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Nature and Symmetries of Crystals
Space Lattice Unit Cell and Bravais Lattices
Morphology and Angular Relationships
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angle arrangement atoms body centred Bragg Bravais lattices Brillouin Zone centre of symmetry consider coordinates corresponding crystal class crystal system Crystallography cube cubic system denoted determination diad axis diagonal diffracted beam direct lattice distance edges electrons energy Equation equivalent positions example face centred film given glide plane hexagonal integers intersection ions lattice parameters lattice planes lattice translations layer line method mirror plane molecules monoclinic neutron normal obtained orientation origin orthorhombic oscillation perpendicular photographs plane of projection point groups poles possible powder primitive reciprocal lattice point reciprocal lattice vector reciprocal points reflection refractive refractive index represented rhombohedral rotation axis screw axes shown in Fig similar Similarly sin2 solid space group specimen stereographic projection symmetry axis symmetry elements symmetry plane techniques tensor tetragonal tetragonal system tion topographs triad triclinic unique axis unit cell values X-ray beam X-ray diffraction