Theory and Computation of Electromagnetic Fields Book Summary - Theory and Computation of Electromagnetic Fields Book explained in key points

Theory and Computation of Electromagnetic Fields summary

Jian-Ming Jin

Brief summary

Theory and Computation of Electromagnetic Fields by Jian-Ming Jin provides a comprehensive overview of electromagnetic field theory and computational methods. It covers fundamental concepts and advanced techniques, making it a valuable resource for students and researchers.

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Table of Contents

    Theory and Computation of Electromagnetic Fields
    Summary of key ideas

    Understanding Electromagnetic Fields

    In Theory and Computation of Electromagnetic Fields, Jin begins by establishing the foundational concepts of electromagnetic fields. He starts with a comprehensive review of vector analysis, Maxwell's equations, and the boundary conditions that govern the behavior of electromagnetic fields. Jin then introduces transmission line theory and its applications, providing a solid understanding of the fundamentals before moving on to more advanced topics.

    Building on this groundwork, Jin delves into wave transformation and addition theorems. He explores the behavior of electromagnetic fields in different media, including layered media, and discusses various techniques for analyzing and manipulating these fields. This section of the book is designed to provide a deep understanding of the theoretical aspects of electromagnetic fields.

    Numerical Methods for Electromagnetic Field Analysis

    In the second part of the book, Jin shifts the focus to computational methods for analyzing electromagnetic fields. He introduces three fundamental approaches: the finite difference method, finite element method, and integral equation-based moment method. Jin provides detailed explanations of the algorithms associated with each method, along with their advantages and limitations.

    Furthermore, Jin discusses the numerical analysis of electromagnetic fields in both the frequency and time domains. He covers the discretization of Maxwell's equations, the development of computational algorithms, and the interpretation of results. By doing so, Jin bridges the gap between theoretical understanding and practical application, enabling readers to comprehend and utilize these computational methods effectively.

    Advanced Computational Techniques and Applications

    Jin continues to explore advanced topics in computational electromagnetics, such as fast algorithms for solving integral equations and hybrid techniques that combine different numerical methods. He provides insights into the complexities of electromagnetic field analysis and demonstrates how these advanced techniques can be used to address real-world engineering problems.

    With the groundwork laid and advanced techniques covered, Jin concludes by showcasing the applications of computational electromagnetics in different engineering fields. He discusses the use of electromagnetic field analysis in the design of antennas, microwave circuits, and other electronic devices, emphasizing the practical relevance of the theoretical and computational concepts presented throughout the book.

    Updated Content and Practical Exercises

    In the second edition of Theory and Computation of Electromagnetic Fields, Jin includes new and updated content to reflect the latest advancements in computational electromagnetics. Furthermore, the book features a comprehensive set of homework problems and examples, allowing readers to apply the concepts they have learned and deepen their understanding through practical exercises.

    In conclusion, Theory and Computation of Electromagnetic Fields provides a thorough and integrated approach to understanding and analyzing electromagnetic fields. By combining theoretical foundations with computational methods and practical applications, Jin equips readers with the knowledge and skills necessary to tackle complex electromagnetic field problems in engineering and related fields.

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    What is Theory and Computation of Electromagnetic Fields about?

    Theory and Computation of Electromagnetic Fields by Jian-Ming Jin provides a comprehensive overview of the fundamental theories and computational techniques used in the analysis of electromagnetic fields. It covers topics such as Maxwell's equations, boundary value problems, numerical methods, and practical applications. This book is a valuable resource for students and researchers in the field of electromagnetics.

    Theory and Computation of Electromagnetic Fields Review

    Theory and Computation of Electromagnetic Fields (2010) delves into the intricate world of electromagnetic fields and their computational analysis. Here's why this book is a worthy read:
    • Offers a comprehensive exploration of electromagnetic field theories, providing a deep understanding of the subject matter.
    • Includes practical examples and applications to help readers bridge theory with real-world scenarios, enhancing comprehension and relevance.
    • The book's engaging approach to complex electromagnetic concepts ensures an enlightening and enriching read, far from dull or monotonous.

    Who should read Theory and Computation of Electromagnetic Fields?

    • Electrical engineering students and professionals seeking a comprehensive understanding of electromagnetic field theory

    • Researchers and academics in the field of electromagnetics looking for a reference book to deepen their knowledge

    • Individuals interested in computational methods for solving complex electromagnetic problems

    About the Author

    Jian-Ming Jin is a renowned expert in the field of electromagnetics. With over 40 years of experience, he has made significant contributions to both research and education. Jin has authored numerous influential books and research papers, covering a wide range of topics including computational electromagnetics, numerical methods, and antenna design. Throughout his career, he has received several prestigious awards for his outstanding achievements, cementing his status as a leading authority in the field.

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    Theory and Computation of Electromagnetic Fields FAQs 

    What is the main message of Theory and Computation of Electromagnetic Fields?

    The main message of Theory and Computation of Electromagnetic Fields is mastering the fundamentals and applications of electromagnetic fields.

    How long does it take to read Theory and Computation of Electromagnetic Fields?

    Reading time for Theory and Computation of Electromagnetic Fields: varies. Blinkist summary: approx. 15 minutes.

    Is Theory and Computation of Electromagnetic Fields a good book? Is it worth reading?

    Exploring Theory and Computation of Electromagnetic Fields is rewarding for understanding complex concepts efficiently.

    Who is the author of Theory and Computation of Electromagnetic Fields?

    The author of Theory and Computation of Electromagnetic Fields is Jian-Ming Jin.

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