Description

Employed in a large number of commercial electromagnetic simulation packages, the finite element method is one of the most popular and well-established numerical techniques in engineering. This book covers the theory, development, implementation, and application of the finite element method and its hybrid versions to electromagnetics. FINITE ELEMENT METHOD FOR ELECTROMAGNETICS begins with a step-by-step textbook presentation of the finite method and its variations then goes on to provide up-to-date coverage of three dimensional formulations and modern applications to open and closed domain problems. Worked out examples are included to aid the reader with the fine features of the method and the implementation of its hybridization with other techniques for a robust simulation of large scale radiation and scattering. The crucial treatment of local boundary conditions is carefully worked out in several stages in the book.

Sponsored by:
IEEE Antennas and Propagation Society.

Finite Element Method Electromagnetics: Antennas, Microwave Circuits, and Scattering Applications

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£207.95

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Paperback / softback by John L. Volakis , Arindam Chatterjee

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Short Description:

Employed in a large number of commercial electromagnetic simulation packages, the finite element method is one of the most popular... Read more

    Publisher: John Wiley & Sons Inc
    Publication Date: 01/06/1998
    ISBN13: 9780780334250, 978-0780334250
    ISBN10: 0780334256

    Number of Pages: 368

    Non Fiction , Mathematics & Science , Education

    Description

    Employed in a large number of commercial electromagnetic simulation packages, the finite element method is one of the most popular and well-established numerical techniques in engineering. This book covers the theory, development, implementation, and application of the finite element method and its hybrid versions to electromagnetics. FINITE ELEMENT METHOD FOR ELECTROMAGNETICS begins with a step-by-step textbook presentation of the finite method and its variations then goes on to provide up-to-date coverage of three dimensional formulations and modern applications to open and closed domain problems. Worked out examples are included to aid the reader with the fine features of the method and the implementation of its hybridization with other techniques for a robust simulation of large scale radiation and scattering. The crucial treatment of local boundary conditions is carefully worked out in several stages in the book.

    Sponsored by:
    IEEE Antennas and Propagation Society.

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