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Peer reviewedSherman, Marie – Journal of Chemical Education, 1984
Describes a one-semester biochemistry course designed for students who have completed courses in biology, CHEMStudy chemistry, and physical science. Course goals include presenting biochemical concepts (in preparation for college courses), challenging students considering science-related careers, and serving as a springboard for science fairs. (JN)
Descriptors: Academically Gifted, Biochemistry, Course Descriptions, Science Curriculum
Peer reviewedGilbert, George L., Ed. – Journal of Chemical Education, 1984
Background information and procedures are provided for a second part to the dichromate volcano demonstration. The green ash produced during the demonstration is reduced to metal using aluminothermy (Goldschmide process). Also describes suitable light sources and spectroscopes for student observation of emission spectra in lecture halls. (JN)
Descriptors: Chemical Reactions, Chemistry, College Science, Demonstrations (Educational)
Peer reviewedLlewellyn, M. – Journal of Biological Education, 1984
Background information on the biology of aphids is supplied. Using this information in a wide variety of investigations, many involving equipment and techniques available in the school laboratory, can be carried out. An appendix lists possible projects. (Author)
Descriptors: Animal Behavior, Animals, Biology, Entomology
Peer reviewedLamb, William G. – Science Teacher, 1985
Explains a projectile motion experiment involving a bow and arrow. Procedures to measure "muzzle" velocity, bow elastic potential energy, range, flight time, wind resistance, and masses are considered. (DH)
Descriptors: Force, High Schools, Laboratory Procedures, Motion
Peer reviewedMooney, Robert J. – Physics Education, 1985
Presents a nonmathematical approach to help students understand that there are two types of coherence and to associate coherence as a property of the illumination at an object itself. The approach also lends itself to an introduction to the Fourier approach for analyzing imaging systems. (JN)
Descriptors: College Science, Higher Education, Light, Optics
Walker, Jearl – Scientific American, 1984
Discusses changes in the crystal structure of iron and steel when these materials are heated. Focuses on observations related to an experiment in which a 60-inch length of piano wire (No. 29 steel wire) is heated and then cooled. (JN)
Descriptors: College Science, Crystallography, High Schools, Higher Education
Peer reviewedSiddons, J. C. – School Science Review, 1984
Describes two experiments that illustrate basic ideas but would be difficult to carry out. Also presents activities and experiments on rainbow cups, electrical charges, electrophorus calculation, pulse electrometer, a skidding car, and on the Oersted effect. (JN)
Descriptors: College Science, High Schools, Higher Education, Physics
Peer reviewedHayden, Howard C. – Physics Teacher, 1984
Discusses a computer simulation which: (1) describes an experiment investigating F=m/a; (2) generates data; (3) allows students to see the data; and (4) generates the equation with a least-squares fit. (JN)
Descriptors: Acceleration (Physics), College Science, Computer Simulation, Force
Peer reviewedKagan, David T. – Physics Teacher, 1984
Describes three computer programs which operate on Apple II+ microcomputers: (1) a menu-driven graph drawing program; (2) a simulation of the Millikan oil drop experiment; and (3) a program used to study the half-life of silver. (Instructions for obtaining the programs from the author are included.) (JN)
Descriptors: College Science, Computer Simulation, Computer Software, Graphs
Peer reviewedRiechel, Thomas L. – Journal of Chemical Education, 1984
Describes an undergraduate experiment for the potentiometric determination of urea based on the physical entrapment of urease on the tip of an ammonia gas sensor. An advantage of this technique is the ease with which the ammonia electrode can be converted to a urea electrode. (JN)
Descriptors: Chemical Analysis, Chemistry, College Science, Enzymes
Walker, Jearl – Scientific American, 1984
Provides background information on and experiments for determining the spectra of streetlights. Procedures for taking photographs of the spectra produced are included as well as discussions of sodium and mercury spectra. (JN)
Descriptors: College Science, High Schools, Higher Education, Light
Peer reviewedBerge, P. O.; And Others – Physics Teacher, 1976
Described is the construction and utilization of a Dewar assembly for measuring the heat of vaporization of liquid nitrogen. The device is fabricated from a thermos bottle replacement filler. (SL)
Descriptors: College Science, Energy, Higher Education, Laboratory Equipment
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


