This paper sheds light on the numerical investigation of 2D flow and melting heat transport of an electrically conducting boundary layer stagnation-point flow of Casson fluid in the direction of stretching sheet. Suitable changes are made in rehabilitating the flow governing partial differential equations into dimensionless ordinary differential equations and afterwards solved these ordinary differential equations by the fourth order Runge-kutta numerical method by utilising the most efficient shooting technique. The influence of melting heat transfer, magnetic field, Prandtl number, Rayleigh number and Schmidt number on velocity, energy and concentration distributions, are studied through graphically drawn results.
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Nandeppanavar et al. (2021) studied this question.
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