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Peer reviewedHounshell, Paul B.; Madrazo, Gerry M., Jr. – School Science and Mathematics, 1979
Rationale and format for classroom debates in science are given. Suggested possible topics include: euthanasia, genetic engineering, pollution, evolution, drug abuse, and nuclear power. (MK)
Descriptors: Communication Skills, Debate, Inquiry, Science Curriculum
Peer reviewedBlatt, Rita G.; Swetz, Frank – School Science and Mathematics, 1980
Chemical education in the People's Republic of China is examined by looking at a university entrance examination and the study guide used in preparation for this examination. (MK)
Descriptors: Chemistry, Chinese, Chinese Culture, College Admission
Kuhn, David J. – Illinois Schools Journal, 1979
Students in grades K-12 must be taught basic science information and concepts related to potential energy resources and conservation measures, and skills in problem solving and social decision making. Also needed are value clarification skills that would enable people to reexamine their attitudes in the light of new information. (Author/GC)
Descriptors: Curriculum Development, Elementary Secondary Education, Energy Conservation, Science Curriculum
Peer reviewedBridger, J. F. D. – Journal of Geological Education, 1979
The interdisciplinary curriculum of the Hull College of Higher Education is described. A course entitled "Evolution and Prehistory" combines geology with prehistoric archaeology. (Author/SA)
Descriptors: Archaeology, College Science, Evolution, Geology
Peer reviewedGega, Peter C. – National Elementary Principal, 1980
The success of science instruction programs is linked to the presence of representative personnel on the program selection committee, the availability of materials, and the adaptation of the program to local needs. Administrative leadership is vital in each of these areas. (Author/IRT)
Descriptors: Elementary Education, Instructional Materials, Science Curriculum, Science Education
Peer reviewedOrlich, Donald C. – National Elementary Principal, 1980
Outlines the characteristics of an "ideal" modern science program, notes some sources of guides, gives examples of prototype programs, and discusses staff development, program implementation, and administrative considerations. (IRT)
Descriptors: Elementary Education, Instructional Materials, Instructional Programs, Principals
Peer reviewedPhysics Education, 1977
Briefly discusses the contents of this issue, which concentrates on providing a survey of the wide variety of courses available to English school-leavers who wish either to specialize in physics or to include some physics along with other subjects in their studies. (MLH)
Descriptors: College Science, Curriculum, Higher Education, Part Time Students
Peer reviewedJarman, Ruth; McAleese, Liam – Physics Education, 1996
Reports on a study of the implementation of the new science curriculum in secondary schools in Northern Ireland. Findings suggest that astronomy has caught the interest of many students. Concludes that these findings justify the inclusion of astronomy in the Northern Ireland Science Curriculum. Contains 12 references. (JRH)
Descriptors: Astronomy, Educational Change, Foreign Countries, Higher Education
Peer reviewedDorland, Dianne; Baria, Dorab N. – Chemical Engineering Education (CEE), 1995
Describes a sequence of two courses included in the chemical engineering program at the University of Minnesota, Duluth that deal with the processing of hazardous wastes. Covers course content and structure, and discusses developments in pollution prevention and waste management that led to the addition of these courses to the curriculum.…
Descriptors: Chemical Engineering, Course Descriptions, Hazardous Materials, Higher Education
Peer reviewedDodick, Jeff; Orion, Nir – American Biology Teacher, 2003
Discusses challenges faced in the teaching and learning of evolution. Presents a curricular program and a case study on evolutionary biology. Investigates students' conceptual knowledge after exposure to the program "From Dinosaurs to Darwin," which focuses on fossil records as evidence of evolution. (Contains 32 references.) (YDS)
Descriptors: Biology, Evolution, Foreign Countries, High Schools
Peer reviewedRudolph, John L. – Science Education, 2003
Describes current debates over the nature of science in the science curriculum. Illustrates the subtle ways in which epistemological portrayals have been influenced with regard to the public's relationship with institutional science in the United States by using the curricular ideas of John Dewey and Joseph Schwab as an historical perspective.…
Descriptors: Epistemology, Inquiry, Science Curriculum, Science Education
Wiebe, Arthur – AIMS, 1996
This is the fourth in a series of articles introducing the recently initiated Activities Integrating Math and Science (AIMS) program for the development of a pattern-based mathematics/science curriculum. Discusses proportional relationships, proportional reasoning at the manipulative level, proportional reasoning expressed as written language,…
Descriptors: Elementary Secondary Education, Interdisciplinary Approach, Mathematics Curriculum, Pattern Recognition
Peer reviewedWymer, Paul; Finegold, Peter – Education in Science, 1997
Proposes that a successful school science curriculum is one which engages rather than coerces pupils and which caters to both prospective scientists and informed citizens. Argues that to produce such a curriculum, it is essential that teachers and pupils are fully involved in the revision process. Contains 10 references. (JRH)
Descriptors: Educational Change, Elementary Secondary Education, Foreign Countries, Science Curriculum
Stepenuck, Stephen – NEACT Journal, 2002
Reports on the use of a technique that involves students in researching the hazardous properties of chemicals they are about to use. Students include this information in their lab reports focusing on product and company identification and hazards identification. (DDR)
Descriptors: Chemistry, Educational Strategies, Higher Education, Laboratory Safety
Peer reviewedGaskell, Jim – Canadian Journal of Science, Mathematics and Technology Education, 2002
Explains a proposal for society to be the driver for scientific literacy and the need to understand the roots of persistent difficulty in incorporating useful knowledge into the secondary school curriculum. Discusses changes taking place in the economy, the idea of enlisting industry as an ally to legitimate alternative forms of knowledge, and…
Descriptors: Educational Change, Educational Policy, Futures (of Society), Science Curriculum


