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Chesick, John P. – Journal of Chemical Education, 1989
Uses simple pulse NMR experiments to discuss Fourier transforms. Studies the generation of spin echoes used in the imaging procedure. Shows that pulse NMR experiments give signals that are additions of sinusoids of differing amplitudes, frequencies, and phases. (MVL)
Descriptors: Atomic Structure, Chemical Analysis, Chemistry, College Science
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Cotter, Robert J. – Analytical Chemistry, 1988
Discusses the history and development of Plasma Desorption Mass Spectrometry to determine molecular weights and structures of proteins and polymers. Outlines theory, instrumentation, and sample preparation commonly used. Gives several examples of resulting spectra. (ML)
Descriptors: Biochemistry, Chemical Analysis, Chemistry, College Science
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Rich, Ronald L.; Suter, Robert W. – Journal of Chemical Education, 1988
Investigates ground state electron configurations for some common elements using graphical methods. Bases observed tendencies on following ideas: "occupancy of differing shells, occupancy of differing subshells within a given shell, double occupancy vs. single occupancy of an orbital, and quantum-mechanical exchange." (ML)
Descriptors: Atomic Structure, Atomic Theory, Chemical Bonding, Chemistry
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Roberg, Ezra – Science Teacher, 2004
The "Central Dogma" of genetics states that one gene, located in a DNA molecule, is ultimately translated into one protein. As important as this idea is, many teachers shy away from teaching the actual mechanism of gene translation, and many students find the concepts abstract and inaccessible. This article describes a unit, called Genetics…
Descriptors: Plastics, Genetics, Secondary School Science, High School Students
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Appling, Jeffrey R.; Peake, Lisa C. – Journal of Science Education and Technology, 2004
The effect of intervening use of molecular visualization software was tested on 73 first-year general chemistry students. Pretests and posttests included both traditional multiple-choice questions and model-building activities. Overall students improved after working with the software, although students performed less well on the model-building…
Descriptors: Visualization, Educational Technology, Computer Software, Intervention
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Imai, Izumi; Kamata, Masahiro; Miura, Naosuke – Physics Education, 2003
Kinetic models of a gas can be hard for students to understand. Typical tools do not display events at the microscopic level, yet computer simulations of the molecules lack a hands-on aspect. Here a new tool is described that combines the squeezing of a syringe with a computer simulation, and it is shown that this has worked well in class for both…
Descriptors: Mechanics (Physics), Computer Simulation, Molecular Structure, Kinetics
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Rodriguez, F.; And Others – Journal of Chemical Education, 1987
Describes several techniques to help students visualize the principles of polymer chemistry. Outlines demonstrations using simple materials (such as pop-it beads, thread, and wire) to illustrate the size of macromolecules, the composition of copolymers, and the concept of molecular mass. (TW)
Descriptors: Chemistry, College Science, Demonstrations (Educational), Higher Education
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Strong, Judith A. – Journal of Chemical Education, 1986
Discusses the teaching of electron configurations and various systems used to help students write them correctly. Presents an approach to this type of instruction which uses diagrams and mnemonic devices. Examples of exercises which encourage the use of this method are provided. (TW)
Descriptors: Chemistry, College Science, Diagrams, Higher Education
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Pike, R. M.; And Others – Journal of Chemical Education, 1986
Describes two examples where synthetic salt-base mixtures are used in a microscale organic laboratory program as a simple and quick procedure for carrying out Wittig reactions. Both experimental procedures are outlined and discussed. (TW)
Descriptors: Chemical Reactions, Chemistry, College Science, Higher Education
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Fujita, Shinsaku – Journal of Chemical Education, 1986
Describes a procedure for constructing point groups based on the symmetric parent molecules of methane and adamantane. Intended for use in teaching concepts such as subgroups and cosets to beginners in group theory. (TW)
Descriptors: Chemistry, College Science, Higher Education, Models
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Lovett, David; Smith, Stephen – School Science Review, 1980
Describes phase transition in solids and shows how soap films can be used to demonstrate this phenomenon. (Author/SK)
Descriptors: Chemical Reactions, Chemistry, College Science, Demonstrations (Educational)
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Thompson, Steven R.; Seligmann, Peter – Physics Teacher, 1991
Discussed are experiments that may be done using a microcomputer to analyze scattering data. Apparatus assembly, procedures, and results for this activity are presented. (CW)
Descriptors: Atomic Structure, College Science, Computer Interfaces, Higher Education
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Birk, James P., Ed. – Journal of Chemical Education, 1990
Four microcomputer applications are presented including: "Computer Simulated Process of 'Lead Optimization': A Student-Interactive Program,""A PROLOG Program for the Generation of Molecular Formulas,""Determination of Inflection Points from Experimental Data," and "LAOCOON PC: NMR Simulation on a Personal Computer." Software, availability,…
Descriptors: Atomic Structure, Chemical Analysis, Chemistry, College Science
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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
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Birk, James P., Ed. – Journal of Chemical Education, 1990
Described are two applications of computers in chemistry. The multilinear equations and procedures used in obtaining a least-squares solution for curve fitting in chemistry are presented. Also discussed is the program "ATORB" which can be used to generate graphs of probable electron clouds for various atoms and molecules. (CW)
Descriptors: Atomic Structure, Chemistry, College Science, Computation
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