
Electricity and Magnetism
New Formulation by Introduction of Superconductivity
Series: Undergraduate Lecture Notes in Physics;
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Product details:
- Edition number 2014
- Publisher Springer, Berlin
- Date of Publication 1 January 2013
- Number of Volumes 1 pieces, Book
- ISBN 9784431545255
- Binding Paperback
- No. of pages384 pages
- Size 17x156x236 mm
- Weight 568 g
- Language English
- Illustrations 285 SW-Abb., 1 Farbabb. Illustrations, black & white 0
Categories
Short description:
The author introduces the concept that superconductivity can establish a perfect formalism of electricity and magnetism. The correspondence of conductors that exhibit perfect electrostatic shielding (E=0) in the static condition and superconductors that show perfect diamagnetism (B=0) is given to help readers understand the relationship between electricity and magnetism.
Another helpful aspect with the introduction of the superconductivity feature perfect diamagnetism is that the correspondence in the development of the expression of magnetic energy and electric energy is clearly shown.
Additionally, the basic mathematical operation and proofs are shown in an appendix, and there is full use of examples and exercises in each chapter with thorough answers.
Long description:
The author introduces the concept that superconductivity can establish a perfect formalism of electricity and magnetism. The correspondence of electric materials that exhibit perfect electrostatic shielding (E=0) in the static condition and superconductors that show perfect diamagnetism (B=0) is given to help readers understand the relationship between electricity and magnetism.
Another helpful aspect with the introduction of the superconductivity feature perfect diamagnetism is that the correspondence in the development of the expression of magnetic energy and electric energy is clearly shown.
Additionally, the basic mathematical operation and proofs are shown in an appendix, and there is full use of examples and exercises in each chapter with thorough answers.
Table of Contents:
Part I Static Electric Phenomena.
- Electrostatic Field.
- Conductors.
- Conductor System in Vacuums.
- Dielectric Materials.
- Steady Electric Current.
- Part II Static Magnetic Phenomena.
- Electric Current and Magnetic Flux Density.
- Superconductors.
- Electric Current Systems.
- Magnetic Materials.
- Part III Time Dependent Electromagnetic Phenomena.
- Electromagnetic Induction.
- Displacement Current and Maxwell Equations.
- Electromagnetic Waves.