You are analyzing the motion of a large flywheel that has radius 0.600 m. In one...
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You are analyzing the motion of a large flywheel that has radius 0.600 m. In one test run, the wheel starts from rest and turns in a horizontal plane with constant angular acceleration. An accelerometer on the rim of the flywheel measures the magnitude of the resultant acceleration a of a point on the rim of the flywheel as a function of the angle 0-00 through which the wheel has turned. You collect these results: 0-00 (rad) 0.50 1.00 1.50 2.00 2.50 3.00 3.50 4.00 a (m/s) 0.678 1.07 1.52 1.98 2.45 2.92 3.39 3.87 Y Part B Use the slope from part A to find the angular acceleration of the flywheel Express your answer in radians per second squared. VE a = Submit Part C V= Request Answer Submit What is the linear speed of a point on the rim of the flywheel when the wheel has turned through an angle of 135? Express your answer with the appropriate units. A Value Request Answer Units PROVE SPARTA ? rad/s You are analyzing the motion of a large flywheel that has radius 0.600 m. In one test run, the wheel starts from rest and turns in a horizontal plane with constant angular acceleration. An accelerometer on the rim of the flywheel measures the magnitude of the resultant acceleration a of a point on the rim of the flywheel as a function of the angle 0-00 through which the wheel has turned. You collect these results: 0-00 (rad) 0.50 1.00 1.50 2.00 2.50 3.00 3.50 4.00 a (m/s) 0.678 1.07 1.52 1.98 2.45 2.92 3.39 3.87 Y Part B Use the slope from part A to find the angular acceleration of the flywheel Express your answer in radians per second squared. VE a = Submit Part C V= Request Answer Submit What is the linear speed of a point on the rim of the flywheel when the wheel has turned through an angle of 135? Express your answer with the appropriate units. A Value Request Answer Units PROVE SPARTA ? rad/s
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SOLUTION Part B To find the angular acceleration of the flywheel we can use the slope of the tangent ... View the full answer
Related Book For
University Physics with Modern Physics
ISBN: 978-0321696861
13th edition
Authors: Hugh D. Young, Roger A. Freedman, A. Lewis Ford
Posted Date:
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