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McKusick, Blaine C. – Journal of Chemical Education, 1984
Discusses a National Research Council report which summarizes what laboratories need to know about Environmental Protection Agency and Department of Transportation regulations that apply to laboratory waste. The report provides guidelines for establishing and operating waste management systems for laboratories and gives specific advice on waste…
Descriptors: Chemistry, College Science, Higher Education, Laboratory Procedures
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Baum, Rudy – Chemical and Engineering News, 1982
Discusses danger of explosions with molten salts baths, commonly used as heat-transfer media. One such explosion involved use of a bath containing 3-lb sodium nitrite and 1-lb potassium thiocyanate. Although most commercially available mixtures for heat transfer contain oxidizers, a reducer (thiocyanate) was included which possibly triggered the…
Descriptors: Chemical Reactions, Chemistry, College Science, Higher Education
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Jones, Dianna G. – Analytical Chemistry, 1985
A previous part (Analytical Chemistry; v57 n9 p1057A) discussed the theoretical aspects of diode ultraviolet-visual (UV-VIS) spectroscopy. This part describes the applications of diode arrays in analytical chemistry, also considering spectroelectrochemistry, high performance liquid chromatography (HPLC), HPLC data processing, stopped flow, and…
Descriptors: Chemical Analysis, Chemistry, College Science, Higher Education
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Maciel, Gary E. – Science, 1984
Examines recent developments in techniques for obtaining high-resolution nuclear magnetic resonance (NMR) spectra on solid samples, discussing the kinds of applications for which these techniques are well suited. Also discusses the characteristics of NMR of solids and generating magnetization for NMR in solids. (JN)
Descriptors: Chemical Analysis, Chemistry, College Science, Higher Education
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Hercules, David M.; Hercules, Shirley H. – Journal of Chemical Education, 1984
The fundamentals of two surface techniques--secondary-ion mass spectrometry (SIMS) and ion-scattering spectrometry (ISS)--are discussed. Examples of how these techniques have been applied to surface problems are provided. (JN)
Descriptors: Chemical Analysis, Chemistry, College Science, Higher Education
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Galan, Leo de – Analytical Chemistry, 1986
Discusses problems and prospects in: (1) multielement atomic adsorption spectroscopy (AAS); (2) inductively coupled plasma (ICP) atomic emission; and (3) other aspects of atomic spectrometry. (JN)
Descriptors: Chemical Analysis, Chemistry, College Science, Higher Education
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McLafferty, Fred W. – Science, 1984
Examines trends in methods for deriving chemical information from a variety of systems and environments, focusing on improvements in sensitivity, specificity, speed and simplicity, and in sampling. Indicates that the increasing importance of analytical instrumentation requires reexamination of its coverage in educational curricula. (JN)
Descriptors: Chemical Analysis, Chemistry, College Science, Higher Education
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McKnight, Joyce D.; Julian, Maureen M. – Journal of Chemical Education, 1983
Discusses the chemical nature of gallstones and theories related to their formation. Also discusses experimental procedures used to identify chemical constituents of gallstones, indicating that cholesterol is found in almost 75 percent of stones examined. (JN)
Descriptors: Biochemistry, Chemistry, College Science, Higher Education
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Rowe, M. W. – Journal of Chemical Education, 1985
Gives historical background on the discovery of natural radiation and discusses various techniques for using knowledge of radiochemistry in geochronological studies. Indicates that of these radioactive techniques, Potassium-40/Argon-40 dating is used most often. (JN)
Descriptors: Chemistry, College Science, Geology, Higher Education
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Lowry, Robert K. – Analytical Chemistry, 1986
Analytical techniques used at various points in making microchips are described. They include: Fourier transform infrared spectrometry (silicon purity); optical emission spectroscopy (quantitative thin-film composition); X-ray photoelectron spectroscopy (chemical changes in thin films); wet chemistry, instrumental analysis (process chemicals);…
Descriptors: Chemical Analysis, Chemistry, College Science, Higher Education
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Gross, Michael L.; Rempel, Don L. – Science, 1984
Discusses the nature of Fourier transform mass spectrometry and its unique combination of high mass resolution, high upper mass limit, and multichannel advantage. Examines its operation, capabilities and limitations, applications (ion storage, ion manipulation, ion chemistry), and future applications and developments. (JN)
Descriptors: Chemical Analysis, Chemistry, College Science, Higher Education
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Zare, Richard N. – Science, 1984
Reviews applications of laser methods to analytical problems, selecting examples from multiphoton ionization and fluorescence analysis. Indicates that laser methodologies promise to improve dramatically the detection of trace substances embedded in "real" matrices, giving the analyst a most powerful means for determining the composition of…
Descriptors: Chemical Analysis, Chemistry, College Science, Higher Education
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Meuzelaar, Henk L. C.; And Others – Science, 1984
Illustrates the state of the art in pyrolysis mass spectrometry techniques through applications in: (1) structural determination and quality control of synthetic polymers; (2) quantitative analysis of polymer mixtures; (3) classification and structural characterization of fossil organic matter; and (4) nonsupervised numerical extraction of…
Descriptors: Biology, Chemical Analysis, Chemistry, College Science
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Budinger, Thomas F.; Lauterbur, Paul C. – Science, 1984
Reports on the status of nuclear magnetic resonance (NMR) from theoretical and clinical perspectives, reviewing NMR theory and relaxation parameters relevant to NMR imaging. Also reviews literature related to modern imaging strategies, signal-to-noise ratio, contrast agents, in vivo spectroscopy, spectroscopic imaging, clinical applications, and…
Descriptors: Chemical Analysis, Chemistry, Clinical Diagnosis, College Science
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Dessy, Raymond E., Ed. – Analytical Chemistry, 1984
Discusses working implementations of artificial intelligence systems for chemical laboratory applications. They include expert systems for liquid chromatography, spectral analysis, instrument control of a totally computerized triple-quadrupole mass spectrometer, and the determination of the mineral constituents of a rock sample given the powder…
Descriptors: Artificial Intelligence, Chemical Analysis, Chemistry, College Science
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