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Quantum and Nanocomputing: Organic Thin Films
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Materials Science of Magnetic Materials
Covers the materials science of magnetic materials, focusing on properties, concepts, and optimization for functional applications.
Magnetic Anisotropy: Basics and Applications
Explores magnetic anisotropy fundamentals, temperature effects, and applications in modern technologies.
Soft Magnets: Properties and Applications
Explores the optimization strategies and characteristics of soft magnetic materials for technical applications in modern technologies.
Magnetic Anisotropy in Ferromagnetic Materials
Explores magnetic anisotropy in different ferromagnetic materials and discusses the magnetocrystalline anisotropy of permalloy and rare-earth magnets.
Phenomenological Description: Magnetic Anisotropy
Explores the phenomenological description of magnetic anisotropy, including spin-orbit coupling effects and magnetization work.
Magnetic Domains and Walls: Properties and Characteristics
Explores magnetic domains, domain walls, and their energy considerations in materials like iron, cobalt, and nickel.
Nanoscale Magnetism
Explores nanoscale magnetism, covering types of magnetism, magnetic domains, superparamagnetism, and applications in data storage.
Soft Magnetic Materials: Fe-Si Alloys to Amorphous Alloys
Explores Fe-Si and Ni-Fe soft magnetic materials, discussing their properties, processing, and applications, as well as the benefits of tailored impurities.
Applications of Hard Magnets
Explores the applications and benefits of hard magnets in modern technologies, emphasizing their compact design advantages.
Anisotropy and Spin-Orbit Coupling
Explores anisotropy in magnetic materials, spin-orbit coupling effects, and magnetization curves.