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NDSU - North Dakota State... X Bb My Courses - Blackboard L... x & LON-CAPA Walking on a C... x C Chegg Study | Guided Solu... x O triton.physics.ndsu.nodak.edu/res/ndsu/kyletstrand/Phys211Fall2015Homework12/WalkingOnCircularPlatform.problem?symbDuploaded%2fr v Q Search A large horizontal circular platform (M-97.9 kg, r=4.57 m) rotates about a frictionless vertical axle. A student (m=72.09 kg) walks slowly from the rim of the platform toward the center. The angular velocity w of the system is 3.4 rad/s when the student is at the rim. Find the moment of inertia of platform through the center with respect to the z-axis. Submit Answer Tries 0/5 Find the moment of inertia of the student about the center axis (while standing at the rim) of the platform. Submit Answer Tries 0/5 Find the moment of inertia of the student about the center axis while the student is standing 1.12 m from the center of the platform. Submit Answer Tries 0/5 Find the angular speed when the student is 1.12 m from the center of the platform. Submit Answer Tries 0/5 6:29 PM all 11/23/2015 II NDSU - North Dakota State... X Bb My Courses - Blackboard L... x & LON-CAPA Walking on a C... x C Chegg Study | Guided Solu... x O triton.physics.ndsu.nodak.edu/res/ndsu/kyletstrand/Phys211Fall2015Homework12/WalkingOnCircularPlatform.problem?symbDuploaded%2fr v Q Search A large horizontal circular platform (M-97.9 kg, r=4.57 m) rotates about a frictionless vertical axle. A student (m=72.09 kg) walks slowly from the rim of the platform toward the center. The angular velocity w of the system is 3.4 rad/s when the student is at the rim. Find the moment of inertia of platform through the center with respect to the z-axis. Submit Answer Tries 0/5 Find the moment of inertia of the student about the center axis (while standing at the rim) of the platform. Submit Answer Tries 0/5 Find the moment of inertia of the student about the center axis while the student is standing 1.12 m from the center of the platform. Submit Answer Tries 0/5 Find the angular speed when the student is 1.12 m from the center of the platform. Submit Answer Tries 0/5 6:29 PM all 11/23/2015 II
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Given that Cicular platform of massM 979kg Radius r 457m Mass of the student is m 7209kg The m... View the full answer
Related Book For
Statistics for Management and Economics Abbreviated
ISBN: 978-1285869643
10th Edition
Authors: Gerald Keller
Posted Date:
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