This study examines magneto-thermal transport in an electrically conducting iron oxide (Fe₃O₄)–water nanofluid flowing through a chemically reactive porous rectangular channel under a transverse magnetic field and thermal radiation. The mathematical model couples the momentum, en...
Open access
Research Article10.9734/ajr2p/2026/v10i3236
Electromagnetohydrodynamic (EMHD) flow over stretching surfaces plays a crucial role in the sophisticated processing of materials since it is essential to maintain precise control over momentum, heat, and mass transport to ensure high product quality. This study examined how to o...
Open access
Research Article10.9734/ajr2p/2026/v10i2223
This study presents a spectral collocation analysis of entropy generation in a laminar boundary layer flow with coupled heat and mass transfer. The model considers a steady, two-dimensional, incompressible, and Newtonian flow over a flat plate with constant thermophysical propert...
Open access
Research Article10.9734/psij/2026/v30i3949
Magnetohydrodynamic (MHD) nanofluids have emerged as promising working fluids for advanced thermal management systems owing to their enhanced heat transfer capability and controllable transport characteristics under external magnetic fields. This study presents an analytical inve...
Open access
Research Article10.9734/psij/2026/v30i5968