Foundations of the Mathematical Theory of Electromagnetic Waves
Title | Foundations of the Mathematical Theory of Electromagnetic Waves PDF eBook |
Author | Carl Müller |
Publisher | Springer Science & Business Media |
Pages | 366 |
Release | 2013-06-29 |
Genre | Mathematics |
ISBN | 3662117738 |
Mathematical Foundations for Electromagnetic Theory
Title | Mathematical Foundations for Electromagnetic Theory PDF eBook |
Author | Donald G. Dudley |
Publisher | Wiley-IEEE Press |
Pages | 264 |
Release | 1994-05-18 |
Genre | Science |
ISBN | 9780780310223 |
Co-published with Oxford University Press. This highly technical and thought-provoking book stresses the development of mathematical foundations for the application of the electromagnetic model to problems of research and technology. Features include in-depth coverage of linear spaces, Green's functions, spectral expansions, electromagnetic source representations, and electromagnetic boundary value problems. This book will be of interest graduate-level students in engineering, electromagnetics, physics, and applied mathematics as well as to research engineers, physicists, and scientists.
Foundations of the Mathematical Theory of Electromagnetic Waves
Title | Foundations of the Mathematical Theory of Electromagnetic Waves PDF eBook |
Author | Claus Müller |
Publisher | |
Pages | 353 |
Release | 1960 |
Genre | |
ISBN |
Electromagnetic Fields and Waves
Title | Electromagnetic Fields and Waves PDF eBook |
Author | Vladimir Rojansky |
Publisher | Courier Corporation |
Pages | 484 |
Release | 2012-03-08 |
Genre | Science |
ISBN | 0486147738 |
This comprehensive introduction to classical electromagnetic theory covers the major aspects, including scalar fields, vectors, laws of Ohm, Joule, Coulomb, Faraday, Maxwell's equation, and more. With numerous diagrams and illustrations.
Electromagnetic Theory for Microwaves and Optoelectronics
Title | Electromagnetic Theory for Microwaves and Optoelectronics PDF eBook |
Author | Kequian Zhang |
Publisher | Springer Science & Business Media |
Pages | 683 |
Release | 2013-06-29 |
Genre | Science |
ISBN | 3662035537 |
This book is a first-year graduate text on electromagnetic fields and waves. It is the translated and revised edition of the Chinese version with the same title published by the Publishing House of Electronic Industry (PHEI) of China in 1994. The text is based on the graduate course lectures on "Advanced Elec trodynamics" given by the authors at Tsinghua University. More than 300 students from the Department of Electronic Engineering and the Depart ment of Applied Physics have taken this course during the last decade. Their particular fields are microwave and millimeterwave theory and technology, physical electronics, optoelectronics and engineering physics. As the title of the book shows, the texts and examples in the book concentrate mainly on electromagnetic theory related to microwaves and optoelectronics, or light wave technology. However, the book can also be used as an intermediate-level text or reference book on electromagnetic fields and waves for students and scientists engaged in research in neighboring fields.
Foundations of the Mathematical Theory of Electromagnetic Waves
Title | Foundations of the Mathematical Theory of Electromagnetic Waves PDF eBook |
Author | Claus Müller |
Publisher | Springer |
Pages | 372 |
Release | 1969 |
Genre | Mathematics |
ISBN |
Mathematical Foundations of Computational Electromagnetism
Title | Mathematical Foundations of Computational Electromagnetism PDF eBook |
Author | Franck Assous |
Publisher | Springer |
Pages | 460 |
Release | 2018-06-09 |
Genre | Mathematics |
ISBN | 3319708422 |
This book presents an in-depth treatment of various mathematical aspects of electromagnetism and Maxwell's equations: from modeling issues to well-posedness results and the coupled models of plasma physics (Vlasov-Maxwell and Vlasov-Poisson systems) and magnetohydrodynamics (MHD). These equations and boundary conditions are discussed, including a brief review of absorbing boundary conditions. The focus then moves to well‐posedness results. The relevant function spaces are introduced, with an emphasis on boundary and topological conditions. General variational frameworks are defined for static and quasi-static problems, time-harmonic problems (including fixed frequency or Helmholtz-like problems and unknown frequency or eigenvalue problems), and time-dependent problems, with or without constraints. They are then applied to prove the well-posedness of Maxwell’s equations and their simplified models, in the various settings described above. The book is completed with a discussion of dimensionally reduced models in prismatic and axisymmetric geometries, and a survey of existence and uniqueness results for the Vlasov-Poisson, Vlasov-Maxwell and MHD equations. The book addresses mainly researchers in applied mathematics who work on Maxwell’s equations. However, it can be used for master or doctorate-level courses on mathematical electromagnetism as it requires only a bachelor-level knowledge of analysis.