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Elementary,Middle School,High School,College,University,PHD
| Teaching Since: | May 2017 |
| Last Sign in: | 398 Weeks Ago, 2 Days Ago |
| Questions Answered: | 66690 |
| Tutorials Posted: | 66688 |
MCS,PHD
Argosy University/ Phoniex University/
Nov-2005 - Oct-2011
Professor
Phoniex University
Oct-2001 - Nov-2016
Shown below is an inverted pendulum, pivoted about a fixed point, O. For this system
A??? Derive the equation of motion of the inverted pendulum, using Work-Energy principles
A??? Derive the equation of motion of the inverted pendulum, using the differential form of the angular momentum principle
A??? Derive the equation of motion of the inverted pendulum, using the differential form of the linear momentum principle

Show transcribed image text Shown below is an inverted pendulum, pivoted about a fixed point, O. For this system A???½ Derive the equation of motion of the inverted pendulum, using Work-Energy principles A???½ Derive the equation of motion of the inverted pendulum, using the differential form of the angular momentum principle A???½ Derive the equation of motion of the inverted pendulum, using the differential form of the linear momentum principle
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