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Electromagnetics: Basics, Forces, and Applications in MEMS
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Related lectures (53)
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.
Electromagnetic Induction: Empirical Law and Mathematical Formulas
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Explores electromagnetic induction, explaining how magnetic field changes induce current and electromotive force in conductors.
Skyrmions: Fundamentals and Applications
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Explores the fundamentals and applications of skyrmions in racetrack memory, covering creation, motion, detection, and manipulation.
Multipole Expansion in Electrostatics and Magnetostatics
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Covers the concept of multipole expansion in electrostatics and magnetostatics, discussing Maxwell equations and magnetic moments.
Electrical and Magnetic Properties of Materials
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Explores electrical and magnetic properties of materials, including semiconductors, dielectric behavior, and optical phenomena.
Isolated Magnetic Moments: Lande Factor
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Explains the derivation of the Lande g-factor, which is the total magnetization of a system.
Magnetic Sensors: AMR and GMR
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Explores AMR and GMR sensors, their principles, sensitivity to weak fields, and applications.
Fresnel Coefficients TM Polarization
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Discusses the Fresnel coefficients for TM polarization and their application to the solution.
Understanding Displacement Vector and Plane Waves
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Explores the displacement vector D, plane waves, and magnetic vector potential, addressing student questions and clarifying key concepts.
Electrodynamics: Magnetic Fields and Induced Currents
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Explores electric and magnetic fields on closed paths, induction of current, and energy conversion.
Ampère's Law and Magnetic Field Circulation
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Explores Ampère's law, magnetic field distribution, and circulation, including Amperian loops and line integrals.
Maxwell Equations: Faraday Law of Induction
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Covers Faraday's law of induction, charge conservation, and electromagnetic waves.
Electric Current and Ohm's Law
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Introduces electric current, Ohm's law, Poisson's equation, and magnetic field effects.
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