The effects of thermal radiation on a flow past an impulsively started infinite vertical plate in the presence of a magnetic field have been studied. The fluid considered is a gray, absorbing-emitting radiation but non-scattering medium. The dimensionless governing equations are solved by an efficient, more accurate, unconditionally stable and fast converging implicit scheme. The effects of velocity and temperature for different parameters such as the thermal radiation, magnetic field, Schmidt number, thermal Grashof number and mass Grashof number are studied. It is observed that the velocity decreases in the presence of thermal radiation or a magnetic fiel
The effects of chemical reaction on a transient MHD mixed convection flow with mass transfer past an...
In this paper we have analyzed the effects of Radiation and mass transfer on MHD viscous flow. The f...
An analysis is carried out in order to examine the effects of non-uniform heat source and thermal ra...
63-67MHD (Magneto hydrodynamics) flow past an impulsively started infinite vertical isothermal plate...
*Author for Correspondence A Finite Element Method is implemented to study the Radiation effect of M...
Thermal radiation effects on an unsteady free convective flow of a viscous incompressible flow of a ...
Theoretical solution of unsteady MHD flow past an infinite vertical oscillating plate with variable ...
An analytical study is performed to study the effects of thermal radiation on unsteady free convecti...
The radiation effects on unsteady flow of a viscous incompressible fluid past an exponentially accel...
The effects of radiation on unsteady MHD free convection flow of a viscous incompressible electrical...
An exact solution of first order chemical reaction effects on a radiative flow past a linearly accel...
An analytical study is performed to investigate the effects of chemical reaction and radiation on un...
MHD and thermal radiation effects on unsteady flow past an oscillating semi-infinite vertical plate ...
Abstract. This paper investigates the combined effects of magnetohydrodynamics and radiation on free...
This paper is focused on the study of effects of thermal radiation on the natural convective heat an...
The effects of chemical reaction on a transient MHD mixed convection flow with mass transfer past an...
In this paper we have analyzed the effects of Radiation and mass transfer on MHD viscous flow. The f...
An analysis is carried out in order to examine the effects of non-uniform heat source and thermal ra...
63-67MHD (Magneto hydrodynamics) flow past an impulsively started infinite vertical isothermal plate...
*Author for Correspondence A Finite Element Method is implemented to study the Radiation effect of M...
Thermal radiation effects on an unsteady free convective flow of a viscous incompressible flow of a ...
Theoretical solution of unsteady MHD flow past an infinite vertical oscillating plate with variable ...
An analytical study is performed to study the effects of thermal radiation on unsteady free convecti...
The radiation effects on unsteady flow of a viscous incompressible fluid past an exponentially accel...
The effects of radiation on unsteady MHD free convection flow of a viscous incompressible electrical...
An exact solution of first order chemical reaction effects on a radiative flow past a linearly accel...
An analytical study is performed to investigate the effects of chemical reaction and radiation on un...
MHD and thermal radiation effects on unsteady flow past an oscillating semi-infinite vertical plate ...
Abstract. This paper investigates the combined effects of magnetohydrodynamics and radiation on free...
This paper is focused on the study of effects of thermal radiation on the natural convective heat an...
The effects of chemical reaction on a transient MHD mixed convection flow with mass transfer past an...
In this paper we have analyzed the effects of Radiation and mass transfer on MHD viscous flow. The f...
An analysis is carried out in order to examine the effects of non-uniform heat source and thermal ra...