## Electromagnetics: A Discussion of Fundamentals |

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acceleration accepted aether algebraic apply argument assume assumption atomic body called circuit conductor constant Coulomb's law covariancy curl curl H curl0 d/dt deduced density dielectric displacement doublet Einstein elastic electric electric charge electrodynamic electromagnetic mass electron theory electrostatic element energy experimental experiments expression fact force exerted force-formula formula four-vector gives Hence hypothesis induction integral J. J. Thomson laboratory Lienard Lorentz Lorentz's theory magnetic field magnetisation mass mathematical Maxwell Maxwell's equations Maxwell's theory means measure measure-ratio medium merely momentum motion moving charge observer obtain ordinary particles phenomena physical physicists point-charges polarisation Poynting's theorem principle principle of relativity proof propagation proved quantities radiation reference regarded relativists result Ritz Ritz's theory rotation simple sin2 space sphere stationary subrelativity Suppose surface term theorem theory of relativity tion unit vector potential Voigt's transformation waves Weber zero