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Kulhavy, David; Unger, Daniel – Journal of Service-Learning in Higher Education, 2016
Six undergraduate research projects were identified in a capstone spatial science course to demonstrate service-learning and reflection within a natural resource curriculum. Students met with state and national organizations and formulated plans for a Firewise certification program for a university; developed an historical trail encompassing…
Descriptors: Service Learning, Curriculum, Participation, Undergraduate Students

Reeves, W. J. – Science Education, 1980
Described is science content within an interdisciplinary core curriculum at the New School of Liberal Arts, Brooklyn College. The first two years of undergraduate work consist of art, literature, history, and science within a choice of five time periods. Also offered is a science and humanities course. (DS)
Descriptors: College Curriculum, College Science, Core Curriculum, Curriculum
Fairfax County Schools, VA. – 1974
Presented is one of a series of publications, Resources in Education, related to the Science Program of the Fairfax County Public Schools, 1974. A program description for K through 12 is presented to include the major goals of science education. A program description of each level is presented and Primary, Middle Elementary and Upper Elementary…
Descriptors: Course Content, Curriculum, Elementary School Science, Elementary Secondary Education

Switzer, Thomas; Voss, Burton – School Science and Mathematics, 1982
A call is made for the integration of science and social studies education in elementary and secondary schools. Examples are given of situations where instruction has been integrated over the two areas. It is felt instruction can be provided which focuses on problem solving and decision making. (MP)
Descriptors: Curriculum, Curriculum Design, Educational Change, Elementary Secondary Education
A Retrospective Account of the Development and Evaluation Processes of a Science Curriculum Project.

Fraser, Barry J.; Cohen, David – Science Education, 1989
Describes the background and 38 steps of the development of the Australian Science Education Project (ASEP) Curriculum. Discusses some implications and eight points using formative evaluation to improve science curriculum materials. (YP)
Descriptors: Curriculum, Curriculum Design, Curriculum Development, Curriculum Evaluation

Hart, E. Paul – Science Education, 1989
This paper describes how the Canadian province of Saskatchewan responded to demands for science curriculum renewal. Eleven topics for discussion in the science education field study were posed and reactions from teachers and administrators are reported. (YP)
Descriptors: Curriculum, Curriculum Development, Elementary School Science, Elementary Secondary Education
Horn, Jerry G.; Marsh, Marilyn A. – 1976
School districts were identified that were involved in implementation of recent National Science Foundation (NSF) elementary school science curricula and in corresponding in-service work. Questionnaires sent to 6 school districts, selected somewhat randomly from across the 50 states and the District of Columbia, compiled information regarding…
Descriptors: Change Strategies, Curriculum, Educational Research, Elementary Education

Wood, E. J. – Biochemical Education, 1987
Discusses the state of biochemistry education in the United Kingdom. Gives an overview of the current educational system. Lists the problems of the school children, the school teachers, and the university teachers and emphasizes problems in the school syllabi. Suggests solutions to these problems. (CW)
Descriptors: Biochemistry, Biology, Chemistry, Curriculum
Wenk, Edward, Jr. – Engineering Education, 1988
Discusses the needs and properties of human systems including issues of safety and the holistic approach in engineering. Lists a suggested introductory engineering curriculum. Describes characteristics of future realities in managing technology. (YP)
Descriptors: College Science, Curriculum, Engineering, Engineering Education

Worthy, Ward – Chemical and Engineering News, 1989
Reports on a study, Science for All Americans, by the AAAS. Notes this study is the first of three phases in Project 2061. Recommends science teaching should focus on connections rather than boundaries between traditional academic disciplines and should emphasize ideas and thinking rather than specialized vocabulary and memorized procedures. (MVL)
Descriptors: Curriculum, Elementary School Science, Science and Society, Science Curriculum

Krieger, James – Chemical and Engineering News, 1988
Stresses the need for chemical engineering education to keep abreast of current needs. Explores the need for global economics, marketing strategy, product differentiation, and patent law in the curriculum. Questions the abilities of current chemical engineering graduate students in those areas. (MVL)
Descriptors: Chemical Engineering, Chemistry, College Science, Course Evaluation
Truxal, John G. – Engineering Education, 1987
Discusses some of the concepts that are central to the courses offered by the Department of Technology and Society at the State University of New York at Stony Brook. Emphasizes the integration of technology concepts into courses dealing with problem solving, space technology, military technology and environmental studies. (TW)
Descriptors: College Science, Course Content, Curriculum, Engineering Education