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Showing 1 to 15 of 22 results Save | Export
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Weinstein, Matthew – Democracy & Education, 2012
This paper builds on Mueller, Tippins, and Bryan's paper to ask how neoliberal restructuring impacts the form of appropriate and possible democratic science/education. It examines the compatibilities between antidemocratic tendencies of current schooling and common forms citizen science. It also clarifies several details regarding the street-medic…
Descriptors: Democracy, Politics of Education, Neoliberalism, Science Education
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Demetrikopoulos, Melissa K.; Pecore, John; Rose, Jordan D.; Fobbs, Archibald J., Jr.; Johnson, John I.; Carruth, Laura L. – Science Scope, 2006
The brain is a truly fascinating structure! It controls the body and allows everyone to think, learn, speak, move, feel, remember, and experience emotions. Although the brain is a single organ, it is very complex and has several regions, each having a specific function. These functionally diverse regions work together to allow for coordination of…
Descriptors: Neurological Organization, Science Curriculum, Brain, Body Composition
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De Laeter, J. R. – Science Education, 1989
Described is physics education in Australia at the secondary level. Its origins based on British traditions and the influence of American thought and practice on its development are discussed. Implications for the future are examined. (YP)
Descriptors: Educational History, Foreign Countries, Physics, Science Curriculum
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Linn, Marcia C. – International Journal of Science Education, 2000
Explains Knowledge Integration Environment (KIE) activities which are designed to promote lifelong science learning. Describes the partnership process that guided the design as well as the Scaffolded Knowledge Integration (SKI) framework that gave the partnership a head start on creating effective materials. (Contains 52 references.) (Author/YDS)
Descriptors: Curriculum Design, Educational Environment, Elementary Secondary Education, Evaluation
Peterson, Rita W.; Stenhouse, Lawrence – Proceedings of the National Academy of Education, 1981
Two lengthy reviews are presented of a series of seven studies, sponsored by the National Science Foundation (NSF), on the subject of science education from 1950 to 1975. In "Science Education in the United States during the Third Quarter of the Twentieth Century", Rita Peterson provides an historical view of major events that occurred…
Descriptors: Book Reviews, Case Studies, Educational Change, Educational Research
Bruder, Isabelle – Electronic Learning, 1993
Discusses how to reform science education in light of individual and societal needs for science literacy. Science education standards, curriculum changes, hands-on and computer-based projects, telecommunications for teacher training, and technology for student assessment are described. A sidebar article presents a model science teacher development…
Descriptors: Change Strategies, Curriculum Development, Educational Change, Elementary Secondary Education
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Nagalski, Jan L. – Science Teacher, 1980
This article defines inquiry, analyzes the results of the implementation of inquiry-based science curricula in the 1960s, and supports the continued emphasis on inquiry-oriented teaching in the back-to-basic curriculum reform presently being advocated. (CS)
Descriptors: Curriculum Evaluation, Inquiry, Science Course Improvement Projects, Science Curriculum
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Besvinick, Sidney L. – Educational Leadership, 1988
Contends that school science programs should return to the visionary programs of the 1960's, which developed logical thinking and problem solving. These have since given way to a barren emphasis on fact acquisition and "cookbook" lab activities. (TE)
Descriptors: Curriculum Design, Elementary Secondary Education, Logical Thinking, Problem Solving
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Yager, Robert E. – Educational Leadership, 1988
Argues that science programs developed during the 1960's should be replaced by "science/technology/society" (S/T/S) programs, which build on students' curiosity and concern about local problems. (TE)
Descriptors: Curriculum Design, Elementary Secondary Education, Logical Thinking, Problem Solving
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Haber-Schaim, Uri – Physics Teacher, 1982
Suggests criteria for constructing a "basic" physics program based on such premises as limited class time, time and practice needed for skill development/understanding structuring of subject matter, and choices of content and approach. Long-range objectives related to the list of premises are discussed. (SK)
Descriptors: Curriculum Development, Mechanics (Physics), Physics, Science Course Improvement Projects
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Kieffer, William F. – Journal of Chemical Education, 1980
Presented are the author's impressions of the status of chemical education during the period from the mid-fifties to late sixties. (HM)
Descriptors: Chemistry, College Science, Curriculum Development, Educational Development
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Eisenkraft, Arthur – Physics Teacher, 1981
Presents an interview with Fletcher G. Watson, best known to physics teachers as codirector of Harvard Project Physics. Dr. Watson speaks of his career as a science educator, history of science, Piaget, state of science education in the United States, and curriculum projects, among other topics. (SK)
Descriptors: Higher Education, Interviews, Opinions, Physics
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Maddock, M. N. – Studies in Science Education, 1981
Draws on literature from the fields of science education, anthropology, and other areas. Proposes a viewpoint that science and science education are cultural enterprises which form a part of the wider cultural matrix of society and that educational considerations concerning science must be made in light of this wider perspective. (DS)
Descriptors: Anthropology, Communication (Thought Transfer), Foreign Countries, Higher Education
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Roberts, Dana – Physics Teacher, 1982
Presents excerpts of an interview with Philip Morrison, Institute Professor of Physics at M.I.T., who has made significant contributions to areas ranging from high-energy astrophysics to elementary school science education. (Author/SK)
Descriptors: College Science, Higher Education, Interviews, Opinions
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Millar, R. H. – European Journal of Science Education, 1981
Outlines an approach for interpreting the influence of social factors on the directions in which secondary school science curricula have developed and explores the influence of the institutional context of comprehensivization on emerging science curriculum in Great Britain in the 1960s. (Author/DS)
Descriptors: Cultural Influences, Curriculum Development, Curriculum Evaluation, Opinions
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