Description

Book Synopsis
Designed for accessibility to students, researchers and design and development workers, it discusses the full range of classical and modern methods for the solution of electric, magnetic, some thermal and other similar fields. It deals with 1, 2 and 3 space dimensions, with linear, non-linear and anisotropic media as well as static and ``low''''-frequency time variation. Numerous examples, detailing the physical significance of the mathematics and the practical considerations involved in implementing the solutions, make this a very hands-on working reference.

Table of Contents
Basic Field Theory.

Images.

The Solution of Laplace's Equation by Separation of theVariables.

Fields with Distributed Currents: Poisson and DiffusionEquations.

Conformal Transformation: Basic Ideas.

Polygonal Boundaries.

General Considerations.

Computational Modeling--Basic Methods.

Two-Dimensional Static Linear Problems.

Non-Linear Effects in Two-Dimensional Fields.

Two-Dimensional Time-Dependent Fields.

Three-Dimensional Problems.

Electromagnetic Software Environment.

Appendices.

Bibliography.

Index.

The Analytical and Numerical Solution of Electric

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    A Hardback by K. J. Binns, P. J. Lawrenson, C. W. Trowbridge

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      View other formats and editions of The Analytical and Numerical Solution of Electric by K. J. Binns

      Publisher: John Wiley & Sons Inc
      Publication Date: Publication Date: 26/10/1992
      ISBN13: 9780471924609, 978-0471924609
      ISBN10: 0471924601

      Description

      Book Synopsis
      Designed for accessibility to students, researchers and design and development workers, it discusses the full range of classical and modern methods for the solution of electric, magnetic, some thermal and other similar fields. It deals with 1, 2 and 3 space dimensions, with linear, non-linear and anisotropic media as well as static and ``low''''-frequency time variation. Numerous examples, detailing the physical significance of the mathematics and the practical considerations involved in implementing the solutions, make this a very hands-on working reference.

      Table of Contents
      Basic Field Theory.

      Images.

      The Solution of Laplace's Equation by Separation of theVariables.

      Fields with Distributed Currents: Poisson and DiffusionEquations.

      Conformal Transformation: Basic Ideas.

      Polygonal Boundaries.

      General Considerations.

      Computational Modeling--Basic Methods.

      Two-Dimensional Static Linear Problems.

      Non-Linear Effects in Two-Dimensional Fields.

      Two-Dimensional Time-Dependent Fields.

      Three-Dimensional Problems.

      Electromagnetic Software Environment.

      Appendices.

      Bibliography.

      Index.

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