Modern Magnetic Materials: Principles and Applications
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- Wiley
More About This Title Modern Magnetic Materials: Principles and Applications
- English
English
A truly modern treatment of materials that can hold a magnetic field.
* Covers cutting-edge materials with many important technical applications.
* Includes examples and problems along with computer solutions.
* Covers cutting-edge materials with many important technical applications.
* Includes examples and problems along with computer solutions.
- English
English
Robert C. O'Handley is the author of Modern Magnetic Materials: Principles and Applications, published by Wiley.
- English
English
Introduction and Overview.
Magnetostatics.
Classical and Quantum Phenomenology of Magnetism.
Quantum Mechanics, Magnetism, and Exchange in Atoms and Oxides.
Quantum Mechanics, Magnetism, and Bonding in Metals.
Magnetic Anisotropy.
Magnetoelastic Effects.
Magnetic Domain Walls and Domains.
Magnetization Process.
Soft Magnetic Materials.
Amorphous Materials: Magnetism and Disorder.
Magnetism in Small Structures: Exchange Coupling and Nanocrystals.
Hard Magnetic Materials.
Magnetic Annealing and Directional Order.
Electronic Transport in Magnetic Materials.
Surface and Thin-Film Magnetism.
Magnetic Recording.
Appendices.
Index.
Magnetostatics.
Classical and Quantum Phenomenology of Magnetism.
Quantum Mechanics, Magnetism, and Exchange in Atoms and Oxides.
Quantum Mechanics, Magnetism, and Bonding in Metals.
Magnetic Anisotropy.
Magnetoelastic Effects.
Magnetic Domain Walls and Domains.
Magnetization Process.
Soft Magnetic Materials.
Amorphous Materials: Magnetism and Disorder.
Magnetism in Small Structures: Exchange Coupling and Nanocrystals.
Hard Magnetic Materials.
Magnetic Annealing and Directional Order.
Electronic Transport in Magnetic Materials.
Surface and Thin-Film Magnetism.
Magnetic Recording.
Appendices.
Index.
- English
English
"…appropriate for a graduate or advanced undergraduate level course in magnetics materials…a useful reference resource to researchers in magnetic materials…" (IEEE Electrical Insulation Magazine, July/August 2005)