Chemical Reaction and Thermophoresis Effects on MHD Mixed Convection Flow Over an Inclined Porous Plate with Variable Suction
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Publisher
Springer Singapore
Link
http://link.springer.com/content/pdf/10.1007/978-981-15-4308-1_56
Reference13 articles.
1. Anjalidevi SP, Kandasamy R (1999) Effects of chemical reaction, heat and mass transfer on laminar flow along a semi infinite horizontal plate. Heat Mass Transfer 35:465–467
2. Rashidi MM, Rahimzadeh N, Ferdows M, Uddin MJ, Bég OA (2012) Group theory and differential transform analysis of mixed convective heat and mass transfer from a horizontal surface with chemical reaction effects. Chem Eng Commun 199:1012–1043
3. Satyanarayana PV, Harish Babu D (2016) Numerical study of MHD heat and mass transfer of a Jeffrey fluid over a stretching sheet with chemical reaction and thermal radiation. J. Taiwan Ins Chem Eng 59:18–25
4. Alam MM, Sattar MA (1999) Local solutions of an MHD free convection and mass transfer flow with thermal diffusion. Ind J Theor Phys 47:19–34
5. Selim A, Hossain MA, Das R (2003) The effect of surface mass transfer on mixed convection flow past a heated vertical flat permeable plate with thermophoresis. Int J Thermal Sci 42:973–982
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