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Related lectures (14)
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Plasma Dynamics: Two-fluid Model
Details the two-fluid model for plasma dynamics and its coupling to Maxwell's equations.
Electric Field: Point Charges
Explains electric field due to point charges and its similarity with gravitational forces.
Ion Crystal and Poisson/Laplace Equations
Explores ion crystals, conductors, and Poisson/Laplace equations in electrostatics, including charge behavior and energy calculations.
Electric Field: Charges Distribution
Explains electric field, charges distribution, and electric potential relationship.
Electric Displacement in Dielectrics: Gauss's Law and Boundary Conditions
Introduces the concept of electric displacement vector D and explores boundary conditions in dielectrics.
Electric Fields: Superposition Principle
Explores electric fields and the superposition principle for calculating total electric fields.
Electric Displacement Vector and Gauss's Law in Dielectrics
Explores the modification of Gauss's law with dielectrics and the electric displacement vector D.
Electrostatics: Forces, Charges, and Fields
Introduces electrostatics, covering forces, charges, and electric fields, including Coulomb's force and the concept of electric field lines.
Electrostatics: Charge Distributions and Conductor Properties
Explores charge distributions, conductor properties, and the concept of a Faraday cage in electrostatics.
Electric Charges and Fields
Covers electrostatics, Coulomb force, electric field calculations, potential, Gauss's law, conductor behavior, and field line representation.
Electrostatics: Conductors and Electric Fields
Explores electrostatics, conductors, electric fields, and the superposition principle.
Electric Field Representation
Introduces electrostatics, focusing on Coulomb's force, electric field representation, superposition principle, and visualization of electric field vectors using field lines.
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