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MR signal detection: Faraday's Law and Induction
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Related lectures (53)
Faraday's Law of Induction
Explains how time-varying magnetic fields induce electric currents through Faraday's experiments and the third Maxwell's equation.
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Explores the generation of magnetic fields, induction, and practical applications in electromagnetism.
Inductance Mutuelle: Faraday's Law and Lenz's Law
Covers mutual inductance, Faraday's law, Lenz's law, transformers, generators, and eddy currents.
Inductive Sensors: DC Magnetic Field Blood Flow Meter
Explores inductive sensors for blood flow measurement using a DC magnetic field meter and discusses the drawbacks of constant magnetic fields in flow meters.
Magnetism: Basics and Phenomena
Explores the basics of magnetism, magnetic fields, and magnetic properties in materials.
Magnetic Fields and Induction
Explores magnetic dipoles, fields, induction, electromotive force, and applications like wireless energy transfer and magnetic levitation.
Electromagnetic Induction
Explores electromagnetic induction, including force between currents, Faraday's experiments, Lenz's law, and applications of induced electric fields.
Electromagnetism: UNIL-208
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Covers Lenz's law, induced voltage, and electromagnetic circuits.
Electromagnetism Fundamentals
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Introduces the fundamentals of electromagnetism, covering magnetic flux, inductance properties, energy transformations, and practical applications.
Untitled
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Kirchhoff's Laws and DC Circuits
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Explores Kirchhoff's laws in DC circuits, resistor analysis, and capacitor behavior.
Magnetic Circuits: Understanding Inductance and Maxwell's Equations
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Explains magnetic circuits, focusing on inductance and Maxwell's equations in electromechanical systems.
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.
Magnetodynamics: Induced Currents
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Covers the evaluation of induction laws, emf in generators, and time-dependent currents.
Self-inductance and EMF
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Explores self-inductance, EMF, and the Lenz rule in Faraday's induction context.
Magnetic Circuits: Inductances and Maxwell Equations
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Explores magnetic circuits, inductances, and Maxwell's equations in the quasi-static regime, emphasizing Faraday's law and magnetic permeance.
Energy in Inductance & Capacitance
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Explores energy storage in coils, magnetic fields, and capacitors, emphasizing the oscillation and decay of energy in circuits.
Basic Concepts: Electric Circuits
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Introduces the fundamental concepts of electric circuits, including basic elements and Kirchhoff's laws.
Magnetodynamics: Maxwell Equations and Induction Laws
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Explores magnetodynamics, Maxwell equations, Faraday's law, and induction experiments.
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