## Classical Electrodynamics |

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Page 167

John David Jackson, Patrick Thaddeus Jackson. (a) Show that for z > 0 the

by an image current distribution, J*, with components, - - 1 – 1 ...

John David Jackson, Patrick Thaddeus Jackson. (a) Show that for z > 0 the

**magnetic induction**can be calculated by replacing the medium of permeability uby an image current distribution, J*, with components, - - 1 – 1 ...

Page 320

To illustrate the principles we consider an infinite cylinder of conducting fluid with

an axial current density J. = JCr) and a resulting azimuthal

- B(r). For simplicity, the current density, magnetic field, pressure, etc., are ...

To illustrate the principles we consider an infinite cylinder of conducting fluid with

an axial current density J. = JCr) and a resulting azimuthal

**magnetic induction**B,- B(r). For simplicity, the current density, magnetic field, pressure, etc., are ...

Page 633

... 108 Magnet, permanent, 161, 167 Magnetic dipole, see Dipole fields, Dipole

moment Magnetic field H, boundary conditions on, 154 definition of macroscopic,

153 see also

... 108 Magnet, permanent, 161, 167 Magnetic dipole, see Dipole fields, Dipole

moment Magnetic field H, boundary conditions on, 154 definition of macroscopic,

153 see also

**Magnetic induction**Magnetic flux density, see**Magnetic induction**...### What people are saying - Write a review

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### Contents

Introduction to Electrostatics | 1 |

BoundaryValue Problems in Electrostatics I | 26 |

BoundaryValue Problems in Electrostatics II | 54 |

Copyright | |

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### Common terms and phrases

acceleration angle angular applied approximation assumed atomic average axis becomes boundary conditions calculate called Chapter charge classical collisions compared component conducting Consequently consider constant coordinates cross section cylinder defined density dependence 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 modes momentum motion moving multipole normal observation obtain origin parallel particle physical plane plasma polarization position potential problem properties radiation radius region relation relative relativistic result satisfy scalar scattering shows side solution space sphere spherical surface transformation unit vanishes vector velocity volume wave written