## Classical ElectrodynamicsProblems after each chapter |

### From inside the book

Results 1-3 of 81

Page 129

Given that Eu153 ( Z = 63 ) has a quadrupole moment Q = 2.5 x 10-24 cm and a

mean

) ...

Given that Eu153 ( Z = 63 ) has a quadrupole moment Q = 2.5 x 10-24 cm and a

mean

**radius**R ( a + b ) / 2 7 x 10-13 cm , determine the fractional difference in**radius**( a - b ) / R . 4.3 A localized distribution of charge has a charge density p ( r) ...

Page 166

( c ) Show that at the end of a long solenoid the magnetic induction near the axis

has components 20NI πΝΙ B , B. < ** ( ) с 5.3 A cylindrical conductor of

has a hole of

( c ) Show that at the end of a long solenoid the magnetic induction near the axis

has components 20NI πΝΙ B , B. < ** ( ) с 5.3 A cylindrical conductor of

**radius**ahas a hole of

**radius**b bored parallel to , and centered a distance d from , the ...Page 576

16.8 A spherical hole of

electromagnetic resonant cavity . ( a ) Assuming infinite conductivity , determine

the transcendental equations for the characteristic frequencies in of the cavity for

TE and ...

16.8 A spherical hole of

**radius**a in a conducting medium can serve as anelectromagnetic resonant cavity . ( a ) Assuming infinite conductivity , determine

the transcendental equations for the characteristic frequencies in of the cavity for

TE and ...

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### Contents

Introduction to Electrostatics | 1 |

BoundaryValue Problems in Electrostatics I | 26 |

Multipoles Electrostatics of Macroscopic Media | 98 |

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 charged particle classical coefficients 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 light 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 relativistic result satisfy scalar scattering shows side solution space sphere spherical surface transformation unit vanishes vector velocity volume wave written