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How to survive the Fluid Dynamics exam (Fluid Dynamics with Olivier Cleynen)

Calculating the shear force and power in a turbulent boundary layer (Fluid Dynamics with O. Cleynen)

Calculating shear in a laminar boundary layer (Fluid Dynamics with Olivier Cleynen)

Calculating the thickness of a boundary layer (Fluid Dynamics with Olivier Cleynen)

Basics of the boundary layer (Fluid Dynamics with Olivier Cleynen)

Flow separation: how to predict and avoid it (Fluid Dynamics with Olivier Cleynen)

The 2020 Fluid Dynamics final examination: a briefing (Fluid Dynamics with Olivier Cleynen

Mastering scale effects will save you a lot of money: a cautionary tale (Fluid Dynamics w O Cleynen)

Comparing fluid-induced forces: using force and power coefficients (Fluid Dynamics with O Cleynen)

Figuring out the non-dimensional Navier-Stokes equation (Fluid Dynamics with Olivier Cleynen)

Scaling forces from a small-scale flow up to a real-size flow (Fluid Dynamics with Olivier Cleynen)

Scaling from a reduced-scale flow up to a real-size flow (Fluid Dynamics with Olivier Cleynen)

Scaling the flow around a model car (Fluid Dynamics with Olivier Cleynen)

Calculating a hydrostatic pressure difference on a pipe or turbine (Fluid Dynamics w/ O Cleynen)

Plotting the pressure distribution in a pipe with bends (Fluid Dynamics with Olivier Cleynen)

Adding and subtracting pressure differences to compute turbining or pumping power (Olivier Cleynen)

Calculating pressure losses in a pipe (Fluid Dynamics with Olivier Cleynen)

Debriefing the second peer-graded homework assignment (Fluid Dynamics with Olivier Cleynen)

The very basics of CFD (Fluid Dynamics with Olivier Cleynen)

Bernoulli wants to help Navier and Stokes (Fluid Dynamics with Olivier Cleynen)

Playing with the Navier-Stokes equation (Fluid Dynamics with Olivier Cleynen)

Calculating an acceleration field (Fluid Dynamics with Olivier Cleynen)

Playing with the continuity equation (Fluid Dynamics with Olivier Cleynen)

Worst equation ever? The Navier-Stokes equation for incompressible flow (Fluid Dynamics w O Cleynen)