Muhammad Tabrez
Papers
4
Total Citations
80
H-Index
4
About
Muhammad Tabrez is an emerging researcher whose work sits at the dynamic intersection of fluid mechanics, nanotechnology, and bioconvection. His scholarship focuses primarily on magnetohydrodynamic (MHD) fluid flows, ferromagnetic nanoparticles, and the behavior of gyrotactic and oxytactic microorganisms within complex fluid systems — areas with profound implications for biomedical engineering, cancer treatment, water purification, and aerospace applications. Tabrez has made notable contributions by systematically investigating non-Newtonian fluid models — including Williamson, Eyring-Powell, and Cross fluids — under radiative and magnetic conditions. His studies illuminate how suspensions of ferromagnetic nanoparticles interact with microorganism dynamics to influence heat and mass transfer, offering insights critical to nano-robot design, bio-nano devices, and thermal management systems. His most-cited work, examining gyrotactic microorganisms within radiative Williamson fluid flows (2023, 38 citations), has drawn particular attention from the research community, with his broader portfolio accumulating over 80 citations in a remarkably short timeframe. This rapid recognition signals Tabrez's growing influence in computational fluid dynamics and nanoscience, positioning him as a promising voice in next-generation thermal and bioconvective flow research.
Research Focus
Key Achievements
Top Papers
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