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Electrical and Magnetic Properties of Materials
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Related lectures (48)
Magnetostatics: Magnetic Field and Force
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Covers magnetic fields, Ampère's law, and magnetic dipoles with examples and illustrations.
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Advanced Physics I
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Explores the foundation faces of the solar system, general relativity, and electromagnetic forces.
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Drift Currents and Conductivity: Poisson's Equation in Semiconductors
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Covers drift currents, conductivity, and the effects of scattering in semiconductors.
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.
Scattering Experiments on VOSe205
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Explores scattering experiments on VOSe205, magnetic phase diagram, electric-field effects, and future research plans.
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.
Hot Plate Experiment: Semiconductor Behavior Analysis
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Covers the hot plate experiment and the behavior of silicon semiconductors under temperature gradients.
Electric Current and Ohm's Law
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Introduces electric current, Ohm's law, Poisson's equation, and magnetic field effects.
Semiconductors: Equilibrium Properties and Charge Dynamics
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Covers the equilibrium properties of semiconductors, focusing on charge dynamics and the influence of temperature on electron-hole generation.
Magnetic Moments and Field Lines: Equivalence and Induction
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Explores magnetic dipole, field lines, and induction by moving charges.
Capacitance and Dielectrics
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Explores the response of various objects to electric fields, the concept of capacitance, and its applications in technical devices.
Intrinsic Semiconductors: Thermal Generation and Carrier Concentration
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Covers intrinsic semiconductors, focusing on thermal generation and carrier concentration calculations.
Newton's Laws
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Covers Newton's three laws of motion, fundamental forces, and exercises, including gravitational and electromagnetic forces.
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.
Generation and Recombination in Semiconductors
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Covers the generation and recombination processes in semiconductors out of equilibrium, detailing their implications on semiconductor behavior.
Capacitance and Dielectrics: Polarization Mechanisms
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Explores capacitance, dielectrics, and polarization mechanisms in materials, covering plate capacitors, energy storage, technical capacitors, and polarization in different 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.
Maxwell's Equations and Magnetic Fields
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Covers a review of Maxwell's equations and the concepts of internal, demagnetization, and stray fields.
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