Abstract

MHD stagnation point flow of Jeffrey nanomaterials towards stretching sheet is described. Heat and mass fluxes are based upon relation by CattaneoChristov theory. Resulting nonlinear systems for ODEs are obtained. OHAM is employed to develop convergent solutions. Variation of sundry variables on temperature, velocity and concentration are deliberated. Velocity filed has reverse trend versus relaxation and retardation times parameter. Higher magnetic variable reduces the velocity. Larger Eckert number augments the temperature. Temperature is augmented against thermophoresis variables. Concentration decays for larger Schmidt number. Thermophoresis and Brownian motion parameters have opposite behaviors for concentration distribution.

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