A study of heat transfer and mhd flow past a stretching surface
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Abstract
Heat transfer of the boundary layer slip flow in the presence of an inclined magnetic field
newlinein a porous medium over a melting stretching surface, is investigated. Also the nonuniform
newlineradiation and heat source applied to the flow. Non-linear chemical reaction and
newlineentropy generation on Williamson fluid flow studied in this investigation. The equations
newlineof the governing flow are transformed into the ordinary differential equations with the
newlinehelp of similarity analysis. Then the reduced system of equations was dealt with Shooting
newlineTechnique alongside the Runge-Kutta method of order four. Numerical results are
newlinepresented graphically for velocity and temperature and concentration profiles. From our
newlineresults after comparing with available literature, results indicates that the entropy
newlinegeneration can be increased with increasing values of parameter of porosity, magnetic
newlinefield parameter, temperature and concentration slip parameters and decreasing values of
newlineslip parameter.
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