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Peer reviewedSchaefer, Gerhard – European Journal of Science Education, 1981
Presents a frame syllabus for biology teaching at the primary and secondary school levels, covering the age range 6 to 18 years. The topics listed, with resulting implications for school life and society, can be used to prepare state-level biology syllabi and for curriculum reform. (Author/SK)
Descriptors: Articulation (Education), Biology, Course Descriptions, Curriculum Development
Greenberg, Daniel S. – MATYC Journal, 1981
The recent White House reviews of science and engineering education suggest that sagging science and mathematics standards in American classrooms are a liability to industrial performance and international performance. (MP)
Descriptors: Academic Standards, Mathematics Curriculum, Mathematics Education, Mathematics Instruction
Peer reviewedCohen, Ita; Ben-Zvi, Ruth – Journal of Chemical Education, 1982
A comprehensive teaching/learning chemical energy package was developed to overcome conceptual/experimental difficulties and time required for calculation of enthalpy changes. The package consists of five types of activities occuring in repeated cycles: group activities, laboratory experiments, inquiry questionnaires, teacher-led class…
Descriptors: Chemistry, Course Descriptions, Curriculum Evaluation, Energy
Peer reviewedWorthy, Ward – Chemical and Engineering News, 1982
Highlights activities, workshops, and lectures at the seventh Biennial Conference on Chemical Education held at Oklahoma State University (Stillwater) focusing on the current shift from principles and theories to applications in college and high school chemistry courses. (JN)
Descriptors: Chemistry, College Science, Conferences, Curriculum Development
Peer reviewedLipschitz, Irving – Journal of Chemical Education, 1981
Describes the use of the Gaussian 70 computer programs to carry out quantum chemical calculations, including single calculations, geometry, optimization, and potential surface scans. Includes a summary of student activities and benefits for students in an honors freshman chemistry course. (SK)
Descriptors: Chemistry, College Science, Computer Oriented Programs, Higher Education
Peer reviewedFriedstein, Harriet, Ed. – Journal of Chemical Education, 1981
Lists commercially available audiovisual materials by subject area. Includes title, producer (addresses given), catalog number, format (film, filmstrip, cassette, slides), and prices. Subject areas include: elements; equilibrium; gases; laboratory techniques and experiments; general chemistry; introductory materials (including mathematics); and…
Descriptors: Audiovisual Aids, Chemistry, College Science, Filmographies
Peer reviewedRasmussen, Paul G.; And Others – Journal of Chemical Education, 1980
Evaluated and described is an innovative freshman chemistry one-semester laboratory, relating changes in the course to objectives in decreasing lab expenditures, increasing learning, increasing quality, improving attitudes, and producing materials for widespread use. Lists topics for experiments, videotape presentation, and computer simulation.…
Descriptors: Audiovisual Aids, Chemistry, College Science, Computer Assisted Instruction
Peer reviewedLewin, Roger – Science, 1982
Some of the testimony of the scientists supporting creation science in the creationism trial in Little Rock, Arkansas, is reported. (PB)
Descriptors: Biological Sciences, Conflict, Controversial Issues (Course Content), Court Litigation
Peer reviewedBaca, Bart J. – American Biology Teacher, 1982
A biology field course organized to study the effects of the June 1979 Mexican oil spill on the marine biology of the shores of south Texas and Mexico is described, demonstrating how to effectively couple a biology classroom course with a natural or human caused environmental disaster. (Author/DC)
Descriptors: Biology, College Science, Course Descriptions, Environmental Education
Peer reviewedMoore, John W., Ed. – Journal of Chemical Education, 1982
Nine computer programs (available from the authors) are described including graphic display of molecular structures from crystallographic data, computer assisted instruction (CAI) with MATH subroutine, CAI preparation-for-chemistry course, calculation of statistical thermodynamic properties, qualitative analysis program, automated conductimetric…
Descriptors: Calculators, Chemical Reactions, Chemistry, College Science
Peer reviewedSwetz, Frank J.; Meerah, Tamby Subahan Mohd – Science Education, 1982
Curriculum planning, even in a developed country, is not without problems. Curriculum planners in developing countries are faced with dilemmas at almost every level of decision making. The revision of the Malaysian physics curriculum is detailed in this article. (PB)
Descriptors: Curriculum Development, Developing Nations, Integrated Curriculum, Physics
Peer reviewedWorley, Sister Elizabeth – Journal of Chemical Education, 1982
Descriptions of high school chemistry courses are provided, including organic chemistry, introductory chemistry for mathematics-shy students, and a course for eighth-graders taught by high school seniors. (SK)
Descriptors: Chemistry, Course Descriptions, Curriculum Development, Organic Chemistry
Peer reviewedChemical and Engineering News, 1982
Presents comments from a symposium at which scientists and science educators agreed that science education should focus more on problem solving and less on mastery of content. Also suggests ways to select textbooks that support a problem-solving approach. (DC)
Descriptors: Chemistry, College Science, Course Content, Higher Education
Peer reviewedIatridis, Mary – Science and Children, 1981
Describes a preschool science-based curriculum which encompasses four broad topics: water, small creatures, gadgetry, and environmental terraria. Includes a description and list of activities for each topic. Presents research suggesting that children participating in this curriculum increased their self-directed discovery and verbalized curiosity.…
Descriptors: Curriculum Development, Elementary Education, Instructional Materials, Preschool Education
Peer reviewedMaddock, M. N. – Studies in Science Education, 1981
Draws on literature from the fields of science education, anthropology, and other areas. Proposes a viewpoint that science and science education are cultural enterprises which form a part of the wider cultural matrix of society and that educational considerations concerning science must be made in light of this wider perspective. (DS)
Descriptors: Anthropology, Communication (Thought Transfer), Foreign Countries, Higher Education


