Unsteady separated stagnation point flow due to an EMHD Riga plate with heat generation in hybrid nanofluid
Author:
Funder
Universiti Putra Malaysia
Universiti Teknikal Malaysia Melaka
Ministry of Higher Education, Malaysia
Universitatea Babeș-Bolyai
Publisher
Elsevier BV
Subject
General Physics and Astronomy
Reference61 articles.
1. Effects of coagulation on the two-phase peristaltic pumping of magnetized prandtl biofluid through an endoscopic annular geometry containing a porous medium;Bhatti;Chinese J. Phys.,2019
2. Multiple exact solutions of free convection flows in saturated porous media with variable heat flux;Turkyilmazoglu;J. Porous Media,2022
3. Exponential nonuniform wall heating of a square cavity and natural convection;Turkyilmazoglu;Chinese J. Phys.,2022
4. A review on nanofluids: preparation, stability mechanisms, and applications;Yu;J. Nanomater.,2012
5. Heat transfer in nanofluids—a review;Das;Heat Transf. Eng.,2006
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