## Radio Engineering & Electronic Physics |

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### Contents

The Partial Power Law for a Waveguide Consisting of Dispersive | 42 |

ELECTRONIC PHYSICS | 81 |

1980 | 141 |

Copyright | |

12 other sections not shown

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### Common terms and phrases

algorithm amplifier amplitude angle antenna approximation assume atmospheric attenuation axis boundary conditions calculated characteristic circuit coefficient components computed constant coordinates corresponding coupling curves decrease density dependence determined dielectric dielectric constant diffraction diode distribution effect electromagnetic electromagnetic wave electron beam Elektronika elements equal equations estimate experimental expression filtering fluctuations formula frequency function harmonic heterodyne increase input integral interference investigated laser layer linear magnetic field matrix maximum measured method mode modulation noise noise temperature nonlinear open waveguide operating optimum oscillations output p-n junction parameters perturbations phase Phys plane problem propagation pump quantity radiation pattern Radio Engng Radiotekhnika i Elektronika ratio region resonator respect satisfied shown in Fig signal signal-to-noise ratio solution Sovetskoye Radio Press space charge spectral spectrum SQUID stochastic oscillation stripline structure surface tion transistor values vector velocity voltage wave wave impedance waveguide wavelength zero