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Paterson, W. G. – School Science Review, 1986
Describes a British secondary school's use of a spectrometer to identify minerals. Discusses the origins of mineral spectra, the preparation of the specimen, the actual spectroscopic scanning, and the interpretation of the spectra. (TW)
Descriptors: Chemical Analysis, Foreign Countries, Light, Mineralogy
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School Science Review, 1982
Discusses laboratory procedures, classroom materials, and demonstrations including: a model for metallic/ionic structures; Friedel-Crafts acylation reaction; aids to teaching crystal structure; a metal displacement project; silver recovery from fixer and silver residues; iodine sublimation; nature of acids; card models for teaching bonding; and…
Descriptors: Chemical Bonding, Chemical Reactions, Chemistry, College Science
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School Science Review, 1982
Outlines methodology, demonstrations, and materials including: an inexpensive wave machine; speed of sound in carbon dioxide; diffraction grating method for measuring spectral line wavelength; linear electronic thermometer; analogy for bromine diffusion; direct reading refractice index meter; inexpensive integrated circuit spectrophotometer; and…
Descriptors: College Science, Demonstrations (Educational), Higher Education, Laboratory Procedures
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School Science Review, 1981
Outlines a variety of laboratory procedures, discussions, and demonstrations including polarizing power and chemical properties of copper and zinc, preparation of boron coordination complex, demonstration of amino-acid synthesis in the primordial environment, classification and reactions of carbohydrates, and four others. (DS)
Descriptors: Atomic Structure, Chemical Reactions, Chemistry, College Science
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Science Teacher, 1990
Eight activities for use in the science classroom are presented. Included are insect collecting, laboratory procedures and safety, recycling, current events, variable manipulation, scientific method, electricity, and mechanics (Newton's Second Law of Motion). (KR)
Descriptors: Demonstrations (Educational), Electricity, Laboratories, Laboratory Procedures
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Walton, Karen Doyle – School Science and Mathematics, 1988
Introduces microcomputer interfacing as a method for explaining and demonstrating various aspects of the concept of function. Provides three experiments with illustrations and typical computer graphic displays: pendulum motion, pendulum study using two pendulums, and heat absorption and radiation. (YP)
Descriptors: Computer Assisted Instruction, Computer Interfaces, Computer Uses in Education, Functions (Mathematics)
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Collins, Don; Weaver, T. – American Biology Teacher, 1988
Describes a lab exercise used to demonstrate the measurement of biomass in a three layered forest. Discusses sampling, estimation methods, and the analysis of results. Presents an example of a summary sheet for this activity. (CW)
Descriptors: Biological Sciences, College Science, Ecology, Field Instruction
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Dobson, Ken – Physics Education, 1988
Discusses a teaching method using investigational skills for Nuffield A-level Physics including assessment technique, change of the assessment criteria, advice for choosing the topic, and future development. (YP)
Descriptors: Experiments, Foreign Countries, Investigations, Physics
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Borovoy, Alexander – Quantum, 1991
Describes the process of osmosis from its discovery by Nollet in 1848 to modern applications. Uses experimental descriptions, illustrations, and photographs to explain osmosis. Discusses the technology of producing perfect filters and their applications in reverse osmosis to purify salt water and to filter blood in kidney machines. (PR)
Descriptors: Biology, Chemistry, Diffusion (Physics), Enrichment Activities
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Gilmore, David R. – American Biology Teacher, 1991
The issues, roles, dynamics, rationales and events embroiled in the dissection controversy are discussed. Insights into where the politics of biology education without speciesism or dissection are likely to take science education in the future are provided. (KR)
Descriptors: Animals, Biology, Controversial Issues (Course Content), Dissection
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Hershey, David R. – Science Activities, 1992
Discusses traditional school demonstrations and experiments in hydrotropism. Explains that these experiments seem to "prove" hydrotropism, but yet most botanists reject hydrotropism. Teachers continue to teach the concept because it is logical and the experiments are simple. (PR)
Descriptors: Biology, Botany, Demonstrations (Educational), High Schools
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Garrison, Steve – Science Teacher, 1992
Presents activities that utilize piezoelectric film to familiarize students with fundamental principles of electricity. Describes classroom projects involving chemical sensors, microbalances, microphones, switches, infrared sensors, and power generation. (MDH)
Descriptors: Chemistry, Electricity, Electronic Equipment, Laboratory Equipment
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Gurley-Dilger, Laine – Science Teacher, 1992
Describes the use of Gowin's Vee to make the connection between lecture and laboratory, guide science fair research, help students decipher professional research journals, and make oral science fair or lab report presentations easier to understand. Provides examples of Gowin's Vee applied to research articles and comprehensive criteria for…
Descriptors: Cognitive Mapping, Models, Research Reports, Science Activities
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Guisasola, J.; Barragues, J. I.; Valdes, P.; Pedroso, F. – Physics Education, 1999
Describes changes in scientific research methods that have been brought about by the use of computers. Presents an example of the falling of a body in a fluid to show students how computers can be used to experiment with mathematical models and to automate experiments. Contains 11 references. (Author/WRM)
Descriptors: Computer Simulation, Computer Uses in Education, Higher Education, Hypothesis Testing
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Woolverton, Christopher J. – American Biology Teacher, 1999
Describes a laboratory protocol using clinical veterinary data that teaches the cognitive, analytical, communication, and interpersonal skills necessary for students in a biology core laboratory course. (WRM)
Descriptors: Animals, Biology, Communication Skills, Cooperative Learning
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