Awheel of radius 0.297 m, which is moving initially at 44.7 m/s, rolls to a stop in 262 m. Calculate the magnitudes of (a) its linear acceleration and (b) its angular acceleration. (c) The wheel's rotational inertia is 2.93 kg -m² about its central axis. Calculate the magnitude of the torque about the central axis due to friction on the wheel. (a) Number Units (b) Number Units (c) Number i Units

University Physics Volume 1
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Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter11: Angular Momentum
Section: Chapter Questions
Problem 54P: A cylinder with rotational inertia I1=2.0kgm2 rotates clockwise about a vertical axis through its...
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A wheel of radius 0.297 m, which is moving initially at 44.7 m/s, rolls to a stop in 262 m. Calculate the magnitudes of (a) its linear
acceleration and (b) its angular acceleration. (c) The wheel's rotational inertia is 2.93 kg · m² about its central axis. Calculate the
magnitude of the torque about the central axis due to friction on the wheel.
(a) Number
i
Units
(b) Number
i
Units
(c) Number
i
Units
Transcribed Image Text:A wheel of radius 0.297 m, which is moving initially at 44.7 m/s, rolls to a stop in 262 m. Calculate the magnitudes of (a) its linear acceleration and (b) its angular acceleration. (c) The wheel's rotational inertia is 2.93 kg · m² about its central axis. Calculate the magnitude of the torque about the central axis due to friction on the wheel. (a) Number i Units (b) Number i Units (c) Number i Units
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