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Titlebook: Applications of the Newer Techniques of Analysis; Ivor L. Simmons,Galen W. Ewing Book 1973 Springer Science+Business Media New York 1973 a

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發(fā)表于 2025-3-21 19:48:24 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Applications of the Newer Techniques of Analysis
影響因子2023Ivor L. Simmons,Galen W. Ewing
視頻videohttp://file.papertrans.cn/160/159606/159606.mp4
學科分類Progress in Analytical Chemistry
圖書封面Titlebook: Applications of the Newer Techniques of Analysis;  Ivor L. Simmons,Galen W. Ewing Book 1973 Springer Science+Business Media New York 1973 a
影響因子This volume presents a group of selected papers given at the November, 1972, meeting of the Eastern Analytical Symposium. As has always been the intent of the series, "Progress in Analytical Chemistry," the papers are written by authorities who are also active workers in their fields. Included are applications of Raman Spectroscopy, X-Ray Diffraction, Emission Spectroscopy, Nu- clear Magnetic Resonance, Liquid Chromatography, Thin-Layer Chromatography, Pyrolysis Gas Chromatography, Mass Spectrometry, Gas Chromatography and the powerful marriage of the last two. In modern analysis there is a constant search for applications of existing instrumentation in new ways to produce results hitherto unobtainable. In every case both the versatility of the researcher and the flexibility of the method used are amply illustrated. Thanks are due to the authors of the papers for their efforts in coping with the many problems of producing a manuscript in finished form enabling rapid publication. Ivor L. Simmons Galen W. Ewing v CONTENTS Raman Spectroscopy for the Study of Nematic Liquid Crystals . . . . . . 1 Bernard J. Bulkin Recent Developments in Arc Emission Spectroscopy: Introductory Remarks .
Pindex Book 1973
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Recent Developments in Arc Emission Spectroscopy: Introductory Remarks,gy of arc spectrochemistry. Why, in the first place, is a symposium on arc emission spectroscopy necessary? Figure 1 provides some idea of the reason. Plotted in the figure are the number of publications cited in spectrochemical analysis each year for the past 52 years. The curve on the left is take
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Advances in the Static-Argon, Dc-Arc Spectrochemical Source,onsists of a dc current arc in a static-argon gas chamber. Figure 1 is a photograph of a typical spectrochemical analysis system. This unit is in operation at the University of Colorado Medical Center in Denver, Colorado, under the direction of Michael Hambidge, M.D. It employs a standard Jarrell-As
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Determination of Composition of Solid Solutions Using X-Ray Diffraction Techniques,ry properties of the atoms that allow them to form these solutions often make it difficult to distinguish between them by chemical means. Even most physical analytical techniques have difficulty distinguishing among a physical mixture, a solid solution or a mixture of the two. This paper will be lim
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,NMR of Less-Sensitive Spin — 1/2 Nuclei, among the naturally abundant representative and outer transition elements, possesses no isotope with a nuclear magnetic moment. Magnetic nuclei have properties that fall conveniently into two classes according to the magnitude of nuclear spin. Those with spins greater than one-half (shown hatched i
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Liquid Chromatography of Metal-Organic Complexes, by gas chromatography (GC) (.–.). For example, metals can be converted into neutral, volatile ?-diketonates and analyzed by GC; fluorinated ligands are usually employed for chelation (.–.). Likewise, it has been shown that volatile arene metal carbonyls can be satisfactorily separated and determine
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Liquid Chromatography: Its Use as an Analytical Tool in the Pharmaceutical Laboratory,atories. This is not the case. Basically, we, as all others, are confronted with the problem: How is a component isolated from interferences for its ultimate measurement? The primary difference which exists between the pharmaceutical laboratory and that of a basic chemical industry, is the degree to
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