Magnetohydrodynamic dissipative flow across the slendering stretching sheet with temperature dependent variable viscosity

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Abstract

The boundary layer flow across a slendering stretching sheet has gotten awesome consideration due to its inexhaustible pragmatic applications in nuclear reactor technology, acoustical components, chemical and manufacturing procedures, for example, polymer extrusion, and machine design. By keeping this in view, we analyzed the two-dimensional MHD flow across a slendering stretching sheet within the sight of variable viscosity and viscous dissipation. The sheet is thought to be convectively warmed. Convective boundary conditions through heat and mass are employed. Similarity transformations used to change over the administering nonlinear partial differential equations as a group of nonlinear ordinary differential equations. Runge-Kutta based shooting technique is utilized to solve the converted equations. Numerical estimations of the physical parameters involved in the problem are calculated for the friction factor, local Nusselt and Sherwood numbers. Viscosity variation parameter and chemical reaction parameter shows the opposite impact to each other on the concentration profile. Heat and mass transfer Biot numbers are helpful to enhance the temperature and concentration respectively.

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Jayachandra Babu, M., Sandeep, N., Ali, M. E., & Nuhait, A. O. (2017). Magnetohydrodynamic dissipative flow across the slendering stretching sheet with temperature dependent variable viscosity. Results in Physics, 7, 1801–1807. https://doi.org/10.1016/j.rinp.2017.05.018

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