somerset, Matthew

    2008-09-01

    Previous studies have shown that youth are two to three times more likely than adults to report gambling related problems. This paper reports on the development and pilot evaluation of a school-based problem gambling prevention curriculum. The prevention program focused on problem gambling awareness and self-monitoring skills, coping skills, and knowledge of the nature of random events. The results of a controlled experiment evaluating the students learning from the program are reported. We found significant improvement in the students' knowledge of random events, knowledge of problem gambling awareness and self-monitoring, and knowledge of coping skills. The results suggest that knowledge based material on random events, problem gambling awareness and self-monitoring skills, and coping skills can be taught. Future development of the curriculum will focus on content to expand the students' coping skill options.

  18. Restructuring the relationship between STEM faculty and K-12: crafting a figured world of partnership

    Science.gov (United States)

    Fayez, Merfat

    2010-09-01

    Over the past 50 years, identity has provided us with a dynamic tool to understand and examine how people are constituted as agents as well as subjects of culturally constructed, socially enacted worlds. Pertinent to this conceptualization, Skerrett and Sevian focus on science and mathematics faculty's identities and seek to understand how certain aspects of their identities mediate certain motivations to involvement in K-12 service. While I believe that the authors presented an affluent discussion of agency from the perspective of identity, I think that if we are to understand agency from a sociocultural perspective, we have to magnify a view of identity and agency in the figured world of practice/activity. My main goal is not only to reclaim the importance of the individual dimension and agency within a profoundly social view of the self, but also to highlight the figured contextual factors that would either enable or constrain STEM faculty's involvement in K-12 outreach. After first outlining the perspective of identity and agency that was adopted by Skerrett and Sevian, I extend the discussion of Skerrett and Sevian to move forward toward a figured world of partnership. I conclude by positing that the third generation of activity theory has a potential for contributing to our understanding of how the social institutional context and its structure is important to our understanding of individual agency.

  19. I-LLINI Partnerships to improve K-12 Earth Science education

    Science.gov (United States)

    Tomkin, J. H.; Wong, K.; Charlevoix, D. J.

    2009-12-01

    I-LLINI Partnerships is a three-year State of Illinois funded program to initiate enhanced communication between the faculty at University of Illinois and K-12 teachers in the surrounding communities. The program focuses on math and science with a particular emphasis on the use of technology to teaching math and science to middle-school aged children. The Partnership provides participating teachers with a suite of technology including a computer, digital camera, and software, as well as a small stipend. University partners include representatives from the Departments of Mathematics as well as the Department of Atmospheric Sciences and the Department of Geology. The Atmospheric Sciences and Geology faculty have partnered to provide content using an Earth Systems Science approach to improving Earth Science education for in- and pre-service teachers through new undergraduate and graduate classes that focus on fundamental earth science content, State K-12 standards, and transferable lesson plans and materials that enable course participants to easily transfer university practice to the classroom.

  20. University Preparation of Social Justice Leaders for K-12 Schools

    Science.gov (United States)

    Woods, Rosmary Sandie M.

    2012-01-01

    The purpose of this study was to examine the social justice principles embedded in California State University (CSU) Educational Administration Preparation Programs. More specifically, this study explored the intended, implemented, and assessed curriculum relative to social justice and critical consciousness, and investigated if differences exist…

  1. Teaching the Best Practice Way: Methods That Matter, K-12

    Science.gov (United States)

    Daniels, Harvey; Bizar, Marilyn

    2004-01-01

    Everyone talks about "best practice" teaching--what does it actually look like in the classroom? How do working teachers translate complex curriculum standards into simple, workable classroom structures that embody exemplary instruction--and still let kids find joy in learning? In this book, the authors present seven basic teaching structures that…

  2. K-12 Biology Teaching in Need of Reform.

    Science.gov (United States)

    Borchelt, Rick

    1991-01-01

    The results of a National Research Council report on the status of biology education in the United States are discussed. Poorly trained and supported teachers, a curriculum that seems designed to snuff out interest, inappropriately used standardized tests, and textbooks that are often inaccurate and misleading were found. Recommendations are…

  3. Telling Your Story: Ocean Scientists in the K-12 Classroom

    Science.gov (United States)

    McWilliams, H.

    2006-12-01

    Most scientists and engineers are accustomed to presenting their research to colleagues or lecturing college or graduate students. But if asked to speak in front of a classroom full of elementary school or junior high school students, many feel less comfortable. TERC, as part of its work with The Center for Ocean Sciences Education Excellence-New England (COSEE-NE) has designed a workshop to help ocean scientists and engineers develop skills for working with K-12 teachers and students. We call this program: Telling Your Story (TYS). TYS has been offered 4 times over 18 months for a total audience of approximately 50 ocean scientists. We will discuss the rationale for the program, the program outline, outcomes, and what we have learned. ne.net/edu_project_3/index.php

  4. Secondary Schools Curriculum Guide, Mathematics, Grades 10-12, Levels 87-112.

    Science.gov (United States)

    Rogers, Arnold R., Ed.; And Others

    Behavioral objectives for geometry, algebra, computer mathematics, trigonometry, analytic geometry, calculus, and probability are specified for grades 10 through 12. General objectives are stated for major areas under each topic and are followed by a list of specific objectives for that area. This work was prepared under an ESEA Title III…

  5. Teachers' Views on the New Measurement and Assessment Approaches with Regard to Mathematics Curriculum Reform

    Science.gov (United States)

    Cansiz Aktas, Meral; Baki, Adnan

    2014-01-01

    The aim of this study is to investigate teachers' views on the new measurement and assessment approaches within the context of secondary school mathematics education reform. With this purpose, the factors which affected the implementation process were determined. The research data were obtained from two teachers via in-depth interviews,…

  6. Mathematics Curriculum Based Measurement to Predict State Test Performance: A Comparison of Measures and Methods

    Science.gov (United States)

    Stevens, Olinger; Leigh, Erika

    2012-01-01

    Scope and Method of Study: The purpose of the study is to use an empirical approach to identify a simple, economical, efficient, and technically adequate performance measure that teachers can use to assess student growth in mathematics. The current study has been designed to expand the body of research for math CBM to further examine technical…

  7. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Workbook Part 2. Experimental. Level 3.

    Science.gov (United States)

    Fox, Joan; And Others

    The activities in this workbook are designed to provide pupils with practice in mastering the performance objectives of the Comprehensive Instructional Management System in mathematics for Level 3, Part 2, in New York City schools. It follows the sequence of the teacher's manual, with the objective number listed on each page. Over 80 performance…

  8. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Workbook Part 1. Experimental. Level 4.

    Science.gov (United States)

    Fox, Joan; And Others

    The activities in this workbook are designed to provide pupils with practice in mastering the performance objectives of the Comprehensive Instructional Management System in mathematics for Level 4, Part 1, in New York City schools. It follows the sequence of the teacher's manual, with the objective number listed on each page. Over 85 performance…

  9. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Workbook Part 2. Experimental. Level 4.

    Science.gov (United States)

    Fox, Joan; And Others

    The activities in this workbook are designed to provide pupils with practice in mastering the performance objectives of the Comprehensive Instructional Management System in mathematics for Level 4, Part 2, in New York City schools. It follows the sequence of the teacher's manual, with the objective number listed on each page. Over 80 performance…

  10. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Workbook Part 1, Experimental. Level 2.

    Science.gov (United States)

    New York City Board of Education, Brooklyn, NY. Div. of Curriculum and Instruction.

    The activities in this workbook are designed to provide pupils with practice in mastering the performance objectives of the Comprehensive Instructional Management System (CIMS) in Mathematics for Level 2, Part 1, in New York City schools. It follows the sequence of the teacher's manual, with the objective number listed on each page. The 85…

  11. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Workbook Part 2, Experimental. Level 2.

    Science.gov (United States)

    New York City Board of Education, Brooklyn, NY. Div. of Curriculum and Instruction.

    The activities in this mathematics workbook are designed to provide pupils with practice in mastering the performance objectives of Level 2, Part 2, in the Comprehensive Instructional Management System (CIMS) for New York City schools. It follows the sequence of the teacher's manual, with the objective number listed on each page. The 128…

  12. Comprehensive Instructional Management System (CIMS). A Cyclical Mathematics Curriculum. Workbook Part 1. Experimental. Level 3.

    Science.gov (United States)

    Fox, Joan; And Others

    The activities in this workbook are designed to provide pupils with practice in mastering the performance objectives of the Comprehensive Instructional Management System in mathematics for Level 3, Part 1, in New York City schools. It follows the sequence of the teacher's manual, with the objective number listed on each page. Over 80 performance…

  13. E. L. Thorndike or Edward Brooks: Two Views on Mathematics Curriculum and Teaching

    Science.gov (United States)

    Cooper-Twamley, Susan; Null, J. Wesley

    2009-01-01

    When one reads scholars from the past, many of the same problems found in schools in 2009 are quite similar to the problems educators were complaining about more than a century ago. One of the current controversial topics in schools today, for example, is student success, or lack thereof, in mathematics. Because of differences in mathematics…

  14. Integration of Bioinformatics into an Undergraduate Biology Curriculum and the Impact on Development of Mathematical Skills

    Science.gov (United States)

    Wightman, Bruce; Hark, Amy T.

    2012-01-01

    The development of fields such as bioinformatics and genomics has created new challenges and opportunities for undergraduate biology curricula. Students preparing for careers in science, technology, and medicine need more intensive study of bioinformatics and more sophisticated training in the mathematics on which this field is based. In this…

  15. Looking within and beyond the Geometry Curriculum: Connecting Spatial Reasoning to Mathematics Learning

    Science.gov (United States)

    Mulligan, Joanne

    2015-01-01

    This commentary adopts a broad perspective in considering the contributions of papers from cross- and interdisciplinary fields of mathematics education, psychology, child development and neuroscience. The discussion aims to complement the commentary by Dindyal, focused on background research on geometry and implications for pedagogy and curricula.…

  16. Integration of Bioinformatics into an Undergraduate Biology Curriculum and the Impact on Development of Mathematical Skills

    Science.gov (United States)

    Wightman, Bruce; Hark, Amy T.

    2012-01-01

    The development of fields such as bioinformatics and genomics has created new challenges and opportunities for undergraduate biology curricula. Students preparing for careers in science, technology, and medicine need more intensive study of bioinformatics and more sophisticated training in the mathematics on which this field is based. In this…

  17. Looking within and beyond the Geometry Curriculum: Connecting Spatial Reasoning to Mathematics Learning

    Science.gov (United States)

    Mulligan, Joanne

    2015-01-01

    This commentary adopts a broad perspective in considering the contributions of papers from cross- and interdisciplinary fields of mathematics education, psychology, child development and neuroscience. The discussion aims to complement the commentary by Dindyal, focused on background research on geometry and implications for pedagogy and curricula.…

  18. Elementary school quality, the mathematics curriculum and the role of local knowledge

    Science.gov (United States)

    Balfanz, Robert

    1990-03-01

    This article uses data from several elementary school classrooms in Chicago on how students learn to calculate, and reviews similar data from a number of developing countries to examine the strengths and limitations of using the mathematical knowledge which students develop on their own outside of formal schooling to increase the amount, range and power of mathematical knowledge which is acquired through formal schooling. In so doing it attempts to reconcile the views of those who believe that the key to improving elementary school quality lies in improving the technology of instruction and those who believe that it lies in a deeper understanding of the mental life of children. It concludes by arguing that the quality of elementary schooling can be improved through skilled management of the environmentally acquired knowledge which students bring to instruction, if this knowledge is transformed through pedagogic and curricular interventions into a set of portable intellectual skills.

  19. K-12 Professional Development at the Harvard Forest LTER

    Science.gov (United States)

    Bennett, K.

    2012-12-01

    As part of the Long Term Ecological Research (LTER) program, the Harvard Forest in Petersham, Massachusetts seeks to train the next generation of researchers, by involving K-12 grade students and their teachers in hands-on, field-based, ecological research in their own schoolyard and community. Students learn to collect data on important long-term ecological issues and processes. Student data are then shared on the Harvard Forest website. To prepare teachers for project protocols, teachers are given direct access to Harvard ecologists with professional development workshops and on-line resources. With the Harvard Forest Schoolyard LTER program, students can participate in three different research projects focusing on phenology, invasive insects, and vernal pools. Teachers attend the Summer Institute for Teachers to learn project content and methods. They return in fall to participate in one of three levels of data workshops to learn how to input, manage, and analyze project data. In the spring, teachers again meet with the Harvard ecologists about project protocols, and to share, through a series of teacher presentations, the ways these project themes are being integrated into class curricula. These professional development opportunities result in long term collaborative partnerships with local schools and the Harvard Forest LTER. In addition to the LTER Schoolyard Ecology Program, the Harvard Forest has supported a successful Research Experience for Teachers (RET) program for the last six years. Throughout the summer, teachers work on research projects alongside Harvard Forest and affiliated scientists, post-docs, graduate students, and REU's (Research Experience for Undergraduates). The RET program provides teachers with the opportunity to build scientific knowledge, develop an understanding of research methods, and translate their new knowledge and experiences into cutting edge classroom lessons. The past two summers I have worked with Dr. Andrew Richardson

  20. The mathematics textbook at tertiary level as curriculum material - exploring the teacher's decision-making process

    Science.gov (United States)

    Randahl, Mira

    2016-08-01

    This paper reports on a study about how the mathematics textbook was perceived and used by the teacher in the context of a calculus part of a basic mathematics course for first-year engineering students. The focus was on the teacher's choices and the use of definitions, examples and exercises in a sequence of lectures introducing the derivative concept. Data were collected during observations of lectures and an interview, and informal talks with the teacher. The introduction and the treatment of the derivative as proposed by the teacher during the lectures were analysed in relation to the results of the content text analysis of the textbook. The teacher's decisions were explored through the lens of intended learning goals for engineering students taking the mathematics course. The results showed that the sequence of concepts and the formal introduction of the derivative as proposed by the textbook were closely followed during the lectures. The examples and tasks offered to the students focused strongly on procedural knowledge. Although the textbook proposes both examples and exercises that promote conceptual knowledge, these opportunities were not fully utilized during the observed lectures. Possible reasons for the teacher's choices and decisions are discussed.

  1. Mathematics

    CERN Document Server

    Eringen, A Cemal

    2013-01-01

    Continuum Physics: Volume 1 - Mathematics is a collection of papers that discusses certain selected mathematical methods used in the study of continuum physics. Papers in this collection deal with developments in mathematics in continuum physics and its applications such as, group theory functional analysis, theory of invariants, and stochastic processes. Part I explains tensor analysis, including the geometry of subspaces and the geometry of Finsler. Part II discusses group theory, which also covers lattices, morphisms, and crystallographic groups. Part III reviews the theory of invariants th

  2. Science Museum Resources and Partnerships for Public and K-12 Outreach and Engagement

    Science.gov (United States)

    Bell, Larry

    2011-03-01

    Science museums engage in a wide range of activities not apparent to exhibit hall visitors. Many of them can support research outreach to public and K-12 teachers and students. In addition to exhibits in science centers, and demonstrations on topics like electricity or cryogenics, science museums offer courses for children and adults, out-of-school programs for students, teacher professional development; some do K-12 curriculum development and some run science magnet schools. In recent years science museums have increased their capacity to communicate with the public about current research. The Museum of Science, for instance, created a Current Science and Technology Center in 2001 dedicated to science in the news and current research developments. Through this Center, the Museum partnered with Harvard University to provide a wide range of public engagement activities as part of Harvard's Nanoscale Science and Engineering Center focused on the Science of Nanoscale Systems and their Device Applications. In the past five years a number of new collaborations among science museums have developed, many in partnership with researchers and research centers. Perhaps the largest or these, the Nanoscale Informal Science Education Network (NISE Net) was launched in 2005 with funding from the National Science Foundation. The NISE Net links informal science education organizations together and to university research centers to raise the capacity of all the participant organizations to increase public awareness, understanding, and engagement with nanoscale science, engineering, and technology. Nearly 300 informal educational organizations in every state nationwide make use of NISE Net's educational materials, professional development, national and regional meetings, and online resources. NISE Net is an open source network with all of its materials freely available to everyone.

