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Related lectures (16)
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Magnetic Materials in Modern Technologies
Explores magnetic recording media evolution, stability criteria, trilemma challenges, and advanced recording strategies.
Magnetic Recording Technologies: Overview and Components
Covers magnetic recording technologies, storage concepts, components, and advancements in data storage.
Advanced Optics: Plasmonics and Applications
Delves into advanced optics, covering plasmonics, waveguides, magnetic recording, and organic material integration.
Magnetic Storage: Hard and Soft Magnets
Covers the fundamentals of magnetic recording technologies, including the evolution of disc recording and the characteristics of magnetic grains.
Nano Magnetism: Recording and Magnetization
Explores nano-magnetism, magnetic recording trends, storage media, and the magnetism of isolated atoms.
Electromagnetic Storage Technologies
Explores electromagnetic storage technologies, actuation schemes, and motors, discussing principles, designs, and scaling considerations.
Magnetic Recording Technologies: Stability, HAMR, Read Head
Covers stability criteria, magnetic properties, HAMR, read/write head, and spintronics.
Magnetisation States: Spin Interactions and Recording Media
Covers spin interactions, magnetisation states, and their applications in magnetic recording technology.
Magnetic Recording Technology
Explores the evolution of magnetic recording technology, from historical origins to modern advancements in magnetic media and information storage.
Memory Hierarchies: Introduction and Technological Constraints
Introduces memory storage technologies, hierarchies, and their impact on performance.
Magnetic Interactions: Fundamentals and Applications
Explores magnetic interactions at atomic and bulk levels, exchange interactions, ordering temperatures, dipolar interactions, and magnetization states.
Magnetic Materials: Elements, Fields, and Interactions
Explores the magnetic periodic table, ferromagnets, antiferromagnets, magnetic fields, and Maxwell's equations in polarizable matter.
Magnetic Materials: Hysteresis Curves Explained
Covers hysteresis curves in magnetic materials, focusing on soft and hard magnets and their applications.
Anisotropy and Hard Magnets
Explores anisotropy, hard magnets, BHmax, and rare earth elements in magnetic materials.
Magnetic Materials: Properties and Applications
Covers the classification, properties, and applications of various magnetic materials.
Magnetic Anisotropy: Basics and Applications
Explores magnetic anisotropy fundamentals, temperature effects, and applications in modern technologies.
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