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Titlebook: Electron Microdiffraction; J. C. H. Spence,J. M. Zuo Book 1992 Springer Science+Business Media New York 1992 diffraction.electron.microsco

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https://doi.org/10.1007/978-3-531-93198-2ral (000) disk. This “calibration” information is needed for all the techniques described in the remaining sections of this book. A thorough grasp of the figures in this chapter is absolutely essential for any understanding of the CBED technique. Experience shows that few electron microscopists unde
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https://doi.org/10.1007/978-3-476-00455-0ies and the relationships between them. We then specialize to the two-beam case, which provides the quickest and most useful guide to CBED intensity distributions. However, the study of non-centrosymmetric crystals requires the three-beam theory, so this is also treated. Both nondegenerate and degen
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Historicization and Historicismer than the Bragg angle. These methods have been reviewed by Vincent (1989). Such an angular expansion is required for space-group determination of crystals with a large unit cell, in which overlap of low orders may occur at such a small illumination angle θ. that little or no rocking-curve structur
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rom nanometer-sized regions of crystal, the method has proven extremely useful, in combination with X-ray microanalysis, for identifying microphases in multiphase materials, and for the study of the symmetry changes which accompany phase transitions (Ecob ., 1981b). Review articles outlining the pro
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https://doi.org/10.1007/978-1-4899-2353-0diffraction; electron; microscopy; Biological Microscopy
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