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- W4383342875 abstract "The bio-convective unsteady flow of Jeffrey nano-material across bi-directional periodically accelerated surface occupied in porous space is elucidated here. The thermal radiation aspects are utilized to further inspect the thermic transformation analysis. Consequences of activation energy, magnetic force, and chemical reaction are explored for physical implication. Consequent dimensionless expressions elucidated analytically through homotopic analysis technique. Importance of prominent variables on respective distributions and dominant quantities is premeditated graphically and numerically via respective tables. Current study highlighted that velocity periodically slows down along horizontal direction for boosting bio-convective Rayleigh and buoyancy numbers while amplitudes of both velocity components drop for higher magneto-porous constant. It is emphasized that temperature curves display rising trends for amplification in surface heating and radiation constants. Present analysis acknowledged that temperature dominantly falls for higher thermic relaxation constant while similar trend ensures in concentration curves for greater solutal relaxation constant. Obtained outcomes present applications in the heat transfer systems, extrusion phenomenon, chemical processes, industrial applications, engineering systems, heat transfer devices, biofuels, etc." @default.
- W4383342875 created "2023-07-07" @default.
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- W4383342875 date "2023-07-06" @default.
- W4383342875 modified "2023-09-23" @default.
- W4383342875 title "Unsteady bioconvective thermal analysis for non-Newtonian nanofluid via effective Prandtl number approach" @default.
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- W4383342875 doi "https://doi.org/10.1080/17455030.2023.2226764" @default.
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