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書名: SOLID STATE PHYSICS 作者:ASHCROFT 出版社:Cengage ISBN:9780357670811 內容簡介 1. The Drude Theory of Metals 2. The Sommerfeld Theory of Metals 3. Failures of the Free Electron Model 4. Crystal Lattices 5. The Reciprocal Lattice 6. Determination of Crystal Structures by X-Ray Diffraction 7. Classification of Bravais Lattices and Crystal Structures 8. Electron Levels in a Periodic Potential: General Properties 9. Electrons in a Weak Periodic Potential 10. The Tight-Binding Method 11. Other Methods for Calculating Band Structure 12. The Semiclassical Model of Electron Dynamics 13. The Semiclassical Theory of Conduction in Metals 14. Measuring the Fermi Surface 15. Band Structure of Selected Metals 16. Beyond the Relaxation-Time Approximation 17. Beyond the Independent Electron Approximation 18. Surface Effects 19. Classification of Solids 20. Cohesive Energy 395 21. Failures of the Static Lattice Model 415 22. Classical Theory of the Harmonic Crystal 23. Quantum Theory of the Harmonic Crystal 24. Measuring Phonon Dispersion Relations 25. Anharmonic Effects in Crystals 26. Phonons in Metals 27. Dielectric Properties of Insulators 28. Homogeneous Semiconductors 29. Inhomogeneous Semiconductors 30. Defects in Crystals 31. Diamagnetism and Paramagnetism 32. Electron Interactions and Magnetic Structure 33. Magnetic Ordering 34. Superconductivity APPENDICES A. Summary of Important Numerical Relations in the Free Electron Theory of Metals B. The Chemical Potential C. The Sommerfeld Expansion D. Plane-Wave Expansions of Periodic Functions in More Than One Dimension E. The Velocity and Effective Mass of Bloch Electrons F. Some Identities Related to Fourier Analysis of Periodic Systems G. The Variational Principle for Schrodinger's Equation H. Hamiltonian Formulation of the Semiclassical Equations of Motion, and Liouville' s Theorem I. Green's Theorem for Periodic Functions J. Conditions for the Absence of Interband Transitions in Uniform Electric or Magnetic Fields K. Optical Properties of Solids L. Quantum Theory of the Harmonic Crystal M. Conservation of Crystal Momentum N. Theory of the Scattering of Neutrons by a Crystal O. Anharmonic Terms and n-Phonon Processes P. Evaluation of the Lande g-Factor
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【原文書】 書名:Thermal Physics 2/E 作者:Charles Kittel ISBN:0716710889 Synopsis CONGRATULATIONS TO HERBERT KROEMER, 2000 NOBEL LAUREATE FOR PHYSICS For upper-division courses in thermodynamics or statistical mechanics, Kittel and Kroemer offers a modern approach to thermal physics that is based on the idea that all physical systems can be described in terms of their discrete quantum states, rather than drawing on 19th-century classical mechanics concepts. "synopsis" may belong to another edition of this title.
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【原文書】 書名:Principles of Quantum Mechanics 2/e 作者:R. Shankar 出版社:Kluwer Academic Plenum Publishers ISBN:9780306447907 About this Textbook Reviews from the First Edition: "An excellent text … The postulates of quantum mechanics and the mathematical underpinnings are discussed in a clear, succinct manner." (American Scientist) "No matter how gently one introduces students to the concept of Dirac’s bras and kets, many are turned off. Shankar attacks the problem head-on in the first chapter, and in a very informal style suggests that there is nothing to be frightened of." (Physics Bulletin) Reviews of the Second Edition: "This massive text of 700 and odd pages has indeed an excellent get-up, is very verbal and expressive, and has extensively worked out calculational details---all just right for a first course. The style is conversational, more like a corridor talk or lecture notes, though arranged as a text. … It would be particularly useful to beginning students and those in allied areas like quantum chemistry." (Mathematical Reviews) R. Shankar has introduced major additions and updated key presentations in this second edition of Principles of Quantum Mechanics. New features of this innovative text include an entirely rewritten mathematical introduction, a discussion of Time-reversal invariance, and extensive coverage of a variety of path integrals and their applications. Additional highlights include: - Clear, accessible treatment of underlying mathematics - A review of Newtonian, Lagrangian, and Hamiltonian mechanics - Student understanding of quantum theory is enhanced by separate treatment of mathematical theorems and physical postulates - Unsurpassed coverage of path integrals and their relevance in contemporary physics The requisite text for advanced undergraduate- and graduate-level students, Principles of Quantum Mechanics, Second Edition is fully referenced and is supported by many exercises and solutions. The book’s self-contained chapters also make it suitable for independent study as well as for courses in applied disciplines.
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The aim of this book on particle physics is to present the theory in a simple way. The style and organization of the material is unique in that intuition is employed, not formal theory or the Monte Carlo method. This volume attempts to be more physical and less abstract than other texts without degenerating into a presentation of data without interpretation.This book is based on four courses of lectures conducted at Fermilab. It should prove very useful to advanced undergraduates and graduate students.
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The only text to cover both thermodynamic and statistical mechanics--allowing students to fully master thermodynamics at the macroscopic level. Presents essential ideas on critical phenomena developed over the last decade in simple, qualitative terms. This new edition maintains the simple structure of the first and puts new emphasis on pedagogical considerations. Thermostatistics is incorporated into the text without eclipsing macroscopic thermodynamics, and is integrated into the conceptual framework of physical theory.
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