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Electrical and Magnetic Properties: Introduction to Materials Science
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Related lectures (42)
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Explores magnetic and electrical properties, atomic diffusion, and thermal characteristics of materials.
Advanced Physics I: Laws of Newton and Fundamental Forces
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Explores Newton's laws, fundamental forces, and exercises on these topics.
Moving charges: War of Currents
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Explores the 'War of Currents' and fundamental electromagnetism concepts.
Direct Current Circuits: Kirchhoff's Laws and Resistors
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Covers DC currents, resistors, capacitors, Kirchhoff's laws, and electromotive force in electric circuits.
Magnetic Moments and Field Lines: Equivalence and Induction
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Explores magnetic dipole, field lines, and induction by moving charges.
Electronic Bands: Conductors and Insulators
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Delves into electronic bands, energy levels, conductors, insulators, and electron holes.
Semiconductors and Charge Carriers
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Introduces semiconductor physics, covering materials, charge density, energy levels, doping, transport, and conductivity.
Ohm's Law and Resistance in Materials
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Covers Ohm's law, resistance in materials, units and values, and perfect conductors versus resistors.
Semiconductor Physics: Band Formation and Experiments
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Covers semiconductor band formation and presents experiments demonstrating charge carrier behavior and wave-particle duality in electrons.
Electric Fields and Currents
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Explores electric fields, energy storage, charge displacement, DC currents, and historical aspects of electricity.
Emission of Electromagnetic Waves
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Magnetostatics: Magnetic Dipoles and Torque
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Electric Charges and Forces
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Explores electric charges, forces, fields, and Coulomb's law.
Maxwell's Equations: Polarizable Matter
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Explores Maxwell's equations in polarizable matter, including integral and differential forms, considerations for dielectric and magnetic materials, and the importance of a relativistic approach.
Plane Waves, Temporal Animations, and Discussions
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Electromagnetism Fundamentals
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Magnetic Induction: Basics and Applications
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Covers the basics of magnetic induction and its practical applications in circuits and transformers.
Magnetic Materials: Introduction
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Windows and Coatings: Heat Transfer
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Ising Model: Ferromagnetism on Grid
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Introduces the Ising model for ferromagnetism on a grid of random variables, exploring mass functions and partition functions.
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