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CRYSTAL DIFFRACTION AND THE RECIPROCAL LATTICE
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absorption alloy applied approximation atoms band boundary calculated called cell Chapter charge components concentration condition conduction consider constant contribution crystal cubic defined density determined dielectric diffraction direction discussed dislocation distribution effect elastic electric field electron energy equal equation excited experimental factor Fermi ferromagnetic Figure force frequency function given gives heat hole impurity increase interaction ions lattice levels lower magnetic field mass mean measurements metal modes motion normal observed obtain orbital pair parallel particle periodic phase phonon Phys physics plane polarization positive potential problem quantum quantum mechanics referred reflection region relation resonance result scattering shown in Fig simple single solid solution space specimen spin structure superconducting surface Table temperature theory thermal tion transition unit vacancies vector volume wave wavevector zero zone