## A general theory of weakly ionized gas flows including compressibility and electron energy effects |

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ambi ambipolar solution analysis asymptotic behavior Boltzmann equation boundary conditions boundary layer calculated collision conduction current considered convection terms CURRENT RATIO Figure dependent determined differential equations discussed electric field electric potential electron energy equation electron temperature distribution electron temperature sheath electron thermal layer energy equation Eq energy exchange energy flux energy transport equilibrium electron temperature FLAT PLATE flow field FROZEN ELECTRON TEMPERATURE given governing equations gradient heat conduction heavy particle Hence initial conditions integration ion and electron ionized species isothermal sheath iterate mass and energy mean free path neutral species nondimensional ordinary differential equations outer region outer solution parameter plasma Poisson's equation potential changes present studies Section sheath and ambipolar sheath and viscous sheath equations sheath solution solution to Eq solved subprogram surface condition thermal conduction thermal diffusion thin sheath tion variable electron temperature various regions viscous ambipolar layer viscous ambipolar region weakly ionized gas