AbstractIn this present work, we study the flow, heat and mass transfer characteristics of an electrically conducting, incompressible and viscous fluid past a stretching porous medium. The governing partial differential equations of the flow were transformed to a system of non-linear ordinary differential equations by using similarity transformation. The system of non- linear equations is solved by using an efficient numerical technique known as Keller Box method. The effects of radiation parameter, chemical reaction parameter, thermophoresis parameter and Brownian motion parameter on longitudinal velocity, dimensionless transverse velocity, temperature, concentration, skin friction coefficient, Nusselt number and Sherwood number in the flo...
In this study we analyzed the influence of radiation and chemical reaction on MHD nanofluid flow ove...
The aim of the present chapter is radiation and viscous dissipation effect to MHD flow with heat and...
The aim of the present chapter is radiation and viscous dissipation effect to MHD flow with heat and...
AbstractIn this present work, we study the flow, heat and mass transfer characteristics of an electr...
The objective of the present work is to investigate the combined influence of radiation absorption, ...
The aim of the problem is to analyze the combined influence of Radiation absorption and thermal radi...
Viscous dissipation and radiation effects on unsteady flow of laminar incompressible viscous electr...
71-78Viscous dissipation and radiation effects on unsteady flow of laminar incompressible viscous el...
AbstractThe present paper intended to analyze the effect of thermal diffusion (Soret) and diffusion-...
An attempt has been made to study the heat and mass transfer effect on the flow over a stretching sh...
Unsteady three-dimensional MHD flow and mass transfer in a porous is presented here by taking into ...
A similarity solution is proposed for the analysis of steady free convection heat and mass transfer ...
The aim of this analysis is to discuss the combined influence of chemical reaction, dissipation on ...
An analysis has been carried out to study the combined effects of the magnetic field, Joule heating...
The aim of this study is to investigate the heat and mass transfer in magnetohydrodynamic Newtonian ...
In this study we analyzed the influence of radiation and chemical reaction on MHD nanofluid flow ove...
The aim of the present chapter is radiation and viscous dissipation effect to MHD flow with heat and...
The aim of the present chapter is radiation and viscous dissipation effect to MHD flow with heat and...
AbstractIn this present work, we study the flow, heat and mass transfer characteristics of an electr...
The objective of the present work is to investigate the combined influence of radiation absorption, ...
The aim of the problem is to analyze the combined influence of Radiation absorption and thermal radi...
Viscous dissipation and radiation effects on unsteady flow of laminar incompressible viscous electr...
71-78Viscous dissipation and radiation effects on unsteady flow of laminar incompressible viscous el...
AbstractThe present paper intended to analyze the effect of thermal diffusion (Soret) and diffusion-...
An attempt has been made to study the heat and mass transfer effect on the flow over a stretching sh...
Unsteady three-dimensional MHD flow and mass transfer in a porous is presented here by taking into ...
A similarity solution is proposed for the analysis of steady free convection heat and mass transfer ...
The aim of this analysis is to discuss the combined influence of chemical reaction, dissipation on ...
An analysis has been carried out to study the combined effects of the magnetic field, Joule heating...
The aim of this study is to investigate the heat and mass transfer in magnetohydrodynamic Newtonian ...
In this study we analyzed the influence of radiation and chemical reaction on MHD nanofluid flow ove...
The aim of the present chapter is radiation and viscous dissipation effect to MHD flow with heat and...
The aim of the present chapter is radiation and viscous dissipation effect to MHD flow with heat and...