Introduction to Solid State PhysicsProblems after each chapter. |
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Page 26
... cubic system there are three space lattices : the simple cubic P lattice which is primitive ; the body - centered I lattice ; and the face- centered F lattice . The characteristics of the three cubic space lat- tices are summarized in ...
... cubic system there are three space lattices : the simple cubic P lattice which is primitive ; the body - centered I lattice ; and the face- centered F lattice . The characteristics of the three cubic space lat- tices are summarized in ...
Page 42
... cubic ZnS ( zinc blende ) structure . 1.5 . Show that the maximum proportion of the available volume which may be filled by hard spheres arranged in various structures is Simple cubic Body - centered cubic Face - centered cubic ...
... cubic ZnS ( zinc blende ) structure . 1.5 . Show that the maximum proportion of the available volume which may be filled by hard spheres arranged in various structures is Simple cubic Body - centered cubic Face - centered cubic ...
Page 161
... simple cubic , body - centered cubic , and face - centered cubic lattices , as well as for an isotropic distribution . Later , in considering the ferroelectric properties of barium titanate ( Fig . 8.1 ) , we shall see that here E30 ...
... simple cubic , body - centered cubic , and face - centered cubic lattices , as well as for an isotropic distribution . Later , in considering the ferroelectric properties of barium titanate ( Fig . 8.1 ) , we shall see that here E30 ...
Contents
DIFFRACTION OF XRAYS BY CRYSTALS | 44 |
CLASSIFICATION OF SOLIDS LATTICE ENERGY | 63 |
ELASTIC CONSTANTS OF CRYSTALS | 85 |
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absorption acceptors alkali alloys approximately atoms axes axis barium titanate boundary Bragg Brillouin zone calculated chapter charge conduction band conduction electrons crystal structure cube cubic Curie point Debye density dielectric constant diffraction diffusion dipole direction discussion dislocation distribution domain effective mass elastic electric field energy equation equilibrium exciton experimental F centers factor Fermi ferroelectric ferromagnetic free electron frequency germanium given heat capacity hexagonal holes impurity interaction ionization ions lattice constant lattice point low temperatures magnetic field magnetic moment metals molecules motion nearest neighbor normal observed p-n junction paramagnetic particles phonons Phys physics plane polarizability polarization positive potential Proc resonance result room temperature rotation semiconductor Shockley shown in Fig sodium chloride solid solution space group specimen spin superconducting surface susceptibility symmetry Table theory thermal tion transistor transition unit volume vacancies valence band values vector velocity wave functions wavelength x-ray zero