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S. M. Eldin

Publications -  354
Citations -  787

S. M. Eldin is an academic researcher. The author has contributed to research in topics: Nanofluid & Medicine. The author has an hindex of 12, co-authored 354 publications receiving 787 citations.

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Heat and mass transport analysis in radiative time dependent flow in the presence of Ohmic heating and chemical reaction, viscous dissipation: An entropy modeling

TL;DR: In this paper , the authors analyzed the thermal transformation and entropy analysis of viscous liquid subject to an induced magnetic field and found that higher approximation of suction variable decays the thermal field and concentration and high entropy rate is found against magnetic Prandtl number.
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Recent Progress in the Design of Advanced MXene/Metal Oxides-Hybrid Materials for Energy Storage Devices

TL;DR: The transition metal oxides (TMOs) nanostructures supported on MXene nanosheets based on van der Waals interactions are facile, highly efficient, and low-cost, with self-assemble properties that can easily control their packing density as mentioned in this paper .
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Analysis of the Thomson and Troian velocity slip for the flow of ternary nanofluid past a stretching sheet

TL;DR: In this paper , the authors analyzed the flow of ternary nanofluid past a stretching sheet subjected to Thomson and Troian slip condition along with the temperature jump, and the results indicated that the increase in the suspension of silver nanoparticles enhanced the temperature and due to density, the velocity of the flow is reduced.
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Classification, Synthetic, and Characterization Approaches to Nanoparticles, and Their Applications in Various Fields of Nanotechnology: A Review

TL;DR: In this paper , the authors illustrate top-down and bottom-up strategies for nanomaterial production, and numerous characterization methodologies, nanoparticle features, and sector-specific applications of nanotechnology.
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Effects of activation energy and chemical reaction on unsteady MHD dissipative Darcy–Forchheimer squeezed flow of Casson fluid over horizontal channel

TL;DR: In this article , the impacts of activation energy and chemical reaction on the magnetohydrodynamic Darcy-Forchheimer squeezed Casson fluid flow through a porous material across the horizontal channel where the two parallel plates are assumed to be in motion.