  3. "Flipping" educational technology professional development for K-12 educators

    Science.gov (United States)

    Spencer, Daniel

    As the demand for more effective professional development increases in K-12 schools, trainers must adjust their training methods to meet the needs of their teacher learners. Just as lecture-heavy, teacher-centered instruction only meet the learning needs of a small minority of students, "sit and get" professional development rarely results in the teachers gaining the skills and confidence necessary to use technology effectively in their instruction. To resolve the frustrations of teachers related to ineffective professional development, a "Flipped PD" training model was developed based on the learning needs of adult learners, the integration of technological, pedagogical, and content knowledge (TPACK), learning activities, and the Flipped Classroom concept. Under this model, training shifts from a passive, trainer-centered format, to an active, learner-centered format where teachers learn to use technology in their classrooms by first focusing on pedagogical issues, then choosing the options that work best for addressing those issues in their unique situation, and completing "learn-by-doing" projects. Those who participate in "Flipped PD" style trainings tend to have more confidence upon completion that they can use the tools they were trained on in their teaching, as well as believe that the PD was engaging and a good use of their time.

  4. Barriers in the Physics Pipeline from K-12 to Tenure

    Science.gov (United States)

    Kilburn, Micha

    2016-09-01

    The lack of diversity in physics is a known problem, and yet efforts to change our demographics have only had minor effects during the last decade. I will explain some of the hidden barriers that dissuade underrepresented minorities in becoming physicists using a framework borrowed from sociology, Maslow's hierarchy of needs. I will draw from current research at the undergraduate to faculty levels over a variety of STEM fields that are also addressing a lack of diversity. I will also provide analysis from the Joint Institute for Nuclear Astrophysics Center for the Evolution of Elements (JINA-CEE) outreach programs to understand the likelihood of current K-12 students in becoming physicists. Specifically, I will present results from the pre-surveys from our Art 2 Science Camps (ages 8-14) about their attitudes towards science as well as results from analysis of teacher recommendations for our high school summer program. I will conclude with a positive outlook describing the pipeline created by JINA-CEE to retain students from middle school through college. This work was supported in part by the National Science Foundation under Grant No. PHY-1430152 (JINA Center for the Evolution of the Elements).

  5. Advancing the "E" in K-12 STEM Education

    Science.gov (United States)

    Rockland, Ronald; Bloom, Diane S.; Carpinelli, John; Burr-Alexander, Levelle; Hirsch, Linda S.; Kimmel, Howard

    2010-01-01

    Technological fields, like engineering, are in desperate need of more qualified workers, yet not enough students are pursuing studies in science, technology, engineering, or mathematics (STEM) that would prepare them for technical careers. Unfortunately, many students have no interest in STEM careers, particularly engineering, because they are not…

  6. MIT Orients Course Materials Online to K-12

    Science.gov (United States)

    Cavanagh, Sean

    2008-01-01

    Many science and mathematics educators across the country are taking advantage of a Web site created by the Massachusetts Institute of Technology (MIT), the famed research university located in Cambridge, Massachusetts, which offers free video, audio, and print lectures and course material taken straight from the school's classes. Those resources…

  7. Science and Mathematics as part of practical projects in technology and design: An analysis of challenges in realising the curriculum in Norwegian schools.

    Directory of Open Access Journals (Sweden)

    Berit Bungum

    2014-04-01

    Full Text Available Technology and design is seen by many as having a potential for students to work with science and mathematics in practical contexts. The view is particularly evident in the Norwegian curriculum, where technology and design is defined as an interdisciplinary topic involving Science, Mathematics and Art & Crafts. This paper reports from a video study of the use of mathematics and science in student projects in technology and design. It was found that the projects contained little conceptual knowledge from mathematics and science even when their purpose was to do so. Through an inductive analysis informed by perspectives on technology and technological knowledge, we identify four issues that explain why this is the case: (i Problem solving by other means, (ii Focus on product quality, (iii Not the right type of knowledge, and (iv Concepts and procedures not necessary for the purpose. These issues are related to the nature of technology rather than to pedagogy, and the results suggest that technology and design as a domain of knowledge should be represented in the curriculum in its own right and not as an arena for learning science and mathematics

  8. 中高职数学课程衔接的瓶颈及其对策%The Bottle-neck of Curriculum Articulation of Mathematics in Secondary School and Higher Vocational School and Its Countermeasures

    Institute of Scientific and Technical Information of China (English)

    万里亚

    2014-01-01

    课程衔接是中高职教育衔接的核心与关键,针对数学课程衔接中的诸多问题,必须从课程标准、课程结构、课程教学、学生学习方法等方面采取有效措施,才能实施中高职数学课程的有效衔接。%Curriculum articulation is the essence and the core of secondary school education and higher vocational education. As to many problems related to curriculum articulation of mathematics, we should take measures to efficiently implement the plan of curriculum articulation of mathematics on aspects of curriculum syllabus, curriculum structure, curriculum teaching and students' learning strategy in secondary and higher vocational school.

  9. K-12 Education Nonprofit Employees' Perceptions of Strategies for Recruiting and Retaining Employees

    Science.gov (United States)

    Byrne, Tara Marie

    2013-01-01

    This qualitative study explored the key reasons individuals who work in K-12 education nonprofit organizations enter the field of K-12 nonprofit education and their motivations for doing so. The purpose of this study was to find new strategies for recruiting and retaining K-12 education nonprofit employees by examining the obstacles that exist to…

  10. Investigating the Potential of MOOCs in K-12 Teaching and Learning Environments

    Science.gov (United States)

    Nigh, Jennifer; Pytash, Kristine E.; Ferdig, Richard E.; Merchant, William

    2015-01-01

    The massive open online course (MOOC) is a relatively new concept in K-12 teaching and learning environments. Although significant work has been done with MOOCs since 2008, it has only been recently that MOOCs have been studied with K-12 populations. The purpose of this study was to further examine the motivation of K-12 students enrolled in a…

  11. Integration of a CAS/DGS as a CAD system in the mathematics curriculum for architecture students

    Science.gov (United States)

    Falcón, R. M.

    2011-09-01

    Students of Architecture and Building Engineering Degrees work with Computer Aided Design systems daily in order to design and model architectonic constructions. Since this kind of software is based on the creation and transformation of geometrical objects, it seems to be a useful tool in Maths classes in order to capture the attention of the students. However, users of these systems cannot display the set of formulas and equations which constitute the basis of their studio. Moreover, if they want to represent curves or surfaces starting from its corresponding equations, they have to define specific macros which require the knowledge of some computer language or they have to create a table of points in order to convert a set of nodes into polylines, polysolids or splines. More specific concepts, like, for instance, those related to differential geometry, are not implemented in this kind of software, although they are taught in our Maths classes. In a very similar virtual environment, Computer Algebra and Dynamic Geometry Systems offer the possibility of implementing several concepts which can be found in the usual mathematics curriculum for Building Engineering: curves, surfaces and calculus. Specifically, the use of sliders related to the Euler's angles and the generation of tools which project 3D into 2D, facilitate the design and model of curves and rigid objects in space, by starting from their parametric equations. In this article, we show the experience carried out in an experimental and control group in the context of the Maths classes of the Building Engineering Degree of the University of Seville, where students have created their own building models by understanding and testing the usefulness of the mathematical concepts.

  12. K-12 Teachers Encounter Digital Games: A Qualitative Investigation of Teachers' Perceptions of the Potential of Digital Games for K-12 Education

    Science.gov (United States)

    Dickey, Michele D.

    2015-01-01

    The purpose of this study is to investigate teachers' perceptions of the integration of digital games for K-12 education. Specifically, this qualitative investigation focuses on reflective dialogued gathered from a group of K-12 educators about their experiences and perceptions of learning about and playing digital games for teaching and learning.…

  13. K-12 Teachers Encounter Digital Games: A Qualitative Investigation of Teachers' Perceptions of the Potential of Digital Games for K-12 Education

    Science.gov (United States)

    Dickey, Michele D.

    2015-01-01

    The purpose of this study is to investigate teachers' perceptions of the integration of digital games for K-12 education. Specifically, this qualitative investigation focuses on reflective dialogued gathered from a group of K-12 educators about their experiences and perceptions of learning about and playing digital games for teaching and learning.…

  14. BiteScis: Connecting K-12 teachers with science graduate students to produce lesson plans on modern science research

    Science.gov (United States)

    Battersby, Cara

    2016-01-01

    Many students graduate high school having never learned about the process and people behind modern science research. The BiteScis program addresses this gap by providing easily implemented lesson plans that incorporate the whos, whats, and hows of today's scienctific discoveries. We bring together practicing scientists (motivated graduate students from the selective communicating science conference, ComSciCon) with K-12 science teachers to produce, review, and disseminate K-12 lesson plans based on modern science research. These lesson plans vary in topic from environmental science to neurobiology to astrophysics, and involve a range of activities from laboratory exercises to art projects, debates, or group discussion. An integral component of the program is a series of short, "bite-size" articles on modern science research written for K-12 students. The "bite-size" articles and lesson plans will be made freely available online in an easily searchable web interface that includes association with a variety of curriculum standards. This ongoing program is in its first year with about 15 lesson plans produced to date.

  15. Assessing the Impact of a Statewide STEM Investment on K-12, Higher Education, and Business/Community STEM Awareness over Time

    Science.gov (United States)

    Sondergeld, Toni A.; Johnson, Carla C.; Walten, Janet B.

    2016-01-01

    Despite monetary and educational investments in science, technology, engineering, and mathematics (STEM) being at record high levels, little attention has been devoted to generating a common understanding of STEM. In addition, working with business, K-12 schools, and/or institutions of higher education to establish a grassroots effort to help…

  16. Offering a Geoscience Professional Development Program to Promote Science Education and Provide Hands-on Experiences for K-12 Science Educators

    Science.gov (United States)

    Fakayode, Sayo O.; Pollard, David A.; Snipes, Vincent T.; Atkinson, Alvin

    2014-01-01

    Development of an effective strategy for promoting science education and professional development of K-12 science educators is a national priority to strengthen the quality of science, technology, engineering, and mathematics (STEM) education. This article reports the outcomes of a Geoscience Professional Development Program (GPDP) workshop…

  17. Into the Curriculum. Reading/Language Arts: Peter Rabbit Pop-Up; Science and Social Studies: Telephones through Time; Social Studies/Mathematics: An Imaginary Investment; Social Studies: Libraries Reflect Our Culture; Social Studies: Seward's Folly and Alaska.

    Science.gov (United States)

    Salter, Virtys

    2002-01-01

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

  18. Evaluation of Experiential Outdoor Research Locations in Asia for a K-12 school in Hong Kong

    Science.gov (United States)

    Ibarra, D. L.; Joyce, S.

    2016-12-01

    A team of faculty and administrators from The Independent Schools Foundation Academy spend the 2015 - 2016 academic year identifying possible locations in Asia for a year-round outdoor education center. ISF Academy currently has over 1500 students its K-12 bilingual school in Hong Kong, China. The outdoor education center is an extension of the built campus in Pokfulam and will provide students opportunities to live in a natural setting, participate in outdoor educational activities and study in an environment significantly different than a classroom. Currently ISF Academy students in grades 4 - 12 are off campus twice during the academic year in an experiential learning environment. These current programs include camping, hiking, kayaking, other adventurous activities and service learning opportunities. The purpose of the dedicated site is to have a "home base" for ISF Academy and the experiential learning programs. This past year we looked specifically at programs and locations that could also be used by students for ecology and earth systems based research in the senior school (grades 9 - 12). We have looked at sites in Hong Kong, Indonesia, Malaysia and Taiwan. The ideal site will have marine, terrestrial and mangrove ecosystems and allow students to set up long-term research sites in any of these ecosystems. Creating opportunities for authentic research that allows students spend an extended time in a research setting will help them to gain both skills and independence needed in the future at the tertiary level. The evaluation of these sites included identifying potential research partners, site preparation, logistics in and out of the locations, and the heath/safety management of students living and working in a remote location. In parallel to the site evaluations, the curriculum is being developed for the students that is age and skill appropriate using the frame work of the existing guided discovery curriculum in the primary school, and the MYP and DP

  19. Pretesting Mathematical Concepts with the Mobile Phone: Implications for Curriculum Design

    Directory of Open Access Journals (Sweden)

    Rita Ndagire Kizito

    2012-01-01

    Full Text Available One of the neglected elements when teaching at a distance is establishing what learners already know at the beginning of the course or module. Unlike the face-to-face environment, in distance learning there is no opportunity for administering diagnostic activities just before the onset of instruction. This means that both the weak and more advanced students receive the same level of support since there is no mechanism for differentiating their learning needs. This paper describes the characteristics of a diagnostic test aimed at determining student understanding of the basic calculus concepts of the derivative and the integral, using the mobile phone as the method of delivery. As a proof-of-concept exercise, 10 questions designed to test concept attributes and procedural knowledge involving the two basic calculus concepts were given to a sample of 30 students at the beginning of the course. The implications for curriculum design were then analysed in terms of the didactical functionalities and the communication strategy that could be developed with reference to the mobile phone.

  20. Design dimensions: In-depth retrospective studies of K-12 science curriculum design

    NARCIS (Netherlands)

    Bernstein, Deborah; McKenney, Susan; Barber, Jacquey; Bopardikar, Anushree; Drayton, Brian; Walkup, Sara; Pareja Roblin, Natalie; Schunn, Christian

    2015-01-01

    Design and development are critically important to the educational enterprise. Unfortunately, there is little research on which design and development processes produce optimal outcomes for curricular materials intended for large-scale implementation. The Design Dimensions project asks: Across

  1. Enacting FAIR Education: Approaches to Integrating LGBT Content in the K-12 Curriculum

    Science.gov (United States)

    Vecellio, Shawn

    2012-01-01

    The FAIR Education Act (SB 48) was signed into law in California in July of 2011, amending the Education Code by requiring representation of lesbian, gay, bisexual, and transgender persons in the social sciences. In this article, the author uses James Banks' model of the Four Levels of Integration of Multicultural Content to suggest ways in which…

  2. Enacting FAIR Education: Approaches to Integrating LGBT Content in the K-12 Curriculum

    Science.gov (United States)

    Vecellio, Shawn

    2012-01-01

    The FAIR Education Act (SB 48) was signed into law in California in July of 2011, amending the Education Code by requiring representation of lesbian, gay, bisexual, and transgender persons in the social sciences. In this article, the author uses James Banks' model of the Four Levels of Integration of Multicultural Content to suggest ways in which…

  3. A Case for the Nationwide Inclusion of Engineering in the K-12 Curriculum via Technology Education

    Science.gov (United States)

    Pinelli, Thomas E.; Haynie, W. James, III

    2010-01-01

    This paper resulted from discussions between a technology teacher educator and a colleague who has served in various education outreach roles with NASA. The basis of the paper was developed by the NASA director and two engineers, one serving with NASA and the other with the National Institute of Aerospace. The technology teacher educator read the…

  4. Mathematics

    CERN Document Server

    Stein, Sherman K

    2010-01-01

    Anyone can appreciate the beauty, depth, and vitality of mathematics with the help of this highly readable text, specially developed from a college course designed to appeal to students in a variety of fields. Readers with little mathematical background are exposed to a broad range of subjects chosen from number theory, topology, set theory, geometry, algebra, and analysis. Starting with a survey of questions on weight, the text discusses the primes, the fundamental theorem of arithmetic, rationals and irrationals, tiling, tiling and electricity, probability, infinite sets, and many other topi

  5. Cool Science: K-12 Climate Change Art Displayed on Buses

    Science.gov (United States)

    Chen, R. F.; Lustick, D. S.; Lohmeier, J.; Thompson, S. R.

