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Aerodynamics
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CC BY-NC-SA
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This course extends fluid mechanic concepts from Unified Engineering to the aerodynamic performance of wings and bodies in sub/supersonic regimes. 16.100 generally has four components: subsonic potential flows, including source/vortex panel methods; viscous flows, including laminar and turbulent boundary layers; aerodynamics of airfoils and wings, including thin airfoil theory, lifting line theory, and panel method/interacting boundary layer methods; and supersonic and hypersonic airfoil theory. Course material varies each year depending upon the focus of the design problem.

Subject:
Applied Science
Engineering
Material Type:
Full Course
Provider:
MIT
Provider Set:
MIT OpenCourseWare
Author:
Darmofal, David
Date Added:
09/01/2005
Gravity Design Brief
Conditional Remix & Share Permitted
CC BY-NC-SA
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Students are going to be working in an Engineering Design team to create a car using K’Nex pieces. They will work through 3 iterations of design in a goal to have their car travel 600 CM. They will use a ramp (defined in the lesson) to have their car gain momentum. They will also create a 3D Printed wheel to be attached to their design and determine if this has improved their design.

Teacher/Student Guide
Links to 3D Design Videos
Project Rubric

Subject:
Applied Science
Engineering
Mathematics
Measurement and Data
Physical Science
Physics
Material Type:
Activity/Lab
Date Added:
04/29/2021
Introduction to Biou
Only Sharing Permitted
CC BY-NC-ND
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The general objective of this module is to introduce students to the software and operating system running on the PSC's BioU system.

Subject:
Applied Science
Material Type:
Full Course
Date Added:
06/14/2017