Abstract In this study, a mathematical model is developed to scrutinize the transient magnetic flow of Cross nanoliquid past a stretching sheet with thermal radiation effects. Binary chemical reactions and heat source/sink effects along with convective boundary condition are also taken into the consideration. Appropriate similarity transformations are utilized to transform partial differential equations (PDE’s) into ordinary ones and then numerically tackled by shooting method. The impacts of different emerging parameters on the thermal, concentration, velocity, and micro-rotation profiles are incorporated and discussed in detail by means of graphs. Results reveal that, the escalation in magnetic parameter and Rayleigh number slowdowns the ...
Abstract Numerical investigation for enhancement in thermal distribution of unsteady dynamics of Wil...
The forthright purpose of this communication is to inspect the flow of magnetohydrodynamic (MHD) str...
Nanofluids have already proven great potential in the thermal amplification of several manufacturing...
The intention of this study is to examine the combined impacts of magnetic field and convective boun...
The current study covers the relative study of non-aligned magnetohydrodynamic stagnation point flow...
AbstractThe current study covers the relative study of non-aligned magnetohydrodynamic stagnation po...
Nanofluid dynamics and magnetohydrodynamics have tremendously contributed to industrial applications...
Thermal management is a crucial task in the present era of miniatures and other gadgets of compact h...
This research paper investigates the bioconvection magneto hydrodynamics (MHD) squeezing nanofluid f...
This paper presents an investigation for bioconvection heat transfer of a nanofluid containing gyrot...
This paper presents an investigation for bioconvection heat transfer of a nanofluid containing gyrot...
Interaction of motile microorganisms and nanoparticles along with buoyancy forces will produce nanof...
This study examines the magnetic effects of heat and mass transmission on the flow of micropolar flu...
The intention of this study is to carry out a numerical investigation of time-dependent magneto-hydr...
This paper discusses the three-dimensional flow of Maxwell nanofluid containing gyrotactic micro-org...
Abstract Numerical investigation for enhancement in thermal distribution of unsteady dynamics of Wil...
The forthright purpose of this communication is to inspect the flow of magnetohydrodynamic (MHD) str...
Nanofluids have already proven great potential in the thermal amplification of several manufacturing...
The intention of this study is to examine the combined impacts of magnetic field and convective boun...
The current study covers the relative study of non-aligned magnetohydrodynamic stagnation point flow...
AbstractThe current study covers the relative study of non-aligned magnetohydrodynamic stagnation po...
Nanofluid dynamics and magnetohydrodynamics have tremendously contributed to industrial applications...
Thermal management is a crucial task in the present era of miniatures and other gadgets of compact h...
This research paper investigates the bioconvection magneto hydrodynamics (MHD) squeezing nanofluid f...
This paper presents an investigation for bioconvection heat transfer of a nanofluid containing gyrot...
This paper presents an investigation for bioconvection heat transfer of a nanofluid containing gyrot...
Interaction of motile microorganisms and nanoparticles along with buoyancy forces will produce nanof...
This study examines the magnetic effects of heat and mass transmission on the flow of micropolar flu...
The intention of this study is to carry out a numerical investigation of time-dependent magneto-hydr...
This paper discusses the three-dimensional flow of Maxwell nanofluid containing gyrotactic micro-org...
Abstract Numerical investigation for enhancement in thermal distribution of unsteady dynamics of Wil...
The forthright purpose of this communication is to inspect the flow of magnetohydrodynamic (MHD) str...
Nanofluids have already proven great potential in the thermal amplification of several manufacturing...