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Lecture
Magnetic Storage: Evolution & Techniques
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Related lectures (33)
Magnetisation States: Spin Interactions and Recording Media
Covers spin interactions, magnetisation states, and their applications in magnetic recording technology.
Materials Science of Magnetic Materials
Covers the materials science of magnetic materials, focusing on properties, concepts, and optimization for functional applications.
Nano Magnetism: Recording and Magnetization
Explores nano-magnetism, magnetic recording trends, storage media, and the magnetism of isolated atoms.
Magnetic Recording Technology
Explores the evolution of magnetic recording technology, from historical origins to modern advancements in magnetic media and information storage.
Magnetic Interactions: Ferromagnetism & Exchange
Covers ferromagnetism, antiferromagnetism, and paramagnetism, explaining exchange interactions and magnetic domains.
Magnetic anisotropy: fundamentals and applications
Explores magnetic anisotropy energy, orbital moments, bit magnetization, superparamagnetism, and atomic-scale engineering in nanostructures.
Permanent Magnets: Hysteresis Cycle
MOOC: Electromechanical conversion I
Covers the hysteresis cycle of permanent magnets and their sensitivity to temperature.
Neuromorphic Computing: Concepts and Hardware Implementations
Covers neuromorphic computing, challenges in ternary and binary computing, hardware simulations of the brain, and new materials for artificial brain cells.
Ferromagnetism: Magnetic Properties
Explores the magnetic properties of ferromagnetic materials, including retention of magnetization and hysteresis cycles.
Magnetism: Materials & Fields
Explores induction, Maxwell's equations, magnetic materials, electromagnetism, and hysteresis cycles in ferromagnets.
Magnetic Materials: Hysteresis Curves Explained
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Covers hysteresis curves in magnetic materials, focusing on soft and hard magnets and their applications.
Magnetic Storage: Hard and Soft Magnets
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Covers the fundamentals of magnetic recording technologies, including the evolution of disc recording and the characteristics of magnetic grains.
Magnetic Anisotropy: Basics and Applications
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Explores magnetic anisotropy fundamentals, temperature effects, and applications in modern technologies.
Magnetic Hysteresis: Behavior and Loops
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Covers magnetic hysteresis, coercive fields, and soft magnetic materials, including the history of coercive fields and interpreting hysteresis curves.
Nanoscale Magnetism
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Explores nanoscale magnetism, covering types of magnetism, magnetic domains, superparamagnetism, and applications in data storage.
Magnetic Recording Technologies: Overview and Components
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Covers magnetic recording technologies, storage concepts, components, and advancements in data storage.
Anisotropy and Hard Magnets
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Explores anisotropy, hard magnets, BHmax, and rare earth elements in magnetic materials.
Magnetic Domains and Walls
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Explores magnetic domains and walls in ferromagnetic materials, discussing their formation, energy considerations, and domain configurations.
Applications of Hard Magnets
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Explores the applications and benefits of hard magnets in modern technologies, emphasizing their compact design advantages.
Nanomagnetism: Magnetic Structures and Interactions
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Covers fundamental concepts of magnetism, types of magnetism, and techniques for investigating magnetic structures at the nanoscale.
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