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Titlebook: Diffusion in Materials; A. L. Laskar,J. L. Bocquet,C. Monty Book 1990 Kluwer Academic Publishers 1990 Metall.X-Ray.alloy.ceramics.crystal.

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Jana Barvíková Ph.D.,August Österleminimized with respect to the ionic displacements. These displacements may then be used to calculate the vibrational entropy contribution to the defect Gibbs energy. The special problems associated with each of these strategies are discussed in some detail, and some representative results are compar
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Chemical Bonding and Refractive Indicestransport are discussed..In the previous cases, it is clear that negligible solute accumulation in the bulk will result from diffusion down a static defect unless volume diffusion contributes substantially to this accumulation — in contrast, diffusion down a moving defect requires little or no volum
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Evaluation of Diffusion Coefficientsirect experimental evidence for the divacancy contribution does not yet exist a careful investigation of this type of analysis of self-diffusion data will be discussed. It will show that in many cases such an analysis leads to values of the defect parameters that are inconsistent from a thermodynami
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Atomic Theory of Diffusion — Linear Response Theory the atomic flux equations of non-equilibrium thermodynamics. The theory of averages in a stochastic system is developed to write this result both as a generalized Einstein expression suitable for Monte Carlo simulations and as a time correlation expression suited to analytical work. For dilute allo
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Non Linear Phenomena in Solid State Diffusionentrations vary significantly over distances of the order of the range of atomic interactions, higher order concentration derivatives contribute to the flux. Such is the case for the description of chemical diffusion during coherent unmixing, or for diffusion of misfitting solutes..Cahn-Hilliard’s c
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