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Jeng, Ling Hwey – Journal of Education for Library and Information Science, 1993
Compares traditional and nontraditional curricula in the area of organization of information and proposes a new model for organization of information in which information is redefined and cataloging is perceived as a mode of organizational behavior. Some implications of this model on the core curriculum for organization of information are…
Descriptors: Cataloging, Change Strategies, Core Curriculum, Course Descriptions
Strange, Jerry D. – Engineering Education, 1980
Discusses reasons for including differential equations in the required course of study for engineering technology (ET) students. Briefly describes mathematics requirements of the ET Division of the School of Engineering at the University of Dayton. Provides an outline of their differential equations course for ET students. (CS)
Descriptors: College Science, Core Curriculum, Course Descriptions, Degree Requirements

Solomon, Joan – Physics Education, 1981
A teacher's viewpoints and comments on the core syllabus for A-level physics which appeared in the May 1980 issue of "Physics Education" are presented. (SK)
Descriptors: Core Curriculum, Course Content, Course Descriptions, Curriculum Development

Chambers, R. G. – Physics Education, 1981
Summarizes a university professor's viewpoints and comments on the advantages and disadvantages of the core syllabus for A-level physics presented in the May 1980 issue of "Physics Education." (SK)
Descriptors: Core Curriculum, Course Content, Course Descriptions, Curriculum Development

Tebbutt, M. J. – Physics Education, 1981
Summarizes the viewpoints and comments of a science educator on the core syllabus for A-level physics which appeared in the May 1980 issue of "Physics Education," including the nature of the syllabus, its lack of clarity or detail, and its lack of scope. (SK)
Descriptors: Core Curriculum, Course Content, Course Descriptions, Curriculum Development

Taylor, Charles – Physics Education, 1981
States the viewpoints of the Physics Interface Project (PIP) on the core syllabus for A-level physics presented in the May 1980 issue of "Physics Education," including potential problems with the syllabus and its content. Indicates that PIP materials will serve an important complementary function in physics instruction. (SK)
Descriptors: Core Curriculum, Course Content, Course Descriptions, Curriculum Development

Crofts, Colin – Physics Education, 1981
Presents a headmaster's viewpoints and comments on the core syllabus for A-level physics which appeared in the May 1980 issue of "Physics Education," including the necessity for instructional materials, in-service teacher learning, and feasibility studies. (SK)
Descriptors: Core Curriculum, Course Content, Course Descriptions, Curriculum Development

Warren, John – Physics Education, 1981
A university lecturer comments on the importance of adequate detail and individual interpretations of items in the core syllabus for A-level physics presented in the May 1980 issue of "Physics Education." Suggests that the syllabus fails in containing all essential elementary ideas necessary to master advanced concepts. (SK)
Descriptors: Core Curriculum, Course Content, Course Descriptions, Curriculum Development

Travers, Paul – Kappa Delta Pi Record, 1978
The author proposes content and learning experiences for an effective introductory course to education. (SJL)
Descriptors: Academic Standards, Core Curriculum, Course Content, Course Descriptions

French, H. W. – Physics Education, 1981
Supporting the concept of a core syllabus, the Council of Engineering Institutions (CEI) suggests that this syllabus for A-level physics, described in the May 1980 issue of "Physics Education," occupy 65 percent to 70 percent of instructional time and that an applied physics approach with relevance to everyday life be used. (SK)
Descriptors: Core Curriculum, Course Descriptions, Curriculum Development, Curriculum Guides
State Univ. of New York, Potsdam. Coll. at Potsdam. – 1984
Proceedings of the North Country Workshop on Science, Technology, and the Undergraduate Curriculum are presented. The Sloan Foundation's call for reform of the liberal arts and coverage of mathematics, science, and technology is noted in welcoming remarks by State University of New York, Potsdam, President Humphrey Tonkin. Stephen H. Cutcliffe…
Descriptors: College Mathematics, College Science, Core Curriculum, Course Descriptions
Rothman, A. I., Ed. – University Education News, 1981
Four articles on higher education curriculum are presented. In "The Articulate Curriculum" an approach to curriculum description is presented that is designed to have minimal ambiguity concerning the intention, content, and processes of the curriculum and that will lead to questioning several discrete factors in the curriculum planning…
Descriptors: Academic Education, Accounting, Bachelors Degrees, Business Education