In this paper, authors investigate homogeneous-heterogeneous chemical reaction and heat absorption effects on a two-dimensional steady hydromagnetic Newtonian nanoliquid flow along a continuously stretching sheet. The flow field is subjected to a uniform magnetic field acting in a direction perpendicular to the direction of nanoliquid flow. A mathematical model of the physical problem is presented involving nonlinear partial differential equations with appropriate boundary conditions. These equations are then transformed into nonlinear ordinary differential equations using a suitable similarity transformation. Finally, approximate solutions of the transformed equations are obtained using the spectral quasi-linearization method. Results of f...
The purpose of this paper is to theoretically investigate the steady two-dimensional electrical magn...
The present study is to investigate the effect of the chemical reaction parameter on stagnation poin...
This paper theoretically investigates the radiation effect on magnetohydrodynamics (MHD) stagnation-...
In this paper, authors investigate homogeneous-heterogeneous chemical reaction and heat absorption e...
The objective of this work is to analyze the chemical reaction and heat generation or absorption eff...
The objective of this work is to analyze the chemical reaction and heat generation or absorption eff...
The convective heat and mass transfer in nanofluid flow through a porous media due to a permeable st...
In this work, we addressed the characteristics of two dimensional transient boundary layer flow of n...
In this paper, steady 2-D MHD free convective boundary-layer flows of an electrically conducting nan...
The unsteady magnetohydrodynamics (MHD) flow of nanofluid with variable fluid properties over an inc...
An analytical investigation of time-dependent, laminar boundary layer nanofluid flow through a non-l...
In this study, an investigation of the steady 2-D magnetohydrodynamiic (MHD) flow of stagnation poi...
AbstractThe flow of a viscous, incompressiable and electrically conducting nanofluid flow over a str...
293-301The steady, convective two-dimensional nanofluid flow has been investigated under the influen...
Abstract: This research work addresses the effects of induced magnetic field and thermal diffusion f...
The purpose of this paper is to theoretically investigate the steady two-dimensional electrical magn...
The present study is to investigate the effect of the chemical reaction parameter on stagnation poin...
This paper theoretically investigates the radiation effect on magnetohydrodynamics (MHD) stagnation-...
In this paper, authors investigate homogeneous-heterogeneous chemical reaction and heat absorption e...
The objective of this work is to analyze the chemical reaction and heat generation or absorption eff...
The objective of this work is to analyze the chemical reaction and heat generation or absorption eff...
The convective heat and mass transfer in nanofluid flow through a porous media due to a permeable st...
In this work, we addressed the characteristics of two dimensional transient boundary layer flow of n...
In this paper, steady 2-D MHD free convective boundary-layer flows of an electrically conducting nan...
The unsteady magnetohydrodynamics (MHD) flow of nanofluid with variable fluid properties over an inc...
An analytical investigation of time-dependent, laminar boundary layer nanofluid flow through a non-l...
In this study, an investigation of the steady 2-D magnetohydrodynamiic (MHD) flow of stagnation poi...
AbstractThe flow of a viscous, incompressiable and electrically conducting nanofluid flow over a str...
293-301The steady, convective two-dimensional nanofluid flow has been investigated under the influen...
Abstract: This research work addresses the effects of induced magnetic field and thermal diffusion f...
The purpose of this paper is to theoretically investigate the steady two-dimensional electrical magn...
The present study is to investigate the effect of the chemical reaction parameter on stagnation poin...
This paper theoretically investigates the radiation effect on magnetohydrodynamics (MHD) stagnation-...