The present communication examines the magnetohydrodynamic (MHD) squeezing flow of Jeffrey nanofluid between two parallel disks. Constitutive relations of Jeffrey fluid are employed in the problem development. Heat and mass transfer aspects are examined in the presence of thermophoresis and Brownian motion. Jeffrey fluid subject to time dependent applied magnetic field is conducted. Suitable variables lead to a strong nonlinear system. The resulting systems are computed via homotopic approach. The behaviors of several pertinent parameters are analyzed through graphs and numerical data. Skin friction coefficient and heat and mass transfer rates are numerically examined
This article explores the hydromagnetic steady flow of Jeffrey fluid in the presence of thermal radi...
Abstract Background In this paper, the heat and mass transfer of MHD nanofluid squeezing flow betwee...
The present article deals with the MHD flow of a Casson nanofluid between two disks. The lower disk ...
The present communication examines the magnetohydrodynamic (MHD) squeezing flow of Jeffrey nanofluid...
The unsteady MHD squeezing flow of nanofluid with different type of nanoparticles between two parall...
The heat and mass transfer on time dependent hydrodynamic squeeze flow of Jeffrey nanofluid across t...
Background: The purpose of the study is to investigate the effects of variable fluid properties, the...
Here magnetohydrodynamic (MHD) boundary layer flow of Jeffrey nanofluid by a nonlinear stretching su...
AbstractIn this paper, the unsteady magnetohydrodynamic (MHD) squeezing flow between two parallel di...
In this paper, the unsteady magnetohydrodynamic (MHD) squeezing flow between two parallel disks (whi...
Background: In this paper, the heat and mass transfer of MHD nanofluid squeezing flow between two pa...
This communication explores magnetohydrodynamic (MHD) boundary-layer flow of Jeffrey nanofluid over ...
The wide applications of ultrahigh cooling devices in the current industries are necessary to improv...
The wide applications of ultrahigh cooling devices in the current industries are necessary to improv...
The numerical study is presented for the magnetohydrodynamic (MHD) squeezing flow of Jeffrey fluid b...
This article explores the hydromagnetic steady flow of Jeffrey fluid in the presence of thermal radi...
Abstract Background In this paper, the heat and mass transfer of MHD nanofluid squeezing flow betwee...
The present article deals with the MHD flow of a Casson nanofluid between two disks. The lower disk ...
The present communication examines the magnetohydrodynamic (MHD) squeezing flow of Jeffrey nanofluid...
The unsteady MHD squeezing flow of nanofluid with different type of nanoparticles between two parall...
The heat and mass transfer on time dependent hydrodynamic squeeze flow of Jeffrey nanofluid across t...
Background: The purpose of the study is to investigate the effects of variable fluid properties, the...
Here magnetohydrodynamic (MHD) boundary layer flow of Jeffrey nanofluid by a nonlinear stretching su...
AbstractIn this paper, the unsteady magnetohydrodynamic (MHD) squeezing flow between two parallel di...
In this paper, the unsteady magnetohydrodynamic (MHD) squeezing flow between two parallel disks (whi...
Background: In this paper, the heat and mass transfer of MHD nanofluid squeezing flow between two pa...
This communication explores magnetohydrodynamic (MHD) boundary-layer flow of Jeffrey nanofluid over ...
The wide applications of ultrahigh cooling devices in the current industries are necessary to improv...
The wide applications of ultrahigh cooling devices in the current industries are necessary to improv...
The numerical study is presented for the magnetohydrodynamic (MHD) squeezing flow of Jeffrey fluid b...
This article explores the hydromagnetic steady flow of Jeffrey fluid in the presence of thermal radi...
Abstract Background In this paper, the heat and mass transfer of MHD nanofluid squeezing flow betwee...
The present article deals with the MHD flow of a Casson nanofluid between two disks. The lower disk ...