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Electromagnetism and relativity
Electromagnetic waves in space
Electromagnetic waves in dielectrics
6 other sections not shown
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absorption amplitude antenna Appendix applied atoms average Poynting vector becomes cavity Chapter charge density charge q classical coaxial coefficient components conductors constant copper curl current density dielectric direction E0 exp electric and magnetic electric charge electric dipole electric field electric vector electromagnetic field electromagnetic wave electrons electrostatic energy density energy flow exp cor flux force F free space given by equation grad Hence Hertzian dipole interface isotropic laboratory frame linear loop Lorentz force Lorentz transformations magnetic energy magnetic field magnetic vector magnetisation Maxwell Maxwell's equations medium microwave modes molecules moving charges moving frame normal incidence oscillating permittivity phase velocity plane wave plasma polar Poynting vector propagation quantum radiation field radio waves rectangular refractive index relative resonant scalar potential shown in Fig solution speed spherical wave surface transverse electric vector potential volume wave equations wave impedance wave number wave travelling waveguide wavelength wire