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Principal stages in the development of the physics
Thermodynamic and kinetic properties of atoms dur
Application of the theory of absolute reaction rates
18 other sections not shown
activation energy alloys aluminum annealing bcc lattice bcc metals bonding energy calculated chemical potential coincides component copper correlation factor creep crystal crystal whiskers decreases defects deformation density dependence determined diffusion coefficient diffusion creep diffusion jump displacement divacancies effect elastic electron energy of diffusion energy of self-diffusion enthalpy entropy equation estimation eutectic excess vacancies experimental experiments expression flux follows force formula free energy gradient grain boundaries heat of sublimation high temperatures impurity atoms increase instance interaction interstitial atoms investigation iron jump frequency kcal/g kinetic Kirkendall effect large number lattice constant method mobility movement nickel niobium observed obtained parameters particles phase phonons plane pores quenching result sample self-diffusion coefficient shown solid solutions solvent sources and sinks stresses structure supersaturation surface theory thermal thermodynamic tion titanium transformation transition vacancy formation vacancy mechanism vacancy sources vacancy-formation vibrational volume zone