    2015-12-01

    Cool science is an art contest where K12 students create placards (7" x 22") to educate the public about climate change. Students are prompted to create their artwork in response to questions such as: What is the evidence for climate change? How does climate change impact your local community? What can you do to reduce the impacts of climate change? In each of three years, 500-600 student entrees have been submitted from more than 12 school districts across Massachusetts. A panel of judges including scientists, artists, rapid transit representatives, and educators chooses elementary, middle, and high school winners. Winners (6), runners-up (6), and honorable mentions (12) and their families and teachers are invited to an annual Cool Science Award Ceremony to be recognized and view winning artwork. All winning artwork is posted on the Cool Science website. The winning artwork (2 per grade band) is converted into placards (11" x 28") and posters (2.5' x 12') that are placed on the inside (placards) and outside (posters) of buses. Posters are displayed for one month. So far, Cool Science was implemented in Lowell, MA where over 5000 public viewers see the posters daily on the sides of Lowell Rapid Transit Authority (LRTA) buses, making approximately 1,000,000 impressions per year. Cool Science acts to increase climate literacy in children as well as the public, and as such promotes intergenerational learning. Using art in conjunction with science learning about climate change appears to be effective at engaging not just traditionally high achieving science students, but also those interested in the creative arts. Hearing winners' stories about how they created their artwork and what this contest meant to them supports the idea that Cool Science attracts a wide diversity of students. Parents discuss climate change with their children. Multiple press releases announcing the winners further promotes the awareness of climate change throughout school districts and their

  6. 大类招生培养模式下的大学数学基础课程体系建设%On University Mathematics Curriculum System Construction under the Large Class Enrollment Training Mode

    Institute of Scientific and Technical Information of China (English)

    姚晨; 卢兴江; 金蒙伟

    2015-01-01

    Learning compulsory mathematics curriculum is important to cultivate university students' pro-spective original innovation ability. University mathematics curriculum system is facing new challenges in terms of large scale of enrollment. Focusing on cultivating original innovation ability, the paper sets the overall framework of compulsory mathematics curriculum system,and outlines curriculum guidance based on the char-acters of compulsory mathematics curriculum,straightens the cohesive relations between curricula with the mathematical thinking and skills,and takes university mathematics curriculum and pre -curriculum as the content which provide feasible program for university mathematics curriculum system for comprehensive univer-sity.%系统的数学基础课程学习是大学生前瞻性原始创新能力培养的重要内容.在大类招生模式下,大学数学基础课程体系建设出现了新的挑战.文章以培养原始知识创新能力为中心进行数学基础课程体系总体框架设定,依据数学基础课程分类特点制定课程大纲,结合所需数学思想方法和技能的要求来理顺课程衔接关系,以综合性大学数学基础课程及前置课程的设置为内容,对综合性大学数学基础课程体系设置给出可行的建设方案.

  7. The Mathematics Teacher and Curriculum Change (El Profesor de Matemáticas y el Cambio de Currículo

    Directory of Open Access Journals (Sweden)

    Jeremy Kilpatrick

    2009-03-01

    Full Text Available One of the most compelling lessons of the new math reform era —from the mid 1950s to the mid 1970s— concerned the pivotal role of the mathematics teacher in effecting curriculum change. Recent efforts to change the school mathematics curriculum are rediscovering that old lesson: The teacher is the key to change. Consequently, when teachers are confronted with arguments against the direction that proposals for curriculum change are taking, it is important for them to analyze and discuss the proposed changes. Recent experiences in the United States, which does not have the same centralized curriculum organization as Portugal but which is experiencing some of the same proposals and arguments against them, may be helpful in understanding the role that teachers can play in the social process of creating a curriculum. Una de las lecciones más destacadas extraídas de la era de la reforma de la matemática moderna hacía referencia al papel esencial que el profesor de matemáticas desempeñaba en el cambio del currículo. Los recientes esfuerzos por cambiar el currículo de las matemáticas escolares están redescubriendo esta vieja lección: El profesor es la clave para el cambio. Consecuentemente, cuando los profesores argumentan en contra de las propuestas de cambio curricular, es importante que analicen y discutan los cambios propuestos. Las experiencias recientes en Estados Unidos, donde no existe la misma organización curricular centralizada de Portugal pero que experimenta parte de las mismas propuestas y argumentos contra ellas, puede ser útil para comprender el papel que los profesores pueden jugar en el proceso social de creación de un currículo.

  8. Blended learning in K-12 mathematics and science instruction -- An exploratory study

    Science.gov (United States)

    Schmidt, Jason

    Blended learning has developed into a hot topic in education over the past several years. Flipped classrooms, online learning environments, and the use of technology to deliver educational content using rich media continue to garner national attention. While generally well accepted and researched in post-secondary education, not much research has focused on blended learning in elementary, middle, and high schools. This thesis is an exploratory study to begin to determine if students and teachers like blended learning and whether or not it affects the amount of time they spend in math and science. Standardized achievement test data were also analyzed to determine if blended learning had any effect on test scores. Based on student and teacher surveys, this population seems to like blended learning and to work more efficiently in this environment. There is no evidence from this study to support any effect on student achievement.

  9. Creating Words in Mathematics

    Science.gov (United States)

    Galligan, Linda

    2016-01-01

    A "National Numeracy Report" and the Australian Curriculum (2014) have recognised the importance of language in mathematics. The general capabilities contained within the "Australian Curriculum: Mathematics" (2014) highlight literacy as an important tool in the teaching and learning of mathematics, from the interpretation of…

  10. Creating Words in Mathematics

    Science.gov (United States)

    Galligan, Linda

    2016-01-01

    A "National Numeracy Report" and the Australian Curriculum (2014) have recognised the importance of language in mathematics. The general capabilities contained within the "Australian Curriculum: Mathematics" (2014) highlight literacy as an important tool in the teaching and learning of mathematics, from the interpretation of…

  11. 数学思想方法在义务教育数学课程中的地位%The Status of Mathematical Thoughts and Methods in Mathematics Curriculum for Compulsory Education

    Institute of Scientific and Technical Information of China (English)

    付艳芳

    2013-01-01

    数学思想和方法在课程中应占重要地位,应作为教育任务的重要内容。学习数学不仅要学习数学的知识内容,而且要学习它的精神、思想和方法。掌握基本数学思想方法能使数学更易于理解,领悟数学思想方法更有助于数学新知识学习,提高学生分析问题和解决问题的能力。%Mathematical thoughts and methods should be in the dominant position of mathematics curriculum and be placed as the priority in pedagogical tasks. We need not only focus on the knowledge and contents, but also the spirit, thoughts and methods during the mathematics learning. The mastery of mathematical thoughts and methods makes mathematics more understandable. Students would have a great improvement in absorbing new knowledge, analyzing and solving problems based on the complete comprehension of these thoughts and methods.

  12. Integrating Agriculture into the Science Curriculum.

    Science.gov (United States)

    Emery, Pamela M.; Linder, Mark P.

    1993-01-01

    The California Foundation for Agriculture in the Classroom supports efforts to integrate agricultural education into K-12 science curriculum. Thirteen pilot agriculture/science units have been developed. (SK)

  13. Curriculum and Design Analysis of a Mathematics-Based Educational Television Program: A Case Study of Cyberchase Animated Television Series

    Science.gov (United States)

    Yusop, Farrah Dina

    2013-01-01

    This paper presents a curriculum and design analyses of an Emmy-award winning children educational television series, Cyberchase. Using Posner's (2004) four process of curriculum analysis framework, this paper addresses each of the components and relates it to the design principles undertaken by the Cyberchase production team. Media and document…

  14. 新课程理念下数学教学情境的创设%The Creation of Mathematics Teaching Situation in New Curriculum Idea

    Institute of Scientific and Technical Information of China (English)

    农克思

    2012-01-01

    良好的教学情境能激发学生学习的积极性,促进学生主动学习,对教师课堂教学的成功起着十分重要的作用。本文对新课程下数学教学情境的创设进行了探讨。%Good teaching situation can motivate students' learning initiative and promote students' positive learning and it plays an important role in teachers' successful classroom teaching. This paper discusses the creation of mathematics teaching situation in new curriculum.

  15. Assessment Strategies for Implementing Ngss in K12 Earth System Science Classrooms

    Science.gov (United States)

    McAuliffe, C.

    2016-12-01

    Several science education researchers have led assessment efforts that provide strategies particularly useful for evaluating the threedimensional learning that is central to NGSS (DeBarger, A. H., Penuel, W. R., Harris, C. J., Kennedy, C. K., 2016; Knight, A. M. & McNeill, K. L., 2015; McNeill, K. L., KatshSinger, R. & Pelletier, P., 2015; McNeill K.L., et.al., 2015; McNeill, K.L., & Krajcik, J.S., 2011; Penuel, W., 2016). One of the basic premises of these researchers is that, "Assessment is a practice of argument from evidence based on what students say, do, and write" and that "the classroom is the richest place to gather evidence of what students know (Penuel, W., 2016). The implementation of the NGSS in Earth System Science provides a unique opportunity for geoscience education researchers to study student learning and contribute to the development of this research as well as for geoscience educators to apply these approaches and strategies in their own work with K12 inservice and preservice educators. DeBarger, A. H., Penuel, W. R., Harris, C. J., Kennedy, C. K. (2016). Building an Assessment Argument to Design and Use Next Generation Science Assessments in Efficacy Studies of Curriculum Interventions. American†Journal†of†Evaluation†37(2) 174192Æ Knight, A. M. & McNeill, K. L. (2015). Comparing students' individual written and collaborative oral socioscientific arguments. International Journal of Environmental and Science Education.10(5), 23647. McNeill, K. L., KatshSinger, R. & Pelletier, P. (2015). Assessing science practices-Moving your class along a continuum. Science Scope. McNeill, K.L., & Krajcik, J.S. (2011). Supporting Grade 5-8 Students in Constructing Explanations in Science: The Claim, Evidence, and Reasoning Framework for Talk and Writing. Upper Saddle River, New Jersey: Pearson. Penuel, W. (2016). Classroom Assessment Strategies for NGSS Earth and Space Sciences. Implementing†the†NGSS†Webinar†Series, February 11, 2016.

  16. Strategies for Integrating Content from the USGCRP Climate and Health Assessment into the K-12 Classroom

    Science.gov (United States)

    Haine, D. B.

    2016-12-01

    That the physical environment shapes the lives and behaviors of people is certainly not news, but communicating the impact of a changing climate on human health and predicting the trajectory of these changes is an active area of study in public health. From air quality concerns to extreme heat to shifts in the range of disease vectors, there are many opportunities to make connections between Earth's changing climate and human health. While many science teachers understand that addressing human health impacts as a result of a changing climate can provide needed relevance, it can be challenging for teachers to do so given an already packed curriculum. This session will share instructional strategies for integrating content from the USGCRP Climate and Health Assessment (CHA) by enhancing, rather than displacing content related to climate science. This presentation will feature a data interpretation activity developed in collaboration with geoscientists at the University of North Carolina's Gillings School of Public Health to convey the connection between air quality, climate change and human health. This classroom activity invites students to read excerpts from the CHA and interpret data presented in the scientific literature, thus promoting scientific literacy. In summarizing this activity, I will highlight strategies for effectively engaging geoscientists in developing scientifically rigorous, STEM-focused educational activities that are aligned to state and national science standards and also address the realities of the science classroom. Collaborating with geoscientists and translating their research into classroom activities is an approach that becomes more pertinent with the advent of the Next Generation Science Standards (NGSS). Thus, the USGCRP Climate and Health Assessment represents an opportunity to cultivate science literacy among K-12 students while providing relevant learning experiences that promote integration of science and engineering practices as

  17. State P-20 Councils and Collaboration between K-12 and Higher Education

    Science.gov (United States)

    Rippner, Jennifer A.

    2017-01-01

    For decades, numerous observers have agreed on the value of collaboration between K-12 and higher education--especially as these sectors work toward increasing college readiness and success. While most states maintain separate agencies for K-12 and higher education, many states have worked to foster collaboration through state P-20 councils.…

  18. An Examination of Ideology among Selected K12 Christian School Superintendents

    Science.gov (United States)

    Dolson, Jimmy L.

    2013-01-01

    This research project focused on explaining the decision making process of K12 Christian school superintendents whose schools belong to the Association of Christian Schools International (ACSI) organization. In spite of their similar religious and philosophical beliefs, ACSI K12 Christian school superintendents differed significantly in…

  19. Development of an Attitude Scale to Assess K-12 Teachers' Attitudes toward Nanotechnology

    Science.gov (United States)

    Lan, Yu-Ling

    2012-01-01

    To maximize the contributions of nanotechnology to this society, at least 60 countries have put efforts into this field. In Taiwan, a government-funded K-12 Nanotechnology Programme was established to train K-12 teachers with adequate nanotechnology literacy to foster the next generation of Taiwanese people with sufficient knowledge in…

  20. An Exploratory Study on K-12 Teachers' Use of Technology and Multimedia in the Classroom

    Science.gov (United States)

    Martin, Florence; Carr, Marsha L.

    2015-01-01

    21st century has seen new technology and multimedia made available for integration in K-12 classrooms. This exploratory study examines K-12 teachers' use of technology and multimedia in the classroom in two southern counties in the Southeastern United States. The purpose of the study was to answer the following five research questions: 1) What…

  1. Stacks of Ideas: Activities for Library Media Center and Classroom K-12.

    Science.gov (United States)

    Oklahoma State Dept. of Education, Oklahoma City.

    Developed for library media specialists and teachers, this K-12 guide presents a model for combining library media skills with the regular instructional program. Following a K-12 scope and sequence for library and information skills, 15 elementary and junior high school units and 12 high school units are presented. The elementary and junior high…

  2. Preparing Teacher Candidates for Virtual Field Placements via an Exposure to K-12 Online Teaching

    Science.gov (United States)

    Luo, Tian; Hibbard, Laura; Franklin, Teresa; Moore, David Richard

    2017-01-01

    Aim/Purpose: The goal of this project was to determine what effects exposure to online K-12 teaching and learning activities had on teacher candidates' perceptions of K-12 online learning, how the exposure allowed teacher candidates to reach greater understanding of online pedagogy, and what effect such exposure had on teacher candidates'…

  3. Physical Education Teacher Educator's Perceptions toward and Understanding of K-12 Online Physical Education

    Science.gov (United States)

    Daum, David N.; Woods, Amelia M.

