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CONDUCTION AND DIFFUSION IN IONIZED GASES
QUANTUM STATISTICS AND IONIZATION PHENOMENA
ELECTROMAGNETIC WAVES AND RADIATION IN PLASMAS
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accelerator addition Alfven applied magnetic field approximation assumed atoms average becomes Boltzmann equation boundary conditions boundary layer calculated channel flows charged particles collision frequency component considered constant Couette flow cross section current flow db dt Debye Debye length Debye shielding defined derived diffusion direction distribution function electric field electrical conductivity electromagnetic electron temperature energy equation enthalpy equal equilibrium expression fluid flux follows geometry given Hall effect heat increases induced magnetic field integral inviscid ionization potential ionized gas ionized gases Joule heating Lorentz force Mach number magnetohydrodynamic mass Maxwell's equations maxwellian motion neglected neutral particles number density obtained Ohm's law parameter Phys plasma Plasma Physics pressure gradient probe problem propagation radiation ratio result Reynolds number shown in Fig solution species specific impulse Substitution surface tensor thermal tion transverse variables vector velocity yields zero