Abstract
Ferromagnetic flow of rate type liquid over a stretched surface is addressed in this article. Heat and mass transport are investigated with Brownian movement and thermophoresis effects. Magnetic dipole is also taken into consideration. Procedure of similarity transformation is employed. The obtained nonlinear expressions have been tackled numerically by means of Shooting method. Graphical results are shown and analyzed for the impact of different variables. Temperature and concentration gradients are numerically computed in Tables 1 and 2. The results described here demonstrate that ferromagnetic variable boosts the thermal field. It is noticed that velocity and concentration profiles are higher when elastic and thermophoresis variables are enhanced.
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Hayat, T., Ahmad, S., Khan, M. I., & Alsaedi, A. (2018). Simulation of ferromagnetic nanomaterial flow of Maxwell fluid. Results in Physics, 8, 34–40. https://doi.org/10.1016/j.rinp.2017.11.021
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