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Harlow, Danielle; Otero, Valerie K. – Science and Children, 2005
What happens when university curriculum developers are mixed with motivated elementary teachers? ? An awesome learning collaboration that benefits researchers, teachers, and students! That's what the authors discovered when they--university researchers involved in the Physics for Elementary Teachers (PET) project--teamed up with local elementary…
Descriptors: Program Descriptions, Science Programs, Physics, Cooperation
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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
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Bodey, D. W. – Physics Education, 1985
The Advanced Physics Project for Independent Learning (Appil) consists of 10 units based on three themes, namely, materials, forces and fields, and waves. Discusses the content and aims of the project, its emphasis on student-centered learning, managerial advantages, characteristics of the teacher's role, resource implications, and other topics.…
Descriptors: Curriculum Development, Independent Study, Physics, Program Administration
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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
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Science Teacher, 1984
The Search for Excellence in Science Education (SESE) project gives national recognition to outstanding science programs. Descriptions of five high school physics programs selected by SESE are provided. Unique aspects of the programs, instructional strategies, and other areas are included. (BC)
Descriptors: Curriculum Development, High Schools, Physics, Program Content
American Association of Physics Teachers, Washington, DC. – 1988
Choosing the proper content for high school physics courses is not an easy task for the teacher or the school. Depth and breadth of coverage, student interests and background and teacher strengths may by considered. This paper provides help for teachers in choosing course content. Topics are: (1) scope of physics; (2) list of seven basic…
Descriptors: Course Content, Course Descriptions, Curriculum Development, Educational Improvement
Manitoba Dept. of Education, Winnipeg. – 1984
This guide, developed for the physics 200, 300 program in Manitoba, is designed to articulate with previous science courses; provide concepts, processes, and skills which will enable students to continue in physics-related areas; and relate physics to practical applications in everyday life. It includes a program overview (with program goals and…
Descriptors: Behavioral Objectives, Core Curriculum, Course Descriptions, Course Objectives
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Jewett, John W., Jr.; Lessie, Douglas – Journal of College Science Teaching, 1983
Describes a two-semester laboratory program designed to motivate students. The program consists of computer-oriented modules and discovery approach laboratory exercises. Students complete similar computer/laboratory material during the first semester but elect one of three tracks during the second semester (computer, every-day life, and…
Descriptors: College Science, Computer Oriented Programs, Curriculum Development, Higher Education
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Illinois Univ., Chicago. Chicago Circle Campus. – 1974
The course outlines presented in this report are intended to be used to teach astrophysics to nonscience majors at the junior and senior college level. An extensive set of notes are included which can be useful to an instructor as guidelines for presentation. Additional equipment and references for use in teaching astrophysics are suggested. (SA)
Descriptors: Astronomy, College Science, Course Content, Course Descriptions
Brophy, M.; Fryars, M. – 1983
Seychelles Integrated Science (SIS), a 3-year laboratory-based science program for students (ages 11-15) in upper primary grades 7, 8, and 9, was developed from an extensive evaluation and modification of previous P7-P9 materials. This P8 SIS unit deals with: (1) changes in temperature which make matter expand and contract (and how this affects…
Descriptors: Atomic Theory, Curriculum Development, Heat, Integrated Curriculum
Gerlovich, Jack A.; And Others – 1985
This document was developed to encourage and aid local schools in the assessment of their science curricula on a continuous basis. It provides: (1) a 21-step implementation schedule for conducting a science curriculum assessment and/or revision; (2) a model for assisting schools in developing their science philosophy, goals, and topics; (3)…
Descriptors: Biology, Chemistry, Curriculum Development, Curriculum Evaluation