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Paull, R. A. – J Geol Educ, 1969
Descriptors: College Science, Costs, Earth Science, Educational Programs
Peer reviewedHubert, Gordon – Physics Education, 1983
Presents and discusses results of a questionnaire survey of college/polytechnic students (N=213) on their perceptions of and motivation for embarking on a combined-degree physics program. Areas/topics addressed include course structures of responding colleges/students, entrance requirements, student background, reasons behind choice of first year…
Descriptors: College Science, Foreign Countries, Higher Education, Physics
McKean, Kevin – Discover, 1983
Highlights activities and curriculum at the Bronx High School of Science (New York). The curriculum, which includes independent research projects, is designed to give students direct experience in science. Includes comments by and about current and former students (including several Nobel prize winners). (JN)
Descriptors: High School Students, High Schools, Program Descriptions, Science Curriculum
Peer reviewedFortner, Rosanne; Mayer, Victor J. – Current: The Journal of Marine Education, 1980
Described are investigations related to fisheries education developed by the Ohio Sea Grant Education Office as a part of a series of Oceanic Education Activities for Great Lake Schools. The investigations discussed are "Yellow Perch in Lake Erie," which concerns fisheries management, and "It's Everyone's Sea: Or Is It," which…
Descriptors: Fisheries, Marine Biology, Science Activities, Science Curriculum
Peer reviewedSteinker, Don C. – Journal of Geological Education, 1979
Justification for maintaining field experience in undergraduate geological education is presented. Emphasis is placed on educating the student rather than providing technical training. (SA)
Descriptors: College Science, Field Instruction, Geology, Higher Education
Peer reviewedUlanski, Stanley Leon – Journal of Geological Education, 1995
Surveys of curriculum changes of (n=163) colleges and universities offering 4-year undergraduate programs in geology found that 77% revised their major geology programs in the previous 3 years and 74% reported that the greatest incentive for change was concern about pedagogy. Includes survey. (MKR)
Descriptors: College Science, Colleges, Educational Change, Geology
Peer reviewedHickey, Daniel T.; Zuiker, Steven J. – Science Education, 2003
Outlines a sociocultural perspective on program evaluation consistent with sociocultural views of knowing and learning. Perspective is characterized by rigorous use of multiple-choice tests, performance assessments, and event-based analyses; a dialectical approach to conflicting conclusions from individual assessments and between individual and…
Descriptors: Accountability, Elementary Secondary Education, Evaluation Methods, Identification (Psychology)
Peer reviewedEndler, Lorna C.; Bond, Trevor – Research in Science Education, 2001
Observes the progressive change in the cognitive development of students (n=141) over the course of their secondary education in an Australian private school. Analyzes data to investigate children's cognitive development across years 8, 10, and 12. Examines the influence of the Cognitive Acceleration through Science Education (CASE) Thinking…
Descriptors: Academic Achievement, Cognitive Development, Foreign Countries, Science Curriculum
Peer reviewedBrown, Pauline; McLean, Michael – Investigating, 2001
Introduces the Australia Science Festival and explains science teachers' involvement in planning, execution, and writing curriculum. Provides information on participation in the festival. (YDS)
Descriptors: Foreign Countries, High Schools, Science Curriculum, Science Education
Mintz, Ellen; Calhoun, Jeri – Science and Children, 2004
Believing that science could be used as a vehicle for increasing student achievement across the curriculum, seven science resource teachers in the South Carolina Lowcountry designed a professional development program funded through a Local Systemic Change grant from the National Science Foundation called Project Inquiry. Science notebooks, used in…
Descriptors: Professional Development, Science Programs, Science Curriculum, Resource Teachers
Woolley, T. G. – South Australian Science Teachers Journal, 1975
Describes the use of modules to teach secondary science subjects at Para Vista High School in Australia. Five main science subjects (physics, chemistry, biology, earth science, and unified science) are divided into nine modules each. Students may sign up, according to their schedule, to complete the modules of their choice. (MLH)
Descriptors: Curriculum, Flexible Scheduling, Instruction, Learning Modules
Bergman, Abby B. – 1986
Elementary science instruction in the Tenafly Public Schools became virtually nonexistent in the early 1980's and based on this realization, members of that school system embarked upon a 3-year curriculum renewal cycle. The process followed in the curriculum development plan is somewhat unique and may serve as a model for other school districts to…
Descriptors: Curriculum Development, Curriculum Evaluation, Educational Objectives, Elementary Education
Peer reviewedReid, Donald; Booth, Philip – School Science Review, 1974
Briefly reviews British science projects using independent learning, summarizes the Intermediate Science Curriculum Study (ISCS), and considers how far this project can be applied to British conditions. (JR)
Descriptors: Individualized Instruction, Individualized Programs, Program Descriptions, Science Curriculum
Campbell, Clifton P. – 1980
Presented is a two-year associate degree curriculum for Engineering Technology. Specializations are provided in civil, electronics, and mechanical technology. The civil engineering technology specialization facilitates three major areas of study, and mechanical technology includes design and production options. Each curriculum was designed to…
Descriptors: Engineering Education, Engineering Technology, Higher Education, Program Descriptions
Klopfer, Leopold E. – 1970
This paper presents a two dimensional chart of student behavior and subject matter content for facilitating the development of the Individually Prescribed Instruction (IPI) science curriculum, or any science curriculum. Within this framework, behavioral objectives are formulated, science subject matter content is selected, student learning…
Descriptors: Behavioral Objectives, Charts, Classification, Culture

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