    2015-01-01

    K-12 online physical education (OLPE) is as an educational opportunity in at least 30 states in the US (NASPE, 2006; 2010; 2012). The purpose of this study was to examine physical education teacher educators' perceptions toward and understanding of K-12 OLPE. Bandura's Social Cognitive Theory (1986) served as the theoretical framework for this…

  4. Integrating Data Mining in Program Evaluation of K-12 Online Education

    Science.gov (United States)

    Hung, Jui-Long; Hsu, Yu-Chang; Rice, Kerry

    2012-01-01

    This study investigated an innovative approach of program evaluation through analyses of student learning logs, demographic data, and end-of-course evaluation surveys in an online K-12 supplemental program. The results support the development of a program evaluation model for decision making on teaching and learning at the K-12 level. A case study…

  5. An Exploratory Study on K-12 Teachers' Use of Technology and Multimedia in the Classroom

    Science.gov (United States)

    Martin, Florence; Carr, Marsha L.

    2015-01-01

    21st century has seen new technology and multimedia made available for integration in K-12 classrooms. This exploratory study examines K-12 teachers' use of technology and multimedia in the classroom in two southern counties in the Southeastern United States. The purpose of the study was to answer the following five research questions: 1) What…

  6. K-12 Teachers: Technology Use and the Second Level Digital Divide

    Science.gov (United States)

    Reinhart, Julie M.; Thomas, Earl; Toriskie, Jeanne M.

    2011-01-01

    This exploratory study examines differences in K-12 educators' use of technology for instruction across school economic factors. Survey data from 94 practicing K-12 teachers are analyzed. This study finds that schools' economic factors explain variation in how teachers use technology to promote higher-order thinking skills. Our findings support…

  7. K-12 Teacher Perceptions Regarding the Flipped Classroom Model for Teaching and Learning

    Science.gov (United States)

    Gough, Evan; DeJong, David; Grundmeyer, Trent; Baron, Mark

    2017-01-01

    A great deal of evidence can be cited from higher education literature on the effectiveness of the flipped classroom; however, very little research was discovered on the flipped classroom at the K-12 level. This study examined K-12 teachers' perceptions regarding the flipped classroom and differences in teachers' perceptions based on grade level…

  8. The Efficiency and Effectiveness of the K-12 Energy Technology Education Promotion Centers in Taiwan

    Science.gov (United States)

    Lee, Lung-Sheng

    2013-01-01

    In order to promote energy literacy for graders K-12, the Ministry of Education (MOE) in Taiwan initiated a K-12 Energy Technology Education Project in September 2010. This 40-month project has one project office affiliated to a university, and 18 promotion centers affiliated to 18 schools--including 5 regional centers for upper-secondary schools…

  9. Development of an Attitude Scale to Assess K-12 Teachers' Attitudes toward Nanotechnology

    Science.gov (United States)

    Lan, Yu-Ling

    2012-01-01

    To maximize the contributions of nanotechnology to this society, at least 60 countries have put efforts into this field. In Taiwan, a government-funded K-12 Nanotechnology Programme was established to train K-12 teachers with adequate nanotechnology literacy to foster the next generation of Taiwanese people with sufficient knowledge in…

  10. Efficacy of supercritical carbon dioxide for nonthermal inactivation of Escherichia coli K12 in apple cider

    Science.gov (United States)

    This study evaluated the efficacy of a supercritical carbon dioxide (SCCO2) system with a gas-liquid porous metal contactor for eliminating Escherichia coli K12 in apple cider. Pasteurized, preservative-free apple cider was inoculated with E. coli K12 and processed using the SCCO2 system at CO2 conc...

  11. K-12 Teachers' Perceptions of School Policy and Fear of School Violence

    Science.gov (United States)

    Ricketts, Melissa L.

    2007-01-01

    Since the 1990s, schools have focused their attention on policies designed to improve school safety. Most researches on school violence policies have concentrated on the needs of students and administrators. This study investigated the impact of school violence policies on K-12 teachers' fear. Using self-report data from 447 K-12 teachers from a…

  12. State P-20 Councils and Collaboration between K-12 and Higher Education

    Science.gov (United States)

    Rippner, Jennifer A.

    2017-01-01

    For decades, numerous observers have agreed on the value of collaboration between K-12 and higher education--especially as these sectors work toward increasing college readiness and success. While most states maintain separate agencies for K-12 and higher education, many states have worked to foster collaboration through state P-20 councils.…

  13. Value Added Models and the Implementation of the National Standards of K-12 Physical Education

    Science.gov (United States)

    Seymour, Clancy M.; Garrison, Mark J.

    2017-01-01

    The implementation of value-added models of teacher evaluation continue to expand in public education, but the effects of using student test scores to evaluate K-12 physical educators necessitates further discussion. Using the five National Standards for K-12 Physical Education from the Society of Health and Physical Educators America (SHAPE),…

  14. Extended Safety Data for the Oral Cavity Probiotic Streptococcus salivarius K12.

    Science.gov (United States)

    Burton, J P; Chilcott, C N; Wescombe, P A; Tagg, J R

    2010-10-01

    Previous studies of the bacteriocin-producing Streptococcus salivarius K12 monitored a variety of intrinsic strain characteristics of potential relevance to its application as an oral probiotic in humans. These included the content of antibiotic resistance and virulence determinants, the production of deleterious metabolic by-products and its genetic stability. In the present study, we examined additional safety factors including the responses of rats to either short- or long-term oral dosing with strain K12 preparations. In addition, the potential genotoxicity of strain K12 was tested using a bacterial reverse mutation assay. To determine the occurrence and concentrations in human saliva of S. salivarius having the same bacteriocin phenotype as strain K12, saliva samples from 780 children were evaluated. The level of dosing with strain K12 required to achieve oral cavity colonization levels similar to those occurring naturally for this type of bacteriocin-producing S. salivarius was established using 100 human subjects. Following the oral instillation of lyophilized S. salivarius K12 cells in these subjects, its persistence was not at levels higher than those found naturally for this type of bacterium. The various sets of data obtained in this study showed no evidence of genotoxicity and no acute or subacute toxicity effects associated with strain K12. Based on the previously published data, the long history of use by humans and the information presented here, it is concluded that S. salivarius K12 is safe for human consumption.

  15. Preparing Teacher Candidates for Virtual Field Placements via an Exposure to K-12 Online Teaching

    Science.gov (United States)

    Luo, Tian; Hibbard, Laura; Franklin, Teresa; Moore, David Richard

    2017-01-01

    Aim/Purpose: The goal of this project was to determine what effects exposure to online K-12 teaching and learning activities had on teacher candidates' perceptions of K-12 online learning, how the exposure allowed teacher candidates to reach greater understanding of online pedagogy, and what effect such exposure had on teacher candidates'…

  16. Development and Evaluation of Food Safety Modules for K-12 Science Education

    Science.gov (United States)

    Chapin, Travis K.; Pfuntner, Rachel C.; Stasiewicz, Matthew J.; Wiedmann, Martin; Orta-Ramirez, Alicia

    2015-01-01

    Career and educational opportunities in food science and food safety are underrecognized by K-12 students and educators. Additionally, misperceptions regarding nature of science understanding persist in K-12 students despite being emphasized as an important component of science education for over 100 y. In an effort to increase awareness…

  17. A Critique of the Brave New World of K-12 Education

    Science.gov (United States)

    Salmani Nodoushan, Mohammad Ali

    2008-01-01

    Over the past few decades life style has changed so rapidly that remote areas of the Earth are now inhabited by human beings. Technology has also developed and people can stay at home and have access to virtual schools. This has stimulated the need for K-12 Education. K-12 education has emerged from the no-child-left-behind concerns of governments…

  18. Lunar and Planetary Science XXXV: Engaging K-12 Educators, Students, and the General Public in Space Science Exploration

    Science.gov (United States)

    2004-01-01

    The session "Engaging K-12 Educators, Students, and the General Public in Space Science Exploration" included the following reports:Training Informal Educators Provides Leverage for Space Science Education and Public Outreach; Teacher Leaders in Research Based Science Education: K-12 Teacher Retention, Renewal, and Involvement in Professional Science; Telling the Tale of Two Deserts: Teacher Training and Utilization of a New Standards-based, Bilingual E/PO Product; Lindstrom M. M. Tobola K. W. Stocco K. Henry M. Allen J. S. McReynolds J. Porter T. T. Veile J. Space Rocks Tell Their Secrets: Space Science Applications of Physics and Chemistry for High School and College Classes -- Update; Utilizing Mars Data in Education: Delivering Standards-based Content by Exposing Educators and Students to Authentic Scientific Opportunities and Curriculum; K. E. Little Elementary School and the Young Astronaut Robotics Program; Integrated Solar System Exploration Education and Public Outreach: Theme, Products and Activities; and Online Access to the NEAR Image Collection: A Resource for Educators and Scientists.

  19. Development of the Advanced Energy Design Guide for K-12 Schools -- 50% Energy Savings

    Energy Technology Data Exchange (ETDEWEB)

    Bonnema, E.; Leach, M.; Pless, S.; Torcellini, P.

    2013-02-01

    This Technical Support Document (TSD) describes the process and methodology for the development of the Advanced Energy Design Guide for K-12 School Buildings: Achieving 50% Energy Savings Toward a Net Zero Energy Building (AEDG-K12) (ASHRAE et al. 2011a). The AEDG-K12 provides recommendations for achieving 50% whole-building energy savings in K-12 schools over levels achieved by following ANSI/ASHRAE/IESNA Standard 90.1-2004, Energy Standard for Buildings Except Low-Rise Residential Buildings (Standard 90.1-2004) (ASHRAE 2004b). The AEDG-K12 was developed in collaboration with the American Society of Heating, Refrigerating and Air-Conditioning Engineers (ASHRAE), the American Institute of Architects (AIA), the Illuminating Engineering Society of North America (IES), the U.S. Green Building Council (USGBC), and the U.S. Department of Energy (DOE).

  20. The mathematics literacy and mathematics curriculum of South Africa on the grades 10 to 12%南非高中数学素养课程与数学课程的起源、发展及启示❉

    Institute of Scientific and Technical Information of China (English)

    陆吉健; 刘艳平; 张维忠

    2015-01-01

    基于南非基础教育中高中数学双课程的特殊性,对南非基础教育中高中“数学素养”与“数学”课程的起源和发展进行分析探讨。以2003年和2012年公布的高中“数学素养”与“数学”课程标准的变化为切入点,着眼我国高中数学课程标准修订和课程改革。南非数学课程中的课程生活化定位、课程内容和情境的细化和复杂化、课程信心指向上的提升、对课程评价上的重视等,都对我国高中数学课程改革有启示与借鉴作用。%Based on the particularity of double mathematics curriculum on Grades 10—12 of basic education in South Africa, the origin and the development of"Mathematics Literacy"and"Mathematics"curriculum on Grades 10—12 in South African were analysised and discussed.Specifically, regarding the change and devel-opment of the "mathematics literacy"and "mathematics"curriculum standard released in 2003 and 2012 as the breakthrough point, it was focused on the revision of the high school mathematics curriculum standard and the reform of curriculum in our country.Finally, the revelation was summarized as follow:the life orientation of curriculum, the refinement and complexity of curriculum′s content and context, the upgrading of the point to confidence of curriculum, the degree of attention in curriculum evaluation.

  1. 《经济数学》课程改革的探索与实践%Exploration and Practice of Economic Mathematics Curriculum Reform

    Institute of Scientific and Technical Information of China (English)

    秦晓艳

    2012-01-01

    《经济数学》主要突出以“数学为主体、经济为应用”的思想,实现了数学与经济的有机结合,在实际教学中,从优化教材内容体系,改革教学方法与手段,茂革完善考核、评价机制几方面进行了阐述,希望能对《经济数学》的课程改革作一些有效的探索。%Economic Mathematics highlights the thinking "Mathematics as the main economic applications," to achieve the organic combination of mathematical and economic. In actual teaching, we hope that some effective exploration of economic mathematics curriculum reform should be done, from the optimization of the system of teaching materials, the reform of teaching methods and means, reform and improve the examination, the evaluation mechanism.

  2. Snow snakes and science agency: Empowering American Indian students through a culturally-based science, technology, engineering, and mathematics (STEM) curriculum

    Science.gov (United States)

    Miller, Brant Gregory

    Mainstream curricula have struggled to provide American Indian students with meaningful learning experiences. This research project studied a novel approach to engaging students with science, technology, engineering, and mathematics (STEM) content through a culturally-based context. The traditional American Indian game of Snow Snakes (shushumeg in Ojibwe) presented a highly engaging context for delivering STEM content. Through the engaging context of snow snakes, the designed STEM curriculum explicitly applied mathematics (scaling and data), and science (force and motion) to an engineering prototype iteration that used available materials and tools (technology) for success. It was hypothesized that by engaging students through the carefully integrated STEM curriculum, driven by the culturally based context of snow snakes, students would exhibit an increase in science agency and achievement. The overarching research question explored for this study was: How does a culturally-based and integrated STEM curriculum impact student's science agency? Associated sub-questions were: (1) What does science agency look like for 6th grade students? (2) What key experiences are involved in the development of science agency through a culturally-based STEM curriculum context? And (3) What are the impacts on the community associated with the implementation of a culturally-based STEM curriculum? A case study research design was implemented for this research. Yin (2003) defines a case study as investigating a phenomenon (e.g. science agency) which occurs within authentic contexts (e.g. snow snakes, Adventure Learning, and Eagle Soaring School) especially when the boundaries between phenomenon and context are unclear. For this case study Eagle Soaring School acted as the bounded case with students from the 6th grade class representing the embedded units. Science agency was the theoretical framework for data analysis. Major findings were categorized as science and STEM learning, agency

  3. Antimicrobial activity of Streptococcus salivarius K12 on bacteria involved in oral malodour.

    Science.gov (United States)

    Masdea, L; Kulik, E M; Hauser-Gerspach, I; Ramseier, A M; Filippi, A; Waltimo, T

    2012-08-01

    To investigate the antimicrobial activity of the bacteriocin-producing strain Streptococcus salivarius K12 against several bacteria involved in halitosis. The inhibitory activity of S. salivarius K12 against Solobacterium moorei CCUG39336, four clinical S. moorei isolates, Atopobium parvulum ATCC33793 and Eubacterium sulci ATCC35585 was examined by a deferred antagonism test. Eubacterium saburreum ATCC33271 and Parvimonas micra ATCC33270, which have been tested in previous studies, served as positive controls, and the Gram-negative strain Bacteroides fragilis ZIB2800 served as a negative control. Additionally, the occurrence of resistance in S. moorei CCUG39336 to S. salivarius K12 was analysed by either direct plating or by passage of S. moorei CCUG39336 on chloroform-inactived S. salivarius K12-containing agar plates. S. salivarius K12 suppressed the growth of all Gram-positive bacteria tested, but the extent to which the bacteria were inhibited varied. E. sulci ATCC35585 was the most sensitive strain, while all five S. moorei isolates were inhibited to a lesser extent. Natural resistance seems to be very low in S. moorei CCUG39336, and there was only a slight decrease in sensitivity after exposure to S. salivarius K12 over 10 passages. Our studies demonstrate that S. salivarius K12 has antimicrobial activity against bacteria involved in halitosis. This strain might be an interesting and valuable candidate for the development of an antimicrobial therapy for halitosis. Copyright © 2012 Elsevier Ltd. All rights reserved.

  4. Curriculum Research in the Netherlands

    NARCIS (Netherlands)

    Wardekker, W.L.; Volman, M.L.L.; Terwel, J.

    2014-01-01

    This chapter examines the curriculum research in the Netherlands. The conditions influencing the curriculum field are described, along with the struggle for a common curriculum in the Netherlands. The waves of curriculum theory are presented and illustrated by the case of mathematics. Finally, the r

  5. Introduction of CAA into a mathematics course for technology students to address a change in curriculum requirements

    OpenAIRE

    Pollock, M.J.

