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Atomic Force Microscope: Imaging and Modes
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Related lectures (34)
Demagnetization Field: External vs Internal Fields
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Explores demagnetization field in non-ellipsoidal bodies, comparing external and internal fields and discussing magnetic energy and shape anisotropy.
Phenomenological Description: Magnetic Anisotropy
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Explores the phenomenological description of magnetic anisotropy, including spin-orbit coupling effects and magnetization work.
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.
Magnetic Anisotropy in Ferromagnetic Materials
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Explores magnetic anisotropy in different ferromagnetic materials and discusses the magnetocrystalline anisotropy of permalloy and rare-earth magnets.
Atomic Force Microscopy: Nanoscale Metrology
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Explores Atomic Force Microscopy, covering principles, applications, resolution, feedback mechanisms, and imaging techniques.
Anisotropy and Spin-Orbit Coupling
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Explores anisotropy in magnetic materials, spin-orbit coupling effects, and magnetization curves.
Magnetic Domains and Walls: Properties and Characteristics
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Explores magnetic domains, domain walls, and their energy considerations in materials like iron, cobalt, and nickel.
Magnetic Materials: Elements, Fields, and Interactions
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Explores the magnetic periodic table, ferromagnets, antiferromagnets, magnetic fields, and Maxwell's equations in polarizable matter.
Magnetic Materials: Hysteresis Curves Explained
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Covers hysteresis curves in magnetic materials, focusing on soft and hard magnets and their applications.
Soft Magnets: Applications and Loss Mechanisms
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Explores the definition and applications of soft magnets, including their use in transformers and the optimization of losses in AC applications.
Bloch Wall: General Considerations in the Bulk
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Discusses exchange length, reversal processes, and Bloch walls in magnetic materials.
Magnetic Anisotropy: Observations in Iron, Nickel, and Cobalt
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Analyzes magnetization curves in iron, nickel, and cobalt to explain magnetic anisotropy.
Anisotropy and Hard Magnets
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Explores anisotropy, hard magnets, BHmax, and rare earth elements in magnetic materials.
Magnetic Storage: Evolution & Techniques
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Explores the evolution of magnetic storage techniques, from longitudinal to perpendicular recording, and heat-assisted magnetic recording, as well as magnetic-core memory principles and magnetoresistive RAM technology.
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