Effects of multiple slip on flow of magneto-Carreau fluid along wedge with chemically reactive species
Author:
Publisher
Springer Science and Business Media LLC
Subject
Artificial Intelligence,Software
Link
http://link.springer.com/article/10.1007/s00521-016-2825-3/fulltext.html
Reference32 articles.
1. Cussler EL (1998) Diffusion mass transfer in fluid systems. Cambridge University Press, London
2. Khan SK, Sanjayanand E (2005) Visco-elastic boundary layer flow and heat transfer over an exponential stretching sheet. Int J Heat Mass Transf 48:1534–1542
3. Bhattacharyya K (2011) Dual solutions in boundary layer stagnation-point flow and mass transfer with chemical reaction past a stretching/shrinking sheet. Int Commu Heat Mass Transf 38:917–922
4. Das K (2011) Effect of chemical reaction and thermal radiation on heat and mass transfer flow of MHD micropolar fluid in a rotating frame of reference. Int J Heat Mass Transf 54:3505–3513
5. Kameswaran PK, Narayana M, Sibanda P, Murthy PVSN (2012) Hydromagnetic nanofluid flow due to a stretching or shrinking sheet with viscous dissipation and chemical reaction effects. Int J Heat Mass Transf 55:7587–7595
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