    2002-01-01

    The mathematical requirements for engineering, science and technology students has been debated for many years and concern has been expressed about the mathematical preparedness of students entering higher education. This paper considers a mathematics course that has been specifically designed to address some of these issues for technology education students. It briefly chronicles the changes that have taken place over its lifetime and evaluates the introduction of Computer Assisted Assessmen...

  6. In Search of the Active Site of PMMO Enzyme: Partnership between a K-12 Teacher, a Graduate K-12 Teaching Fellow, and a Research Mentor

    Science.gov (United States)

    Bearden, Katherine K.; Mainardi, Daniela S.; Culligan, Tanya

    2009-01-01

    The partnership between a K-12 teacher (Culligan), an NSF GK-12 Teaching Fellow graduate student (Bearden), and a Louisiana Tech faculty member (Mainardi) collaborating in a research and education project is described in this work. The unique grouping of these three researchers allows for maximum dissemination of developed modules. By the end of…

  7. Translating Research Into E/PO That Addresses Real Needs in K-12 Classrooms

    Science.gov (United States)

    van der Veen, Wil E.; Belbruno, E. A.; Roelofsen Moody, T.

    2009-01-01

    One of the challenges in NASA ROSES E/PO is translating cutting edge research into products for which there is a demonstrated need. Rather than working from the premise that the "research is so cool’ that K-12 students or the public should learn about it, it is key to consult with the target audience to identify what their needs really are. The partnership between NJACE, Innovative Orbital Design, Inc., and Princeton offered a unique opportunity to translate intriguing but theoretical and mathematical research related to low energy orbits into a valuable education product. NJACE worked with educators to identify several needs with an intellectual link to this research: 1) Understanding of Gravity and Newton's Laws, 2) Understanding of Energy and Energy Transformations, 3) Integration of the sciences with math and technology, and 4) Knowledge of NASA's past accomplishments (such as the moon landings). Based on these identified needs, two science units were developed for students in grades 5-12 that integrate astronomy, physics, and the life sciences with math and technology. In addition an engaging public lecture was developed that tells a personal story of the quest for more economic space travel. In the past year, the workshops have been presented on three occasions, reaching over 75 teachers and demand exceeded available space with numerous teachers on waiting lists. The lecture has been presented numerous times at planetariums, museums, amateur astronomy and other clubs. We hope that our partnership will serve as a useful example of how to translate cutting edge research into valuable education products with an identified need. We will provide handouts with links to a website where the products and training can be downloaded in hope that others will help disseminate our product.

  8. VISL: A Virtual Ice Sheet Laboratory For Outreach and K-12 Education

    Science.gov (United States)

    Cheng, D. L. C.; Halkides, D. J.; Larour, E. Y.; Moore, J.; Dunn, S.; Perez, G.

    2015-12-01

    We present an update on our developing Virtual Ice Sheet Laboratory (VISL). Geared to K-12 classrooms and the general public, VISL's main goal is to improve climate literacy, especially in regards to the crucial role of the polar ice sheets in Earth's climate and sea level. VISL will allow users to perform guided experiments using the Ice Sheet System Model (ISSM), a state-of-the-art ice flow model developed at NASA's Jet Propulsion Laboratory and UC Irvine that simulates the near-term evolution of the ice sheets on Greenland and Antarctica. VISL users will access ISSM via a graphical interface that can be launched from a web browser on a computer, tablet or smart phone. Users select climate conditions and run time by moving graphic sliders then watch how a given region evolves in time under those conditions. Lesson plans will include conceptual background, instructions for table top experiments related to the concepts addressed in a given lesson, and a guide for performing model experiments and interpreting their results. Activities with different degrees of complexity will aim for consistency with NGSS Physical Science criteria for different grade bands (K-2, 3-5, 6-8, and 9-12), although they will not be labeled as such to encourage a broad user base. Activities will emphasize the development of physical intuition and critical thinking skills, understanding conceptual and computational models, as well as observation recording, concept articulation, hypothesis formulation and testing, and mathematical analysis. At our present phase of development, we seek input from the greater science education and outreach communities regarding VISL's planned content, as well as additional features and topic areas that educators and students would find useful.

  9. An evaluation of integrated curriculum as it exists in mathematics and science SSS as well as the subsequent supportive presentation of those standards in eighth grade mathematics and science textbooks

    Science.gov (United States)

    Gill, Clara Joanne Schneberger

    This study attempted to verify points of intersection (POIs) between mathematics and science in the eighth grade Sunshine State Standards (SSS), and to develop a valid and reliable instrument to evaluate these POIs as they were presented in the respective mathematics and science textbooks approved for use in Florida public schools. Shannon and Weaver (1998) delineated a process for content analysis that informed the design of this analysis. The process began with an analysis of the SSS to uncover POIs between mathematics and science; considered effective strategies for presenting these points of intersection in the classroom; and examined the textbooks for a mutually supportive presentation of the POIs between the two domains. The criterion for textbook evaluation was synthesized from documents used by the National Research Council (NRC, 2004) and Project 2061 (Roseman, Kulm, Shuttleworth, 2001. These criteria were examined in terms of measureable elements of textbook design, vocabulary, inquiry and problem solving in order to create integrated objectives, which were then operationalized so that each objective could be evaluated using the Textbook Evaluation Document (TED). The validity of the TED was insured by the transparency of the process. Reliability was determined in two steps, first to determine the most reliable segments of the document and finally to confirm the reliability of those segments. It was determined that the vocabulary section of the TED consistently produced reliability scores above 70% with variation of Supportive Curriculum Scores (SCS) between textbooks. This indicated that a measure of supportive vocabulary could be generated for use in future studies for example correlating supportive curriculum with student achievement.

  10. An Interdisciplinary Collaboration between Computer Engineering and Mathematics/Bilingual Education to Develop a Curriculum for Underrepresented Middle School Students

    Science.gov (United States)

    Celedón-Pattichis, Sylvia; LópezLeiva, Carlos Alfonso; Pattichis, Marios S.; Llamocca, Daniel

    2013-01-01

    There is a strong need in the United States to increase the number of students from underrepresented groups who pursue careers in Science, Technology, Engineering, and Mathematics. Drawing from sociocultural theory, we present approaches to establishing collaborations between computer engineering and mathematics/bilingual education faculty to…

  11. Promoting K-12 Community Research and Service through the Washington Earth Science Initiative.

    Science.gov (United States)

    Field, John; DeBari, Susan; Gallagher, Michael

    2003-01-01

    Describes a K-12 teacher enhancement program in Washington state that provides teachers with the background knowledge, human and material resources, and time to develop community-based studies on environmental issues facing the citizens of Washington. (Author/KHR)

  12. Development of an Attitude Scale to Assess K-12 Teachers' Attitudes toward Nanotechnology

    Science.gov (United States)

    Lan, Yu-Ling

    2012-05-01

    To maximize the contributions of nanotechnology to this society, at least 60 countries have put efforts into this field. In Taiwan, a government-funded K-12 Nanotechnology Programme was established to train K-12 teachers with adequate nanotechnology literacy to foster the next generation of Taiwanese people with sufficient knowledge in nanotechnology. In the present study, the Nanotechnology Attitude Scale for K-12 teachers (NAS-T) was developed to assess K-12 teachers' attitudes toward nanotechnology. The NAS-T included 23 Likert-scale items that can be grouped into three components: importance of nanotechnology, affective tendencies in science teaching, and behavioural tendencies to teach nanotechnology. A sample of 233 K-12 teachers who have participated in the K-12 Nanotechnology Programme was included in the present study to investigate the psychometric properties of the NAS-T. The exploratory factor analysis of this teacher sample suggested that the NAS-T was a three-factor model that explained 64.11% of the total variances. This model was also confirmed by the confirmatory factor analysis to validate the factor structure of the NAS-T. The Cronbach's alpha values of three NAS-T subscales ranged from 0.89 to 0.95. Moderate to strong correlations among teachers' NAS-T domain scores, self-perception of own nanoscience knowledge, and their science-teaching efficacy demonstrated good convergent validity of the NAS-T. As a whole, psychometric properties of the NAS-T indicated that this instrument is an effective instrument for assessing K-12 teachers' attitudes toward nanotechnology. The NAS-T will serve as a valuable tool to evaluate teachers' attitude changes after participating in the K-12 Nanotechnology Programme.

  13. Zero Energy Schools: Designing for the Future: Zero Energy Ready K-12 Schools

    Energy Technology Data Exchange (ETDEWEB)

    Torcellini, Paul A [National Renewable Energy Laboratory (NREL), Golden, CO (United States)

    2017-09-29

    Designing, building, and operating zero energy ready K-12 schools provides benefits for districts, students, and teachers. Optimizing energy efficiency is important in any building, but it's particularly important in K-12 schools. Many U.S. school districts struggle for funding, and improving a school building's energy efficiency can free up operational funds that may then be available for educational and other purposes.

  14. Genome sequence of the lantibiotic bacteriocin producer Streptococcus salivarius strain K12.

    Science.gov (United States)

    Barretto, Caroline; Alvarez-Martin, Pablo; Foata, Francis; Renault, Pierre; Berger, Bernard

    2012-11-01

    Streptococcus salivarius is a prevalent commensal species of the oropharyngeal tract. S. salivarius strain K12 is an isolate from the saliva of a healthy child, used as an oral probiotic. Here, we report its genome sequence, i.e., the full sequence of the 190-kb megaplasmid pSsal-K12 and a high-quality draft 2.2-Gb chromosomal sequence.

  15. The National Mathematics Curriculum for BEP (Basic Education Programme) and the MDG (Millennium Development Goals) for Mathematics Teachers in Nigeria: Teachers' Perception and Readiness

    Science.gov (United States)

    Ekwueme, Cecilia Olunwa; Meremikwu, Anne; Kalu, Nnenna

    2013-01-01

    The study used a survey design. The instrument was teachers' questionnaire and interview on awareness and readiness. The interview was administered to the different categories of the respondents using a 4-point Likert scale. Two hundred mathematics teachers were randomly selected from 100 schools (public and private) using stratified random…

  16. Living in a Materials World: Materials Science Engineering Professional Development for K-12 Educators

    Energy Technology Data Exchange (ETDEWEB)

    Anne Seifert; Louis Nadelson

    2011-06-01

    Advances in materials science are fundamental to technological developments and have broad societal impacs. For example, a cellular phone is composed of a polymer case, liquid crystal displays, LEDs, silicon chips, Ni-Cd batteries, resistors, capacitors, speakers, microphones all of which have required advances in materials science to be compacted into a phone which is typically smaller than a deck of cards. Like many technological developments, cellular phones have become a ubiquitous part of society, and yet most people know little about the materials science associated with their manufacture. The probable condition of constrained knowledge of materials science was the motivation for developing and offering a 20 hour fourday course called 'Living in a Materials World.' In addition, materials science provides a connection between our every day experiences and the work of scientists and engineers. The course was offered as part of a larger K-12 teacher professional development project and was a component of a week-long summer institute designed specifically for upper elementary and middle school teachers which included 20 hour content strands, and 12 hours of plenary sessions, planning, and collaborative sharing. The focus of the institute was on enhancing teacher content knowledge in STEM, their capacity for teaching using inquiry, their comfort and positive attitudes toward teaching STEM, their knowledge of how people learn, and strategies for integrating STEM throughout the curriculum. In addition to the summer institute the participating teachers were provided with a kit of about $300 worth of materials and equipment to use to implement the content they learned in their classrooms. As part of this professional development project the participants were required to design and implement 5 lesson plans with their students this fall and report on the results, as part of the continuing education course associated with the project. 'Living in a

  17. Educating K-12 Students about Glacier Dynamics in a Changing Climate

    Science.gov (United States)

    Stearns, L. A.; Hamilton, G. S.

    2005-12-01

    Public awareness of climate change is growing in the United States. Popular movies, books and magazines are frequently addressing the issue of global warming - some with careful scientific research, but many with unrealistic statements. Early education about the basic principles and processes of climate change is necessary for the general public to distinguish fact from fiction. The U.S. National Science Foundation's GK-12 program (GK-12; grades K to 12) currently in its sixth year, provides an opportunity for scientific enrichment for students and their teachers at the K-12 level through collaborative pairings with science and engineering graduate students (the Fellows). The NSF GK-12 program at the University of Maine has three goals: to enrich the scientific education of the students by providing role models, expertise, and equipment that may not be accessible otherwise; to provide professional development for the teachers through curriculum enrichment and participation at science conferences; and to improve the teaching and communication skills of the Fellows. The University of Maine is one of over 100 U. S. universities participating in this program. During the 2004-05 academic year, 11 graduate and one undergraduate student Fellows, advised by University faculty members, taught at schools across the state of Maine. Fellows from, biology, earth science, ecology, engineering, food science, forestry, and marine science, and taught in their area of expertise. We created a hands-on activity for middle and high school students that describes glacier mass balance in a changing climate. The students make a glacier using glue, water and detergent ('flubber') and construct a glacier valley using plastic sheeting. Flubber behaves in mechanically similar ways to glacier ice, undergoing plastic deformation at low stresses and exhibiting brittle failure at high stresses. Students are encouraged to run several tests with different values for valley slope, glacier mass

  18. Comparison and enlightenment of the ifve elementary mathematics curriculum Found on the latest elementary mathematics curriculum standards of ifve countries, china, American, Australia, England and Japan%五国小学数学课程内容的比较及启示*--基于现行中美澳英日小学数学课程标准

    Institute of Scientific and Technical Information of China (English)

    刘久成

    2016-01-01

    Comparing the latest course contents of elementary school mathematics with china, American, Australia, England and Japan in different learning ifelds, to refer the tradition and reality of our elementary school mathematical education, it reveal us that to value the algebraic thinking in early time teaching, to emphasize the backbone status of arithmetic in elementary school mathematics, meanwhile focusing on applying mathematics to solve the problem, and properly grasping the breadth and depth of the mathematics curriculum.%按不同学习领域分别比较现行中美澳英日五国小学数学课程内容,对照我国小学数学教育的传统与现实,启示如下:凸显算术知识在小学数学中的主干地位,注重应用数学解决问题,重视代数思维的早期渗透,恰当把握数学课程内容的广度和深度。

  19. Potentials for Spatial Geometry Curriculum Development with Three-Dimensional Dynamic Geometry Software in Lower Secondary Mathematics

    Science.gov (United States)

    Miyazaki, Mikio; Kimiho, Chino; Katoh, Ryuhei; Arai, Hitoshi; Ogihara, Fumihiro; Oguchi, Yuichi; Morozumi, Tatsuo; Kon, Mayuko; Komatsu, Kotaro

    2012-01-01

    Three-dimensional dynamic geometry software has the power to enhance students' learning of spatial geometry. The purpose of this research is to clarify what potential using three-dimensional dynamic geometry software can offer us in terms of how to develop the spatial geometry curriculum in lower secondary schools. By focusing on the impacts the…

  20. Potentials for Spatial Geometry Curriculum Development with Three-Dimensional Dynamic Geometry Software in Lower Secondary Mathematics

    Science.gov (United States)

    Miyazaki, Mikio; Kimiho, Chino; Katoh, Ryuhei; Arai, Hitoshi; Ogihara, Fumihiro; Oguchi, Yuichi; Morozumi, Tatsuo; Kon, Mayuko; Komatsu, Kotaro

    2012-01-01

    Three-dimensional dynamic geometry software has the power to enhance students' learning of spatial geometry. The purpose of this research is to clarify what potential using three-dimensional dynamic geometry software can offer us in terms of how to develop the spatial geometry curriculum in lower secondary schools. By focusing on the impacts the…

  1. Empowerment and Inclusivity: A Case Study of Mathematics and Science Curriculum in Pre-Service Teacher Education.

    Science.gov (United States)

    Nixon, Helen; Roberts, David

    In 1993, a team of seven researchers at the University of South Australia investigated student diversity among its population in relation to the curriculum in action, student experiences of exclusion and inclusion, and staff experiences of attempting to understand and counter exclusion. This paper reports on a case study based on the newly…

  2. Junior High School Mathematics Teaching in the Light of New Curriculum Standard%新课标下初中数学教学浅谈

    Institute of Scientific and Technical Information of China (English)

    吴琼

    2011-01-01

    新课程强调以学生发展为本,如何更好地提高初中数学教学效果呢?一要形成良好的师生关系;二要改变学生的学习状态,推行研究性学习;三要加强教师的学习,提高自身的综合素质。%New curriculum emphasizes students-orientation and how to improve junior high school mathematics teaching effect? One is developing good relationship between teachers and students; two is changing students' learning state and implementing inquiry learning; three is strengthening teachers' learning and improving their quality.

