## Classical electrodynamics |

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Page 549

This has the obvious quantum interpretation that the radiation from a

order (/, m) carries off mh units of z component of angular momentum per photon

of energy hw. In further analogy with quantum mechanics we would expect the ...

This has the obvious quantum interpretation that the radiation from a

**multipole**oforder (/, m) carries off mh units of z component of angular momentum per photon

of energy hw. In further analogy with quantum mechanics we would expect the ...

Page 557

The moment Qlm is seen to be the same in form as the electrostatic

moment qlm (4.3). The moment Qlm' is an induced electric

to the magnetization. It is generally at least a factor kr smaller than the normal ...

The moment Qlm is seen to be the same in form as the electrostatic

**multipole**moment qlm (4.3). The moment Qlm' is an induced electric

**multipole**moment dueto the magnetization. It is generally at least a factor kr smaller than the normal ...

Page 559

The presence of the factor (A:o)21 in the transition probability (16.104) means

that in the long- wavelength limit (ka < 1) the transition rate falls off rapidly with

increasing

The presence of the factor (A:o)21 in the transition probability (16.104) means

that in the long- wavelength limit (ka < 1) the transition rate falls off rapidly with

increasing

**multipole**order, for a fixed frequency. Consequently in an atomic or ...### What people are saying - Write a review

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### Contents

Introduction to Electrostatics | 1 |

Scalar potential | 7 |

Greens theorem | 14 |

Copyright | |

19 other sections not shown

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### Common terms and phrases

4-vector acceleration angular distribution approximation assumed atomic axis behavior Bessel functions boundary conditions bremsstrahlung calculate Chapter charge density charge q charged particle classical coefficients collisions component conductor Consequently consider coordinates cross section current density cylinder defined delta function dielectric constant diffraction dimensions dipole direction discussed effects electric field electromagnetic fields electron electrostatic emitted energy loss expansion expression factor force equation frequency given Green's function impact parameter incident particle inside integral inversion Laplace's equation limit linear Lorentz invariant Lorentz transformation macroscopic magnetic field magnetic induction magnitude Maxwell's equations meson molecules momentum multipole multipole expansion nonrelativistic obtain orbit oscillations parallel perpendicular plane wave plasma point charge polarization power radiated problem quantum quantum-mechanical radiative radius region relativistic result scalar scattering shown in Fig shows solid angle solution spectrum spherical surface theorem transverse vanishes vector potential wave equation wave number wavelength written zero