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Fokker-Planck Kinetic Equation for Determination of EEDF

Fokker-Planck Kinetic Equation for Determination of EEDF [Pg.100]

The average contribution of the first term mvu to A e is equal to zero, and the average electron energy increase between two collisions is related only to the square of the drift velocity  [Pg.101]

EEDF /(e) can be considered in this approach as the number density of electrons in energy space and canbe found from the continuity equation in the energy space, called the Fokker-Planck kinetic equation  [Pg.101]

Druyvesteyn Distribution, Margenau Distributions, and Other Specific EEDF [Pg.101]

The steady-state solution of the Fokker-Planck equation (3-45) forEEDF in non-equilibrium plasma, corresponding to /(e oo) = 0, ( oo) = 0, canbe presented as [Pg.101]




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