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Palmer, W. P. – Online Submission, 1992
For the past two years at NTU, I have been running a fourth year Bachelor of Education course on science issues. The majority of those doing the course are working primary teachers from a variety of backgrounds. The first part of the course consists of the history and philosophy of science, whilst the second part concerns science issues. The…
Descriptors: Education Courses, Ethics, Science Curriculum, Science Education
Doherty, Paul; Rathjen, Don – 1996
Exploratorium Science Snacks are miniature versions of some of the most popular exhibits at the Exploratorium, San Francisco's (California) museum of science, art, and human perception. Nearly 100 teachers worked with Exploratorium staff members to create scaled-down versions of exhibits that teachers could make using common, inexpensive,…
Descriptors: Active Learning, Demonstrations (Science), Elementary Secondary Education, Energy
Rushton, Erik; Ryan, Emily; Swift, Charles – 2001
Contrary to what many students think, heat flows from hot to cold. Working in groups of 3-4, students investigate the properties of insulators in attempts to keep a cup of water from freezing and, once it is frozen, to keep it from melting. This activity requires a 4.5-hour time period for completion. (Author/SOE)
Descriptors: Critical Thinking, Daily Living Skills, Elementary Education, Energy
Brown, Kenneth E.; Obourn, Ellsworth S. – Office of Education, US Department of Health, Education, and Welfare, 1961
The scientist and mathematician of tomorrow will come from the high school students of today. It is important to appraise this source of the future scientific manpower from time to time, both to note the trends and to judge the effectiveness of the efforts being made to bolster the defense, security and future welfare of the Nation through the…
Descriptors: High Schools, Public Schools, Secondary School Mathematics, Secondary School Science
Peer reviewedPreuss, Paul – Physics Teacher, 1983
Discusses rationale for developing the Exploratorium at San Francisco's Museum of Science, Art, and Perception. Describes typical exhibits, hands-on nature of exhibits, and function of Explainers. Presents information about Exploratorium workshops (currently oriented toward upper elementary/junior high teachers), emphasizing the nature of science…
Descriptors: College Science, Elementary School Science, Elementary Secondary Education, Exhibits
Peer reviewedCompton, C. Arthur – Science Teacher, 1983
Provided are examples of science/society scenarios for biology, chemistry, and physics classes, as well as those of an interdisciplinary nature. These scenarios present some social or ethical problems related to the discipline and pose questions for student discussions. (Includes description of a project involved in developing/piloting such…
Descriptors: Biology, Chemistry, Controversial Issues (Course Content), Decision Making
Peer reviewedCetera, Margaret M. – Journal of College Science Teaching, 1983
Presents a critical review of laboratory adaptations for visually impaired students in general science, biology, chemistry, and physics over the past 30 years. Learning modes used by these students (since these are considered when making adaptations) and ways students benefit working independently in a science laboratory are discussed. (JN)
Descriptors: Biology, Chemistry, College Science, General Science
Peer reviewedTuckman, Bruce W.; Waheed, Mohammed A. – Journal of Research in Science Teaching, 1981
Investigated whether a self-paced, individualized instruction course in chemistry and physics would result in: (1) greater level of achievement of academically underprepared students (N=80); (2) more satisfaction with instruction; and (3) more positive attitudes when compared with conventional instruction. Results indicate individualized treatment…
Descriptors: Academic Achievement, Chemistry, College Science, Conventional Instruction
Peer reviewedBisbee, Gregory D.; Kaiser, Cheryl A. – American Biology Teacher, 1997
Describes an activity that integrates biology and physics concepts by experimenting with the seed dispersal of common milkweed or similar wind-dispersed seeds. Student teams collect seeds and measure several parameters, review principles of trajectory motion, perform experiments, and graph data. Students examine the ideas of…
Descriptors: Biology, Cooperative Learning, Group Activities, Hands on Science
Joseph, Linda C. – MultiMedia Schools, 1996
K-12 students and teachers can use the Internet for planning science fair activities--for project ideas, resources, and interactive Web sites. Lists 26 science Web sites specializing in question answering, activities, experiments, optics, math, dissection, inventions, physics, space, genetics, cockroaches and worms, and Twinkies (sponge cakes).…
Descriptors: Dissection, Educational Resources, Elementary School Mathematics, Elementary Secondary Education
Peer reviewedO'Malley, Claire E.; Scanlon, Eileen – Computers and Education, 1990
Discusses cooperative problem solving among Open University physics and math students and describes three studies that investigated how to design effective computer-based support for collaborative learning in distance education. The value of peer interaction for learning and problem solving is discussed, and students' attitudes to group work are…
Descriptors: College Mathematics, Computer Assisted Instruction, Cooperative Learning, Distance Education
Peer reviewedBolton, J. P. R.; And Others – Computers and Education, 1990
Describes the development and evaluation of an interactive videodisc designed for Open University students in a physics course that explores the physical properties of water. The user interface is discussed; software is described; videodisc production is explained; and results of an evaluation of student attitudes from questionnaire responses is…
Descriptors: Computer Assisted Instruction, Courseware, Foreign Countries, Higher Education
Peer reviewedMoore, John W., Ed. – Journal of Chemical Education, 1989
Presents five computer programs: (1) Accurate Numerical Solutions of the One-Dimensional Schrodinger Equation; (2) NMR Simulation and Interactive Drill/Interpretation; (3) A Simple Computer Program for the Calculation of 13C-NMR Chemical Shifts; (4) Constants of 1:1 Complexes from NMR or Spectrophotometric Measurements; and (5) Saturation…
Descriptors: Chemistry, College Science, Computer Graphics, Computer Simulation
Peer reviewedSchool Science Review, 1989
Twenty-two activities are presented. Topics include: acid rain, microcomputers, fish farming, school-industry research projects, enzymes, equilibrium, assessment, science equipment, logic, Archimedes principle, electronics, optics, and statistics. (CW)
Descriptors: Acid Rain, Biological Sciences, Chemistry, College Science
Peer reviewedDeacon, Christopher G. – Physics Teacher, 1992
Describes two simple methods of error analysis: (1) combining errors in the measured quantities; and (2) calculating the error or uncertainty in the slope of a straight-line graph. Discusses significance of the error in the comparison of experimental results with some known value. (MDH)
Descriptors: Error of Measurement, Goodness of Fit, High Schools, Higher Education


