geThe string does not slip on the pulley it is not known whether there is friction between the table and the sliding blo mulley's axis is frictionless When this sstem is released from rest, the pulley turms through 0600 rad in 183 ms and the a he blocks is constant. What are lal the magnitude of the pulley's angular acceleration the magnitude of either block's d string temsion Ts and d string tension T Assume free-tall acceleration to be equal to 981 mis.

College Physics
11th Edition
ISBN:9781305952300
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Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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In the higure, two 8.50 kg blocks are connected by a massiless string over a pulley of radius 250 cm and rotational inertia 740- 10
kgm. The string does not slip on the pulleyit is not known whether there is friction between the table and the sliding block the
pulley's axis is frictionless. When this system is released from rest, the pulley burns through 0.600 rad in 183 ms and the acceleration of
the blocks is constant. What are (a) the magnitude of the pulley's angular acceleration, b) the magnitude of either block's acceleration
(e) string tension Ts, and (d) string tension TatAssume free-fal acceleration to be equal to 981 ms
(a) Number
Units
Units
(b) Number
Units
d Number
Units
4) Number
Transcribed Image Text:In the higure, two 8.50 kg blocks are connected by a massiless string over a pulley of radius 250 cm and rotational inertia 740- 10 kgm. The string does not slip on the pulleyit is not known whether there is friction between the table and the sliding block the pulley's axis is frictionless. When this system is released from rest, the pulley burns through 0.600 rad in 183 ms and the acceleration of the blocks is constant. What are (a) the magnitude of the pulley's angular acceleration, b) the magnitude of either block's acceleration (e) string tension Ts, and (d) string tension TatAssume free-fal acceleration to be equal to 981 ms (a) Number Units Units (b) Number Units d Number Units 4) Number
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