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Related lectures (26)
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Magnetostatics: Magnetic Field and Force
Covers magnetic fields, Ampère's law, and magnetic dipoles with examples and illustrations.
Applications of Gauss's law: Electric Field Calculations Simplified
Simplifies electric field calculations using Gauss's law and symmetry arguments.
Electric Fields and Currents
Explores electric fields, energy storage, charge displacement, DC currents, and historical aspects of electricity.
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Paradoxes with Coulomb's and Ampère's forces. Gauss's Law
Delves into paradoxes with Coulomb's and Ampère's forces, leading to the derivation of Gauss's Law from Maxwell's equations.
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Blended Learning: Electric Fields and Potentials
Explores electric fields, potentials, and Gauss's law with practical examples.
Electric Fields: Charge Distributions (I)
Covers the calculation of electric fields from continuous charge distributions, emphasizing the superposition principle and integration techniques.
Electric Displacement in Dielectrics: Gauss's Law and Boundary Conditions
Introduces the concept of electric displacement vector D and explores boundary conditions in dielectrics.
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Advanced Physics I: Laws of Newton and Fundamental Forces
Explores Newton's laws, fundamental forces, and exercises on these topics.
Electrostatics: Charge Distributions and Conductor Properties
Explores charge distributions, conductor properties, and the concept of a Faraday cage in electrostatics.
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Electric Flux and Gauss' Law
Explores electric flux, Gauss' law, and their applications in multiple charge scenarios.
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Gauss's Law: Charges, Electric Flux, and Field Evaluation
Explores Gauss's law, electric flux evaluation, Gaussian surfaces, and field simplification using symmetry arguments.
Electric Field Calculation using Gauss's Law
Explains how to calculate the electric field around a point charge using Gauss's law.
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