Thermophoresis in Aqueous Systems
Thermophoretic transport of colloidal particles in aqueous media, driven by temperature gradients, plays a crucial role in applications such as separation, enrichment, and biochemical sensing. The interplay between colloid size, surface chemistry, electrolyte composition, and background temperature govern thermophoretic behavior, though inconsistencies
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Intelligent predictive neural network analysis on LTNE impacts on thermophoretic particle deposition in HFE 7100 nanofluid with Co<sub>3</sub>O<sub>4</sub> nanoparticle. [PDF]
Liaqat S +7 more
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A Microscale Platform for the Comprehensive Analysis of Bacterial Translation Initiation. [PDF]
Vinogradova DS +10 more
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Machine learning examination based on Bayesian regularized algorithm for slip effects on solarized Boger nanofluid with activation energy. [PDF]
Liaqat S +5 more
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Bayesian-regularized neural network analysis of heat and mass transmission in CMC and water hybrid nanofluid with local thermal non equilibrium conditions. [PDF]
Hadidi HM +5 more
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Collective photo-thermophoresis [PDF]
The stationary distributions of thermally interacting thermophoretic colloids under illumination are studied by mathematical analysis of mean field models. This work generalises the model of Golestanian by explicitly modelling the non-local and non-pairwise effect of shading on the collective dynamics.
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Supervised machine learning computing paradigm of energy activation for magnetic nanofluid flow via porous surface with nonlinear variant viscosity. [PDF]
Alhubieshi N +7 more
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Mathematical modeling for nonlinear slippery-hybrid nanofluid flow with radiation impacts and thermophoretic diffusion via a porous medium. [PDF]
Al-Atawi NO.
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Pharmaceutical Stability of Romiplostim: In-use Functional Study Using Microscale Thermophoresis New Strategy and Elisa. [PDF]
Hermosilla J +6 more
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Optimized ANN-based bio-thermodynamic modeling of unsteady flows with coupled nanoparticle-microbial-activation-energy transport in heterogeneous porous media. [PDF]
Almutlg A +3 more
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