Modeling of CollisionsGauthier-Villars, 1998 - 222 من الصفحات |
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الصفحة 44
... atomic species . One gets then a remarkable uncoupling of the perturbation equations set into a set that couples only atomic species , each being represented by an " average ion " , and individual equations for the deviation of a given ...
... atomic species . One gets then a remarkable uncoupling of the perturbation equations set into a set that couples only atomic species , each being represented by an " average ion " , and individual equations for the deviation of a given ...
الصفحة 60
... atomic species , one gets an uncoupling of the perturbation equations sets . To the set that couples atomic species , which is exactly in the former general form , are added individual equations ( 3-15 ) for the deviation of a given ...
... atomic species , one gets an uncoupling of the perturbation equations sets . To the set that couples atomic species , which is exactly in the former general form , are added individual equations ( 3-15 ) for the deviation of a given ...
الصفحة 101
... atomic species in several charge states — Most often , only the mean ion charge of each atomic species is considered . Taking into account the distribution of charge degrees if it is known is a simple extension . ... Subscripts a , b ...
... atomic species in several charge states — Most often , only the mean ion charge of each atomic species is considered . Taking into account the distribution of charge degrees if it is known is a simple extension . ... Subscripts a , b ...
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appear approximation assumed atomic average Boltzmann Equation calculation chapter charge classical close collision frequencies collision terms collisional computed conservation consider correct Coulomb logarithms coupled defined density depend developed diffusion distribution function effect electrons energy equal equilibrium estimate existence expressions finally fluid flux formula frame given gives heat heavy hydrodynamic integrals interaction ion species ionic kinetic light limit linear mass Maxwellian mean mean velocity momentum multi-fluid neutral Note numerical obtained operator parameter particle particular perturbation perturbation equations Phys physics plasma pressure problem properties quantities quantum quantum mechanical reduced reference relations relative satisfies scalar single solution solved temperature tensor theory thermal transport coefficients transport equations vector αβ Μα