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Related lectures (30)
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Numerical Analysis of Incompressible Fluid Flow
Covers the software system Channelflow for numerical analysis of incompressible fluid flow in channel geometries, including spectral methods and invariant solutions.
Internal Forced Convection: Hydrodynamic Aspects
Covers the hydrodynamic and thermal aspects of internal forced convection.
Control Volume and System
Explains control volume, system, mass conservation laws, and Reynolds transport theorem with practical examples and theoretical derivations.
Thermodynamics: Fluid Statics
Introduces fluid statics basics, covering pressure, compressibility, forces on volume elements, and fundamental relations in thermodynamics.
Fluid Mechanics: Foundations and Applications
Covers the foundations of fluid mechanics, focusing on flow problem descriptions and solutions.
Micro and Nanosystems Modeling
Explores physical models for micro and nanosystems, including fluid flow and heat transfer.
Fluid Forces: Surface and Buoyancy
Covers fluid forces on surfaces, Archimedes' principle, and Bernoulli's equation.
Hydrostatics: Pressure and Archimedes' Principle
Explores hydrostatics, pressure units, forces in fluids, and Archimedes' principle, emphasizing buoyancy and upthrust force calculations.
Bernoulli's Theorem: Applications and Conservation Laws
Explores Bernoulli's theorem, conservation laws, and Venturi tube applications in fluid dynamics.
Viscosity experiment
Covers a viscosity experiment using a falling sphere viscometer to determine fluid viscosity and understand the forces involved.