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Gliding Paper Experiment
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Related lectures (32)
Frontwing Design: EPFL Racing Team
Explores the design of a frontwing for an electric race car to enhance performance through aerodynamics.
Bernoulli's Equation and Viscosity
Explores Bernoulli's equation, viscosity effects, shear stress, Poiseuille's law, Reynolds number, flow types, and lift/drag forces.
Kolmogorov Turbulence Theory
Explores Kolmogorov's turbulence theory, covering Navier-Stokes equations, conservation laws, energy budgets, and experimental laws of turbulence.
Boundary Layers: Recap and Effects on Drag and Lift
Covers the importance of boundary layers, viscosity effects on drag and lift.
Friction and Ballistics
Covers the concepts of friction and ballistics, including dry and viscous friction forces, and ballistic motion.
Drag on a Sphere and Newtonian Fluid Mechanics
Explores drag on a sphere in Newtonian fluid mechanics, focusing on key parameters and the significance of the Reynolds number in determining the drag force.
Ascent to Space and Re-entry
MOOC: Space Mission Design and Operations
Explores orbit insertion, losses during ascent, shuttle missions, re-entry, and final approach.
Sailboat Dynamics: Key Parameters and Drag Forces
Explores sailboat dynamics, key parameters, and drag forces in internally dominated flow.
Turbulence: Drag Coefficient and Dissipation Rate
Explores drag coefficient, dissipation rate, laws of dissipation, and Kolmogorov K41 theory in turbulent flows.
Orbital Decay and Lifetime
MOOC: Space Mission Design and Operations
Explores orbital decay in Low Earth Orbit, drag equations, ballistic coefficient, and satellite data.
Fluid-Structure Interactions: Vortex Dynamics and Energy Harvesting
Delves into unsteady deformations of elastic structures driven by vortex shedding and their application in energy harvesting.
Sailboat Keel Design
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Explores sailboat keel design and its impact on performance, emphasizing the importance of reducing induced drag.
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Viscosity experiment
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Covers a viscosity experiment using a falling sphere viscometer to determine fluid viscosity and understand the forces involved.
Prandtl-Meyer Flows: Aero
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Explores lift and drag forces, supersonic flow, and wave drag in Prandtl-Meyer flows.
Fluid Dynamics: Viscous Flow
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Explores viscous fluid dynamics, including drag force, lift force, turbulence, viscosity, and the Magnus effect.
Thermal Instabilities: Rayleigh-Benard Analysis
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Explores fluid instabilities, focusing on Rayleigh-Benard analysis and key concepts like buoyancy and temperature gradients.
Spring Clutches and Torque Limiters
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Explains energy injection and reduction in spring clutches and torque limiters.
Drag on a Sphere and Newtonian Fluid Mechanics
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Covers the analysis of drag on a sphere in Newtonian fluid mechanics, focusing on key parameters and the significance of Reynolds number.
Boundary Layer: Blasius Solution
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Explores the Blasius solution for boundary layer analysis and drag force calculations.
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