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- W4241250275 abstract "This chapter describes the nonlinear electron acoustic waves that are governed by the fluid dynamical properties of the electron gas. For many years, corona and streamer physicists have insisted that photoionization plays a dominant role in the propagation process, chiefly because the existence of antiforce waves seemed to demand a charge-independent agent. The totality of the available data for nitrogen and air is plotted together with a number of theories. All work excellently in the mid-range of fields and velocities, probably because both of these variables depend principally on the electron mobility in this range. The calculations of the growth in size and the cooling rate of the return stroke column show that the time interval between multiple strokes may indeed be determined by the need to cool the column. If allowed sufficient running space in a sufficiently strong field, avalanches show normal growth only until the electrons are numerous enough to form a polarized surface charge around the periphery of the avalanche that can “protect” the interior from penetration by the external field as in a conductor." @default.
- W4241250275 created "2022-05-12" @default.
- W4241250275 creator A5019985400 @default.
- W4241250275 date "1976-01-01" @default.
- W4241250275 modified "2023-09-27" @default.
- W4241250275 title "Nonlinear Electron Acoustic Waves, Part II" @default.
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- W4241250275 doi "https://doi.org/10.1016/s0065-2539(08)60397-2" @default.
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