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Mechanical Models and Discrete Spectra
Internal Variables and the Thermodynamic
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Acta activation energy alloys amplitude anisotropy annealing atoms attenuation axis calculated Chapter coefficients compliance components concentration corresponding cubic crystal curve damping dashpot defect symmetry deformation dependence dielectric relaxation diffusion dipole dislocation line distribution effect electrons equation equilibrium example experimental expression Fermi surface ferromagnetic frequency given by Eq impurity interaction internal friction peak internal variables interstitial involved jump kinetics kink lattice linear longitudinal longitudinal waves magnetic magnitude material Maxwell unit measurements mechanism metals modulus monoclinic Nowick observed obtained orientation orthorhombic pair parameters peak height phonon Phys plot point defects Problem quantity relation relaxation strength resonant response functions result sample Section shear shear stress shown in Fig shows single crystals Snoek Snoek peak Snoek relaxation solute specimen spectrum standard anelastic solid stress relaxation temperature tensor tetragonal theory thermal tion torsional trigonal vacancy vibration Wert Young's modulus Zener relaxation zero