Elements of X-ray DiffractionThis is a reproduction of a book published before 1923. This book may have occasional imperfections such as missing or blurred pages, poor pictures, errant marks, etc. that were either part of the original artifact, or were introduced by the scanning process. We believe this work is culturally important, and despite the imperfections, have elected to bring it back into print as part of our continuing commitment to the preservation of printed works worldwide. We appreciate your understanding of the imperfections in the preservation process, and hope you enjoy this valuable book. |
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Page 89
... methods : λ 8 Laue method Variable Fixed Rotating - crystal method Fixed Powder method Fixed Variable ( in part ) Variable The Laue method was the first diffraction method ever used , and it re- produces von Laue's original experiment ...
... methods : λ 8 Laue method Variable Fixed Rotating - crystal method Fixed Powder method Fixed Variable ( in part ) Variable The Laue method was the first diffraction method ever used , and it re- produces von Laue's original experiment ...
Page 215
... methods of determining crystal orientation will be described : the back - reflection Laue method , the trans- mission Laue method , and the diffractometer method . It is also con- venient to treat here the question of crystal ...
... methods of determining crystal orientation will be described : the back - reflection Laue method , the trans- mission Laue method , and the diffractometer method . It is also con- venient to treat here the question of crystal ...
Page 512
... LAUE , M. VON , 78 , 367 , 457 Laue cameras , back - reflection , 140 specimen holders , 143 transmission , 138 Laue equations , 497 Laue method , 89 , 502 back - reflection , 90 , 215 diffraction spot shape , 146 experimental technique ...
... LAUE , M. VON , 78 , 367 , 457 Laue cameras , back - reflection , 140 specimen holders , 143 transmission , 138 Laue equations , 497 Laue method , 89 , 502 back - reflection , 90 , 215 diffraction spot shape , 146 experimental technique ...
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Common terms and phrases
absorption coefficient absorption edge alloy analysis angle atomic number austenite axis back-reflection Bragg angle Bragg law Bravais lattice calculated camera chart circle composition constant copper atoms cosē counter cubic curve Debye ring Debye-Scherrer decreases determined diffracted beam diffraction lines diffraction pattern diffractometer direction distance electrons elements equation error example face-centered face-centered cubic factor film fluorescent fluorescent radiation given grain hexagonal incident beam indices integrated intensity lattice parameter Laue method martensite measured metal normal obtained Orthorhombic parallel percent phase photograph pinhole plotted pole figure position powder pattern preferred orientation projection reciprocal lattice reciprocal-lattice reflecting planes relative residual stress rhombohedral rotation sample scattering shown in Fig sinē slit solid solution spacing specimen spectrometer sphere spot stereographic substance surface temperature tetragonal thickness tion transmission unit cell values vector voltage wavelength x-ray diffraction x-ray method x-ray tube zero zone