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Peer reviewedBarinaga, Marcia – Science, 1990
Described is the proposed implementation of Scope, Sequence and Coordination into California and Houston schools. The rationale behind this project is discussed. The curriculum, arranged developmentally, merges different scientific subjects via discipline-bridging themes. (KR)
Descriptors: Curriculum Design, Curriculum Development, Elementary Education, Elementary Secondary Education
A Reassessment of the Effects of Inquiry-Based Science Curricula of the 60's on Student Performance.
Peer reviewedShymansky, James A.; And Others – Journal of Research in Science Teaching, 1990
In this project, a resynthesis of the research dealing with student performance in new science curricula was conducted using refined statistical procedures. Results generally supported earlier meta-analysis studies. (CW)
Descriptors: Discovery Learning, Elementary School Science, Elementary Secondary Education, Inquiry
Peer reviewedTzafestas, Spyros – European Journal of Engineering Education, 1989
Presented is an overview of the status of robotics education with information about activities and curricula for several European institutions. Some thoughts concerning the structure of a separate robotics curriculum at the university level are included. (Author/YP)
Descriptors: College Science, Electromechanical Technology, Electronic Control, Electronics
Peer reviewedGardner, Paul L. – Studies in Educational Evaluation, 1989
A traffic safety instructional package--"Science and the Road"--was assessed. It was designed by the Road Traffic Authority of Victoria (Australia) for use in tenth-grade science courses. Evaluation findings resulted in revision of the unit and implementation of more inservice courses for teachers lacking relevant biology and physics…
Descriptors: Curriculum Evaluation, Foreign Countries, Grade 10, High School Students
Peer reviewedSolomon, Joan – International Journal of Science Education, 1988
Clarifies the basic structure of a science, technology, and society (STS) course for using a tool to evaluate the course. Reports empirical data about an STS examination from 16-17 year-old British students. (Author/YP)
Descriptors: Foreign Countries, Science and Society, Science Curriculum, Science Education
Peer reviewedJegede, Olugbemiro J. – International Journal of Science Education, 1988
Describes the pattern of curricular shift in science education and the development of science, technology, and society (STS) curricula including two university cases. Outlines further development of secondary schools and the implications involved in implementing them. (Author/YP)
Descriptors: College Science, Foreign Countries, Higher Education, Science and Society
Peer reviewedTooth, Ron; And Others – Australian Journal of Environmental Education, 1988
Presents a picture of the curriculum at the Pullenvale Field Study Centre. The curriculum is based on a drama theme called "The Settlers," and relates to Year Five Social Studies. Describes the curriculum in its current form and its development. Also considers the cyclic process, involving planning, action, observation, and reflection.…
Descriptors: Dramatic Play, Elementary Education, Elementary School Science, Environmental Education
Peer reviewedRutherford, F. James – Bulletin of Science, Technology & Society, 1988
Discusses the lasting effects of the Science-Technology-Society movement. Cites the recommendations from Project 2061 as for learning goals, and suggests some changes for teaching arrangements. (YP)
Descriptors: Course Objectives, Interdisciplinary Approach, Science and Society, Science Curriculum
Peer reviewedLijnse, Piet L.; And Others – Science Education, 1990
Described is a Dutch thematics physics curriculum recently developed for the average academic secondary student. Discussed are the structure, contents of units, and systematic units of the curriculum. (CW)
Descriptors: Course Descriptions, Curriculum Development, Foreign Countries, High Schools
Peer reviewedZoller, Uri – Journal of College Science Teaching, 1990
The Individualized Eclectic Examination is described. The format, design, and philosophy of the examination that emphasizes problem solving are discussed. Sample questions, student projects, and an illustration of the implementation of the exam are included. (CW)
Descriptors: College Science, Higher Education, Problem Solving, Science and Society
Grabau, L. J. – Journal of Agronomic Education (JAE), 1990
Four models which illustrate potential orientations for baccalaureate programs in agronomy are presented. Included are Technical Training; Information Transfer; Principles Application; and Systems Agronomy. Strengths and weaknesses of each program are discussed. (CW)
Descriptors: Agronomy, Bachelors Degrees, College Science, Curriculum Development
Peer reviewedBuchwald, Caryl Edward; Bybee, Rodger Wayne – Journal of Geological Education, 1990
Presented is one approach to the reform of earth science education. Discussed are conceptual themes, the role of elementary school science, the development of positive science attitudes, selection of topics and the role of the geologist. (CW)
Descriptors: Curriculum Development, Earth Science, Educational Improvement, Educational Trends
Peer reviewedAllsop, Terry; Woolnough, Brian – Journal of Curriculum Studies, 1990
Analyzes the changing place of technology in English schools. Delineates the relationship between science and technology, and outlines three traditions for presenting technology as a subject. Examines the recent establishment of technology as a distinct subject area within the English National Curriculum. (RW)
Descriptors: British National Curriculum, Curriculum Evaluation, Elementary Secondary Education, Foreign Countries
Peer reviewedZachary, Deborah – Physics Education, 1989
Identifies and discusses the overlap between mathematics and physics at different educational levels. Presents some examples of the overlap and some suggestions for teachers. (YP)
Descriptors: Foreign Countries, Mathematical Models, Mathematics Curriculum, Mathematics Skills
Peer reviewedKotar, Michael – Science and Children, 1989
Describes science activities which use simple chemical tests to distinguish between materials and to determine some of their properties. Explains the water, iodine, heat, acid, baking soda, acid/base indicator, glucose, and sugar tests. Includes activities to enhance chemical testing and a list of suggested powders for use. (RT)
Descriptors: Chemistry, Elementary School Science, Experiential Learning, Laboratory Procedures


