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Bacon, C. M.; McDougal, J. R. – Journal of Engineering Education, 1971
Laboratory activities give students an opportunity to interact with computers in modes ranging from remote terminal use in laboratory experimentation to the direct hands-on use of a small digital computer with disk memory and on-line plotter, and finally to the use of a large computer under closed-shop operation. (Author/TS)
Descriptors: College Science, Computer Assisted Instruction, Computer Oriented Programs, Computer Programs
Jones, William L. – Journal of Engineering Education, 1971
Descriptors: College Science, Computer Oriented Programs, Course Descriptions, Electronics
Peer reviewedCawthorne, R. G. – Physics Education, 1972
Descriptors: College Science, Conference Reports, Curriculum Development, Educational Objectives
Peer reviewedChesley, Robert E.; Roxas, Segundo – Physics Teacher, 1972
Briefly describes the educational situation in the Philippines and the lack of materials available. Outlines the development of a national physics curriculum combining aspects of PSSC and HPP courses. Teacher training programs were developed to implement the curriculum. (TS)
Descriptors: Course Organization, Curriculum Development, Inservice Education, Inservice Teacher Education
Sandery, P. – South Australian Science Teachers Journal, 1971
Descriptors: Audiovisual Aids, Closed Circuit Television, Instruction, Laboratory Procedures
Peer reviewedHoddeson, Lillian Hartmann – Physics Teacher, 1972
Methods, based on historical techniques, are described which may be used to determine the relative density of irregularly shaped objects of various composition. (TS)
Descriptors: College Science, Density (Matter), Instructional Materials, Laboratory Experiments
Peer reviewedGreen, Ben A., Jr. – Journal of College Science Teaching, 1971
Descriptors: College Science, Course Organization, Educational Psychology, Instruction
Peer reviewedBertke, Mary Christopher – Physics Teacher, 1971
Descriptors: Case Studies, Course Descriptions, Curriculum Development, Grade 10
Peer reviewedBrown, Sanborn C. – Physics Teacher, 1971
Presents the recommendations and guidelines for the improvement of the physics instruction adopted by a group of physics educators at a conference in Eger, Hungary. (DS)
Descriptors: College Science, Conference Reports, International Education, Physics
Peer reviewedBoblick, John M. – Physics Teacher, 1971
Descriptors: Cognitive Tests, Computer Assisted Instruction, Computer Oriented Programs, Evaluation
Swann, A. Henry – Sci Educ, 1969
Descriptors: Academic Education, Chemistry, Institutes (Training Programs), Physics
Anger, C. D.; Prescott, J. R. – Amer J Phys, 1970
Describes a dry- lab" experiment for the college freshman laboratory, in which the essential features of Browian motion are given principles, using the Monte Carlo technique. Calculations principles, using the Monte Carlo technique. Calculations are carried out by a computation sheme based on computer language. Bibliography. (LC)
Descriptors: College Science, Computer Assisted Instruction, Instruction, Kinetic Molecular Theory
Staples, Betsy – Creative Computing, 1983
Herbert Simon (Nobel prize-winning economist/professor) expresses his views on human and artificial intelligence, problem solving, inventing concepts, and the future. Includes comments on expert systems, state of the art in artificial intelligence, robotics, and "Bacon," a computer program that finds scientific laws hidden in raw data.…
Descriptors: Artificial Intelligence, Computer Oriented Programs, Computer Programs, Computer Science
Peer reviewedFraknoi, Andrew – Mercury, 1983
Provided in two separate annotated lists are technical and nontechnical astronomy books. Categories in the latter group include: general astronomy; astronomy textbooks; amateur astronomy; astronomy history; life on other worlds; astrophysics; the solar system; space exploration; and the sun. (JN)
Descriptors: Astronomy, Books, College Science, Higher Education
Peer reviewedIona, Mario – Physics Teacher, 1983
Because voltage is a difficult concept to comprehend, it is expected that textbook authors would be clear/consistent in their presentation. Presents 11 examples in which the concept is explained or used (taken from one book), suggesting that the presentation makes it difficult for students to develop an understanding of voltage. (JN)
Descriptors: College Science, Electricity, High Schools, Higher Education


