AbstractThis article is intended for investigating the effects of heat flux and induced magnetic field for the peristaltic flow of two different nanoparticles with the base fluid salt water in the asymmetric vertical permeable channel. The mathematical formulation is presented. The resulting equations are solved exactly. The obtained expressions for pressure gradient, pressure rise, temperature, axial magnetic field, current density and velocity phenomenon are described through graphs for various pertinent parameters. The streamlines are drawn for some physical quantities to discuss the trapping phenomenon
The problem of peristaltic flow of an incompressible viscous electrically conducting nanofluid in a ...
This research is devoted to the peristaltic flow of Eyring-Powell nanofluid in an asymmetric channel...
In this article, we studied MHD peristaltic flow of a Carreau nanofluid in an asymmetric channel. Th...
This article is intended for investigating the effects of heat flux and induced magnetic field for t...
AbstractThis article is intended for investigating the effects of heat flux and induced magnetic fie...
In this article, it is opted to investigate the effects of entropy and induced magnetic field for th...
AbstractIn this article, it is opted to investigate the effects of entropy and induced magnetic fiel...
In this study, we have investigated the analysis of heat and mass transfers on the peristaltic motio...
This study deals with the entropy investigation of the peristalsis of a water–copper nanofluid throu...
This article models the peristaltic transport of viscous nanofluid in an asymmetric channel. The cha...
This study aimed at making an investigation on the effect of the magnetic field on second law analys...
The peristaltic transport of nano-fluid under the influence of a magnetic field through a bio-fluidi...
The Peristaltic transport of conducting nanofluids under the effect of slip condition in an asymmetr...
AbstractThe Peristaltic transport of conducting nanofluids under the effect of slip condition in an ...
Advancements in the biomedical engineering have enhanced the usage of magnto-nanoparticles in improv...
The problem of peristaltic flow of an incompressible viscous electrically conducting nanofluid in a ...
This research is devoted to the peristaltic flow of Eyring-Powell nanofluid in an asymmetric channel...
In this article, we studied MHD peristaltic flow of a Carreau nanofluid in an asymmetric channel. Th...
This article is intended for investigating the effects of heat flux and induced magnetic field for t...
AbstractThis article is intended for investigating the effects of heat flux and induced magnetic fie...
In this article, it is opted to investigate the effects of entropy and induced magnetic field for th...
AbstractIn this article, it is opted to investigate the effects of entropy and induced magnetic fiel...
In this study, we have investigated the analysis of heat and mass transfers on the peristaltic motio...
This study deals with the entropy investigation of the peristalsis of a water–copper nanofluid throu...
This article models the peristaltic transport of viscous nanofluid in an asymmetric channel. The cha...
This study aimed at making an investigation on the effect of the magnetic field on second law analys...
The peristaltic transport of nano-fluid under the influence of a magnetic field through a bio-fluidi...
The Peristaltic transport of conducting nanofluids under the effect of slip condition in an asymmetr...
AbstractThe Peristaltic transport of conducting nanofluids under the effect of slip condition in an ...
Advancements in the biomedical engineering have enhanced the usage of magnto-nanoparticles in improv...
The problem of peristaltic flow of an incompressible viscous electrically conducting nanofluid in a ...
This research is devoted to the peristaltic flow of Eyring-Powell nanofluid in an asymmetric channel...
In this article, we studied MHD peristaltic flow of a Carreau nanofluid in an asymmetric channel. Th...