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Up one level | Current category: 41-XX - Electromagnetism; electron and ion optics
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- an application of Gauss' law a cat's meow
- auxiliary field H
- behavior of light
- Biot-Savart law
- Conductor
- Coulomb's law
- d'Alembert and D. Bernoulli solutions of wave equation
- derivation of wave equation
- doppler effect
- Electric Charge
- Electric Field
- Electric Field of a Charged Disk
- Electric Field of a Line of Charge
- electromagnetic spectrum
- Electromagnetic Waves, Antennas, and RF: Electric Charge and the Electric Field
- Electromagnetic Waves, Antennas, and RF: Electric Charge and the Electric Field - Exercises and Complete Worked Solutions
- Electromagnetic Waves, Antennas, and RF: Gradient, Divergence, and Curl - Exercises and Complete Worked Solutions
- Electromagnetic Waves, Antennas, and RF: Spatial Derivatives of Fields - Gradient, Divergence, and Curl
- Electromagnetic Waves, Antennas, and RF: The Laplacian and the 3D Wave Equation
- Electromagnetic Waves, Antennas, and RF: The Laplacian and the 3D Wave Equation - Exercises and Complete Worked Solutions
- Electromagnetic Waves, Antennas, and RF: Vector Fields for Wave Mechanics
- Electromagnetic Waves, Antennas, and RF: Vector Fields for Wave Mechanics - Exercises and Complete Worked Solutions
- Electromagnetic Waves: Ampere's Law and Symmetry
- Electromagnetic Waves: Ampere's Law and Symmetry - Exercises and Complete Worked Solutions
- Electromagnetic Waves: Ampere-Maxwell Law and Displacement Current
- Electromagnetic Waves: Deriving the Electromagnetic Wave Equation from Maxwell's Equations
- Electromagnetic Waves: Electric Current and Current Density
- Electromagnetic Waves: Electric Current and Current Density - Exercises and Complete Worked Solutions
- Electromagnetic Waves: Electric Flux
- Electromagnetic Waves: Electric Flux - Exercises and Complete Worked Solutions
- Electromagnetic Waves: Electromagnetic Energy, Poynting Vector, and Intensity - Exercises and Complete Worked Solutions
- Electromagnetic Waves: Electromagnetic Energy, the Poynting Vector, and Intensity
- Electromagnetic Waves: Electromagnetic Momentum, Radiation Pressure, and Photon Momentum
- Electromagnetic Waves: Electromagnetic Momentum, Radiation Pressure, and Photon Momentum - Exercises
- Electromagnetic Waves: Electromagnetic Momentum, Radiation Pressure, and Photon Momentum - Exercises and Complete Worked Solutions
- Electromagnetic Waves: Electromagnetic Momentum, Radiation Pressure, and Photon Momentum - Exercises and Complete Worked Solutions
- Electromagnetic Waves: Electromagnetic Momentum, Radiation Pressure, and Photon Momentum - Exercises and Complete Worked Solutions
- Electromagnetic Waves: Electromagnetic Wave Equation - Exercises and Complete Worked Solutions
- Electromagnetic Waves: Faraday's Law and Electromagnetic Induction
- Electromagnetic Waves: Faraday's Law and Electromagnetic Induction - Exercises and Complete Worked Solutions
- Electromagnetic Waves: From a 1D Wave to a Field
- Electromagnetic Waves: From a 1D Wave to a Field
- Electromagnetic Waves: Gauss's Law
- Electromagnetic Waves: Gauss's Law - Exercises and Complete Worked Solutions
- Electromagnetic Waves: Magnetic Fields
- Electromagnetic Waves: Magnetic Fields - Exercises and Complete Worked Solutions
- Electromagnetic Waves: Magnetic Fields Produced by Currents
- Electromagnetic Waves: Magnetic Fields Produced by Currents - Exercises and Complete Worked Solutions
- Electromagnetic Waves: Magnetic Forces on Charges and Currents
- Electromagnetic Waves: Magnetic Forces on Charges and Currents - Exercises and Complete Worked Solutions
- Electromagnetic Waves: Maxwell's Equations as a Complete System
- Electromagnetic Waves: Maxwell's Equations as a Complete System - Exercises and Complete Worked Solutions
- Electromagnetism
- example of behavior of light: deriving and using the wave equation
- example of behavior of light: inverse square law for light
- example of doppler effect
- example of electrical power
- example of electromagnetic spectrum: calculating power of a star
- example of electromagnetic spectrum: calculating_temperature_of_a_blackbody
- example of line integral
- example of structure of the atom: energy of a photon
- Feynman's Lectures on Physics
- formation of spectral lines
- induction
- insulator
- Laplace equation in cylindrical coordinates
- lectromagnetic Waves: Ampere-Maxwell Law and Displacement Current - Exercises and Complete Worked Solutions
- line integral
- loop example of Biot-Savart law
- Lorentz force law
- magnetostatics
- Off axis example of Biot Savart Law
- quarter loop example of Biot-Savart law
- spectroscopy in astronomy
- structure of the atom
- telegraph equation
- testling classification
- The Physics of Light: From Waves to Photons
- wave equations
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