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Related lectures (54)
Cyclotron Motion: Magnetic Force on Current-Carrying Wire
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Explores cyclotron motion and magnetic force on current-carrying wires, including trajectory analysis and force calculations.
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.
Magnetic Dipole and Field Analysis
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Explores magnetic dipole moment, torque, energy, field analysis, and Maxwell's equations for magnetostatics.
Nanomagnetism: Magnetic Structures and Interactions
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Covers fundamental concepts of magnetism, types of magnetism, and techniques for investigating magnetic structures at the nanoscale.
Electrodynamics: Magnetic Fields and Induced Currents
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Explores electric and magnetic fields on closed paths, induction of current, and energy conversion.
Maxwell's Equations: Evaluating Magnetic Fields from Magnetization
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Covers the use of Maxwell's equations to evaluate magnetic fields from magnetization in materials.
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 Moment and Compass Alignment
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Explains magnetic moment and compass alignment in a loop of wire.
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.
Newton's Laws
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Covers Newton's three laws of motion, fundamental forces, and exercises, including gravitational and electromagnetic forces.
Magnetic Moments and Field Lines: Equivalence and Induction
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Explores magnetic dipole, field lines, and induction by moving charges.
Maxwell's Equations in Polarized Matter: Lorentz Transformation
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Explores Maxwell's equations in polarized matter and fields transformation under different frames.
Magnetic Moments and Motors
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Explores current loops, magnetic dipoles, motors, and galvanometers, demonstrating the interaction between magnetic fields and current-carrying wires.
Isolated Magnetic Moments: Magnetic Susceptibility
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Explores the concept of magnetic susceptibility as a tensor of proportionality between magnetization and the magnetizing field.
Electric Current and Ohm's Law
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Introduces electric current, Ohm's law, Poisson's equation, and magnetic field effects.
Advanced Physics I
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Explores the foundation faces of the solar system, general relativity, and electromagnetic forces.
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.
Magnetostatics: Lorentz Force and Magnetic Fields
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Explores Lorentz force and magnetic fields interactions with moving charges in stationary magnetic fields.
Force between Long Straight Wires with Currents: Magnetostatics
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Covers the evaluation and application of magnetic fields and forces between conductors.
Experimental Techniques: ESR
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Explores Electron Spin Resonance experimental techniques and relaxation times in materials.
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