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Drift Velocity and Electron Count
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Related lectures (29)
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Electromagnetic Phenomena
Introduces the importance of studying electromagnetic phenomena and Maxwell's equations.
Magnetic Forces: Biot-Savart Law
Explores magnetic phenomena, current, charge conservation, Biot-Savart law, and Ampère's force law.
Electricity and Resistance
Explains electricity, resistance, and drift velocity, including the concept of resistivity in various scenarios.
Electric Current: Definitions and Concepts
Covers the concept of electric current and its conditions for flow.
Atomic Structure: Charge Density and Electric Field
Explains charge density and electric field distribution within an atom.
Magnetostatics: Currents and Fields
Explores the comparison between electrostatics and magnetostatics, forces on currents, the Biot-Savart law, and applications of magnetic fields.
Magnetic Fields and Lorentz Force
Explores magnetic fields, Lorentz force, charged particles movement, and wire behavior.
Magnetic Fields and Currents
Explores magnetic fields, currents, Biot-Savart law, Ampère's law, and magnetic dipoles.
Electric Fields and Currents
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Explores electric fields, energy storage, charge displacement, DC currents, and historical aspects of electricity.
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Magnetostatics: Magnetic Field and Force
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Covers magnetic fields, Ampère's law, and magnetic dipoles with examples and illustrations.
Maxwell's Equations and Induction Phenomenon
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Explores Maxwell's equations, induction in moving conductors, electromotive force, and electrical fields.
DC Circuits: Current Origin and Conductors
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Explores the origin of current in conductors, the creation of electric fields, and the concept of current flow.
Electric Charges and Currents
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Explores electric charges, conductors, insulators, semiconductors, and electric currents, including their measurement and direction.
Resistance in Conductors
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Explains the concept of resistance in conductors and its relationship with current and voltage.
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Continuous Circuits: Fundamentals
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Covers the fundamentals of continuous circuits, including physical quantities, conductors, semiconductors, open and closed circuits, and electric power.
Hall Effect: Theory and Applications
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Explores the Hall effect, explaining how a magnetic field can induce a voltage difference in a conductor.
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