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Superconductivity and electromagnetism
~
Matsushita, Teruo.
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Superconductivity and electromagnetism
Record Type:
Electronic resources : Monograph/item
Title/Author:
Superconductivity and electromagnetism/ by Teruo Matsushita.
Author:
Matsushita, Teruo.
Published:
Cham :Springer International Publishing : : 2021.,
Description:
x, 207 p. :ill., digital ;24 cm.
[NT 15003449]:
Introduction -- Basics of Electromagnetism -- Effect of Introduction of Superconductivity into Electromagnetism -- Fundamental Electromagnetic Properties of Superconductor -- Flux Pinning Phenomena -- Longitudinal Magnetic Field Effect -- Concluding Remarks -- Appendices -- Index.
Contained By:
Springer Nature eBook
Subject:
Superconductors - Magnetic properties. -
Online resource:
https://doi.org/10.1007/978-3-030-67568-4
ISBN:
9783030675684
Superconductivity and electromagnetism
Matsushita, Teruo.
Superconductivity and electromagnetism
[electronic resource] /by Teruo Matsushita. - Cham :Springer International Publishing :2021. - x, 207 p. :ill., digital ;24 cm. - Springer series in solid-state sciences,v.1950171-1873 ;. - Springer series in solid-state sciences ;v.195..
Introduction -- Basics of Electromagnetism -- Effect of Introduction of Superconductivity into Electromagnetism -- Fundamental Electromagnetic Properties of Superconductor -- Flux Pinning Phenomena -- Longitudinal Magnetic Field Effect -- Concluding Remarks -- Appendices -- Index.
This book introduces readers to the characteristic features of electromagnetic phenomena in superconductivity. It first demonstrates not only that the diamagnetism in the superconductivity complies with Maxwell's theory, which was formulated before the discovery of superconductivity, but also that the dominant E-B analogy in the electromagnetism loses perfection without the superconductivity. The book then explores flux pinning, which is responsible for the non-dissipative current in DC, leading to irreversibility in AC. Drawing on Maxwell's work, it also proves theoretically that if there is no energy dissipation in the superconductivity caused by the break in time reversal symmetry, it contradicts the thermodynamic principle of energy conservation - something that had previously only been proved experimentally. Lastly, the book addresses the longitudinal magnetic field effect, and explains how this phenomenon leads to a new development of Maxwell's theory. Featuring numerous appendices to help readers understand the methods of derivation of equations, this book offers students and young scientists an introduction to applied superconductivity, especially in the context of power applications. Presenting the characteristic features of electromagnetic phenomena in superconductivity from basic to advanced topics for applications, the book offers a valuable resource for graduate students and researchers studying superconductivity as well as engineers working in electric utility industry.
ISBN: 9783030675684
Standard No.: 10.1007/978-3-030-67568-4doiSubjects--Topical Terms:
2147168
Superconductors
--Magnetic properties.
LC Class. No.: QC611.97.M34 / M38 2021
Dewey Class. No.: 621.35
Superconductivity and electromagnetism
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Introduction -- Basics of Electromagnetism -- Effect of Introduction of Superconductivity into Electromagnetism -- Fundamental Electromagnetic Properties of Superconductor -- Flux Pinning Phenomena -- Longitudinal Magnetic Field Effect -- Concluding Remarks -- Appendices -- Index.
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This book introduces readers to the characteristic features of electromagnetic phenomena in superconductivity. It first demonstrates not only that the diamagnetism in the superconductivity complies with Maxwell's theory, which was formulated before the discovery of superconductivity, but also that the dominant E-B analogy in the electromagnetism loses perfection without the superconductivity. The book then explores flux pinning, which is responsible for the non-dissipative current in DC, leading to irreversibility in AC. Drawing on Maxwell's work, it also proves theoretically that if there is no energy dissipation in the superconductivity caused by the break in time reversal symmetry, it contradicts the thermodynamic principle of energy conservation - something that had previously only been proved experimentally. Lastly, the book addresses the longitudinal magnetic field effect, and explains how this phenomenon leads to a new development of Maxwell's theory. Featuring numerous appendices to help readers understand the methods of derivation of equations, this book offers students and young scientists an introduction to applied superconductivity, especially in the context of power applications. Presenting the characteristic features of electromagnetic phenomena in superconductivity from basic to advanced topics for applications, the book offers a valuable resource for graduate students and researchers studying superconductivity as well as engineers working in electric utility industry.
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Physics and Astronomy (SpringerNature-11651)
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EB QC611.97.M34 M38 2021
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