Elements of X-ray DiffractionIntended to acquaint the reader with the theory of x-ray diffraction, the experimental methods involved, and the main applications. The book is a collection of principles and methods stressing X-ray diffraction rather than metallurgy. KEY TOPICS: The book is written entirely in terms of the Bragg law and can be read without any knowledge of the reciprocal lattice. It is divided into three main parts--Fundamentals; experimental methods; and applications. MARKET: Designed for beginners, not as a reference tool for the advanced reader. |
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Page 236
... DEBYE - SCHERRER METHOD A typical Hull / Debye - Scherrer camera is shown in Fig . 7-1 . It consists essentially of a cylindrical chamber with a light - tight cover ... Debye. 236 Powder Photographs Chapter 7 7-2 Hull/Debye-Scherrer Method.
... DEBYE - SCHERRER METHOD A typical Hull / Debye - Scherrer camera is shown in Fig . 7-1 . It consists essentially of a cylindrical chamber with a light - tight cover ... Debye. 236 Powder Photographs Chapter 7 7-2 Hull/Debye-Scherrer Method.
Page 261
... Debye - Scherrer camera for two wavelengths of nearly the same value , in terms of AS , where S is defined by Fig . 7-2 . 7-3 For a Hull / Debye - Scherrer pattern made in a 5.73 - cm - diameter camera with Cu Ka radiation , calculate ...
... Debye - Scherrer camera for two wavelengths of nearly the same value , in terms of AS , where S is defined by Fig . 7-2 . 7-3 For a Hull / Debye - Scherrer pattern made in a 5.73 - cm - diameter camera with Cu Ka radiation , calculate ...
Page 369
... DEBYE - SCHERRER CAMERAS Historically , extrapolation methods were developed for the Hull / Debye - Scherrer camera , and , even though this method normally would not be chosen today for lattice parameter measurements , it is ...
... DEBYE - SCHERRER CAMERAS Historically , extrapolation methods were developed for the Hull / Debye - Scherrer camera , and , even though this method normally would not be chosen today for lattice parameter measurements , it is ...
Contents
Geometry of Crystals | 31 |
Geometry | 89 |
Intensities Diffraction | 123 |
Copyright | |
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absorption alloy angle appear applied atoms axis calculated called camera cause circle complete consider constant contains counting crystal cubic curve depends described detector determined diffracted beam diffraction lines diffraction pattern diffractometer direction distance effect electrons energy equal equation error example factor Figure film fraction function given grain hexagonal incident beam increases indices intensity kind lattice Laue material means measured metal method normal Note observed obtained occur orientation origin parallel parameter particular pattern peak percent phase plane plot pole position possible powder produce projection radiation rays reciprocal lattice recorded reference reflection region relation relative result rotation sample scattering shown shown in Fig shows simple single solid space specimen sphere stress structure surface temperature tion transmission tube unit cell usually vector wave wavelength x-ray