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THE NATURE OF DIFFRACTION
THE PRODUCTION OF RADIATION USEFUL FOR STUDYING
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absorption alloy amplitude angle angular atomic number atoms average axes Bragg Bragg's law calculated camera cent Chapter circle coefficients cone consider convolution copper cosine counter Crystallography cubic density diffraction pattern diffraction peak diffractometer dimensions displacement edge electron energy equation equipoint field film filtered fluorescence foil Fourier Fourier series function glide planes hexagonal illustrated in Figure indices integral International Tables intersection lattice point Laue pattern layer lines locate M. J. Buerger material measure mirror planes molecules monochromator mosaic neutron diffraction neutrons normal orientation orthorhombic oscillation particles perpendicular phase plot point group poles position possible powder pattern Problem radiation radius reciprocal lattice reciprocal space rotation sample scattering factor screw axes shown in Figure sin2 slit space group specimen stereographic projection structure factor symmetry elements term tilted transform two-dimensional unit cell values vector voltage wave wavelength X-Ray Diffraction x-ray tube zero