Thermally Radioactive Bioconvection of Magnetized Sutterby Nanofluid over a Stretching Cylinder

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Abstract

Abstract The current article analyzes bioconvection aspects in Sutterby nanofluid flow across stretching cylinder with conductivity that varies with temperature. The non-linear thermal radiation and higher-order slip is scrutinized. The behavior of mass diffusivity and activation energy is investigated in this communication. The main object of this article is to enhance the heat transformation rate. A system of PDEs addresses the current physical problem. The appropriate similarity transformation reduces the PDEs system to the ODEs system. The set of non-linear ODEs is numerically solved utilizing bvp4c code built-in MATLAB. The result of the problem is discussed graphically. It is found that velocity profile diminishes for the boosted values of 1st order and 2nd order slips parameters while temperature enhances by increasing the values of non-linear thermal radiations. Moreover, the value of Nusselt number, skin fraction coefficient, and Sherwood number are evaluated through tables.

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last seen: 2026-05-19T01:45:01.086888+00:00