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Bigelow, M. Jerome – J Chem Educ, 1969
Descriptors: Chemistry, College Science, Instructional Materials, Structural Analysis
Stockel, Richard F. – J Chem Educ, 1969
Descriptors: Chemical Bonding, College Science, Instructional Materials, Organic Chemistry
Peer reviewed Peer reviewed
Glaros, George; Cromwell, Norman H. – Journal of Chemical Education, 1971
Descriptors: Chemical Bonding, Chemistry, College Science, Instructional Materials
Peer reviewed Peer reviewed
Hecht, Stephen S. – Journal of Chemical Education, 1971
Descriptors: Chemistry, College Science, Instructional Materials, Laboratory Procedures
Peer reviewed Peer reviewed
Crawford, Thomas H.; Swanson, John – Journal of Chemical Education, 1971
Descriptors: Atomic Structure, Chemistry, College Science, Heat
Peer reviewed Peer reviewed
Glaros, George; Cromwell, Norman H. – Journal of Chemical Education, 1971
Descriptors: Chemical Bonding, Chemistry, College Science, Instructional Materials
Peer reviewed Peer reviewed
Taber, Richard L.; Grantham, Gary D. – Journal of Chemical Education, 1970
Descriptors: Chemistry, College Science, Instruction, Instructional Materials
Peer reviewed Peer reviewed
Harbison, Kenneth G. – Journal of Chemical Education, 1970
Descriptors: Chemistry, College Science, Instruction, Instructional Materials
Peer reviewed Peer reviewed
Olson, Joel A.; Nordell, Karen J.; Chesnik, Marla A.; Landis, Clark R.; Ellis, Arthur B.; Rzchowski, M. S.; Condren, S. Michael; Lisensky, George C. – Journal of Chemical Education, 2000
Describes a set of simple, inexpensive, classical demonstrations of nuclear magnetic resonance (NMR) and magnetic resonance imaging (MRI) principles that illustrate the resonance condition associated with magnetic dipoles and the dependence of the resonance frequency on environment. (WRM)
Descriptors: Chemistry, Demonstrations (Science), Higher Education, Instructional Materials
Peer reviewed Peer reviewed
Juergens, Frederick H. – Journal of Chemical Education, 1988
Describes a method for demonstrating absorption spectra of intensely colored solutions using a mounted grating and a specially designed cell. Allows a student to compare the spectrum of a white light source directly with the same light modified by an absorbing spectrum. Uses acrylic tubing to make the cell. (MVL)
Descriptors: Chemical Analysis, Chemistry, College Science, Instructional Materials
Peer reviewed Peer reviewed
Craig, Norman C. – Journal of Chemical Education, 1988
Presents entropy analysis of four processes: a chemical reaction, a heat engine, the dissolution of a solid, and osmosis. Discusses entropy, the second law of thermodynamics, and the Gibbs free energy function. (MVL)
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, College Science
Peer reviewed Peer reviewed
Fehlner, Thomas P.; Bowser, James R. – Journal of Chemical Education, 1988
Explores the applicability of Mulliken's united atom model to a variety of chemical systems and demonstrates its value as a teaching tool. Considers applications to first row hydrides, compounds of the first and second periods, heavy atoms, and cluster systems. (MVL)
Descriptors: Atomic Structure, Atomic Theory, Chemical Bonding, Chemical Nomenclature
Peer reviewed Peer reviewed
De Paor, Declan G. – Journal of Geological Education, 1989
Background information, data input, data analysis, and advantages of using this method with this software are discussed. A flowchart of the event-trapping program structure and a printout of the program are included. (CW)
Descriptors: College Science, Computer Assisted Instruction, Computer Software, Computer Uses in Education
Peer reviewed Peer reviewed
Delvigne, Francis – Journal of Chemical Education, 1989
Uses the electron cloud and Lewis structure models to present resonance. Shows resonance bonding as an increase in dot density of the electron cloud. Provides classroom presentation ideas. (MVL)
Descriptors: Chemical Bonding, Chemical Nomenclature, Chemistry, Illustrations
Peer reviewed Peer reviewed
Burger, H. Robert – Journal of Geological Education, 1989
Described is a simulation program designed to teach the geology of oil exploration in a game format. Discussed are information and tools provided, information management, data sets, and availability of the program. (CW)
Descriptors: College Science, Computer Assisted Instruction, Computer Software, Computer Uses in Education
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