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**About this book :- **
**Integral Equation Methods for Electromagnetics ** written by
** John L. Volakis, Kubilay Sertel**.

This text/reference is a detailed look at the development and use of integral equation methods for electromagnetic analysis, specifically for antennas and radar scattering. Developers and practitioners will appreciate the broad-based approach to understanding and utilizing integral equation methods and the unique coverage of historical developments that led to the current state-of-the-art. In contrast to existing books, Integral Equation Methods for Electromagnetics lays the groundwork in the initial chapters so students and basic users can solve simple problems and work their way up to the most advanced and current solutions. This is the first book to discuss the solution of two-dimensional integral equations in many forms of their application and utility. As 2D problems are simpler to discuss, the student and basic reader can gain the necessary expertise before diving into 3D applications. This is also the first basic text to cover fast integral methods for metallic, impedance, and material geometries. It will provide the student or advanced reader with a fairly complete and up-to-date coverage of integral methods for composite scatterers.

Overall, the authors believe that this book provides the student, casual, or advanced reader with a fairly complete and up-to-date coverage of integral methods for composite scatterers and antenna structures. It is unique in providing a detailed process in formulating radiation and scattered field expressions for a large set of 2D and 3D problems that can accommodate both beginners and advanced readers. Chapter 2 and 3 are unique in providing the student with a didactic walk through the maze of integral equations formulations and solutions for all sorts of situations. Throughout, we provide historical perspectives on the development of the formulations and solutions approaches. Coupled with the integral equation mechanics and numerical applications given in Chapters 4 to 6 for wire, 2D and 3D metallic and dielectric structures, this book will remain useful for many years to come.

**Book Detail :- **
** Title: ** Integral Equation Methods for Electromagnetics
** Edition: **
** Author(s): ** John L. Volakis, Kubilay Sertel
** Publisher: ** SciTech Publishing
** Series: **
** Year: ** 2012
** Pages: ** 408
** Type: ** PDF
** Language: ** English
** ISBN: ** 1891121936, 9781891121937
** Country: ** US

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**About Author :- **

The Author John L. Volakis is the Dean at the College of Engineering and Computing at Florida International University and adjunct professor at the Department of Electrical and Computer Engineering at the Ohio State University. He was the Roy and Lois Chope Chair in Engineering at Ohio State and the Director of the Ohio State Univ. ElectroScience Laboratory for 14 years (2003-2017).

He has published nearly 400 refereed journal articles and almost 700 conference papers. He has co-authored 8 books and nearly 30 book chapters. In 2004 he was listed among the top 250 most referenced scientists in Computer Science and Engineering by ISI. For a complete list of his publications, please visit his “Publications” page.

The Author Kubilay Sertel received his PhD from the University of Michigan in 2003. He has been with The Ohio State University ElectroScience Laboratory since January of 2003 as a research scientist and was appointed assistant professor of electrical and computer engineering in 2012. Dr. Sertel is a Senior Member of IEEE, and a member of the IEEE Antennas and Propagation and IEEE Microwave Theory and Techniques Societies. He is also an elected member of URSI Commission B.

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**Book Contents :- **
**Integral Equation Methods for Electromagnetics ** written by
** John L. Volakis, Kubilay Sertel**
cover the following topics.

1. Fundamental Concepts and Theorems

2. Field Solutions and Representations

3. Integral Equations and Other Field Representations

4. Solution of Integral Equations for Wire Radiators and Scatterers

5. Two-Dimensional Scattering

6. Three-Dimensional Scattering

7. Fast Multipole Method and Its Multilevel Implementation

Appendix: Integral Equations for Microstrip Antennas

Appendix A.1 Dyadic Green’s Function for a Grounded Substrate

Appendix A.2 Moment Method Formulation

Appendix A.3 Far-Zone Field Evaluation 380

Bibliography

Index

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