Abstract The present study explores incompressible, steady power law nanoliquid comprising gyrotactic microorganisms flow across parallel plates with energy transfer. In which only one plate is moving concerning another at a time. Nonlinear partial differential equations have been used to model the problem. Using Liao's transformation, the framework of PDEs is simplified to a system of Ordinary Differential Equations (ODEs). The problem is numerically solved using the parametric continuation method (PCM). The obtained results are compared to the boundary value solver (bvp4c) method for validity reasons. It has been observed that both the results are in best settlement with each other. The temperature, velocity, concentration and microorgani...
AbstractThe current study covers the relative study of non-aligned magnetohydrodynamic stagnation po...
Nanofluids are considered as an effective way to enhance the thermal conductivity of heat transfer f...
This study examines the magnetic effects of heat and mass transmission on the flow of micropolar flu...
The combined effects of Navier slip and magnetic field on boundary layer flow with heat and mass tra...
Abstract In this study, a mathematical model is developed to scrutinize the transient magnetic flow ...
This research paper investigates the bioconvection magneto hydrodynamics (MHD) squeezing nanofluid f...
This paper discusses the three-dimensional flow of Maxwell nanofluid containing gyrotactic micro-org...
The intention of this study is to examine the combined impacts of magnetic field and convective boun...
A conceptual boundary level experiment of heat and mass transfer flow in an MHD viscous nanofluid co...
Interaction of motile microorganisms and nanoparticles along with buoyancy forces will produce nanof...
In the present study, the magnetohydrodynamics (MHD) bio-convective flow and heat transfer of nanofl...
This article addresses the numerical exploration of steady and 2D flow of MHD Carreau nanofluid fill...
This paper focuses on the research of motile microorganism rates in the bioconvective Oldroyd-B nano...
The forthright purpose of this communication is to inspect the flow of magnetohydrodynamic (MHD) str...
The present work investigated the unsteady stagnation-point flow and heat transfer of a nanofluid co...
AbstractThe current study covers the relative study of non-aligned magnetohydrodynamic stagnation po...
Nanofluids are considered as an effective way to enhance the thermal conductivity of heat transfer f...
This study examines the magnetic effects of heat and mass transmission on the flow of micropolar flu...
The combined effects of Navier slip and magnetic field on boundary layer flow with heat and mass tra...
Abstract In this study, a mathematical model is developed to scrutinize the transient magnetic flow ...
This research paper investigates the bioconvection magneto hydrodynamics (MHD) squeezing nanofluid f...
This paper discusses the three-dimensional flow of Maxwell nanofluid containing gyrotactic micro-org...
The intention of this study is to examine the combined impacts of magnetic field and convective boun...
A conceptual boundary level experiment of heat and mass transfer flow in an MHD viscous nanofluid co...
Interaction of motile microorganisms and nanoparticles along with buoyancy forces will produce nanof...
In the present study, the magnetohydrodynamics (MHD) bio-convective flow and heat transfer of nanofl...
This article addresses the numerical exploration of steady and 2D flow of MHD Carreau nanofluid fill...
This paper focuses on the research of motile microorganism rates in the bioconvective Oldroyd-B nano...
The forthright purpose of this communication is to inspect the flow of magnetohydrodynamic (MHD) str...
The present work investigated the unsteady stagnation-point flow and heat transfer of a nanofluid co...
AbstractThe current study covers the relative study of non-aligned magnetohydrodynamic stagnation po...
Nanofluids are considered as an effective way to enhance the thermal conductivity of heat transfer f...
This study examines the magnetic effects of heat and mass transmission on the flow of micropolar flu...