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Separable Boundary-Value Problems in Physics
About this book
Separable Boundary-Value Problems in Physics is an accessible and comprehensive treatment of partial differential equations in mathematical physics in a variety of coordinate systems and geometry and their solutions, including a differential geometric formulation, using the method of separation of variables. With problems and modern examples from the fields of nano-technology and other areas of physics.
The fluency of the text and the high quality of graphics make the topic easy accessible. The organization of the content by coordinate systems rather than by equation types is unique and offers an easy access.
The authors consider recent research results which have led to a much increased pedagogical understanding of not just this topic but of many other related topics in mathematical physics, and which like the explicit discussion on differential geometry shows - yet have not been treated in the older texts. To the benefit of the reader, a summary presents a convenient overview on all special functions covered. Homework problems are included as well as numerical algorithms for computing special functions. Thus this book can serve as a reference text for advanced undergraduate students, as a textbook for graduate level courses, and as a self-study book and reference manual for physicists, theoretically oriented engineers and traditional mathematicians.
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Information
Table of contents
- Cover
- Half Title page
- Related Titles
- Title page
- Copyright page
- Preface
- Part One: Preliminaries
- Part Two: Two-Dimensional Coordinate Systems
- Part Three: Three-Dimensional Coordinate Systems
- Part Four: Advanced Formulations
- Appendix A: Hypergeometric Functions
- Appendix B: Baer Functions
- Appendix C: Bessel Functions
- Appendix D: Lamé Functions
- Appendix E: Legendre Functions
- Appendix F: Mathieu Functions
- Appendix G: Spheroidal Wave Functions
- Appendix H: Weber Functions
- Appendix I: Elliptic Integrals and Functions
- References
- Index
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