Abstract

An investigation has been carried out to present the hydro-magnetic three-dimensional flow of a nanofluid in a rotating channel. Simultaneous effects of energy and concentration of the nanoparticles have been considered and discussed. Velocity, thermal and concentration slip conditions are utilized in order to make the analysis more interesting. Brownian motion and thermophoresis effects are analyzed in order to discuss the nanofluids for the rotating flow situations. The mathematical modeling is performed for the laws of conservation of mass, momentum, energy and mass fraction profiles. The computations are made numerical and the obtained results are presented graphically and numerically in details.

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