Dr. Muhammad Asif Farooq
is working as
Professor
in the
School of Natural Sciences. Dr. Muhammad Asif Farooq
has a PhD in
Compressible Flows
. Dr. Muhammad Asif Farooq
has published
36
research articles & conference papers having a citation count of
579
, carried out
1
projects and filed
0
intellectual property.
Application of artificial neural networks to the Cattaneo–Christov heat flux model in Jeffrey fluid flow with gyrotactic microorganisms over a stretching cylinder with variable fluid properties2025
Investigation of the behavior of Carreau nanofluid flow under MHD in a permeable medium and chemical reaction in the context of a stretching cylinder2025
Journal: Mathematical Problems in Engineering, Volume 2021, Article ID 6666863, 16 pages
Impact Factor: 1.430Citations: 3Quartile: 3
A Simplified Finite Difference Method (SFDM) Solution via Tridiagonal Matrix Algorithm for MHD Radiating Nanofluid Flow over a Slippery Sheet Submerged in a Permeable Medium2021
Journal: Waves in Random and Complex Media, Pages 1-19
Impact Factor: 4.051Citations: 4Quartile: 2
Computational analysis of unsteady and steady magnetohydrodynamic radiating nano fluid flows past a slippery stretching sheet immersed in a permeable medium2020
Journal: International Communications in Heat and Mass Trasnfer, Volume 116, Article Number 104673
Impact Factor: 5.683Citations: 41Quartile: 1
Thermophoretic MHD free stream flow with variable internal heat generation/absorption and variable liquid characteristics in a permeable medium over a radiative exponentially stretching sheet2020
Journal: Frontiers in Physics, Volume 8, Article Number 66
Impact Factor: 3.560Citations: 20Quartile: 2
Insight into the dynamics of electro-magneto-hydrodynamic fluid flow past a sheet using the Galerkin finite element method: Effects of variable magnetic and electric fields2022
Numerical analysis of magnetohydrodynamic free stream and radiative heat transfer flow of nanofluid in a permeable medium over a linearly stretched cylinder with Arrhenius activation energy2024
Application of computational fluid dynamics and physics informed neural networks in predicting rupture risk of thoracoabdominal aneurysms with fluid-structure interaction analysis2025
Journal: Chinese Journal of Physics, Volume 95, Pages 433-454
Impact Factor: 4.600Citations: 0Quartile: 1
Fluid–structure interaction analysis of pulsatile flow in arterial aneurysms with physics-informed neural networks and computational fluid dynamics2025
Journal: Physica A: Statistical Mechanics and its Applications, Volume 534, Article 122138
Impact Factor: 2.924Citations: 28Quartile: 2
Magnetohydrodynamic Free Stream and Heat Transfer of Nanofluid Flow Over an Exponentially Radiating Stretching Sheet With Variable Fluid Properties2019