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Thompson, Cathy L. – School Science and Mathematics, 1989
Discusses the advantages of using discrepant events in elementary school science classrooms in terms of motivation and problem solving skills. Describes the materials, procedures, and reasons behind five discrepant activities. (YP)
Descriptors: Cognitive Development, Cognitive Structures, Elementary School Science, Laboratory Experiments
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Sayed, Yousry; And Others – Journal of Chemical Education, 1989
Describes several common synthetic organic transformations involving alkenes, alcohols, alkyl halides, and ketones. Includes concepts on kinetic versus thermodynamic control of reaction, rearrangement of a secondary carbocation to a tertiary cation, and the effect of the size of the base on orientation during elimination. (MVL)
Descriptors: Chemical Reactions, Chemistry, College Science, Inorganic Chemistry
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Downey, Daniel M.; Simolunas, Glenn – Journal of Chemical Education, 1988
Describes a laboratory experiment to teach the principles of air sampling, gamma ray spectroscopy, nuclear decay, and radioactive equilibrium. Analyzes radon by carbon adsorption and gamma ray counting. Provides methodology and rate of decay equations. (MVL)
Descriptors: Air Pollution, Chemical Analysis, Chemistry, Environmental Education
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Horvath, Otto; Papp, Sandor – Journal of Chemical Education, 1988
States that if photochemical reactions can be followed spectrophotometrically, reactivities can be estimated by evaluating data from only one curve. Studies such a system using computerized evaluation and simulation. Uses chlorocuprate(II) complexes in acetonitrile solutions for the model systems. (MVL)
Descriptors: Chemical Analysis, Chemical Equilibrium, Chemical Reactions, Chemistry
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Lodwig, Siegfried N. – Journal of Chemical Education, 1989
Presents a practical and attractive alternative to the sand bath used in the microscale procedures developed by Mayo, Pike, and Butcher. Urges the organic chemistry teaching community to continue towards complete conversion to microscale techniques. Presents the use of aluminum devices in the microlaboratory. (MVL)
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, College Science
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Chloupek-McGough, Marge – Journal of Chemical Education, 1989
Presents relevant statistics accumulated in a fall organic laboratory course. Discusses laboratory equipment setup to lower the amount of waste. Notes decreased solid wastes were produced compared to the previous semester. (MVL)
Descriptors: Chemistry, College Science, Hazardous Materials, Laboratories
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Powers, Michael H. – Journal of Computers in Mathematics and Science Teaching, 1989
Describes the titration of a weak base with a strong acid and subsequent treatment of experimental data using commercially available software. Provides a BASIC program for determining first and second derivatives of data input. Lists 6 references. (YP)
Descriptors: Chemical Analysis, Chemistry, College Science, Computer Assisted Instruction
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Collins, Michael J.; Vitz, Ed – Journal of Chemical Education, 1988
Examines two computer interfaced lab experiments: 1) discusses the automation of a Perkin Elmer 337 infrared spectrophotometer noting the mechanical and electronic changes needed; 2) uses the Gouy method and Lotus Measure software to automate magnetic susceptibility determinations. Methodology is described. (MVL)
Descriptors: Chemical Analysis, Chemistry, College Science, Computer Uses in Education
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Ralph, Charles L. – Journal of Computers in Mathematics and Science Teaching, 1988
Examined is the use of the microcomputer as a tutor, for simulations of experiments, and to provide graphic interpretations of abstract concepts in the college biology setting. Discussed are computer enhanced courses being used, the software library, and the computer laboratory facility. Lists reasons for adoption of computer enhanced format. (MVL)
Descriptors: Biology, College Science, Computer Assisted Instruction, Computer Simulation
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Dixon, Linda – American Biology Teacher, 1988
Reports on the teaching of recombinant DNA technology in high school biology courses. Explains reactions of the public, students, and colleagues to the molecular genetics unit. Indicates equipment, curricular materials, training, workshops, and availability. (RT)
Descriptors: Biology, DNA, Experiential Learning, Genetics
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Celdran, R.; Gonzalo, P. – Journal of Chemical Education, 1988
Considers three common cases of localized corrosion of metals: pitting, crevice, and stress corrosion. Provides experimental methods for studying all three methods. Includes a discussion of expected results. (ML)
Descriptors: Chemical Reactions, Chemistry, College Science, High Schools
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Graham, Richard C.; Robertson, John K. – Journal of Chemical Education, 1988
Describes an experimental procedure for determining trihalomethanes (THMs) in liquids by gas chromatography. Provides recommendations for reactants and supplies to obtain acceptable results. Discusses the analysis of water from various sources: pools, lakes, and drinking water; compares these to three cola drinks. (ML)
Descriptors: Chemical Analysis, Chemistry, Chromatography, College Science
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Rice, Patricia C. – Anthropology and Education Quarterly, 1990
Describes a number of student-focused laboratory exercises that are inexpensive, yet show the scientific character of archaeology. Describes the environmental laboratory exercise which includes the following analysis topics: (1) pollen; (2) earth core; (3) microfaunal; and (4) microwear. Describes the ceramic laboratory which involves…
Descriptors: Anthropology, Archaeology, Course Organization, Experiential Learning
Ghosh, Rita – Bioscene, 1999
Discusses possibilities for improving undergraduate-level general-education biology courses, particularly through the development of interesting and focused laboratory presentations. Advocates problem-based learning and improving the communication skills of laboratory teaching assistants. (Author/WRM)
Descriptors: Biology, Communication Skills, Higher Education, Laboratory Experiments
Carlson, Gaylen R. – CSTA Journal, 1998
Describes two science activities concerning water density and shares an idea for combining these activities into a third, completely new activity. Demonstrates the joy of rekindling the spirit of scientific thinking in a typical classroom. (PVD)
Descriptors: Demonstrations (Science), Density (Matter), Hands on Science, Higher Education
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