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Magnetic Properties: Materials and Magnetization
Explores magnetic properties of materials, types of magnetism, and hysteresis curves.
Practical Consequences of Hysteresis Curves
Explores the practical implications of hysteresis curves in magnetic materials, including coercive fields and temperature effects.
Magnetic Materials: Losses and Characteristics
Covers losses and characteristics of magnetic materials, including Weiss domains and hysteresis.
Soft Magnets: Applications and Loss Mechanisms
Explores the definition and applications of soft magnets, including their use in transformers and the optimization of losses in AC applications.
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Nanomagnetism: Magnetic Fields and Domains
Explores magnetism, magnetic sources, fields, domains, hysteresis, energy contributions, types of magnetism, and nanoscale magnetic structure investigation.
Ferromagnets and the Ising Model
Covers the Ising model, ferromagnetic materials, spins on a lattice, and spin correlations.
Soft Magnets Applications
Covers strategies to optimize magnets for soft magnetic materials applications, including losses in AC applications and historical progress.
Magnetic Phase Transitions
Explores magnetic phase transitions, ferromagnetism, Bethe lattice, Potts model, and free entropy.
Anisotropy and Spin-Orbit Coupling
Explores anisotropy in magnetic materials, spin-orbit coupling effects, and magnetization curves.