The Effects of Thermal Radiation on a Reactive Hydromagnetic Internal Heat Generating Fluid Flow Through Parallel Porous Plates
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-99719-3_17
Reference17 articles.
1. Rashad, A.M.: Effects of radiation and variable viscosity on unsteady MHD flow of a rotating fluid from stretching surface in porous medium. J. Egypt. Math. Soc. 22(1), 134–142 (2014)
2. Makinde, O.D., Beg, O.A.: On inherent irreversibility in a reactive hydromagnetic channel flow. J. Therm. Sci. 19(1), 72–79 (2010)
3. Hassan, A.R., Gbadeyan, J.A.: A reactive hydromagnetic internal heat generating fluid flow through a channel. Int. J. Heat Technol. 33(3), 43–50 (2015)
4. Hassan, A.R., Maritz, R.: The analysis of a reactive hydromagnetic internal heat generating Poiseuille fluid flow through a channel. SpringerPlus 5(1), 1–14 (2016)
5. Akhtar, W., Fetecau, C., Tigou, V., Fetecau, C.: Flow of Maxwell fluid between two sides wall induced by a constantly accelerating plates. Int. J. Z. Angew. Maths Phys. (2008). https://doi.org/10.1007/s00033008-7129-8
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