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Titlebook: Electron-Diffraction Analysis of Clay Mineral Structures; Boris Borisovich Zvyagin Book 1967 Springer Science+Business Media New York 1967

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发表于 2025-3-21 19:54:49 | 显示全部楼层 |阅读模式
书目名称Electron-Diffraction Analysis of Clay Mineral Structures
编辑Boris Borisovich Zvyagin
视频video
丛书名称Monographs in Geoscience
图书封面Titlebook: Electron-Diffraction Analysis of Clay Mineral Structures;  Boris Borisovich Zvyagin Book 1967 Springer Science+Business Media New York 1967
描述As a method of structure analysis, electron diffraction has its own spe­ cial possibilities and advantages in comparison to the X -ray method for the study of finely dispersed minerals with layer or pseudolayer structures. How­ ever, possibly because of the prior existence of the X-ray method, which found universal application in different fields and attracted the main efforts of spe­ cialists, electron diffraction has been unevenly disseminated and developed in different countries. In particular, the oblique texture method, which gives very complete and detailed structural information, has been mainly used in the Soviet Union, where electron-diffraction cameras specially suited to the method have been constructed. In other countries, studies have been made of micro-single crystals, because these studies could be carried out with existing electron microscopes. It should be recognized that the scale of distribution and use attained by electron-diffraction methods, at present limited by exist­ ing experimental conditions. is more than justified by the value of the results which may be obtained by their aid. The author hopes that the present book will give the reader a fuller idea of
出版日期Book 1967
关键词X-ray; carr; clays; crystal structure; crystallography; distribution; formation; mineral; mineral resources
版次1
doihttps://doi.org/10.1007/978-1-4615-8612-8
isbn_softcover978-1-4615-8614-2
isbn_ebook978-1-4615-8612-8
copyrightSpringer Science+Business Media New York 1967
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https://doi.org/10.1007/978-3-319-32802-7 a definite sequence which varies with the particular structure. Any of these sets of identical points having the same relative spatial arrangement is a characteristic feature for a given structure and, under the name of a space lattice, serves as a means of describing the structure.
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Amy L. Cummings,Darren Pan,Gary J. Schillerng through experimental investigations of large layer silicate single crystals, such as those of Mg vermiculite (Mathieson, Walker, 1954; Mathieson, 1958), dickite (Newnham, Brindley, 1956, Newnham, 1961), the chlorites (Steinfink, 1958), and others.
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https://doi.org/10.1007/978-3-319-32802-7this structure, both the individual particles and their groupings alternate in three dimensions in such a way that their relative environments are the same throughout the structure. Thus, any arbitrary point in the structure corresponds to a multitude of other points, identical to it and arranged in
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Amy L. Cummings,Darren Pan,Gary J. Schillers made by Pauling (1930a,b), Bragg (1937), and Belov (1947, 1949, 1950, 1951). These proposals have only in recent years been placed on a firmer footing through experimental investigations of large layer silicate single crystals, such as those of Mg vermiculite (Mathieson, Walker, 1954; Mathieson, 1
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https://doi.org/10.1007/978-3-319-21100-8The basis of the electron-diffraction method was the discovery, in 1927, of the phenomenon of electron diffraction. It was shown that electrons, like any other atomic particles, possess wave properties.
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