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Electromechanical Conversion
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Related lectures (53)
Magnetic Materials: Applications and Experiments
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Explores the applications of magnetic materials, including Halbach arrays and practical experiments with magnets.
Energy in Inductance & Capacitance
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Explores energy storage in coils, magnetic fields, and capacitors, emphasizing the oscillation and decay of energy in circuits.
Electromagnetics: Basics, Forces, and Applications in MEMS
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Covers the basics of magnetism, magnetic substances, scaling of magnets, and applications in MEMS.
Magnetic Materials: Hysteresis in Soft and Hard Magnets
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Covers the properties and applications of magnetic materials, focusing on hysteresis in soft and hard magnets.
Electromagnetic Actuators
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Explores electromagnetic and reluctant polarized actuators, force concepts, and actuator classes.
Magnetic Phase Determination and Electric Field Control
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Explores magnetic phase determination, electric field control, crystallographic parameters, and upcoming experiments on various compounds.
Ampère-Laplace Law: Magnetic Field Calculation and Applications
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Explores the Ampère-Laplace law for magnetic field calculation and its practical applications.
RC Circuits and Magnetism
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Covers RC circuits and magnetism, exploring discharging capacitors and magnetic forces on charges and currents.
Magnetic Fields: Theory and Applications
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Explores the theory and applications of magnetic fields, including flux, poles, and field lines.
Magnetic Fields: Circulation and Solenoids
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Explores the circulation of magnetic fields in solenoids and the application of Ampère's law.
Magnetostatics: Circulation and Applications
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Explores magnetostatics, circulation of magnetic fields, and Ampère's law applications.
Light-induced Skyrmions Dynamics
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Explores the dynamics of light-induced Skyrmions, comparing UV and IR pumping.
Hard Magnetic Materials: Fabrication and Properties
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Explores the fabrication and properties of hard magnetic materials, focusing on strategies for high coercivity and remanence.
Magnetic Circuits: Understanding Inductance and Maxwell's Equations
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Explains magnetic circuits, focusing on inductance and Maxwell's equations in electromechanical systems.
Electromagnetic Forces: Theory and Applications
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Covers the theory and applications of electromagnetic forces, including magnetic fields and the movement of charged particles.
Magnetostatics and Ampere's Law
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Explores the relationship between magnetic fields, Ampère's force law, and current-carrying wires.
Magnetostatics: Forces and Observations
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Explores magnetostatics, focusing on magnetic forces, Lorentz force, current interactions, field creation, uniformity, and field distribution.
Applications of Ampère's and Gauss's Laws in Magnetostatics
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Explores the applications of Ampère's and Gauss's laws in magnetostatics, including solenoids and magnetic field flux.
Magnetic Fields: Laplace's Law
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Explores magnetic fields and Laplace's law, analyzing current-conductor interactions and force calculations.
Magnetostatics: Lorentz Force and Magnetic Field
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Explores Lorentz force, magnetic fields, charged particle trajectories, and magnetic permeability.
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