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Retarded potential
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Related lectures (24)
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Retarded Potentials and Electromagnetic Energy
Explores retarded potentials, electromagnetic energy, and conservation of energy in electromagnetism.
Electromagnetic Potentials of Moving Charged Particles
Explores Liénard-Wiechert potentials and trajectories of moving charged particles in various spacetime scenarios.
Electromagnetic Potentials: Green Functions
Explores retarded and advanced Green functions, potentials, and solutions in electromagnetism.
Radiation Fields: Time-Dependent Source
Explores radiation fields for a time-dependent source and their mathematical expressions.
Multipole Expansion in Electrodynamics
Explores multipole expansion in Electrodynamics, covering Maxwell Equations, EM Potentials, Lorenz Gauge, and Magnetization.
Liénard-Wiechert Potentials
Explores Liénard-Wiechert potentials in electromagnetism, focusing on energy calculations and charge conservation.
Power in Circuits: Emf and Internal Resistance
Explores power in DC circuits, emf, internal resistance, and power delivery.
Multipole Expansion for Radiation Fields
Covers the multipole expansion for radiation fields of a slow source.
Green Functions and Electrostatics
Explores Green functions, complex analysis, and electrostatics, including EM waves and residue theorem.
Multipole Expansion in Electrostatics and Magnetostatics
Covers the concept of multipole expansion in electrostatics and magnetostatics, discussing Maxwell equations and magnetic moments.
Maxwell Equations and Electromagnetic Waves
Explores Maxwell equations, Faraday's law, charge conservation, and electromagnetic waves, including their computation and analysis using Fourier transforms.
Lorentz Invariance and Covariant Tensors
Explores Lorentz invariance, tensors in vector spaces, and electromagnetic potentials.
Electromagnetic Potentials
Explores Maxwell's equations, electromagnetic potentials, constraints in electromagnetism, and gauge transformation.
Gauge Invariance: Electromagnetic Potentials
Explores gauge invariance, electromagnetic potentials, superfluid velocity, and superconductors' magnetic field expulsion.
Relativistic Larmor Formula: Synchrotron Radiation
Explores the relativistic Larmor formula and synchrotron radiation in the context of accelerated charged particles and electromagnetic fields.
Gauge Invariance and Poisson Equation
Explores gauge invariance in Maxwell equations and delves into the Poisson equation in 3D space.
Electromotive Force and Power Transfer
Explores electromotive force, power dissipation, and optimization in circuits and devices.
Electrodynamics: Gauge Invariance and Electrostatics
Explores gauge invariance, electrostatics, Maxwell's equations, and boundary conditions.
Radiation and Antennas: Lorenz Gauge and Potentials
Explores the relationship between radiation and antennas, covering Lorenz gauge, potentials, spherical waves, and antenna examples.
Vector Fields Analysis
Explores vector fields analysis, covering curvilinear integrals, potential fields, and field connectivity conditions.
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