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Numerical Values of Scattering Cross Sections
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accelerating potential Appl approximation atom back focal plane Boersch Bragg angle Bragg condition Burgers vector carbon Chapter coherence length collisions contours crystal crystalline crystallite cubic dark field determined diffraction contrast diffraction pattern diffuse discussed dislocation displacement dynamical theory effect electron diffraction electron images Electron Microscopy equation Ewald sphere extinction distance factor film foil fringes Heidenreich image plane incident beam incident electron intensity distribution interference Kikuchi lines magnetic maxima metal micrograph microscope molecules object plane objective aperture objective lens obtained optic axis particle phase shift Phys Proc produced R. D. Heidenreich radius reciprocal lattice point reciprocal lattice vector reflection region replica result scattering amplitude scattering pattern selected area selected area diffraction shape transform shown in Fig solid spacing specimen spectra spherical aberration stacking fault structure surface thermal thickness thin total cross section transmission unit cell values velocity volts wave function wave vector wavelength X-ray zero