AbstractIn this article, the simultaneous effects of slip and Magnetohydrodynamics (MHD) on peristaltic blood flow of Jeffrey fluid model have been investigated in a non-uniform porous channel. The governing equation of blood flow for Jeffrey fluid model is solved with the help of long wavelength and creeping flow regime. The solution of the resulting differential equation is solved analytically and a closed form solution is presented. The impact of all the physical parameters is plotted for velocity profile and pressure rise. Nowadays, Magnetohydrodynamics is applicable in various magnetic drug targeting for cancer diseases and also very helpful to control the flow. The present analysis is also described for Newtonian fluid (λ1→0) as a spe...
The flow through porous boundaries is of great importance, both in technological and biophysical flo...
The effects of Hartmann number, porous parameter and Darcy velocity on the steady flow of a viscous ...
This research looks at the effects of partial slip on heat and mass transfer of peristaltic transpor...
In this article, the simultaneous effects of slip and Magnetohydrodynamics (MHD) on peristaltic bloo...
AbstractIn this article, the simultaneous effects of slip and Magnetohydrodynamics (MHD) on peristal...
AbstractIn this article, combine effects of Magnetohydrodynamics and partial slip on Blood flow of R...
In this article, combine effects of Magnetohydrodynamics and partial slip on Blood flow of Ree–Eyrin...
A mathematical study of pulsatile bio-magnetic blood flow through a channel containing porous medium...
The influence of slip on the magnetohydrodynamic (MHD) peristaltic flow in a planar channel with com...
The influence of slip on the magnetohydrodynamic (MHD) peristaltic flow in a planar channel with com...
Incompressible Jeffrey fluid under peristalsis is considered into permeable conduit. Magnetic effect...
The credibility of a computational analytical solution of time dependent mean velocity for magneto h...
AbstractThe credibility of a computational analytical solution of time dependent mean velocity for m...
This paper investigates the influence of MHD on a peristaltic flow of Newtonian fluid with couple ...
The magnetohydrodynamic (MHD) peristaltic flow of the fractional Jeffrey fluid through porous medium...
The flow through porous boundaries is of great importance, both in technological and biophysical flo...
The effects of Hartmann number, porous parameter and Darcy velocity on the steady flow of a viscous ...
This research looks at the effects of partial slip on heat and mass transfer of peristaltic transpor...
In this article, the simultaneous effects of slip and Magnetohydrodynamics (MHD) on peristaltic bloo...
AbstractIn this article, the simultaneous effects of slip and Magnetohydrodynamics (MHD) on peristal...
AbstractIn this article, combine effects of Magnetohydrodynamics and partial slip on Blood flow of R...
In this article, combine effects of Magnetohydrodynamics and partial slip on Blood flow of Ree–Eyrin...
A mathematical study of pulsatile bio-magnetic blood flow through a channel containing porous medium...
The influence of slip on the magnetohydrodynamic (MHD) peristaltic flow in a planar channel with com...
The influence of slip on the magnetohydrodynamic (MHD) peristaltic flow in a planar channel with com...
Incompressible Jeffrey fluid under peristalsis is considered into permeable conduit. Magnetic effect...
The credibility of a computational analytical solution of time dependent mean velocity for magneto h...
AbstractThe credibility of a computational analytical solution of time dependent mean velocity for m...
This paper investigates the influence of MHD on a peristaltic flow of Newtonian fluid with couple ...
The magnetohydrodynamic (MHD) peristaltic flow of the fractional Jeffrey fluid through porous medium...
The flow through porous boundaries is of great importance, both in technological and biophysical flo...
The effects of Hartmann number, porous parameter and Darcy velocity on the steady flow of a viscous ...
This research looks at the effects of partial slip on heat and mass transfer of peristaltic transpor...