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Materials Kinetics

Transport and Rate Phenomena

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2026
ISBN13: 9780443301742
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Elsevier Science e druk, 2026 9780443301742
€ 191,79
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Samenvatting

Materials Kinetics: Transport and Rate Phenomena, Second Edition provides readers with a clear understanding of how physical-chemical principles are applied to fundamental kinetic processes. The book integrates advanced concepts with foundational knowledge and cutting-edge computational approaches, demonstrating how diffusion, morphological evolution, viscosity, relaxation, and other kinetic phenomena can be applied to practical materials design problems across all classes of materials. Thermodynamics, Fick’s law, dislocation and interfacial motion, kinetics of phase separation, molecular dynamics, energy landscapes, and Monte Carlo simulation techniques are each covered.

This second edition also features brand new chapters on sintering, topological constraint theory, ab initio molecular dynamics, thermal conduction, and electrical conduction. All preexisting chapters have been revised and updated to include new exercises, and topics covered have been expanded to include examples of multicomponent diffusion, particle jump frequency, diffusion along dislocations, modeling of grain boundary diffusion, applications of phase-field modeling, applications of diffuse interface theory, and much more.

Specificaties

ISBN13:9780443301742
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

1. Thermodynamics vs. Kinetics<br>2. Irreversible Thermodynamics<br>3. Fick&rsquo;s Laws of Diffusion<br>4. Analytical Solutions of the Diffusion Equation<br>5. Multicomponent Diffusion<br>6. Numerical Solutions of the Diffusion Equation<br>7. Atomic Models for Diffusion<br>8. Diffusion in Crystals<br>9. Diffusion in Polycrystalline Materials<br>10. Motion of Dislocations and Interfaces<br>11. Morphological Evolution in Polycrystalline Materials<br>12. Sintering<br>13. Diffusion in Polymers and Glasses<br>14. Kinetics of Phase Separation<br>15. Nucleation and Crystallization<br>16. Advanced Nucleation Theories<br>17. Viscosity of Liquids<br>18. Nonequilibrium Viscosity and the Glass Transition<br>19. Topological Constraint Theory<br>20. Energy Landscapes<br>21. Broken Ergodicity<br>22. Master Equations<br>23. Relaxation of Glasses and Polymers<br>24. Molecular Dynamics<br>25. Monte Carlo Techniques<br>26. Ab Initio Molecular Dynamics<br>27. Fluctuations in Condensed Matter<br>28. Chemical Reaction Kinetics<br>29. Thermal Conduction<br>30. Electrical Conduction

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        Materials Kinetics