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1:04:07
Aerodynamics (MIT 16.100 2022) Lecture 12: Three dimensional vortices
1:08:09
Aerodynamics (MIT 16.100) 2022 Lecture 9: Potential flow over symmetric airfoils
1:19:59
Aerodynamics (MIT 16.100) 2022 Lecture 8: incompressible potential flow theory
0:54:25
Aerodynamics (MIT 16.100) 2022 Lecture 5: boundary layer and flow regimes
1:03:01
Aerodynamics (MIT 16.100) 2022 Lecture 4: drag decomposition and boundary layer
0:15:19
Aerodynamics (MIT 16.100) 2022 Lecture 2: drag and energy consumption
0:55:04
Aerodynamics (MIT 16.100) 2022 Lecture 1: applications of aerodynamic forces
0:00:34
Blade Line Simulation in Flow360
0:00:05
Blade Line Model in Flow360
0:00:07
Blade Element Theory simulation in Flow360
0:15:10
How to run CFD for your project
0:10:46
Common mistake in Quiz2 fairing stability
0:11:40
Design Project Considerations
0:09:23
Velocity Fields around a Supersonic Airfoil 2
0:08:05
Pressure Fields on a Supersonic Airfoil 1
0:04:58
Pressure Field on a Supersonic Airplane 1
0:00:05
Pressure around a supersonic airplane at Mach 1.4 computed with Flow360
0:01:50
Simulating XV-15 using Flow360
0:06:46
MIT Aerodynamics Physics and mathematics of momentum conservation Part 1
0:07:56
MIT Aerodynamics Physics and mathematics of momentum conservation Part 3
0:07:02
MIT Aerodynamics Physics and mathematics of momentum conservation Part 4
0:20:24
MIT Aerodynamics Momentum conservation example source sink
0:02:05
MIT Aerodynamics Introduction to 2D incompressible inviscid aerodynamics
0:08:15
MIT Aerodynamics The physics and mathematics of mass conservation Part 2
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