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Lecture
Suspension Viscosity and Flow Regimes
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Rheology of Liquids: Constitutive Laws and Viscosity Models
Covers the rheology of liquids, including viscometric flows and non-Newtonian flows.
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Explores rheology, mixing, and granulation processes in powder treatment for ceramics and superplasticizers in suspensions.
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Covers arterial flow modeling, shear stress, boundary conditions, viscosity impact, and non-Newtonian blood flow.
Rheology of Suspensions and Emulsions
Explores the rheology of suspensions, emulsions, and complex fluids, including non-Newtonian flows and viscometric flows.
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Discusses grading final reports based on PRL format and acoustic perturbations in controlling suspension viscosity.
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Explores viscosity in Newtonian fluids, discussing shear stress, shear strain rate, and compressibility, with examples of shear thickening and shear thinning behaviors.
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Explores turbulence characteristics, simulation methods, and modeling challenges, providing guidelines for choosing and validating turbulence models.
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Explores rheology of solids and liquids, including viscometric flows and non-Newtonian flows.
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