## Theoretical Investigation of Unsteady Diffusion with Recombination in a Ternary Mixture of Diatomic Moolecules, Dissociated Atoms, and an Inert Gas |

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angular frequency boundary conditions characteristic diffusion constant chemical equation chemical kinetics chemical reaction closed-form solutions concentration of species concentration variation Conservation of mass continuity equation coordinate cylindrical diffusion tube depth parameter derived determined diatomic molecules diffusion and recombination diffusion equations diffusion problem diffusion processes dimensionless concentration variable dimensionless constant dimensionless frequency dissociation time function effusive flux equa equation 35 equation 67a equation for species equations 96 equations eqs equivalent dimensionless concentration excited molecule fi(t fundamental equations homogeneous recombination illustrates the dependence iM-i inert gas ini(o Laplacian linear sink term lowest order mass density multicomponent diffusion coefficients multicomponent diffusion constants nonlinear number density ozone partial differential equation prescribed periodic manner proposed experiment reaction rates recombination and diffusion recombination process resulting expression rigorous kinetic theory side of equation sink strength solving species concentration stream velocity subscript substituted into equation surface variation in concentration zero zero-order terms