## Lectures on Theoretical Physics: Electrodynamics |

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### Contents

Fundamentals and Basic Principles of Maxwells | 1 |

3 Maxwells Equations in Integral Form | 11 |

4 The Maxwell Equations in Differential Form and the Material Constants | 18 |

Copyright | |

33 other sections not shown

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according alternating current angle applies arbitrary assume axis bar magnet becomes boundary conditions calculation coefficients coil components condenser conductor const coordinates corresponding cosh cross section curve cylinder denote derived dielectric constant differential equation dimension dimensional direction electric field electrodynamics electromagnetic electron electrostatic ellipsoid energy equal expression factor ferromagnetic field strength formula four-dimensional four-vector function grad hence Hertz imaginary induction infinite integration interior joule Joule heat linear lines of force Lorentz force Lorentz transformation magnetic field magnitude Maxwell equations motion nonconductors obtain perpendicular plane polar potential Poynting's theorem problem quantity radiation radius representation right side scalar selfinductance six-vector skin effect solution space sphere spherical surface charge symmetric tensor term theorem theory of relativity tion unit length vacuum vanishes vector velocity wave number wire world line yields zero