  3. The Effect of “Big Maths for Little Kids” Curriculum on Mathematical Development of 61-72 Month–Old Children

    Directory of Open Access Journals (Sweden)

    Meryem ÇELİK

    2013-10-01

    Full Text Available This study aimed to investigate the effect of “Big Math for Little Kids” curriculum on mathematical development of 61-72 month-old children attending kindergartens. This experimental study had a pre-test – post-test design. The sample of the study was composed of a total of 42 61-72 month-old children attending kindergartens of the randomly selected primary schools. In the study, "Progress in Maths 6 Test" was used to collect data. As a result of this study, it was found out that average Progress in Maths 6 Test scores of children in the experimental group were significantly higher than those of the ones in the control group.

  4. Thinking and Understanding of Independent College Advanced Mathematics Curriculum Reform%独立学院高数课程改革的思考与认识

    Institute of Scientific and Technical Information of China (English)

    赵志琴

    2012-01-01

    根据独立学院高等数学教学的现状,归纳出课程结构体系和教学内容进行改革的必要性,并提出独立学院高等数学教学改革应发挥自己独特的办学理念,为社会培养更多的应用型人才。%According to the independent college advanced mathematics teaching, summed up the curriculum system and teaching content reform necessity, and put forward the higher math teaching reform in independent institutes should develop their own unique idea of running a school,to cultivate more talents of application.

  5. Senior High School Mathematics Teaching in the Light of New Curriculum Standard%新课标下的高中数学教学

    Institute of Scientific and Technical Information of China (English)

    翟皎玲

    2011-01-01

    新课程是素质教育从形式走向实质、从探索走向实施的标志。在数学教学中,我们必须重视对学生进行创新意识和创新精神的培养,充分发挥课堂这一主渠道的作用,激发学生学习的积极性,提高学生的全面素质。%New curriculum is the quality education's symbol from the form to essence and from the exploration to implementation. In mathematics teaching, we must emphasize the cultivation of students' innovative awareness and innovative spirit, bring the role of cla

  6. Is It Finally Time To Implement "Curriculum S"?

    Science.gov (United States)

    Hake, Richard R.

    This document describes the need for improved physics education of K-12 teachers and suggests "Curriculum S" as a possible partial solution. "Curriculum S" for synthesis intends to serve students who want to study physics as background for something other than physics research. The document presents some models of "Curriculum S" programs proposed…

  7. Science achievement as an indicator of educational opportunity available in rural K--12 districts in Texas

    Science.gov (United States)

    Capehart, Cheryl Louise

    Purpose of the study. This study examined Rural K--12 Texas districts to investigate whether science achievement could serve as a gauge to measure the availability and quality of rigorous educational opportunities in Rural Texas districts. Procedure. A Case II criterion-group design was used; 2 groups of districts were selected based on their 3-year performances on the 8th grade Science Texas Assessment of Academic Skills (TAAS)---the statewide criterion-referenced test. The High Performing Group (HPG) was composed of 30 top performing districts; the Low Performing Group (LPG) was composed of 30 lowest performing districts. Data collection was limited to archived quantitative data from Texas Education Agency's open records. Achievement variables were percent passing (1) Science TASS, (2) Biology End-of-Course (EoC) test and (3) the composite passing all Reading, Writing, and Mathematics TAAS. Academic variables were percent participating in (1) advanced courses, (2) rigorous graduation programs, and (3) college entrance examinations. District quality indicators also included 3 budget variables: (1) average teacher salary, (2) per pupil instructional expenditure, (3) percent allocated for instructional leadership; and 4 staff variables: (1) percent teachers fully certified, (2) percent teachers with advanced degrees, (3) average years teacher experience, (4) average percent non-turnover of teachers. One score per variable was obtained for each district. The HPG and LPG were compared on each variable using the group means, standard deviations, standard errors of the mean, Levene's test for equality of variance, and a t test for equality of means with a 95% confidence level. The Pearson correlation with two-tailed significance calculated the relationship of each independent variable (budget and staff factors) to each dependent variable (performance measures). Science TASS and a Combined Science score (grand mean of Science TASS & Biology EoC passing rates) were

  8. A preliminary study of the effect of probiotic Streptococcus salivarius K12 on oral malodour parameters.

    Science.gov (United States)

    Burton, J P; Chilcott, C N; Moore, C J; Speiser, G; Tagg, J R

    2006-04-01

    To determine whether dosing with bacteriocin-producing Streptococcus salivarius following an antimicrobial mouthwash effects a change in oral malodour parameters and in the composition of the oral microbiota of subjects with halitosis. Twenty-three subjects with halitosis undertook a 3-day regimen of chlorhexidine (CHX) mouth rinsing, followed at intervals by the use of lozenges containing either S. salivarius K12 or placebo. Assessment of the subjects' volatile sulphur compound (VSC) levels 1 week after treatment initiation showed that 85% of the K12-treated group and 30% of the placebo group had substantial (>100 ppb) reductions. The bacterial composition of the saliva was monitored by culture and PCR-denaturing gradient gel electrophoresis (PCR-DGGE). Changes in the PCR-DGGE profiles occurred in most subjects following K12 treatment. In vitro testing showed that S. salivarius K12 suppressed the growth of black-pigmented bacteria in saliva samples and also in various reference strains of bacteria implicated in halitosis. Administration of bacteriocin-producing S. salivarius after an oral antimicrobial mouthwash reduces oral VSC levels. The outcome of this preliminary study indicates that the replacement of bacteria implicated in halitosis by colonization with competitive bacteria such as S. salivarius K12 may provide an effective strategy to reduce the severity of halitosis.

  9. Effects of sound exposure on the growth and intracellular macromolecular synthesis of E. coli k-12

    Directory of Open Access Journals (Sweden)

    Shaobin Gu

    2016-04-01

    Full Text Available Microbes, as one of the primary producers of the biosphere, play an important role in ecosystems. Exploring the mechanism of adaptation and resistance of microbial population to various environmental factors has come into focus in the fields of modern microbial ecology and molecular ecology. However, facing the increasingly serious problem of acoustic pollution, very few efforts have been put forth into studying the relation of single cell organisms and sound field exposure. Herein, we studied the biological effects of sound exposure on the growth of E. coli K-12 with different acoustic parameters. The effects of sound exposure on the intracellular macromolecular synthesis and cellular morphology of E. coli K-12 were also analyzed and discussed. Experimental results indicated that E. coli K-12 exposed to sound waves owned a higher biomass and a faster specific growth rate compared to the control group. Also, the average length of E. coli K-12 cells increased more than 27.26%. The maximum biomass and maximum specific growth rate of the stimulation group by 8000 Hz, 80dB sound wave was about 1.7 times and 2.5 times that of the control group, respectively. Moreover, it was observed that E. coli K-12 can respond rapidly to sound stress at both the transcriptional and posttranscriptional levels by promoting the synthesis of intracellular RNA and total protein. Some potential mechanisms may be involved in the responses of bacterial cells to sound stress.

  10. The K-12 Educational Technology Value Chain: Apps for Kids, Tools for Teachers and Levers for Reform

    Science.gov (United States)

    Pierce, Glenn L.; Cleary, Paul F.

    2016-01-01

    Historically implementing, maintaining and managing educational technology has been difficult for K-12 educational systems. Consequently, opportunities for significant advances in K-12 education have often gone unrealized. With the maturation of Internet delivered services along with K-12 institutional trends, educational technologies are poised…

  11. The K-12 Educational Technology Value Chain: Apps for Kids, Tools for Teachers and Levers for Reform

    Science.gov (United States)

    Pierce, Glenn L.; Cleary, Paul F.

    2016-01-01

    Historically implementing, maintaining and managing educational technology has been difficult for K-12 educational systems. Consequently, opportunities for significant advances in K-12 education have often gone unrealized. With the maturation of Internet delivered services along with K-12 institutional trends, educational technologies are poised…

  12. Teacher Directed Design: Content Knowledge, Pedagogy and Assessment under the Nevada K-12 Real-Time Seismic Network

    Science.gov (United States)

    Cantrell, P.; Ewing-Taylor, J.; Crippen, K. J.; Smith, K. D.; Snelson, C. M.

    2004-12-01

    Education professionals and seismologists under the emerging SUN (Shaking Up Nevada) program are leveraging the existing infrastructure of the real-time Nevada K-12 Seismic Network to provide a unique inquiry based science experience for teachers. The concept and effort are driven by teacher needs and emphasize rigorous content knowledge acquisition coupled with the translation of that knowledge into an integrated seismology based earth sciences curriculum development process. We are developing a pedagogical framework, graduate level coursework, and materials to initiate the SUN model for teacher professional development in an effort to integrate the research benefits of real-time seismic data with science education needs in Nevada. A component of SUN is to evaluate teacher acquisition of qualified seismological and earth science information and pedagogy both in workshops and in the classroom and to assess the impact on student achievement. SUN's mission is to positively impact earth science education practices. With the upcoming EarthScope initiative, the program is timely and will incorporate EarthScope real-time seismic data (USArray) and educational materials in graduate course materials and teacher development programs. A number of schools in Nevada are contributing real-time data from both inexpensive and high-quality seismographs that are integrated with Nevada regional seismic network operations as well as the IRIS DMC. A powerful and unique component of the Nevada technology model is that schools can receive "stable" continuous live data feeds from 100's seismograph stations in Nevada, California and world (including live data from Earthworm systems and the IRIS DMC BUD - Buffer of Uniform Data). Students and teachers see their own networked seismograph station within a global context, as participants in regional and global monitoring. The robust real-time Internet communications protocols invoked in the Nevada network provide for local data acquisition

  13. Identification of E. coli K12 chromosomal insertion sites of bacteriophage φ297

    Institute of Scientific and Technical Information of China (English)

    ZHAI Jing; CAO Qi-zhi; CHANG Wei-shan

    2005-01-01

    Objective:To identify the specific integration site of prophage φ297 in the host of E. coli K12 chromosome. Methods:Using molecular techniques such as Siebert PCR for walking from the int gene of prophage 297, which is similar to that of phage 933W to an unknown region in genomic DNA. A special adaptor is ligated to the ends of DNA fragments generated by digestion of genomic DNA with restriction enzymes that generates blunt ended fragments. Clone and subclone of PCR products, DNA sequencing and data analysis were used in this study. Results:The attL, attR and the core sequences were determined. The bacterial attachment site of phage φ297 was located in the yecE gene of E. coli K12. Conclusion:The phage φ297 integrates into the yecE gene of the E. coli K12 genome.

  14. K-12 Teacher Understanding of Energy Conservation: Conceptual Metaphor, Dissipation, and Degradation

    Science.gov (United States)

    Daane, Abigail R.

    In K-12 educational settings, conservation of energy is typically presented in two ways: the conservation of energy principle (energy is neither created nor destroyed) and the sociopolitical need to conserve energy (we guard against energy being used up). These two meanings of conservation typically remain disconnected from each other and can appear contradictory, even after instruction. In an effort to support teachers in building robust understandings of energy from their existing knowledge, I designed a study to investigate the productive ideas in K-12 teachers' conversations about energy. A micro-analysis of discourse, gestures, and artifacts of professional development courses revealed teachers' productive ideas about three aspects of energy: conceptual metaphor, dissipation and degradation. In learning about energy, K-12 teachers come to use conceptual metaphors in their own language and value attending to students' metaphorical language as a means of formative assessment. Teachers' conversations about dissipation suggest that apparent difficulties with energy conservation may have their roots in a strong association between forms of energy (thermal) and their perceptible indicators (warmth). Teachers address this challenge by employing an exaggeration strategy to locate the dissipated thermal energy, making the energy indicator perceptible. Finally, teachers' unprompted statements about sociopolitical aspects of energy are related to both statements from the NGSS and aspects of energy degradation. I conclude that energy conservation can be better taught and learned in K-12 Education by: 1) understanding and applying conceptual metaphors about energy in K-12 settings, 2) using prior experiences to better understand dissipative energy processes involving imperceptible thermal energy, thereby understanding how energy conservation applies in all situations, and 3) connecting productive ideas about sociopolitical aspects of energy to canonical physics. Keywords

  15. Advanced Energy Retrofit Guide: Practical Ways to Improve Energy Performance, K-12 Schools (Book)

    Energy Technology Data Exchange (ETDEWEB)

    2013-02-01

    The U.S. Department of Energy developed the K-12 Advanced Energy Retrofit Guide to provide specific methodologies, information, and guidance to help energy managers and other stakeholders plan and execute energy efficiency improvements. We emphasize actionable information, practical methodologies, diverse case studies, and unbiased evaluation of the most promising retrofit measure for each building type. K-12 schools were selected as one of the highest priority building sectors, because schools affect the lives of most Americans. They also represent approximately 8% of the energy use and 10% of the floor area in commercial buildings.

  16. K-12 Math and Science Education: Tales from the Santa Fe Alliance for Science

    Science.gov (United States)

    Eisenstein, Robert

    2008-10-01

    Can professional engineers, mathematicians, and scientists have a positive impact on K-12 math and science education? The experience of the Santa Fe Alliance for Science, and several other like-minded organizations, indicates that they can indeed. But success is by no means assured. Good scientists are not automatically good educators, but they can learn enough about pedagogy, classroom, and community to do well. This discussion will be oriented around three major points: lessons learned, prospects for the future, and how our effort fits into state-wide plans for re-inventing K-12 math and science education in New Mexico.

  17. Mastering mathematics geometry & measures

    CERN Document Server

    Various

    2014-01-01

    Deliver outstanding lessons that build fluency, problem-solving and mathematical reasoning skills to enable sustained progress at Key Stage 3, in preparation for GCSE. Mastering Mathematics provides flexible online and print teaching and learning resources. The service focuses on strands within the curriculum to improve progression throughout Secondary Mathematics . Mastering Mathematics Student Books and Whiteboard eTextbooks are organised into progression strands in line with Mastering Mathematics Teaching and Learning Resources:. - Enable students to identify appropriate remediation or exte

  18. Authority, Identity, and Collaborative Mathematics

    Science.gov (United States)

    Langer-Osuna, Jennifer M.

    2017-01-01

    The field of mathematics education research has seen a resurgence of interest in understanding collaborative learning because students in K-12 classrooms are increasingly expected to make sense of mathematics problems together. This Research Commentary argues for the importance of understanding student authority relations in collaborative…

  19. Partnerships---A Way of Making Astrophysics Research Accessible to the K--12 Community through the Internet and World Wide Web

    Science.gov (United States)

    Hawkins, I.; Battle, R.; Miller-Bagwell, A.

