In the figure, wheel A of radius ra = 10.4 cm is coupled by belt B to wheel C of radius rc = 23.9 cm. The angular speed of wheel A is increased from rest at a constant rate of 2.27 rad/s. Find the time needed for wheel C to reach an angular speed of 136 rev/min, assuming the belt does not slip. (Hint: If the belt does not slip, the linear speeds at the two rims must be equal.)

Physics for Scientists and Engineers: Foundations and Connections
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Chapter13: Rotation Ii: A Conservation Approach
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Problem 49PQ: A turntable (disk) of radius r = 26.0 cm and rotational inertia0.400 kg m2 rotates with an angular...
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In the figure, wheel A of radius rA = 10.4 cm is coupled by belt B to wheel C of radius rc = 23.9 cm. The angular speed of
wheel A is increased from rest at a constant rate of 2.27 rad/s. Find the time needed for wheel C to reach an angular
speed of 136 rev/min, assuming the belt does not slip. (Hint: If the belt does not slip, the linear speeds at the two rims
must be equal.)
Number i
Units
Transcribed Image Text:In the figure, wheel A of radius rA = 10.4 cm is coupled by belt B to wheel C of radius rc = 23.9 cm. The angular speed of wheel A is increased from rest at a constant rate of 2.27 rad/s. Find the time needed for wheel C to reach an angular speed of 136 rev/min, assuming the belt does not slip. (Hint: If the belt does not slip, the linear speeds at the two rims must be equal.) Number i Units
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