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Growth and Aggregation of Crystals
Determination of Structure of Solids
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According aggregate amount appears applied atoms attraction behavior bonding called caused Chapter charge close coefficient computed conductivity considered constant contribution corresponding covalent crack crystal crystal structure crystallographic cubic depends derived determined dielectric difference diffraction dipole direction dislocation distance effect elastic electric electrons elementary elements energy equal example existence expression factor fatigue field field intensity flow follows force fraction fracture given grain Group Hence holes increase indicated ionic ions lattice layer less liquid load magnetic magnitude mass material mean measured mechanism metals modulus molecular molecules motion nature obtained origin permanent plane plastic deformation polarization position Problem produced properties ratio represented resistivity result semiconductor shear shown shows similar single slip solids stability strain strength stress structure surface surface tension Table temperature tension thermal unit cell volume York