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Peer reviewedEaton, Bruce G., Ed. – American Journal of Physics, 1977
Describes a low-cost wave analyzer; how to convert an incandescant light bulb to an x-ray tube; how to use an electric toothbrush to generate waves; the use of a light-emitting diode as a point light source; how to rejuvenate helium-neon lasers; and calibration of an ammeter. (MLH)
Descriptors: College Science, Electronic Equipment, Equipment, Higher Education
Peer reviewedWilson, J. M. – School Science Review, 1976
Describes high school physics projects for investigating road safety problems. Includes diagrams of laboratory apparatus and explanations of experiments. (CS)
Descriptors: Instructional Materials, Laboratory Experiments, Physics, Safety Education
Peer reviewedSchool Science Review, 1976
Describes a lighted demonstration apparatus for representing the distribution of electrons, protons and neutrons in an atom. Also includes experiments with ice, forces, microscopes, spectra, and geological modeling. (CS)
Descriptors: Chemistry, Demonstrations (Educational), Geology, Instructional Materials
Peer reviewedKissinger, Peter T.; And Others – Journal of Chemical Education, 1977
Reviews the principles of liquid chromatography with electrochemical detection (LCEC), an analytical technique that incorporates the advantages of both liquids chromatography and electrochemistry. Also suggests laboratory experiments using this technique. (MLH)
Descriptors: Chemical Analysis, Chemistry, Chromatography, College Science
Peer reviewedBen-Zvi, R.; And Others – Journal of Chemical Education, 1976
Israeli tenth-grade students completed a chemistry laboratory course by either performing the experiments or by viewing films of the experiments. Among the results of an attitude test given to both groups was that students find personalized laboratory more effective than films in promoting their interest in chemistry. (MLH)
Descriptors: Attitudes, Chemistry, Educational Research, Instruction
Peer reviewedMohrig, Jerry R.; Shapiro, Samuel M. – Journal of Chemical Education, 1976
Describes an undergraduate organic chemistry experiment in which papain is used as a catalyst for the stereospecific formation of an insoluble anilide from a racemic benzoylamino acid. (MLH)
Descriptors: Biochemistry, Chemical Reactions, Chemistry, College Science
Peer reviewedNeumann, M. G. – Journal of Chemical Education, 1976
Discusses the relationship between adsorption isotherms and elution peak shapes in gas chromatography, and describes a laboratory experiment which involves the adsorption of hexane, cyclohexane, and benzene on alumina at different temperatures. (MLH)
Descriptors: Chemical Analysis, Chemistry, Chromatography, College Science
Peer reviewedManchester, P., Ed. – Australian Science Teachers Journal, 1976
Presented are two science demonstration projects: (1) the simulation of a magnetic survey utilizing a bar magnet buried in a sand box and (2) an investigation of the reaction between lead nitrate and sodium hydroxide. (SL)
Descriptors: Chemistry, Demonstrations (Educational), Geology, Laboratory Experiments
Peer reviewedSmith, Kirk R.; Cudaback, David D. – Science Education, 1976
Describes a study in which participants in a summer institute for secondary science teachers performed a series of experiments with a radio telescope. Concludes that a radio astronomy teaching facility would encourage students to use their own initiative and strategy in working with the scientific concepts involved. (MLH)
Descriptors: Astronomy, Educational Facilities, Educational Research, Laboratory Experiments
Peer reviewedEaton, Bruce G., Ed. – American Journal of Physics, 1976
Includes five brief articles on: solar-heating demonstration equipment, mercury or sodium vapor lamp spectroscopy, an apparatus for simulating variable stars, a voltage-to-frequency converter, and an introductory absorption experiment for low-energy beta particles. (MLH)
Descriptors: College Science, Electronics, Higher Education, Instructional Materials
Yavuz, Soner; Morgil, Inci – Online Submission, 2006
In the applications of instrumental analysis lessons, advanced instruments with the needed experiments are needed. During the lessons it is a fact that the more experiments are performed, the more learning will be. For this reason, experiments that do not last long and should be performed with more simple instruments and that increase students"…
Descriptors: Science Laboratories, Identification, Distance Education, Chemistry
Ediger, Marlow – 2003
While a science teacher needs to be thoroughly grounded in science content and methodology, the science teacher also needs to be a reading teacher. Science experiments and demonstrations need to be integrated with reading in the science curriculum. Reading in science helps students with comprehension, the development of concepts and…
Descriptors: Curriculum Development, Elementary Education, Individualized Instruction, Problem Solving
Krasny, Marianne E.; Trautmann, Nancy; Carlsen, William; Cunningham, Christine – 2003
This book contains the student edition of the Environmental Inquiry curriculum series developed at Cornell University. It is designed to teach learning skills for investigating the behaviors of non-native and native species and demonstrate how to apply scientific knowledge to solve real-life problems. This book focuses on strange intruders…
Descriptors: Biology, Ecology, Elementary Secondary Education, Environmental Education
Palmer, W. P. – Online Submission, 1994
This short article consists of some thoughts derived from a longer paper (Palmer, 1992), together with some more recent ideas. I became interested in buckminsterfullerene (Buckyballs) as a result of an E-Mail discussion of the topic in 1991. The chemistry of buckyballs is now evolving very rapidly and is gradually creeping into school…
Descriptors: Chemistry, Molecular Structure, Science Instruction, Science Curriculum
Black, Suzanne, Ed.; Moore, Randy, Ed.; Haugen, Heidi, Ed. – 2000
This selected collection of How-To-Do-It articles published in the American Biology Teacher during the past six years presents experiments that can be conducted safely under properly trained and responsible teacher supervision. Contents include: (1) "General Biology and the Nature of Science"; (2) "Cells and Molecules"; (3) "Microbes and Fungi";…
Descriptors: Animals, Biology, Biotechnology, Critical Thinking


