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書名:INTRODUCTION TO QUANTUM MECHANICS 3/E 作者:GRIFFITHS 出版社:Cambridge 出版日期:2018/08/16 ISBN:9781107189638
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書名:INTRODUCTION TO QUANTUM MECHANICS 3/E 作者:GRIFFITHS 出版社:Cambridge 出版日期:2018/08/16 ISBN:9781107189638
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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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【簡介】 This book provides a lucid introduction to the basic ideas of quantum mechanics. Meant for undergraduate and graduate physics students, it contains discussions on advanced topics that will be beneficial for researchers also. The text is designed according to the syllabi followed in major Indian universities. Chapters are designed to provide an equal emphasis to physical as well as mathematical significance of concepts. The text is divided in four parts. The first part introduces concepts of formalism and includes topics, namely wave-particle duality, state vectors, and symmetry. The second part comprises discussions on exactly solvable problems. This is followed by the third part which deals with various approximation techniques including degenerate and non-degenerate perturbation theory, WKB approximation, and Born approximation. The fourth part of this book deals with advanced topics like permutation symmetry, Dirac particle in a central potential, and EPR paradox. 【目錄】 Preface Part I. Formalism: 1. Uncertainty 2. State vectors 3. Quantum dynamics 4. Time evolution of quantum systems 5. Symmetry Part II. Exact Solutions: 6. The free particle 7. Exactly solvable problems in one dimension 8. Angular momentum 9. Exactly solvable problems in three dimensions 10. Particles in magnetic fields Part III. Approximations: 11. Approximation methods 12. Time-dependent problems 13. Scattering theory Part IV. Advanced Topics: 14. Identical particles 15. Relativistic corrections 16. Interpretation of quantum mechanics 17. Miscellaneous topics Part V. Appendices: A. Delta function B. Solution of second-order differential equations C. Special functions D. Further properties of special functions E. Saddle-point method Index.
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The author has published two texts on classical physics, Introduction to Classical Mechanics and Introduction to Electricity and Magnetism, both meant for initial one-quarter physics courses. The latter is based on a course taught at Stanford several years ago with over 400 students enrolled. These lectures, aimed at the very best students, assume a good concurrent course in calculus; they are otherwise self-contained. Both texts contain an extensive set of accessible problems that enhances and extends the coverage. As an aid to teaching and learning, the solutions to these problems have now been published in additional texts. The present text completes the first-year introduction to physics with a set of lectures on Introduction to Quantum Mechanics, the very successful theory of the microscopic world. The Schrödinger equation is motivated and presented. Several applications are explored, including scattering and transition rates. The applications are extended to include quantum electrodynamics and quantum statistics. There is a discussion of quantum measurements. The lectures then arrive at a formal presentation of quantum theory together with a summary of its postulates. A concluding chapter provides a brief introduction to relativistic quantum mechanics. An extensive set of accessible problems again enhances and extends the coverage. The goal of these three texts is to provide students and teachers alike with a good, understandable, introduction to the fundamentals of classical and quantum physics. Sample Chapter(s) Preface Chapter 1: Motivation Request Inspection Copy Contents: Preface Motivation Wave Packet for Free Particle Include Potential V (x) Scattering Transition Rate Quantum Electrodynamics Quantum Statistics Quantum Measurements Formal Structure of Quantum Mechanics Quantum Mechanics Postulates Relativity Problems Appendix A: Electromagnetic Field in Normal Modes Appendix B: Significant Names in Quantum Mechanics — Theory and Applications Bibliography Index Readership: Undergraduate students in physics.
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