## Microwave breakdown in gases |

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### Contents

INTRODUCTION | 1 |

ELECTRON COLLISIONS | 14 |

BOLTZMANN EQUATION FOR | 36 |

Copyright | |

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### Common terms and phrases

A. D. MacDonald analysis approximation argon atom attachment average electron energy Boltzmann equation breakdown condition breakdown data breakdown in air breakdown measurements cavity Chapter characteristic diffusion length collision frequency components confluent hypergeometric function consider constant curves CW breakdown defined differential equation diffusion coefficient dimensional dimensional analysis distribution function effective field efficiency electric field electron concentration equal expression Figure gas discharge Gaskell Gc/sec Heg gas helium Herlin high-frequency ionization coefficient hydrogen I I I I I I inelastic collision integral involved ionization potential ionization rate ions lowest excitation magnetic field mean free path microwave microwave breakdown neon nitrogen number of electrons obtain oxygen parameters particles Phys plasma plotted pressure quantities range recombination repetition rate resonant S. C. Brown second order terms shown in Fig simplified solution spherical harmonics standing wave ratio theoretical theory and experiment tion Torr vector velocity voltage volts wavelength zero