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Teo, Tang Wee – Journal of Curriculum Studies, 2012
"Potemkin schools" is used as the phrase to capture what a US science, technology, engineering, and mathematics (STEM) public speciality high school becomes as a result of its institutional branding. By way of an examination of the efforts of one teacher drawn into school branding through his "inquiry-based reform" of an Advanced Chemistry course,…
Descriptors: Curriculum Development, Educational Change, Science Instruction, Science Curriculum
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O'Neill, D. Kevin; Polman, Joseph L. – Journal of Research in Science Teaching, 2004
In recent years, a number of curriculum reform projects have championed the notion of having students do science in ways that move beyond hands-on work with authentic materials and methods, or developing a conceptual grasp of current theories. These reformers have argued that students should come to an understanding of science through doing the…
Descriptors: Teaching Methods, Scientists, Investigations, Educational Change
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Trust, Jerry – Science Teacher, 1991
Describes the four major phases of a science project to create a school-site native plant habitat: (1) planning the habitat area; (2) constructing the habitat; (3) writing the related curriculum; and (4) providing inservice programs to other interested science teachers. (MDH)
Descriptors: Biology, Curriculum Development, Ecology, Environmental Education
Collict, George – 1992
In 1990, the New Jersey Department of Education awarded the Randolph Township Board of Education a grant to evaluate the effectiveness of an existing technology learning activity called the "Magic Box", as part of the Teacher Developed Technology Education for the Nineties grant project. This document is comprised of three publications:…
Descriptors: Cooperative Learning, Curriculum Development, Curriculum Evaluation, Design Requirements
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Stricker, David R. – Journal of STEM Teacher Education, 2011
This study was conducted to describe a high school engineering curriculum, identify teaching strategies used to increase math and science literacy, and discover challenges and constraints that occur during its development and delivery, as well as what strategies are used to overcome these obstacles. Semi-structured interviews were conducted with…
Descriptors: Curriculum Development, Interviews, Scientific Literacy, Teaching Methods
Allen, Kasi; St. John, Mark; Tambe, Pamela – Inverness Research, 2009
Back in 1992, the National Science Foundation (NSF) awarded grants to five curriculum development teams and charged them with the task of starting over. Five years later, each of the development teams had produced an innovative and "integrated" curriculum. All represented notable departures from the commonly encountered, calculus-driven high…
Descriptors: National Curriculum, Curriculum Development, High Schools, Mathematics Education
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Dreyfus, A.; And Others – Science Education, 1985
Investigated the main concerns of teachers teaching the Israel High School Biology Project (IHBP). This program, implemented about 15 years ago, is an adaptation of the Biological Sciences Curriculum Project Yellow Version. Areas examined include how teachers perceive the program and what changes they would make. (JN)
Descriptors: Biology, Curriculum Development, High Schools, Science Course Improvement Projects
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Tamir, Pinchas – Journal of Research in Science Teaching, 1985
Describes changes and effects of the Israeli paper-and-pencil matriculation examination in biology since first analysis in 1972. The examination has been significant for implementing an inquiry-oriented high school biology program based on the Biological Sciences Curriculum Study. Implications for upgrading science education are discussed.…
Descriptors: Academic Achievement, Biology, Curriculum Development, High Schools
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Andersen, Hans O. – Hoosier Science Teacher, 1984
Discusses reasons for the failure of the post-Sputnik science curricula and offers criteria for selecting relevant curriculum content, suggesting that these curricula focus on problem-solving. Lists seven problem areas (technological, environmental, empirical, historical, aesthetic, philosophical, and futuristic) with recommended topics for each…
Descriptors: Curriculum Development, Educational Objectives, High Schools, Problem Solving
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Lijnse, Piet L.; And Others – Science Education, 1990
Described is a Dutch thematics physics curriculum recently developed for the average academic secondary student. Discussed are the structure, contents of units, and systematic units of the curriculum. (CW)
Descriptors: Course Descriptions, Curriculum Development, Foreign Countries, High Schools
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Leonard, William H.; And Others – American Biology Teacher, 1996
Describes the philosophy, development, content structure, and general instructional strategy of BioCom, an introductory biology curriculum for the heterogeneously mixed high school science classroom. Discusses recent recommendations by national commissions and science education research and similarities and differences between BioCom and ChemCom.…
Descriptors: Biology, Community, Curriculum Development, Educational Change
Yamamoto, Karen N. – 1997
The Foundational Approaches in Science Teaching (FAST) is an interdisciplinary science program that began as a curriculum reform effort in the mid-1960s. This historical study provides insights into the FAST project and contributes to an understanding of the dynamics of survival of curricular and instructional innovations. Data collection methods…
Descriptors: Curriculum Development, Educational Change, Educational Resources, Educational Strategies
Heintschel, Ruthann M. – 1982
Because the decline in high quality and well-attended science education programs has been a source of concern to educators, policymakers, and leaders of business and industry, a survey of secondary school science education was conducted in 1981 by the Ohio Department of Education. Questionnaires were sent to 161 public high schools, representing…
Descriptors: Curriculum Development, Department Heads, High Schools, Laboratory Safety
Waddington, D. J., Ed. – 1984
This eight-chapter book is intended for use by chemistry teachers, curriculum developers, teacher educators, and other key personnel working in the field of chemical education. The chapters are: (1) "The Changing Face of Chemistry" (J. A. Campbell); (2) "Curriculum Innovation in School Chemistry" (R. B. Ingel and A. M.…
Descriptors: Chemistry, Curriculum Development, Educational Trends, Evaluation Methods