Principles of Magnetostatics

Author:   Richard C. Fernow (Formerly Brookhaven National Laboratory)
Publisher:   Cambridge University Press
Edition:   Revised edition
ISBN:  

9781009291149


Pages:   314
Publication Date:   09 February 2023
Format:   Hardback
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

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Principles of Magnetostatics


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Author:   Richard C. Fernow (Formerly Brookhaven National Laboratory)
Publisher:   Cambridge University Press
Imprint:   Cambridge University Press
Edition:   Revised edition
Dimensions:   Width: 18.50cm , Height: 2.20cm , Length: 26.20cm
Weight:   0.780kg
ISBN:  

9781009291149


ISBN 10:   1009291149
Pages:   314
Publication Date:   09 February 2023
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

Table of Contents

Preface; 1. Basic concepts; 2. Magnetic materials; 3. Potential theory; 4. Conductor-dominant transverse fields; 5. Complex analysis of transverse fields; 6. Iron-dominant transverse fields; 7. Axial field configurations; 8. Periodic magnetic channels; 9. Permanent magnets; 10. Time-varying fields; 11. Numerical methods; Appendices: A. Symbols and SI units; B. Vector analysis; C. Bessel functions; D. Legendre functions; E. Complex variable analysis; F. Complete elliptic integrals; Index.

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, Choice


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