    1996-05-01

    We describe a partnership approach in use at UC Berkeley's Center for EUV Astrophysics (CEA) that facilitates the adaptation of astrophysics data and information---in particular from NASA's EUVE satellite---for use in the K--12 classroom. Our model is founded on a broad collaboration of personnel from research institutions, centers of informal science teaching, schools of education, and K--12 schools. Several CEA-led projects follow this model of collaboration and have yielded multimedia, Internet-based, lesson plans for grades 6 through 12 that are created and distributed on the World Wide Web (http://www.cea.berkeley.edu/Education). Use of technology in the classroom can foster an environment that more closely reflects the processes scientists use in doing research (Linn, diSessa, Pea, & Songer 1994, J.Sci.Ed.Tech., ``Can Research on Science Learning and Instruction Inform Standards for Science Education?"). For instance, scientists rely on technological tools to model, analyze, and ultimately store data. Linn et al. suggest introducing technological tools to students from the earliest years to facilitate scientific modeling, scientific collaborations, and electronic communications in the classroom. Our investigation aims to construct and evaluate a methodology for effective participation of scientists in K--12 education, thus facilitating fruitful interactions with teachers and other educators and increasing effective use of technology in the classroom. We describe several team-based strategies emerging from these project collaborations. These strategies are particular to the use of the Internet and World Wide Web as relatively new media for authoring K--12 curriculum materials. This research has been funded by NASA contract NAS5-29298, NASA grant ED-90033.01-94A to SSL/UCB, and NASA grants NAG5-2875 and NAGW-4174 to CEA/UCB.

  20. Mountain-Plains Curriculum.

    Science.gov (United States)

    Mountain-Plains Education and Economic Development Program, Inc., Glasgow AFB, MT.

    The document lists the Mountain-Plains curriculum by job title (where applicable), including support courses. The curriculum areas covered are mathematics skills, communication skills, office education, lodging services, food services, marketing and distribution, welding support, automotive, small engines, career guidance, World of Work, health…

  1. Thinking outside the Box: Placing Park and Recreation Professionals in K-12 Schools

    Science.gov (United States)

    Dustin, Daniel; Hibbler, Dan; McKenney, Alexis; Blitzer, Laura

    2004-01-01

    The authors argue that it is time to place park and recreation professionals in K-12 schools on a permanent basis. Their proposal is based on the following observations: (1) school facilities are grossly underutilized; (2) the majority of a child's life takes place outside the classroom; (3) park and recreation programs are effective "hooks" for…

  2. Learning Analysis of K-12 Students' Online Problem Solving: A Three-Stage Assessment Approach

    Science.gov (United States)

    Hu, Yiling; Wu, Bian; Gu, Xiaoqing

    2017-01-01

    Problem solving is considered a fundamental human skill. However, large-scale assessment of problem solving in K-12 education remains a challenging task. Researchers have argued for the development of an enhanced assessment approach through joint effort from multiple disciplines. In this study, a three-stage approach based on an evidence-centered…

  3. Going against the Grain: Challenges to Peaceful Leadership Styles in a K-12/University Partnership

    Science.gov (United States)

    Carson, Susan; Chandler, Susanne; Collins, Elaine C.; Snow, Debbie; Williams, Jerri-Lynn

    2010-01-01

    This article shares and examines the challenges, findings, and lessons learned associated with embracing peaceful leadership styles during the first two years of a partnership between a failing K-12 urban school district and a university in the United States. The ongoing daily leadership issues that influenced, but were beyond the scope of, the…

  4. Preparing University Students to Lead K-12 Engineering Outreach Programmes: A Design Experiment

    Science.gov (United States)

    Anthony, Anika B.; Greene, Howard; Post, Paul E.; Parkhurst, Andrew; Zhan, Xi

    2016-01-01

    This paper describes an engineering outreach programme designed to increase the interest of under-represented youth in engineering and to disseminate pre-engineering design challenge materials to K-12 educators and volunteers. Given university students' critical role as facilitators of the outreach programme, researchers conducted a two-year…

  5. Job Satisfaction, Organizational Commitment, and Turnover Intention of Online Teachers in the K-12 Setting

    Science.gov (United States)

    Larkin, Ingle M.; Brantley-Dias, Laurie; Lokey-Vega, Anissa

    2016-01-01

    The purpose of this study was to measure and explore factors influencing K-12 online teachers' job satisfaction, organizational commitment, and turnover intentions. Using Maslow's Hierarchy of Needs (1954), Herzberg's Two-Factor Theory of Satisfaction (1959, 1968), Meyer and Allen's measure of Organizational Commitment (1997), and Fishbein and…

  6. Recounting the K-12 School Experiences of Adults Who Stutter: A Qualitative Analysis

    Science.gov (United States)

    Daniels, Derek E.; Gabel, Rodney M.; Hughes, Stephanie

    2012-01-01

    This study qualitatively explored the primary and secondary (K-12) school experiences of adults who stutter. The primary investigator conducted semi-structured interviews with 11 participants, a first focus group interview with 6 participants, and a second focus group interview with 4 participants. Participants discussed the various ways in which…

  7. Development of Design Guidance for K-12 Schools from 30% to 50% Energy Savings: Preprint

    Energy Technology Data Exchange (ETDEWEB)

    Pless, S.; Torcellini, P.; Long, N.

    2008-07-01

    This paper describes the development of energy efficiency recommendations for achieving 30% whole-building energy savings in K-12 schools over levels achieved by following the ANSI/ASHRAE/IESNA Standard 90.1. These design recommendations look at building envelope, fenestration, lighting systems (including electrical lights and daylighting), HVAC systems, building automation and controls, outside air treatment, and service water heating.

  8. African Dance Aesthetics in a K-12 Dance Setting: From History to Social Justice

    Science.gov (United States)

    Ward, Sheila A.

    2013-01-01

    This article invites the reader to gain a deeper understanding of the aesthetics of African-based dance through the elements of tradition, transformation, and social justice. A discussion of the aesthetics of African dances within Africa and throughout the African diaspora opens the doors to present these dances in a K-12 setting, to explore a…

  9. California K-12 Schools and Communities Collaborate to Support Student Mental Health

    Science.gov (United States)

    Woodbridge, Michelle W.; Goldweber, Asha; Yu, Jennifer; Golan, Shari; Stein, Bradley D.

    2013-01-01

    Across the education, public health, and human and social services areas, there is renewed interest in bringing agency representatives together to work on the promotion of student mental health and wellness. One of the aims of California's Prevention and Early Intervention (PEI) K-12 Student Mental Health (SMH) initiative funded under Proposition…

  10. Exploring an Invisible Medium: Teacher Language Awareness among Preservice K12 Educators of English Language Learners

    Science.gov (United States)

    Lindahl, Kristen Marie

    2013-01-01

    This study investigates the construct of Teacher Language Awareness (TLA) in a group of preservice mainstream K-12 teachers who are developing skills to work with English Language Learners (ELLs) in United States (US) public school contexts. Specifically, the study seeks to explore how preservice teachers' participation in directed university…

  11. What Is (Or Should Be) Scientific Evidence Use in K-12 Classrooms?

    Science.gov (United States)

    McNeill, Katherine L.; Berland, Leema

    2017-01-01

    Research and reform efforts frequently identify evidence as an essential component of science classroom instruction to actively engage students in science practices. Despite this agreement on the primacy of evidence, there is a lack of consensus around what counts as "evidence" in k-12 classrooms (e.g., ages 5-18): scholarship and…

  12. Under Construction: Building on ESSA's K-12 Foundation. Quality Counts. Education Week. Volume 36, Issue 16

    Science.gov (United States)

    Manzo, Kathleen Kennedy, Ed.

    2017-01-01

    With just months to go until the nation's overhauled K-12 law goes into effect, state policymakers are still scrambling to firm up the infrastructure for their education systems, under the new blueprint laid out in the Every Student Succeeds Act (ESSA). They're doing it at a time of political change and policy uncertainty at the national level,…

  13. Mental Health Research in K-12 Schools: Translating a Systems Approach to University-School Partnerships

    Science.gov (United States)

    Hooper, Lisa M.; Britnell, Heather Brandt

    2012-01-01

    The authors discuss the challenges that researchers from university and community systems face in gaining access to and partnering with K-12 school systems to conduct research. Borrowing from Szapocznik, Hervis, and Schwartz's (2003) brief strategic family theory and therapy and Bronfenbrenner's (1979, 1986) ecological systems theory, the authors…

  14. Information behaviors of Chinese K-12physical education teachers:A survey study

    Institute of Scientific and Technical Information of China (English)

    Geoffrey; Z.LIU; Yan; HUO

    2012-01-01

    Purpose:Given the unique characteristics of physical education(PE) teaching in K-12education,PE teachers’ information behaviors deserve special attention.This article reports a survey study of PE teachers’ information behaviors,covering information literacy skills and behaviors of information seeking and information use.Design/methodology/approach:A questionnaire survey was conducted of K-12 PE teachers in the Tianjin municipal region of China,with a response rate of 61.9%.Findings:PE teachers lack skills with information retrieval systems in general.The Internet continues to be their primary information source,and they rely more on personal collection and colleagues than the school library for teaching materials.They rarely develop a searching strategy,employ querying tactics,or use advanced search functions,and they tend to be content with finding a few relevant articles.Research limitations:The survey is limited to the Tianjin municipal region in scope.Though attempting to reach 210 participants from 40 schools,it yielded only 130 valid responses.A larger survey covering more regions and with greater responses may be useful.Practical implications:Insights from this study inform the educational and on-job training of K-12 PE teachers to improve their information literacy skills.Originality/value:Little research exists on PE teachers’ behaviors of information seeking.This study bridges the gap and enriches our understanding of K-12 teachers’ information behaviors.

  15. A Professional Learning Program Designed to Increase K-12 Teachers' Instructional Technology Use

    Science.gov (United States)

    Spencer, Lisa A.

    2014-01-01

    Despite the ready availability of many instructional-technology resources, many teachers in the researched Maryland school district are uncomfortable using technology to deliver content. This concurrent mixed methods case study examined the impact of Sharing Technology with Educators Program (STEP) on 269 K-12 teachers' technology use. The study…

  16. Functional characterization of the Escherichia coli K-12 yiaMNO transport protein genes

    NARCIS (Netherlands)

    Plantinga, TH; van der Does, C; Badia, J; Aguilar, J; Konings, WN; Driessen, AJM; Plantinga, Titia H.

    2004-01-01

    The yiaMNO genes of Escherichia coli K-12 encode a binding protein-dependent secondary, or tri-partite ATP-independent periplasmic (TRAP), transporter. Since only a few members of this family have been functionally characterized to date, we aimed to identify the substrate for this transporter. Cells

  17. How Do K-12 Students' Manage Applications on Their Mobile Devices?

    Science.gov (United States)

    Aladjem, Ruthi; Hardof, Sharon

    2016-01-01

    Personal information management (PIM) is a research field that examines the activities by which users save, organize and retrieve personal information items. PIM is a one of the essential new literacies for learners in the 21st century. This paper reports results from a pilot study that explored PIM practices and strategies of K-12 students, on…

  18. Teaching K-12 teachers and students about nanoscale science through microscopy

    Science.gov (United States)

    Healy, Nancy

    2014-09-01

    The National Nanotechnology Infrastructure Network (NNIN) is an integrated partnership of 14 universities across the US funded by NSF to support nanoscale researchers. NNIN's education and outreach programs are large and varied and includes outreach to the K-12 community in the form of professional development workshops and school programs. Two important components of nanoscale science education are understanding size and scale and the tools used in nanoscale science and engineering (NSE). As part of our K-12 endeavors, we educate K-12 students and teachers about the tools of nanoscience by providing experiences with the Hitachi TM 3000 tabletop Scanning Electron Microscope (SEM). There are three of these across the network that are used in education and outreach. This paper will discuss approaches we use to engage the K-12 community at NNIN's site at Georgia Institute of Technology to understand size and scale and the applications of a variety of microscopes to demonstrate the imaging capabilities of these to see both the micro and nano scales. We not only use the tabletop SEM but also include USB digital microscopes, a Keyence VHX- 600 Digital Microscope, and even a small lens used with smart phones. The goal of this outreach is to educate students as well as teachers about the capabilities of the various instruments and their importance at different size scales.

  19. Factors that Affect the Adoption and Use of Electronic Mail by K-12 Foreign Language Educators.

    Science.gov (United States)

    Shelley, Janine Onffroy

    1998-01-01

    Reports the results of electronic mail instruction given to K-12 foreign-language teachers during workshops. Factors found to influence workshop participants' adoption of email included training, the need to keep up with educational technology trends, availability of an easy-to-use system, hands-on experience, school support, and individual…

  20. Molecular cloning and expression of Treponema pallidum DNA in Escherichia coli K12.

    NARCIS (Netherlands)

    J.D.A. van Embden; H.J.M. van de Donk; R.V.W. van Eijk (Ron); H.G. v.d. Heide; J.A. de Jong (Jan); M.F. van Olderen; A.D.M.E. Osterhaus (Albert); L.M. Schouls

    1983-01-01

    textabstractA gene bank of Treponema pallidum DNA in Escherichia coli K-12 was constructed by cloning SauI-cleaved T. pallidum DNA into the cosmid pHC79. Sixteen of 800 clones investigated produced one or more antigens that reacted with antibodies from syphilitic patients. According to the separatio

  1. Perspectives and Visions of Computer Science Education in Primary and Secondary (K-12) Schools

    Science.gov (United States)

    Hubwieser, Peter; Armoni, Michal; Giannakos, Michail N.; Mittermeir, Roland T.

    2014-01-01

    In view of the recent developments in many countries, for example, in the USA and in the UK, it appears that computer science education (CSE) in primary or secondary schools (K-12) has reached a significant turning point, shifting its focus from ICT-oriented to rigorous computer science concepts. The goal of this special issue is to offer a…

  2. Makerspaces: The Next Iteration for Educational Technology in K-12 Schools

    Science.gov (United States)

    Strycker, Jesse

    2015-01-01

    With the continually growing number of computers and mobile devices available in K-12 schools, the need is dwindling for dedicated computer labs and media centers. Some schools are starting to repurpose those facilities into different kinds of exploratory learning environments known as "makerspaces". This article discusses this next…

  3. Immigration and Education: What Should K-12 Teachers, School Administrators, and Staff Know?

    Science.gov (United States)

    Rubinstein-Avila, Eliane

    2017-01-01

    We are currently living in an era of mass global migration. Therefore, it is a pertinent time to reflect on the challenges and the possibilities inherent in educating immigrant and refugee children. Because of the importance immigration has played in the history of the United States, it may be assumed that American K-12 teachers and school…

  4. Plickers: A Formative Assessment Tool for K-12 and PETE Professionals

    Science.gov (United States)

    Krause, Jennifer M.; O'Neil, Kason; Dauenhauer, Brian

    2017-01-01

    Classroom response systems have become popular in K-12 and higher education settings in recent years in order to gauge student learning. The physical education environment is unique in that it is difficult to manage the technology associated with these systems, and therefore, student assessment can be cumbersome. A free classroom response system…

  5. How to Implement Rigorous Computer Science Education in K-12 Schools? Some Answers and Many Questions

    Science.gov (United States)

    Hubwieser, Peter; Armoni, Michal; Giannakos, Michail N.

