The effect of induced magnetic field and convective boundary condition on MHD stagnation point flow and heat transfer of upper-convected Maxwell fluid in the presence of nanoparticle past a stretching sheet
Author:
Publisher
Elsevier BV
Subject
Fluid Flow and Transfer Processes,Mechanical Engineering,Fuel Technology,Aerospace Engineering,Automotive Engineering
Reference47 articles.
1. Magnetohydrodynamics stagnation-point flow towards a stretching sheet;Mahapatra;Acta Mech.,2001
2. Heat transfer in stagnation point flow towards a stretching sheet;Mahapatra;Heat Mass Transf.,2002
3. Mixed convection boundary layers in the stagnation point flow towards a stretching vertical sheet;Ishak;Meccanica,2006
4. MHD stagnation point flows towards a stretching sheet;Ishak;Physica A,2009
5. Magnetohydrodynamic stagnation point flow of a power-law fluid towards a stretching sheet;Mahapatra;Int. J. Non-Linear Mech.,2009
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