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Ridgway, David W.; Pimentel, George C. – High Sch J, 1970
Descriptors: Chemistry, Curriculum Development, Instructional Materials, Science Curriculum
Keohane, Kevin – Educ Training, 1969
The Dainton committee indicated that science must not be directed simply at the committed students. Curriculum changes, including those related to teaching science as a unity, could have a profound effect in making science more attractive and relevant. (JK)
Descriptors: Achievement Tests, Foreign Countries, Interdisciplinary Approach, Mathematics Curriculum
Arnold, R. W. – South Australian Science Teachers Journal, 1971
Descriptors: Guidelines, Individualized Programs, Instruction, Science Curriculum
Geotimes, 1971
Presents tabulated data of questionnaire responses from 207 colleges. More than 30 groups of data are included relating to various aspects of geology programs including enrollment, student and faculty data and courses. (PR)
Descriptors: College Programs, College Science, Earth Science, Educational Trends
Thomas, Adrian – Programmed Learning Educ Technol, 1970
Descriptors: Academic Achievement, Comparative Analysis, Conventional Instruction, Junior High School Students
Peer reviewedBraunwald, Eugene; Grobstein, Clifford – Journal of Medical Education, 1970
Plan developed by University of California, San Diego, School of Medicine to teach students the relationship between pre clinical sciences and the practice of medicine. (IR)
Descriptors: Clinical Experience, Coordination, Curriculum Enrichment, Departments
Welch, Wayne W. – Rev Educ Res, 1969
Descriptors: Curriculum Evaluation, Educational Improvement, Educational Objectives, Educational Research
Roebuck, Martyn – Programmed Learning Educ Technol, 1970
This short paper describes a situation where one technique appears to teach more effectively than the other but where the conclusion drawn is different." (Author)
Descriptors: Conventional Instruction, Educational Research, Physics, Program Effectiveness
Peer reviewedBogner, Donna – Journal of Chemical Education, 1983
Describes an eight-module, high school chemistry curriculum (including outline of course content) which encourages students to envision chemistry as a science based on general, related concepts rather than on a discipline composed of segmented, isolated topics. Module 1 objectives, assignments, laboratory experiences, and test are available from…
Descriptors: Chemistry, Course Content, Course Descriptions, High Schools
Peer reviewedRomey, William D.; Elberty, William T., Jr. – Journal of Geological Education, 1983
Discusses rationale for, goals/organization of, and problems related to geology minicourse program. The program provides a framework for students to construct a tailor-made, individualized course in which a "walk-through" (poster session) replaces the traditional final examination. Includes results of course evaluations and listing of minicourses…
Descriptors: College Science, Course Descriptions, Course Objectives, Geology
Peer reviewedConway, John R. – Journal of College Science Teaching, 1983
Courses not appearing in Elmhurst's college catalog are offered during an interim period (January). These courses provide students with innovative educational experiences apart from the traditional curriculum. Development and description of an interim biology course in the Caribbean are discussed. Includes texts used, on-campus orientation, and…
Descriptors: Biology, College Science, Course Descriptions, Curriculum Development
Peer reviewedNagel, Miriam C. – Journal of Chemical Education, 1982
Describes a course designed to provide secondary school science teachers with the background necessary to implement an effective safety program for their science labs. Lectures, demonstrations, group discussions, slides, films, videotapes, and guest speakers were utilized in the two-credit hour, summer course. Evaluations indicated course…
Descriptors: Chemistry, Course Descriptions, Laboratory Safety, Science Curriculum
Peer reviewedMcClelland, J. A. G. – School Science Review, 1982
In part 1 (SE 532 193) an outline of Ausubel's learning theory was given. The application of the theory to elementary school science is addressed in this part, clarifying what elementary science means and indicating how it relates to what may be expected to be already known by elementary school children. (Author/JN)
Descriptors: Elementary Education, Elementary School Science, Learning, Learning Theories
Peer reviewedGoodwin, Peter – Physics Teacher, 1982
Discusses a high school physics course in which physics is developed from something students have seen or experienced rather than starting with physics and applying it to a topic. Instructions for obtaining a sample unit and course outline are provided. (Author/JN)
Descriptors: Course Descriptions, Curriculum Development, High Schools, Physics
Peer reviewedYager, Robert E. – Journal of Research in Science Teaching, 1982
Using Project Synthesis as an example of qualitative synthesis research in science education, discusses the characteristics of such research: using research teams to provide perspectives and viewpoints; using variety of data sources; including a conceptual scheme for accomplishing synthesis; and concluding with, among others, an analysis of…
Descriptors: Curriculum Development, Elementary Secondary Education, Research Design, Research Problems


