Brownian motion and thermophoresis behavior on micro-polar nano-fluid—A numerical outlook
Author:
Publisher
Elsevier BV
Subject
Applied Mathematics,Modelling and Simulation,Numerical Analysis,General Computer Science,Theoretical Computer Science
Reference27 articles.
1. Lorentz force effect on mixed convection micro-polar flow in a vertical conduit;Abdel-Wahed;Eur. Phys. J. Plus,2017
2. Finite element solution of mixed convection micro-polar flow driven by a porous stretching sheet;Bhargava;Internat. J. Engrg. Sci.,2003
3. A brief account of microscopical observations made in the months of June, July and August, 1827, on the particles contained in the pollen of plants; and on the general existence of active molecules in organic and inorganic bodies;Brown;Phil. Mag.,1828
4. Convective transport in nanofluids;Buongiorno;J. Heat Transfer,2006
5. MHD micro-polar nano-fluid flow over an exponentially stretching/shrinking surface: Triple solutions;Dero;J. Adv. Res. Fluid Mech. Thermal Sci.,2019
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