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Johnson, Carolyn – Greenwood Press, 2003
Take a cyber journey through the world of science! Presenting more than 150 websites with primary source documents and authoritative data, this versatile book helps educators guide students on virtual scientific fieldtrips in all areas of science, from astronomy, biology, and chemistry to genetics, physics, and space science. Students can meet…
Descriptors: Internet, Primary Sources, Critical Thinking, Thinking Skills
Peer reviewedKuhn, David J. – Science Activities, 1974
Describes an activity used in the science methods class at the University of Wisconsin to bring preservice elementary teachers into appropriate contact with children and to give them the opportunity to try out a variety of materials and activities from the newer elementary science curricula. (JR)
Descriptors: Elementary School Science, Elementary School Teachers, Methods Courses, Preservice Teacher Education
Belanger, Maurice – Rev Educ Res, 1969
Descriptors: Concept Formation, Creative Thinking, Curriculum Development, Discovery Learning
Aldrich, James L. – Educ Leadership, 1969
Descriptors: Cross Cultural Training, Curriculum Development, Educational Programs, Educational Strategies
Klopfer, Leopold E. – Sch Rev, 1969
Descriptors: Career Planning, College Science, Curriculum Development, Educational Change
Peer reviewedShymansky, James A.; And Others – Science and Children, 1982
Highlights a quantitative synthesis of research studies on Elementary Science Study, Science Curriculum Improvement Study, and Science A Process Approach, focusing on student performance/achievement, attitudes, process skills, and basic skills. Suggests that activities and instructional strategies from the programs be incorporated into existing…
Descriptors: Academic Achievement, Basic Skills, Elementary Education, Elementary School Science
Peer reviewedWhite, Edwin P. – Science and Children, 1982
Offers suggestions and strategies to help improve elementary and middle school science programs. Focuses on three variables important in planning to improve a science program: begin slowly, proceed steadily, and minimize the risk to the people (teachers, administrators, parents) who will be affected by the changes. (Author/JN)
Descriptors: Change Strategies, Curriculum Development, Educational Change, Educational Improvement
Peer reviewedCooper, Barry – British Journal of Sociology of Education, 1983
Drawing on a recent empirical study of curriculum change in English secondary school mathematics and on the work of Kuhn, Bucher and Strauss, Archer, and Bhaskar, a tentative model for analyzing how and why changes occur in the legitimacy of particular definitions of secondary school mathematics and science subjects is developed. (Author/IS)
Descriptors: Comparative Education, Curriculum Design, Educational Change, Educational History
Peer reviewedMcGuffin, S. J. – Research in Science and Technological Education, 1983
Examines science course selection by curriculum candidates (N=2178) for Northern Ireland GCE 0 level in 1980. Data are provided for nature (biology, chemistry, physics) and number of courses selected, and achievement (pass/failure rates). Data are also reported for males/females and type of school. (JN)
Descriptors: Academic Achievement, Biology, Chemistry, Foreign Countries
Peer reviewedHodson, D.; Freeman, P. – Research in Science and Technological Education, 1983
Argues that fostering early science interest could act as a stimulus for lasting interest, affecting numbers of students opting for secondary school science courses. Identifies problems in testing this argument by research, highlighting two areas: control of inter-school variables and need for a measure of quality of primary science itself. (JN)
Descriptors: Elementary School Science, Elementary Secondary Education, Foreign Countries, Research Needs
Peer reviewedMcClelland, G. – Physics Education, 1983
Discusses the role of history, philosophy, and social implications of scientific ideas and advances related to the physics curriculum, considering who should teach what, to whom, and when. Suggests that physics teachers should have a deep and abiding interest in the history, philosophy, and social implications of science and technology. (Author/JN)
Descriptors: College Science, Higher Education, Physics, Science Curriculum
Yager, Robert E. – Science Education in Ohio, 1983
Briefly discusses five fundamental goals for science education. Goals focus on developing scientific and technological process and inquiry skills; teaching to provide scientific/technological knowledge; student demonstration of knowledge; student use of knowledge for personal/social decisions; and student examination of science/society/technology…
Descriptors: Educational Objectives, Elementary School Science, Elementary Secondary Education, Science Curriculum
Peer reviewedHodson, D.; Prophet, R. B. – School Science Review, 1983
Examines curriculum change from a historical perspective, focusing on forms of knowledge/ways of knowing. Discusses curriculum development in relation to sociology of knowledge, tracing history of change as science matured. Suggests that school science is a social construct, questioning the manipulative use and responsibility for scientifically…
Descriptors: Curriculum Development, Educational Philosophy, Epistemology, Foreign Countries
Peer reviewedDickson, David – Science, 1983
Discusses various issues related to science education reform in Great Britain. The principle concern is over the extent to which content of both courses/examinations provides children with skills/attitudes relevant to their needs in the modern world. Although all agree that changes are needed, reforms may prove elusive. (JN)
Descriptors: Course Content, Curriculum Development, Curriculum Evaluation, Educational Trends
Peer reviewedHargis, Larry G.; Evilia, Ronald F. – Journal of Chemical Education, 1982
Students develop and use actual instrumentation in this course which focuses on analog computers, digital electronics, computer interfacing, and online computer techniques. Includes a student handout on the design of a bridge amplifier unit. Mimeographed experiment directions are available from the authors. (SK)
Descriptors: Chemistry, Chromatography, College Science, Computer Oriented Programs


