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Showing 211 to 225 of 322 results Save | Export
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Barth, Howard G.; Sun, Shao-Tang – Analytical Chemistry, 1989
Presents a review of research focusing on scattering, elution techniques, electrozone sensing, filtration, centrifugation, comparison of techniques, data analysis, and particle size standards. The review covers the period 1986-1988. (MVL)
Descriptors: Chemical Analysis, Chemical Industry, Chemistry, Chromatography
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Fulghum, J. E.; And Others – Analytical Chemistry, 1989
This review is divided into the following analytical methods: ion spectroscopy, electron spectroscopy, scanning tunneling microscopy, atomic force microscopy, optical spectroscopy, desorption techniques, and X-ray techniques. (MVL)
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, College Science
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Heilbronner, Edgar – Journal of Chemical Education, 1989
Discusses the problem of symmetry avoidance using water as an historical example. Uses simple pi systems for the analysis. Provides methodology and examples. Investigates two naive arguments. (MVL)
Descriptors: Chemical Bonding, Chemistry, College Science, Higher Education
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Gilbert, George L., Ed. – Journal of Chemical Education, 1989
Provides the methodology put forth by Moore and Kraus to separate Co++ from Ni++ in an 8M HCl solution. Notes that cobalt(II) forms a wide variety of anionic complexes. Points out that as the solutions leave the exchange column the color bands of green, blue, and pink are easily seen. (MVL)
Descriptors: Chemical Analysis, Chemical Equilibrium, Chemical Reactions, Chemistry
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Hudson, Reggie L.; Pendley, Bradford D. – Journal of Chemical Education, 1988
Describes an advanced NMR project that can be done with a 60-MHz continuous-wave proton spectrometer. Points out the main purposes are to give students experience in second-order NMR analysis, the simplification of spectra by raising the frequency, and the effect of non-hydrogen nuclei on proton resonances. (MVL)
Descriptors: Chemical Analysis, Chemistry, College Science, Inorganic Chemistry
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Raines, Ronald T.; Hansen, David E. – Journal of Chemical Education, 1988
Attempts to provide an intuitive understanding of steady state kinetics. Discusses the meaning of steady state and uses free energy profiles to illustrate and follow complex kinetic and thermodynamic relationships. Provides examples with explanations. (MVL)
Descriptors: Chemical Reactions, Chemistry, College Science, Creative Thinking
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Boggess, Robert K. – Journal of Chemical Education, 1988
Describes a method for using nuclear magnetic resonance to observe the effect of electronegativity on the chemical shift of protons in similar compounds. Suggests the use of 1,3-dihalopropanes as samples. Includes sample questions. (MVL)
Descriptors: Chemical Analysis, Chemistry, College Science, Experiments
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Hill, Devon W.; And Others – Journal of Chemical Education, 1988
Describes a laboratory technique for quantitative analysis of caffeine by an isotopic dilution method for coupled gas chromatography-mass spectroscopy. Discusses caffeine analysis and experimental methodology. Lists sample caffeine concentrations found in common products. (MVL)
Descriptors: Chemical Analysis, Chemistry, Chromatography, College Science
Peer reviewed Peer reviewed
Willis, Christopher J. – Journal of Chemical Education, 1988
Described are the energetics involved in the formation of molecular hydrogen using concepts that should be familiar to students beginning the study of molecular orbital theory. Emphasized are experimental data on ionization energies. Included are two-electron atomic and molecular systems. (CW)
Descriptors: Atomic Structure, Chemistry, College Science, Energy
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Laidler, Keith J. – Journal of Chemical Education, 1988
Defines and discusses activated complexes, transition species, and reaction intermediates in composite reactions. Stresses the importance of the precise use of language in science. (CW)
Descriptors: Chemical Bonding, Chemical Reactions, Chemistry, College Science
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Kaufman, Samuel; DeVoe, Howard – Journal of Chemical Education, 1988
Describes a simplified redox method for total iron analysis suitable for execution in a three-hour laboratory period by general chemistry students. Discusses materials, procedures, analyses, and student performance. (CW)
Descriptors: Chemical Analysis, Chemistry, College Science, Higher Education
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Richards, Lynne – Journal of Chemical Education, 1988
Describes a laboratory experiment to determine the rate law for a substitution reaction of a transition metal. Derives the corresponding rate law from the accepted mechanism for the reaction using the steady state approximation and determines the conditions under which the two agree. (CW)
Descriptors: Chemical Reactions, Chemistry, College Science, Higher Education
Peer reviewed Peer reviewed
Jackson, L. L.; And Others – Analytical Chemistry, 1989
Presents a review focusing on techniques and their application to the analysis of geological and inorganic materials that offer significant changes to research and routine work. Covers geostandards, spectroscopy, plasmas, microbeam techniques, synchrotron X-ray methods, nuclear activation methods, chromatography, and electroanalytical methods.…
Descriptors: Chemical Analysis, Chemical Industry, Chemistry, Chromatography
Peer reviewed Peer reviewed
Gargallo, Maria Fe; And Others – Journal of Chemical Education, 1988
Describes an experimental procedure to acquaint inorganic chemistry students with stereochemical concepts using tris-(2,3-butanediamine)cobalt(III). Notes two isomeric forms exist and both form metal chelates. Separation is accomplished by chromatography and analysis is by NMR and infrared spectroscopy. Provides spectra of isomers. (MVL)
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, Chromatography
Peer reviewed Peer reviewed
Vitale, Daniel – Journal of Chemical Education, 1990
Described is an analytical method that may be used to replace the more difficult, traditional approach for the analysis of silicates. It is argued that this method allows the use of smaller samples and is more sensitive than other techniques. (CW)
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, College Science
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