Pages that link to "Item:Q2672387"
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The following pages link to Numerical study on the combined effects of Brownian motion and thermophoresis on an unsteady magnetohydrodynamics nanofluid boundary layer flow (Q2672387):
Displaying 9 items.
- Influence of magnetic field, thermal radiation and Brownian motion on water-based composite nanofluid flow passing through a porous medium (Q2026906) (← links)
- Bioconvective chemically reactive entropy optimized cross-nano-material conveying oxytactic microorganisms over a flexible cylinder with Lorentz force and Arrhenius kinetics (Q2104398) (← links)
- Thermophoresis and Brownian motion effect on chemically reacting MHD boundary layer slips flow of a nanofluid (Q5107843) (← links)
- (Q5206807) (← links)
- Convective flow of Jeffrey nanofluid along an upright microchannel with Hall current and Buongiorno model: an irreversibility analysis (Q6062783) (← links)
- Framing the hydrothermal significance of water-based hybrid nanofluid flow over a revolving disk (Q6127963) (← links)
- Role of linear and non-linear thermal radiation over the rotating porous disc with the occurrence of non-uniform heat source/sink: HAM analysis (Q6567068) (← links)
- Electroosmotic microchannel flow of blood conveying copper and cupric nanoparticles: ciliary motion experiencing entropy generation using backpropagated networks (Q6576998) (← links)
- Thermal transportation of radiative cathode nanotube-based nanofluid on a stretching/shrinking wedge with varying magnetism and heat source (Q6669206) (← links)