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Lecture
Magnetism: Types and Susceptibility
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Nanoscale Magnetism
Explores nanoscale magnetism, covering types of magnetism, magnetic domains, superparamagnetism, and applications in data storage.
Magnetic Susceptibility: Basics and Applications
Explores magnetization, magnetic fields, spin angular momentum, and material behavior in magnetic fields, discussing susceptibility, paramagnetism, and diamagnetism.
Magnetic Order: Antiferromagnetism
Explores antiferromagnetism, order parameters, anisotropy energy, and quantum phase transitions.
Magnetic Sensors: Principles and Applications
Explores magnetic sensors' principles, materials, applications, and sensor sensitivity in measuring magnetic fields.
Magnetic Induction
Explains magnetic induction, force on a dipole, torque, and applications in macroscopic systems.
Magnetic Materials: Elements, Fields, and Interactions
Explores the magnetic periodic table, ferromagnets, antiferromagnets, magnetic fields, and Maxwell's equations in polarizable matter.
Spin-Mechanical Coupling in Diamond
Explores spin-mechanical coupling in diamond, focusing on the Nitrogen-Vacancy center and the transition to spin-diamagnetism.
Magnetostatics: Electric Current and Magnetic Fields
Explores the interaction between electric currents and magnetic fields, including Ampère's law and electromagnetic induction.
Electromagnetics: Basics, Forces, and Applications in MEMS
Covers the basics of magnetism, magnetic substances, scaling of magnets, and applications in MEMS.
Magnetic Hysteresis: Behavior and Loops
Covers magnetic hysteresis, coercive fields, and soft magnetic materials, including the history of coercive fields and interpreting hysteresis curves.