Theses most similar to those of author Slonaker, James (James C.)
Wheel design optimization for locomotion in granular beds using resistive force theory (2015) read it
Scale and computer modeling of wheeled vehicles for planetary exploration
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Physical experimentation and actuated wheel design for granular locomotion using Resistive Force Theory
Motley, David Carrington (2016)
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Wheel design optimization for locomotion in granular beds using resistive force theory
Slonaker, James (James C.) (2016)
- Advisor: Kenneth Kamrin
- Department of Mechanical Engineering
- Advisor: Marc Raibert
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Wheel design optimization for locomotion in granular beds using resistive force theory (2016) read it
Designing a high-efficiency hydrostatic bicycle transmission
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Wheel design optimization for locomotion in granular beds using resistive force theory
Slonaker, James (James C.) (2015)
- Advisor: Ken Kamrin
- Department of Mechanical Engineering
Let there be Luxo : a jumping lamp sheds light on heavy legged locomotion
Paluska, Daniel Joseph, 1974- (1997)
- Advisor: Gill A. Pratt, Conrad Wall, II
- Department of Mechanical Engineering
Physical experimentation and actuated wheel design for granular locomotion using Resistive Force Theory
Motley, David Carrington (2016)
- Advisor: Ken Kamrin
- Department of Mechanical Engineering