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Peer reviewedDuit, Reinders – European Journal of Science Education, 1981
Discusses how fifth- to tenth-grade students can be guided to understanding energy as a conserved quantity. Includes examples of different approaches of teaching the energy concept and the concept of energy as a conserved quantity, and learning difficulties related to students' understanding of these concepts. (DS)
Descriptors: Elementary School Science, Elementary Secondary Education, Energy, Energy Conservation
Seng, Chin Pin – Journal of Science and Mathematics Education in Southeast Asia, 1980
Identified are common features of the present implementation of new school physics teaching in Southeast Asia. Implementation aids, methods, and teacher comprehension, student cognitive levels, learning styles, and a more functional physics curriculum are discussed. (DS)
Descriptors: Cognitive Development, Cognitive Style, Curriculum Development, Educational Trends
Peer reviewedKoran, John J., Jr.; Lehman, Jeffrey R. – Science and Children, 1981
Summarizes representative research relating to the critical role of attention in concept formation in science. Topics discussed include curing, manipulation of symbols, and directions for focusing attention on particular aspects of concepts. (Author/DS)
Descriptors: Attention, Concept Formation, Elementary Education, Elementary School Science
Peer reviewedDickinson, J. Thomas – American Journal of Physics, 1979
Describes a physics course designed for nonscience majors citing some observations, ideas, and methods that were used in teaching the course and in motivating the students. (GA)
Descriptors: College Science, Course Descriptions, Higher Education, Liberal Arts
Peer reviewedMarx, G. – Physics Education, 1979
This paper, presented at the conference on the role of the laboratory in physics education which was held in Oxford, England in July 1978, describes the role of the laboratory in school and university physics in Eastern Europe. (HM)
Descriptors: College Science, Conferences, Higher Education, Laboratory Equipment
Peer reviewedDougal, R. C. – Physics Education, 1979
Presents a report on a one-day meeting on "Education through Physics" which was held at the University of Stirling, Scotland on Friday 25 May, 1979. (HM)
Descriptors: Conferences, Educational Development, Educational Media, Games
Peer reviewedDe Vito, Alfred – School Science and Mathematics, 1979
This discussion of science teaching in general includes several specific examples of activities designed to be adapted to different grade levels or types of students. (MK)
Descriptors: Elementary School Science, Elementary Secondary Education, Science Activities, Science Curriculum
Peer reviewedOrear, Jay – Physics Teacher, 1979
A professor discusses the advantages and disadvantages of teaching a physics class in a large research-oriented university. Various innovative teaching techniques and the ways in which they benefit the students, are presented. (SA)
Descriptors: College Science, Course Descriptions, Demonstrations (Educational), Higher Education
Peer reviewedTobin, Kenneth; McRobbie, Campbell J. – Science and Education, 1997
Describes the teaching and learning of chemistry in an Australian high school as it relates to the beliefs about the nature of science of a teacher and a class with the curriculum actually enacted. Although the teacher and students tended to view science as an evolving and changing discipline, the actual enacted curriculum was approached as a…
Descriptors: Chemistry, Foreign Countries, Science Curriculum, Science Instruction
Peer reviewedAmerican Biology Teacher, 1990
The status of science education in the United States from the point of view of the National Association of Biology Teachers is discussed. International comparisons, and the results of education at these levels is described. Suggestions for the improvement of science education are provided. (CW)
Descriptors: College Science, Educational Improvement, Educational Trends, Elementary School Science
Peer reviewedBoardman, Shelby Jett; Buchwald, Caryl Edward – Journal of Geological Education, 1990
Summarized are factors that have been identified as playing a role in the continued strength of the geology department at Carleton College. Discussed are the local environment, curriculum, teaching methods, and the atmosphere of the department. Suggestions for increasing the strength of academic geology departments are provided. (CW)
Descriptors: College Science, Community Support, Departments, Earth Science
Peer reviewedRomey, William D. – Journal of Geological Education, 1990
Discussed are procedures for increasing understanding and appreciation of geology among undergraduates. Included are using student-centered approaches, deemphasizing the use of conventional textbooks, increasing the use of nonspecialized field programs, and increasing the experimental dimensions of geology programs. (CW)
Descriptors: College Science, Earth Science, Geology, Higher Education
Peer reviewedSmith, Sally K. Sommers; Morrison, Dane A. – Journal of College Science Teaching, 1989
Describes an interdisciplinary approach to science learning in settings usually associated with the humanities or social sciences. Explains the program, its rewards and results, the self and identity seminar, why the program works, and ways of adapting the program. (RT)
Descriptors: College Science, Experiential Learning, Humanities, Interdisciplinary Approach
Peer reviewedDunlevy, Margie Ann – Science and Children, 1989
Explains the development of a science program which was initiated to help students, parents, and other teachers appreciate science. Provides a list of materials needed, procedures, questions, and objectives for performing two of the 30 activities used in the project. (RT)
Descriptors: Elementary School Science, Experiential Learning, Motivation Techniques, Science Activities
Peer reviewedAllen-Sommerville, Lenola – Science Teacher, 1996
Describes the Science Bound project, a partnership aimed at increasing the participation of ethnic minority students in science and technology and encouraging them to prepare for careers as scientists, engineers, and technologists. Presents eight successful field-tested strategies for ensuring that students in multicultural settings learn science.…
Descriptors: Cognitive Style, Cultural Context, Educational Strategies, Elementary Secondary Education


