Introduction to Solid State Physics |
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Page 13
... unit cell . The cells are usually drawn , however , with lattice points at all corners . In some space lattices the unit cells are so drawn as to have lattice points at the center of certain faces or at the center of volume in addition ...
... unit cell . The cells are usually drawn , however , with lattice points at all corners . In some space lattices the unit cells are so drawn as to have lattice points at the center of certain faces or at the center of volume in addition ...
Page 14
... unit cell are specified in terms of lattice coordinates , in which each coordinate is a fraction of the axial length , a , b , or c , in the direction of the coordinate , with the origin taken at the corner of a unit cell . Thus the ...
... unit cell are specified in terms of lattice coordinates , in which each coordinate is a fraction of the axial length , a , b , or c , in the direction of the coordinate , with the origin taken at the corner of a unit cell . Thus the ...
Page 16
... unit cell of the hcp structure is the hexagonal primitive cell but with an extra atom added within the prism , so that the hcp unit cell contains two atoms . Fig . 1.10 . The hexagonal close - packed structure . The atom positions in ...
... unit cell of the hcp structure is the hexagonal primitive cell but with an extra atom added within the prism , so that the hcp unit cell contains two atoms . Fig . 1.10 . The hexagonal close - packed structure . The atom positions in ...
Contents
LATTICE ENERGY OF IONIC CRYSTALS | 29 |
ELASTIC CONSTANTS OF CRYSTALS | 43 |
LATTICE VIBRATIONS | 60 |
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absorption alkali alloy anisotropy antiferromagnetic approximately atoms axes axis Bardeen barium titanate boundary calculated charge coefficient conduction band cube Curie point Debye density diamagnetic dielectric constant diffraction diffusion dipole direction discussed dislocation displacement domains effect elastic electric field energy entropy equation equilibrium experimental F-centers factor Fermi ferroelectric ferromagnetic free electron frequency given heat capacity holes impurity interaction ionic crystals ionized ions lattice constant lattice points London low temperatures magnetic field magnetic moment metals molecules motion nearest neighbor normal observed optical orbital parallel paramagnetic particles perovskite phonons Phys physical plane polarizability polarization positive potassium potassium chloride potential Proc quantum resonance result room temperature scattering Seitz shear Shockley shown in Fig single crystal sodium chloride solids specimen spin strain stress superconducting surface susceptibility symmetry Table theory thermal tion transition unit volume vacancy valence values vector velocity wave functions x-ray zero