Comparative analysis between 36 nm and 47 nm alumina–water nanofluid flows in the presence of Hall effect
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Springer Science and Business Media LLC
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http://link.springer.com/article/10.1007/s10973-018-7379-4/fulltext.html
Reference56 articles.
1. Gumral H. Lagrangian description, symplectic structure, and invariants of 3D fluid flow. Phys Lett A. 1997;232:417–24. https://doi.org/10.1016/s0375-9601(97)00404-0 .
2. Anderson JD. Ludwig Prandtls boundary layer. Phys Today. 2005;58:42–8. https://doi.org/10.1063/1.2169443 .
3. Prandtl L. $${\ddot{U}}$$ U ¨ ber Flssigkeitsbewegung bei sehr kleiner Reibung “translated to ” Motion of fluids with very little viscosity. Internationalen Mathematiker-Kongresses in Heidelberg. 1904;8:1–8.
4. Animasaun IL, Sandeep N. Buoyancy induced model for the flow of 36 nm alumina-water nanofluid along upper horizontal surface of a paraboloid of revolution with variable thermal conductivity and viscosity. Powder Technol. 2016;301:858–67. https://doi.org/10.1016/j.powtec.2016.07.023 .
5. Makinde OD, Tshehla MS. Irreversibility analysis of MHD mixed convection channel flow of nanofluid with suction and injection. Glob J Pure Appl Math. 2017;13:4851–67.
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