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Stevenson, E.; McArthur, J. – International Journal for Academic Development, 2015
In this Reflection on Practice we propose a triple nexus of research, public engagement and teaching that could provide a new pathway for academic developers to enable greater engagement in learning and teaching issues from science, technology, engineering, and mathematics (STEM) academics. We argue that the public engagement activities demanded…
Descriptors: STEM Education, Instructional Innovation, Teaching Methods, Science Instruction
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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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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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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Hake, Richard R. – Teaching Education, 1991
Indiana University college teacher discusses undergraduate science education and effective teaching in introductory courses. The method recommended by educator Arnold Arons trades passive lecture for hands-on learning and Socratic dialogue. Indiana University began a successful research program which brought Arons' method to large-enrollment…
Descriptors: College Science, Curriculum Development, Elementary Education, Experiential Learning
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Rossing, Thomas D. – Physics Teacher, 1988
Discusses a course proposal which concentrates on fewer topics and covering the topics in greater depth. Proposes a sequence in which each topic is introduced phenomenologically, the theory is developed, and the applications are discussed. Uses optics as an example. Lists some disadvantages and advantages of the proposed topical organization. (YP)
Descriptors: College Curriculum, College Science, Controversial Issues (Course Content), Course Content
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Millar, R. H. – Comparative Education, 1981
Comparing the secondary physics courses developed by West Germany's Institute for Science Education (IPN) with similar British curriculum projects, the author argues that the differences in style, content, and reception of these curriculums are related to the social locations of the British teachers and the German academics who devised them.…
Descriptors: Adoption (Ideas), Comparative Education, Curriculum Design, Curriculum Development
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Klopfer, Leopold E.; Champagne, Audrey B. – Science Education, 1990
Discussed is the history of school science curriculum reform from the Sputnik era to 1990. The relationship between the crisis in the 1950s and 1990 is addressed. A list of curriculum development programs for all levels and special needs students is included. (KR)
Descriptors: Curriculum Development, Disabilities, Elementary Education, Elementary Secondary Education
Watts, Mike, Comp.; Michell, Mick, Comp. – 1987
The intention of this guide is to consider the concepts, skills, facts, and attitudes of science which are taught in school; explore how content might be chosen; argue for a reduction in curriculum content; suggest major topics for science teaching; use examples to illustrate aspects of science content; and consider some of the implications of…
Descriptors: Curriculum Development, Educational Improvement, Elementary Secondary Education, Foreign Countries