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Physics Education | 12 |
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Bunn, J. P. | 1 |
Coleman, J. E. | 1 |
Cryer, Patricia | 1 |
Gardiner, E. D. | 1 |
Hersee, John | 1 |
Ingram, D. J. E. | 1 |
Jevons, F. R. | 1 |
Licht, Pieter | 1 |
Nicholl, Brian | 1 |
Ogborn, Jon | 1 |
Ormell, Christopher | 1 |
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Ogborn, Jon – Physics Education, 2002
Who owns a new science course once it has been developed? If teachers teach a course in their own way, does this transformation improve or deform it? The development of "Advancing Physics" provokes some fresh thought about these questions. (Author/MM)
Descriptors: Curriculum Development, Innovation, Physics, Program Descriptions

Gardiner, E. D. – Physics Education, 1972
The organization of education in Australia is briefly described. Revisions and development of physics curricula, including British and American projects, are discussed. (TS)
Descriptors: Course Organization, Curriculum Development, International Education, Physics

Williams, W. F. – Physics Education, 1971
Briefly reviews the broad-based first degree programs in British Universities and considers the general problems of such programs. Explains the general approach used at the University of Leeds, including seven combined degree programs with physics as one principle subject. Employment prospects for graduates are considered good. (PR)
Descriptors: College Programs, College Science, Curriculum Development, Fused Curriculum

Jevons, F. R. – Physics Education, 1972
Suggests that the curriculum include a balance of both science and non-science and that the thought process of science be applied in non-science situations. Schools and colleges must expose students to this application of scientific thinking. Knowledge in breadth does not necessarily mean lower standards. (PS)
Descriptors: College Science, Curriculum Development, Integrated Curriculum, Program Descriptions

Ormell, Christopher – Physics Education, 1975
Explains the terms "naturalistic" and "formalistic" as they apply to mathematics. Outlines the problems involved in deciding what kind of mathematics is appropriate for the average sixth former. Identifies new ideas in the applicability of mathematics and presents a case for teaching mathematics from a naturalistic point of view. (GS)
Descriptors: Curriculum Design, Curriculum Development, Educational Philosophy, Mathematical Applications

Ingram, D. J. E. – Physics Education, 1975
New physics programs in Great Britain include a program with emphasis on mathematics and other sciences, and a joint honors program combining physics with another discipline, such as philosophy, economics, or English. Future programs may include even broader programs, in areas such as energy science or resources utilization. (MLH)
Descriptors: College Science, Curriculum, Curriculum Development, Higher Education

Coleman, J. E.; Bunn, J. P. – Physics Education, 1976
Describes a modular approach to science scheduling in use at a polytechnic institution. Along with various course alternatives, students spend one year during training in an industrial setting. (CP)
Descriptors: Curriculum Development, Engineering Education, Flexible Scheduling, Physics

Woolnough, Brian – Physics Education, 1975
Discusses problems related to the lack of mathematical competence in school physics, the contribution of modern math to the teaching of school physics, and the lack of cooperation between physics and math teachers. Presents a promising model to create a satisfactory liaison between math and science in the schools. (GS)
Descriptors: Curriculum Development, Instruction, Mathematics Education, Models

Cryer, Patricia – Physics Education, 1972
Describes a physics teaching approach used in England characterized by involving students with most of the work and utilizing teachers' time for conferences with each student about twice a week. Individual's progress was evaluated during conferences and joint sessions. (PS)
Descriptors: Curriculum Development, Instruction, Physics, Program Descriptions

Hersee, John – Physics Education, 1972
Descriptors: College Bound Students, Course Descriptions, Curriculum Development, Mathematical Applications

Nicholl, Brian – Physics Education, 1982
Discusses aims of educational projects sponsored by British Petroleum Company (BPC) and British Gas Corporation (BGC). Includes rationale for including technology in school curricula and types of curriculum materials produced by BPC and BGC. (SK)
Descriptors: Curriculum Development, Industry, Physics, Program Descriptions

Licht, Pieter – Physics Education, 1991
A program for teaching the concepts of electric energy, voltage, and current is proposed. The ideas and concepts are introduced in a sequence that places more emphasis on some aspects that are normally treated very briefly. A phenomenological orientation, qualitative and quantitative micro- and macroscopic treatments, and the inclusion of the…
Descriptors: Course Content, Curriculum Development, Electric Circuits, Electricity