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What Works Clearinghouse Rating
Peer reviewedDownie, Roger – Journal of Biological Education, 1987
Suggests ways in which hens' egg vitelline membranes can be used to demonstrate cell traction effects. Reviews procedures for using and culturing the membranes and identifies topic areas for student projects. (ML)
Descriptors: Biology, Culturing Techniques, Cytology, Laboratory Procedures
Peer reviewedvan den Berg, Willem H. – Physics Teacher, 1985
Outlines a simple method which shows the relation between work done in accelerating a mass and the resulting velocity of the mass. Equipment used includes a rubber ball, ramp of lumber, graph-chart, stopwatch, and hand calculator. (DH)
Descriptors: Acceleration (Physics), Demonstrations (Educational), Force, High Schools
Peer reviewedHammond, Christina Noring; Tremelling, Michael J. – Journal of Chemical Education, 1987
Reviews three experiments which can be used to introduce microscale techniques. Highlights the benefits and advantages of having undergraduate students prepare and purify derivatives on the small scale. (ML)
Descriptors: Chemical Analysis, Chemistry, College Science, Higher Education
Peer reviewedZwicker, Earl – Physics Teacher, 1988
Introduces a bubble-making method for discussion about surface tension and thin film interference. Provides some pictures and list of materials for the apparatus. (YP)
Descriptors: Demonstrations (Educational), Laboratory Equipment, Laboratory Procedures, Optics
Peer reviewedIsenberg, Cyril – Physics Education, 1988
Deals with a diffraction experiment using wrapping paper. Provides a magnified picture of the paper, a diffraction diagram, and some instructional information. (YP)
Descriptors: Demonstrations (Educational), Laboratory Experiments, Laboratory Procedures, Lasers
Miller, W. P.; And Others – Journal of Agronomic Education, 1988
Traces the history of soil mechanical analysis. Evaluates this history in order to place current concepts in perspective, from both a research and teaching viewpoint. Alternatives to traditional separation techniques for use in soils teaching laboratories are discussed. (TW)
Descriptors: Agricultural Education, Agronomy, College Science, Higher Education
Peer reviewedStimson, Cheryl D. – Science Activities, 1987
Describes a project for junior high and senior high school students designed to safely preserve hard-bodied marine invertebrates. Details the materials and procedures used in this technique. Stresses the use of non-toxic solutions and producing a lifelike specimen. (CW)
Descriptors: Biological Sciences, Experiential Learning, Invertebrates, Junior High Schools
Peer reviewedPiszczek, L.; And Others – Journal of Chemical Education, 1988
Examines the usefulness of cyclic voltammetry to the determination of a complex compound's stoichiometry. Discusses the experimental design, laboratory equipment, and results. (CW)
Descriptors: Chemistry, College Science, Higher Education, Inorganic Chemistry
Peer reviewedJohn, Nancy J.; Firestone, Gary L. – Biochemical Education, 1987
Describes two complementary laboratory exercises that use the glass fiber assay to assess receptor specificity and hormone binding affinity in rat liver cytoplasmic extracts. Details the methods, materials and protocol of the experiments. Discusses the basic concepts illustrated and the feasibility of using the experiments at the undergraduate…
Descriptors: Biochemistry, College Science, Higher Education, Laboratory Procedures
Peer reviewedSanchez-Yague, J.; And Others – Biochemical Education, 1987
Describes an experiment to discover the topology of plasma membrane aminophospholipids (phosphatidylethanolamine and phosphatidylserine) using whole platelets and trinitrobenzene sulfonate (TNBS) as a probe. Reports changes in phospholipid distribution during platelet activation with simultaneous action of thrombia and collagen. Details the…
Descriptors: Biochemistry, College Science, Higher Education, Laboratory Procedures
Peer reviewedJames, Robert K.; Finson, Kevin D. – Science Teacher, 1986
Offers suggestions for the development of a laboratory assistant program. Includes guidelines and factors to consider in the selection process and in the training program. Discusses the advantages of this type of program for both students and teachers. (ML)
Descriptors: Experiential Learning, Laboratory Procedures, Science Education, Science Laboratories
Peer reviewedAlbers, Michel O.; Singleton, Eric – Journal of Chemical Education, 1986
Describes experiments designed to: (1) familiarize students with inert atmosphere techniques; (2) teach monitoring reactions with thin-layer chromatography and infrared spectroscopy, isolation, and purification by crystallization and column chromatography; (3) estimate product purity spectroscopically; and (4) characterize reaction products by…
Descriptors: Chemical Analysis, Chemistry, Chromatography, College Science
Peer reviewedKauffman, George B.; Ebner, Ronald D. – Journal of College Science Teaching, 1985
Describes a demonstration in which gaseous ammonia and hydrochloric acid are used to illustrate rates of diffusion (Graham's Law). Simple equipment needed for the demonstration include a long tube, rubber stoppes, and cotton. Two related demonstrations are also explained. (DH)
Descriptors: Chemical Reactions, Chemistry, College Science, Demonstrations (Educational)
Peer reviewedVeillon, Claude – Analytical Chemistry, 1986
Reviews background of atomic absorption spectrometry techniques. Discusses problems encountered and precautions to be taken in determining trace elements in the parts-per-billion concentration range and below. Concentrates on determining chromium in biological samples by graphite furnace atomic absorption. Considers other elements, matrices, and…
Descriptors: Chemical Analysis, Chemistry, College Science, Data Analysis
Peer reviewedWetzel, T. L.; And Others – Journal of Chemical Education, 1986
Describes a laboratory experiment which explores the effects of adding inert salts to electrolytic cells and demonstrates the difference between concentration and chemical activity. Examines chemical potentials as the driving force of reactions. Provides five examples of cell potential and concentration change. (JM)
Descriptors: Chemical Reactions, Chemistry, College Science, Energy


