In the figure, two 6.20 kg blocks are connected by a massless string over a pulley of radius 2.40 cm and ro- tational inertia 7.40×10-4 kgcdotm². The string does not slip on the pulley; it is not known whether there is friction between the table and the sliding block; the pulley's axis is frictionless. When this system is relea- sed from rest, the pulley turns through 0.650 rad in 91.0 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 acce- leration, (c) string tension T1, and (d) string tension T2?

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In the figure, two 6.20 kg blocks are connected by a
massless string over a pulley of radius 2.40 cm and ro-
tational inertia 7.40×10-4 kgcdotm?. The string does
not slip on the pulley; it is not known whether there
is friction between the table and the sliding block; the
pulley's axis is frictionless. When this system is relea-
sed from rest, the pulley turns through 0.650 rad in
91.0 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 acce-
leration, (c) string tension Tı, and (d) string tension
T2?
Transcribed Image Text:In the figure, two 6.20 kg blocks are connected by a massless string over a pulley of radius 2.40 cm and ro- tational inertia 7.40×10-4 kgcdotm?. The string does not slip on the pulley; it is not known whether there is friction between the table and the sliding block; the pulley's axis is frictionless. When this system is relea- sed from rest, the pulley turns through 0.650 rad in 91.0 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 acce- leration, (c) string tension Tı, and (d) string tension T2?
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