Classical electrodynamicsThis edition refines and improves the first edition. It treats the present experimental limits on the mass of photon and the status of linear superposition, and introduces many other innovations. 
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Page 752
If the states differ in parity, then electric dipole and magnetic quadrupole radiation
can be emitted or absorbed. 16.4 Angular Distribution of Multipole Radiation For
a general localized source distribution the fields in the radiation zone are given ...
If the states differ in parity, then electric dipole and magnetic quadrupole radiation
can be emitted or absorbed. 16.4 Angular Distribution of Multipole Radiation For
a general localized source distribution the fields in the radiation zone are given ...
Page 776
PROBLEMS 16.1 Three charges are located along the z axis, a charge +2q at the
origin and charges q at z = ħa cos a>r. Determine the lowest nonvanishing
multipole moments, the angular distribution of radiation, and the total power
radiated ...
PROBLEMS 16.1 Three charges are located along the z axis, a charge +2q at the
origin and charges q at z = ħa cos a>r. Determine the lowest nonvanishing
multipole moments, the angular distribution of radiation, and the total power
radiated ...
Page 842
... Potential energy, see Energy Power, instantaneous radiated, by accelerated
charge, 659 radiated by, charge in arbitrary periodic motion, 695 charged
particles in linear and circular accelerators, 661 linear antenna, angular
distributions of ...
... Potential energy, see Energy Power, instantaneous radiated, by accelerated
charge, 659 radiated by, charge in arbitrary periodic motion, 695 charged
particles in linear and circular accelerators, 661 linear antenna, angular
distributions of ...
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Contents
Introduction and Survey  1 
Introduction to Electrostatics  27 
BoundaryValue Problems  54 
Copyright  
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4vector amplitude angle angular distribution angular momentum aperture approximation assumed atomic axis behavior Bessel functions boundary conditions bremsstrahlung calculation Chapter charge density charge q charged particle classical coefficients collision components conductor consider coordinates cross section current density cylinder defined dielectric constant differential diffraction dimensions dipole direction discussed effects electric and magnetic electric field electromagnetic fields electrons electrostatic energy loss expansion expression factor finite force frequency given Green function incident integral Lagrangian limit linear Lorentz transformation macroscopic magnetic field magnetic induction magnitude Maxwell equations medium modes molecules multipole multipole expansion multipole moments nonrelativistic normal obtain oscillations parallel parameter photon Phys plane wave plasma point charge polarization problem propagation quantum quantummechanical radius region relativistic resonant rest frame result scalar scalar potential scattering shown in Fig solution spectrum sphere spherical surface tensor theorem transverse unit vanishes vector potential velocity wave guide wave number wavelength written zero