    2015-01-01

    Aiming to collect various concepts, approaches, and strategies for improving computer science education in K-12 schools, we edited this second special issue of the "ACM TOCE" journal. Our intention was to collect a set of case studies from different countries that would describe all relevant aspects of specific implementations of…

  6. Tech-Savvy Science Education? Understanding Teacher Pedagogical Practices for Integrating Technology in K-12 Classrooms

    Science.gov (United States)

    Hechter, Richard; Vermette, Laurie Anne

    2014-01-01

    This paper examines the technology integration practices of Manitoban K-12 inservice science educators based on the Technological, Pedagogical, and Content knowledge (TPACK) framework. Science teachers (n = 433) completed a 10-item online survey regarding pedagogical beliefs about technology integration, types of technology used, and how often…

  7. Agriculture's Role in K-12 Education: Proceedings of a Forum on the National Science Education Standards.

    Science.gov (United States)

    National Academy of Sciences - National Research Council, Washington, DC. Board on Agriculture.

    The Board on Agriculture organized a Forum on Agriculture's Role in K-12 Education to provide an opportunity for agricultural professional societies to explore ways in which examples from agriculture, food, and environment systems can be used to enhance inquiry-based science education. Participants discussed how professional societies could…

  8. When Professions Shape Politics: The Case of Accountability in K-12 and Higher Education

    Science.gov (United States)

    Mehta, Jal

    2014-01-01

    Professionalization is an important but overlooked dimension in education politics, particularly the politics of accountability. To isolate the importance of professionalization, this article compares accountability movements in K-12 education with similar movements in higher education. I draw on three pairs of reports that have sought to impose…

  9. Integrating the iPod Touch in K-12 Education: Visions and Vices

    Science.gov (United States)

    Banister, Savilla

    2010-01-01

    Advocates of ubiquitous computing have long been documenting classroom benefits of one-to-one ratios of students to handheld or laptop computers. The recent sophisticated capabilities of the iPod Touch, iPhone, and iPad have encouraged further speculation on exactly how K-12 teaching and learning might be energized by such devices. This paper…

  10. Leading by Following: An Analysis of How K-12 School Leaders Use Twitter

    Science.gov (United States)

    Sauers, Nicholas J.; Richardson, Jayson W.

    2015-01-01

    This study analyzed how active Twitter users who are also school leaders used the tool. The researchers collaboratively identified K-12 school leaders who were active on Twitter and then collected tweets from those school leaders. The final sample for this study included 115 Twitter users and over 180,000 tweets from those individuals. The results…

  11. School Hopscotch: A Comprehensive Review of K-12 Student Mobility in the United States

    Science.gov (United States)

    Welsh, Richard O.

    2017-01-01

    This article provides an integrative review of the extant literature on K-12 student mobility in the United States. Student mobility is a widespread phenomenon with significant policy implications. Changing schools is most prevalent among minority and low-income students in urban school districts. There is an ongoing debate about whether student…

  12. Examining the Bifactor IRT Model for Vertical Scaling in K-12 Assessment

    Science.gov (United States)

    Koepfler, James R.

    2012-01-01

    Over the past decade, educational policy trends have shifted to a focus on examining students' growth from kindergarten through twelfth grade (K-12). One way states can track students' growth is with a vertical scale. Presently, every state that uses a vertical scale bases the scale on a unidimensional IRT model. These models make a…

  13. Efficacy of Webinar Training for Continuing Professional Education: Applications for School Personnel in K-12 Settings

    Science.gov (United States)

    Covington, Julie Anne

    2012-01-01

    The purpose of the researcher was to evaluate the effectiveness of webinar training for K-12 school personnel in childhood obesity prevention tools and resources provided by the North Carolina Prevention Partners (NCPP). A mixed method sequential research design was used to evaluate the training across the first three levels of the Kirkpatrick…

  14. Tech-Savvy Science Education? Understanding Teacher Pedagogical Practices for Integrating Technology in K-12 Classrooms

    Science.gov (United States)

    Hechter, Richard; Vermette, Laurie Anne

    2014-01-01

    This paper examines the technology integration practices of Manitoban K-12 inservice science educators based on the Technological, Pedagogical, and Content knowledge (TPACK) framework. Science teachers (n = 433) completed a 10-item online survey regarding pedagogical beliefs about technology integration, types of technology used, and how often…

  15. K-12 Single-Sex Education: What Does the Research Say? ERIC Digest.

    Science.gov (United States)

    Haag, Pamela

    Although research on the effects of K-12 single-sex education is inconclusive in general, some common themes emerge in the research literature. This Digest reviews that research with particular attention to effects on girls' attitudes and achievement. The Digest first discusses attitudinal variables (i.e., self-esteem and attitudes toward academic…

  16. How Being a Teaching Artist Can Influence K-12 Art Education

    Science.gov (United States)

    Graham, Mark A.; Zwirn, Susan Goetz

    2010-01-01

    Many K-12 art teachers have rich artistic backgrounds and continue to be active as artists in spite of the challenges of time, energy, and stereotypes that insist a real artist would not teach. This article describes a research project that examined the educational dynamic engendered by teachers who are also artists. We interviewed and observed…

  17. Empowering Educators through Teacher Research: Promoting Qualitative Inquiry among K-12 Educators

    Science.gov (United States)

    Clarke, E. Jason

    2012-01-01

    The desire to find pedagogically effective uses of technology in K-12 education has exposed the need for reliable professional development programs that empower teachers to identify the problems and needs they have in their classrooms, apply a process of systematic inquiry in order to discover solutions to those problems, and to share those…

  18. K-12 Teachers' Perceptions of and Their Satisfaction with Interaction Type in Blended Learning Environments

    Science.gov (United States)

    Kuo, Yu-Chun; Belland, Brian R.; Schroder, Kerstin E. E.; Walker, Andrew E.

    2014-01-01

    Blended learning is an effective approach to instruction that combines features of face-to-face learning and computer-mediated learning. This study investigated the relationship between student perceptions of three types of interaction and blended learning course satisfaction. The participants included K-12 teachers enrolled in a graduate-level…

  19. Is K-12 Blended Learning Disruptive? An Introduction to the Theory of Hybrids

    Science.gov (United States)

    Christensen, Clayton M.; Horn, Michael B.; Staker, Heather

    2013-01-01

    The Clayton Christensen Institute for Disruptive Innovation, formerly the Innosight Institute, has published three papers describing the rise of K-12 blended learning--that is, formal education programs that combine online learning and brick-and-mortar schools. This fourth paper is the first to analyze blended learning through the lens of…

  20. State Capacity to Link K-12/Postsecondary Data Systems and Report Key Indicators

    Science.gov (United States)

    Data Quality Campaign, 2016

    2016-01-01

    The Every Student Succeeds Act (ESSA) provides an opportunity to produce high quality postsecondary indicators and, as available, publicly report them in ways that inform, engage, and empower communities. As first "required" in 2009's American Recovery and Reinvestment Act (ARRA) stimulus law, almost every state has linked its K-12 and…

  1. Using the van Hiele K-12 Geometry Learning Theory to Modify Engineering Mechanics Instruction

    Science.gov (United States)

    Sharp, Janet M.; Zachary, Loren W.

    2004-01-01

    Engineering students use spatial thinking when examining diagrams or models to study structure design. It is expected that most engineering students have solidified spatial thinking skills during K-12 schooling. However, according to what we know about geometry learning and teaching, spatial thinking probably needs to be explicitly taught within…

  2. Comparing Cross-Cultural Multicultural Self-Awareness among K-12 In-Service School Teachers

    Science.gov (United States)

    Koyama, Chieko; Plash, Shawn; Davis, Kirk

    2012-01-01

    The present study explored multicultural self-awareness among 134 K-12 in-service school teachers using the Cultural Diversity Awareness Inventory (CDAI). The results were compared to Yeung's (2006), allowing for a comparison between Eastern and Western cultures. A composite score was generated for each of the five areas measured by the CDAI. A…

  3. The USDA and K-12 Partnership: A Model Program for Federal Agencies

    Science.gov (United States)

    Scott, Timothy P.; Wilson, Craig; Upchurch, Dan R.; Goldberg, Maria; Bentz, Adrienne

    2011-01-01

    The Future Scientists Program of Texas A&M University and the Agricultural Research Service branch of USDA serves as a model program of effective collaboration between a federal agency and K-12. It demonstrates true partnership that contextualizes learning of science and provides quality professional development, benefiting teachers and their…

  4. Development of Problem Sets for K-12 and Engineering on Pharmaceutical Particulate Systems

    Science.gov (United States)

    Savelski, Mariano J.; Slater, C. Stewart; Del Vecchio, Christopher A.; Kosteleski, Adrian J.; Wilson, Sarah A.

    2010-01-01

    Educational problem sets have been developed on structured organic particulate systems (SOPS) used in pharmaceutical technology. The sets present topics such as particle properties and powder flow and can be integrated into K-12 and college-level curricula. The materials educate students in specific areas of pharmaceutical particulate processing,…

  5. A Correlational Analysis of Strategic Information Systems Planning in K-12 Public Educational Organizations

    Science.gov (United States)

    Martin, Christopher J.

    2012-01-01

    Three decades of research has indicated that strategic information systems planning is a vital component to business success. The purpose of this study was to identify the relationship strategic information systems planning and financial commitment has within the K-12 public education sector. Data for this study was obtained from top management of…

  6. The Chem-E-Car as a Vehicle for Service Learning through K-12 Outreach

    Science.gov (United States)

    Chirdon, William

    2017-01-01

    This article presents the results of combining the American Institute of Chemical Engineers' (AIChE) Chem-E-Car competition activities with engineering outreach to K-12 students in a service-learning course. Survey results are presented to show how the program develops technical skills as well as leadership, teamwork, and communication skills in…

  7. Developing the Principal Technology Leadership Competency Indicators for Technical High Schools in K-12 in Taiwan

    Science.gov (United States)

    Shyr, Wen-Jye

    2017-01-01

    The purpose of this study was to develop principal technology leadership competency indicators for technical high schools in K-12 in Taiwan in order to improve the effectiveness of school administration and teaching. In the first part of the study, five experts in the technology leadership field are interviewed to explore the technology leadership…

  8. How to Implement Rigorous Computer Science Education in K-12 Schools? Some Answers and Many Questions

    Science.gov (United States)

    Hubwieser, Peter; Armoni, Michal; Giannakos, Michail N.

    2015-01-01

    Aiming to collect various concepts, approaches, and strategies for improving computer science education in K-12 schools, we edited this second special issue of the "ACM TOCE" journal. Our intention was to collect a set of case studies from different countries that would describe all relevant aspects of specific implementations of…

  9. A Correlational Analysis of Strategic Information Systems Planning in K-12 Public Educational Organizations

    Science.gov (United States)

    Martin, Christopher J.

    2012-01-01

    Three decades of research has indicated that strategic information systems planning is a vital component to business success. The purpose of this study was to identify the relationship strategic information systems planning and financial commitment has within the K-12 public education sector. Data for this study was obtained from top management of…

  10. Netflixing Human Capital Development: Personalized Learning Technology and the Corporatization of K-12 Education

    Science.gov (United States)

    Roberts-Mahoney, Heather; Means, Alexander J.; Garrison, Mark J.

    2016-01-01

    Advanced by powerful venture philanthropies, educational technology companies, and the US Department of Education, a growing movement to apply "big data" through "learning analytics" to create "personalized learning" is currently underway in K-12 education in the United States. While scholars have offered various…

  11. After 60 Years, Do the Arguments for K-12 Vouchers Still Hold?

    Science.gov (United States)

    Laitsch, Dan

    2016-01-01

    In 1955, Milton Friedman authored a foundational paper proposing a shift in funding and governance mechanisms for public K-12 schools, suggesting that parents be awarded tuition vouchers that they could use to pay for private sector education services for their children, rather than relying on government provided neighborhood schools. Friedman…

  12. Indiana's New and (Somewhat) Improved K-12 School Finance System. School Choice Issues in the State

    Science.gov (United States)

    Aud, Susan L.

    2005-01-01

    Education finance policy has become an urgent concern in many state legislatures. Demands for greater equity and accountability have forced states to review, and in many cases to revise, the method by which schools are funded. This study sheds light on Indiana's financing of public K-12 education by providing a clear explanation of the components…

  13. Students Doing Chemistry: A Hand-On Experience for K-12

    Science.gov (United States)

    Selco, Jodye I.; Bruno, Mary; Chan, Sue

    2012-01-01

    A hands-on, minds-on inquiry chemistry experiment was developed for use in K-12 schools that enables students to combine the chemicals of their choice and observe the results. The chemistry involved is water based and builds upon acid-base, double displacement, and iodometric detection of starch reactions. Chemicals readily available in the…

  14. Be a Water Watcher: A Resource Guide for Water Conservation, K-12.

    Science.gov (United States)

    New York City Board of Education, Brooklyn, NY. Div. of Curriculum and Instruction.

    This is a resource guide (in response to the New York City water emergency) for grades K-12 on the subject of water conservation. Activities are suggested for science, industrial arts, social studies, and communications arts classes. A bibliography on water is also provided. (APM)

  15. Development of Problem Sets for K-12 and Engineering on Pharmaceutical Particulate Systems

    Science.gov (United States)

    Savelski, Mariano J.; Slater, C. Stewart; Del Vecchio, Christopher A.; Kosteleski, Adrian J.; Wilson, Sarah A.

    2010-01-01

    Educational problem sets have been developed on structured organic particulate systems (SOPS) used in pharmaceutical technology. The sets present topics such as particle properties and powder flow and can be integrated into K-12 and college-level curricula. The materials educate students in specific areas of pharmaceutical particulate processing,…

  16. Outstanding Science Trade Books for Students K-12: Books Published in 2015

    Science.gov (United States)

    Science and Children, 2016

    2016-01-01

    Science teachers and mentors continue to be challenged to meet the high expectations of "A Framework for K-12 Science Education" and the "Next Generation Science Standards" ("NGSS"). Indeed the "Framework" urges to help learners "[build] progressively more sophisticated explanations of natural…

  17. Battling Obesity in K-12 Learners from an Exercise Physiology Perspective

    Science.gov (United States)

    Rattigan, Peter; Biren, Greg

    2007-01-01

    Physical education practitioners and programs have the opportunity and obligation to help children become physically educated, healthy, and active adults. This article discusses the battle against obesity in K-12 learners from an exercise physiology perspective and focuses on the fact that practitioners have all the tools they need to battle this…

  18. A Field Study of Telepractice for School Intervention Using the ASHA NOMS K-12 Database

    Science.gov (United States)

    Gabel, Rodney; Grogan-Johnson, Sue; Alvares, Robin; Bechstein, Leah; Taylor, Jacquelyn

    2013-01-01

    The purpose of this article is to describe the characteristics and effectiveness of a telepractice speech-language therapy program for school-age children. Outcome data related to the caseload, type and amount of intervention, and student progress from a school-based telepractice therapy program were compared with the K-12 Schools National…

  19. Trends in Technology Planning and Funding in Florida K-12 Public Schools

    Science.gov (United States)

    Ritzhaupt, Albert Dieter; Hohlfeld, Tina N; Barron, Ann E.; Kemker, Kate

    2008-01-01

    This empirical research investigates trends in technology planning and funding in Florida's K-12 public schools between the 2003-04 and 2005-06 academic years. Survey items that focused on funding and planning issues on Florida's statewide school technology integration survey were analyzed using logistic models. Results indicate a significant…

  20. The Influence of Lean on K-12 District Management: A Case Study

    Science.gov (United States)

    Brown, Beverly

    2011-01-01

    For decades, policymakers and educators have focused on public school equity and adequacy, while paying little attention to efficiency. This qualitative single case study was designed to capture explicit information about Lean management, operations, and culture in a K-12 Michigan school district engaged in Lean training and implementation for a…