Magnetic force effects on peristaltic transport of hybrid bio-nanofluid (AuCu nanoparticles) with moderate Reynolds number: An expanding horizon
This work investigates the magnetic force and nonlinear thermal radiation on hybrid bio-
nanofluid flow in a peristaltic channel under the influence of an applied magnetic field with …
nanofluid flow in a peristaltic channel under the influence of an applied magnetic field with …
Entropy analysis on the blood flow through anisotropically tapered arteries filled with magnetic zinc-oxide (ZnO) nanoparticles
The present analysis deals with the entropy analysis of the blood flow through an
anisotropically tapered arteries under the suspension of magnetic Zinc-oxide (ZnO) …
anisotropically tapered arteries under the suspension of magnetic Zinc-oxide (ZnO) …
[HTML][HTML] A study of fractional Oldroyd-B fluid between two coaxial cylinders containing gold nanoparticles
In this study, momentum and heat transport of fractionally ordered Oldroyd-B bio nanofluid
within a coaxial cylinder are solved numerically. It is common knowledge that fractional …
within a coaxial cylinder are solved numerically. It is common knowledge that fractional …
Multiple fractional solutions for magnetic bio-nanofluid using Oldroyd-B model in a porous medium with ramped wall heating and variable velocity
Three different fractional models of Oldroyd-B fluid are considered in this work. Blood is
taken as a special example of Oldroyd-B fluid (base fluid) with the suspension of gold …
taken as a special example of Oldroyd-B fluid (base fluid) with the suspension of gold …
On the stability of convection in a non-newtonian vertical fluid layer in the presence of gold nanoparticles: drug agent for thermotherapy
We consider the effect of gold nanoparticles on the stability properties of convection in a
vertical fluid layer saturated by a Jeffreys fluid. The vertical boundaries are rigid and hold at …
vertical fluid layer saturated by a Jeffreys fluid. The vertical boundaries are rigid and hold at …
Accurate Solution for the Pantograph Delay Differential Equation via Laplace Transform
The Pantograph equation is a fundamental mathematical model in the field of delay
differential equations. A special case of the Pantograph equation is well known as the …
differential equations. A special case of the Pantograph equation is well known as the …
Magnetic field, variable thermal conductivity, thermal radiation, and viscous dissipation effect on heat and momentum of fractional Oldroyd-B bio nano-fluid within a …
This study deals with the analysis of the heat and velocity profile of the fractional-order
Oldroyd-B bio-nanofluid within a bounded channel. The study has a wide range of scope in …
Oldroyd-B bio-nanofluid within a bounded channel. The study has a wide range of scope in …
Peristaltic activity of thermally radiative magneto‐nanofluid with electroosmosis and entropy analysis
The importance of gold and silver nanoparticles in the blood flow has immense applications
in biomedicine for the treatment of cancer disease and wound treatment due to their large …
in biomedicine for the treatment of cancer disease and wound treatment due to their large …
[HTML][HTML] Exact solution of a solar energy model using four different kinds of nanofluids: advanced application of Laplace transform
MD Aljoufi - Case Studies in Thermal Engineering, 2023 - Elsevier
This paper analyzes the system of partial differential equations (PDEs) describing the
absorption of solar energy via a solar collector utilizing nanofluids. Obtaining exact solution …
absorption of solar energy via a solar collector utilizing nanofluids. Obtaining exact solution …
A proposed analytical and numerical treatment for the nonlinear SIR model via a hybrid approach
AB Albidah - Mathematics, 2023 - mdpi.com
This paper re-analyzes the nonlinear Susceptible–Infected–Recovered (SIR) model using a
hybrid approach based on the Laplace–Padé technique. The proposed approach is …
hybrid approach based on the Laplace–Padé technique. The proposed approach is …