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Magnetic Materials: Properties and Applications
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Magnetic Materials: Elements, Fields, and Interactions
Explores the magnetic periodic table, ferromagnets, antiferromagnets, magnetic fields, and Maxwell's equations in polarizable matter.
Magnetic Moments: Atoms & Ions
Explores the computation of total magnetic moments of atoms and ions, covering electron-nucleus interactions, filled shells, and types of magnetism.
Magnetic Anisotropy: Basics and Applications
Explores magnetic anisotropy fundamentals, temperature effects, and applications in modern technologies.
Magnetic Properties of Materials
Explores magnetic and electrical properties, atomic diffusion, and thermal characteristics of materials.
Magnetic Materials: Important Aspects and Applications
Explores magnetic materials' key concepts and applications in modern technologies.
Magnetic anisotropy: fundamentals and applications
Explores magnetic anisotropy energy, orbital moments, bit magnetization, superparamagnetism, and atomic-scale engineering in nanostructures.
Exchange Interaction: Understanding Magnetic Properties
Covers exchange interaction's role in ferromagnetism and its dependence on interatomic distances and Coulomb forces.
Magnetic Sensors: Principles and Applications
Explores magnetic sensors' principles, materials, applications, and sensor sensitivity in measuring magnetic fields.
Nano Magnetism: Recording and Magnetization
Explores nano-magnetism, magnetic recording trends, storage media, and the magnetism of isolated atoms.
Magnetic Recording Technologies: Stability, HAMR, Read Head
Covers stability criteria, magnetic properties, HAMR, read/write head, and spintronics.