## Classical ElectrodynamicsProblems after each chapter |

### From inside the book

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Page 129

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 ,

radius ( a - b ) / R . 4.3 A localized distribution of charge has a charge density p ...

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 inradius ( a - b ) / R . 4.3 A localized distribution of charge has a charge density p ...

Page 267

( a ) Assuming infinite conductivity for the walls ,

propagation and their cutoff frequencies . ( b ) For the lowest modes of each type

calculate the attenuation constant , assuming that the walls have large , but finite

...

( a ) Assuming infinite conductivity for the walls ,

**determine**the possible modes ofpropagation and their cutoff frequencies . ( b ) For the lowest modes of each type

calculate the attenuation constant , assuming that the walls have large , but finite

...

Page 306

( b )

radiation resistance . 9.5 Treat the linear antenna of Problem 9.4 by the long -

wavelength multipole expansion method . ( a ) Calculate the multipole moments (

electric ...

( b )

**Determine**the total power radiated and find a numerical value for theradiation resistance . 9.5 Treat the linear antenna of Problem 9.4 by the long -

wavelength multipole expansion method . ( a ) Calculate the multipole moments (

electric ...

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### Contents

Introduction to Electrostatics | 1 |

BoundaryValue Problems in Electrostatics I | 26 |

Wave Guides and Resonant Cavities | 235 |

Copyright | |

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