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  • Cited by 2
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    • Open Access
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    • Publisher:
      Cambridge University Press
      Publication date:
      04 November 2022
      09 February 2023
      ISBN:
      9781009291156
      9781009291149
      9781009291163
      Creative Commons:
      Creative Common License - CC Creative Common License - BY Creative Common License - NC Creative Common License - ND
      This content is Open Access and distributed under the terms of the Creative Commons Attribution licence CC-BY-NC-ND 4.0.
      https://creativecommons.org/creativelicenses
      Dimensions:
      (254 x 178 mm)
      Weight & Pages:
      0.78kg, 314 Pages
      Dimensions:
      (254 x 178 mm)
      Weight & Pages:
      0.61kg, 314 Pages
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    Book description

    Magnetostatics, the mathematical theory that describes the forces and fields resulting from the steady flow of electrical currents, has a long history. By capturing the basic concepts, and building towards the computation of magnetic fields, this book is a self-contained discussion of the major subjects in magnetostatics. Overviews of Maxwell's equations, the Poisson equation, and boundary value problems pave the way for dealing with fields from transverse, axial and periodic magnetic arrangements and assemblies of permanent magnets. Examples from accelerator and beam physics give up-to-date context to the theory. Both complex contour integration and numerical techniques for calculating magnetic fields are discussed in detail with plentiful examples. Theoretical and practical information on carefully selected topics make this a one-stop reference for magnet designers, as well as for physics and electrical engineering undergraduate students. This title, first published in 2016, has been reissued as an Open Access publication on Cambridge Core.

    Reviews

    '[Principles of Magnetostatics] is a well-written combination of physics theory, application, and magnet design. The work will be of interest to physicists, engineers, and (of course) magnet designers. Also, an undergraduate that has completed the typical introductory physics and mathematics sequence should be adequately prepared to handle the presented material. … based on the examples given and the interesting design challenges, the reviewer believes this text can work well as a supplement to an upper-division physics course in electricity and magnetism. It will certainly be an excellent starting point for any individual interested in pursuing studies in magnet design and field analysis.'

    E. Kincanon Source: Choice

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    Contents

    Full book PDF
    • Frontmatter
      pp i-iv
    • Contents
      pp v-viii
    • Preface
      pp ix-xii
    • 1 - Basic concepts
      pp 1-22
    • 2 - Magnetic materials
      pp 23-38
    • 3 - Potential theory
      pp 39-70
    • 4 - Conductor–dominant transverse fields
      pp 71-107
    • 5 - Complex analysis of transverse fields
      pp 108-149
    • 6 - Iron–dominant transverse fields
      pp 150-164
    • 7 - Axial field configurations
      pp 165-196
    • 8 - Periodic magnetic channels
      pp 197-210
    • 9 - Permanent magnets
      pp 211-228
    • 10 - Time–varying fields
      pp 229-244
    • 11 - Numerical methods
      pp 245-273
    • Appendices
      pp 274-296
    • Index
      pp 297-302

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