## Classical Electrodynamics |

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Page 103

4.3

e = 4mp' 4.20 V x e = 0 ( ) govern electrostatic phenomena of all types, provided

the “microscopic.” electric field e is derived from the total “microscopic” charge ...

4.3

**Macroscopic**Electrostatics; Effects of Aggregates of Atoms The equations V -e = 4mp' 4.20 V x e = 0 ( ) govern electrostatic phenomena of all types, provided

the “microscopic.” electric field e is derived from the total “microscopic” charge ...

Page 194

6.10

been written in

be aware that the derivation of the

6.10

**Macroscopic**Equations Although the equations of electrodynamics havebeen written in

**macroscopic**form for the most part in this chapter, the reader willbe aware that the derivation of the

**macroscopic**equations from the microscopic ...Page 196

(6.110) To this must be added the standard contribution from the

conduction-current density J(x, t). Solutions (6.106) and (6.110), augmented by

the free-charge and conduction-current contributions, can be written as 4-stoler |x

...

(6.110) To this must be added the standard contribution from the

**macroscopic**conduction-current density J(x, t). Solutions (6.106) and (6.110), augmented by

the free-charge and conduction-current contributions, can be written as 4-stoler |x

...

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### Contents

Introduction to Electrostatics | 1 |

Nş 3 | 3 |

Greens theorem | 14 |

Copyright | |

30 other sections not shown

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### Common terms and phrases

angle angular applied approximation assumed atomic average axis becomes boundary conditions calculate called Chapter charge classical collisions compared component conducting conductor Consequently consider constant coordinates cross section cylinder defined density depends derivative determine dielectric dimensions dipole direction discussed distance distribution effects electric field electromagnetic electron electrostatic energy equal equation example expansion expression factor force frame frequency function given gives incident inside integral involved limit Lorentz loss magnetic magnetic field magnetic induction magnitude mass means momentum motion moving multipole normal observation obtain origin parallel particle physical plane plasma polarization position potential problem properties radiation radius region relation relative result satisfy scalar scattering shows side simple solution space sphere spherical surface transformation unit vanishes vector velocity volume wave written