## Electromagnetic Field Theory: A Collection of ProblemsAfter a brief introduction into the theory of electromagnetic fields and the definition of the field quantities the book teaches the analytical solution methods of Maxwell’s equations by means of several characteristic examples. The focus is on static and stationary electric and magnetic fields, quasi stationary fields, and electromagnetic waves. For a deeper understanding, the many depicted field patterns are very helpful. The book offers a collection of problems and solutions which enable the reader to understand and to apply Maxwell’s theory for a broad class of problems including classical static problems right up to waveguide eigenvalue problems. |

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### Contents

1 | |

2 Electrostatic Fields | 12 |

3 Stationary Current Distributions | 81 |

4 Magnetic Field of Stationary Currents | 99 |

5 Quasi Stationary Fields Eddy Currents | 126 |

### Other editions - View all

Electromagnetic Field Theory: A Collection of Problems Gerd Mrozynski,Matthias Stallein No preview available - 2012 |

### Common terms and phrases

2-direction Bessel functions boundary conditions Calculate the potential charge density charge Q complex amplitude conducting sphere conductor loop const coordinates cos(n,p cost current density current sheet dielectric differential equation dipole layer eigenvalue equation electric field electric flux density electric lines energy exciting potential follows given potential grad half-space homogeneous space induced current distribution inside integration Laplace's equation leads line charge lines of force magnetic field magnetic flux density Magnetic lines method of images normal component Orthogonality relation perfect conducting permeability pu phase constants plane point charge position Poynting vector radiation pattern radius resulting potential ring charge rot rot satisfies the differential sin(n,p skin depth space of permittivity spherical surface charge tangential component TM-modes total charge trigonometric functions unit length vanishes vector potential waveguide waves z-axis