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The Reciprocal Lattice
The Production of Xrays and Xray Spectra
1 other sections not shown
absorption atomic number Bragg angle Bragg relation Bravais lattices bulk specimen centre contrast crystal planes crystal systems crystalline specimen cubic cylindrical film deduce detector diametral plane diffracted beams diffraction camera diffraction maxima diffraction spot distance edge electron beam electron diffraction pattern electron micrograph electron probe emission energy equation Ewald sphere filament fluorescent focusing glancing-angle Hence hexagonal incident beam intensity interplanar spacing intersection irradiated microscope Miller indices mirror plane normal objective aperture objective lens obtained optical Orthorhombic perpendicular photographic poles polycrystalline specimen possible projector lens radiation reciprocal lattice point reciprocal space reference sphere reflection circle reflection electron microscopy relation replica scanning electron microscopy scattered electrons shadow shown in Figure single crystal small angles specimen surface stereogram stereographic projection symmetry elements technique theory thickness thin films thin foil tion transmission electron microscopy typical unit cell wavelength x-radiation x-ray beam x-ray diffraction x-ray diffraction pattern x-ray spectra zero layer