A rotor has an inner radius of 10.0 cm and an outer radius of 25.0 cm. It is fixed to a frictionless axle that goes through its center. The moment of inertia (I) of the rotor is 0.0235 kg m2. A set of 5 constant forces act on the rotor, as shown in the diagram below. c)Assuming it starts from rest at t = 0, how long does it take for the rotor to reach an angular speed of 565 revolutions pre minute (rpm)? Give your answer in seconds. d) ) At t = 2.50 seconds, how many complete revolutions will the rotor have made?
A rotor has an inner radius of 10.0 cm and an outer radius of 25.0 cm. It is fixed to a frictionless axle that goes through its center. The moment of inertia (I) of the rotor is 0.0235 kg m2. A set of 5 constant forces act on the rotor, as shown in the diagram below. c)Assuming it starts from rest at t = 0, how long does it take for the rotor to reach an angular speed of 565 revolutions pre minute (rpm)? Give your answer in seconds. d) ) At t = 2.50 seconds, how many complete revolutions will the rotor have made?
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A rotor has an inner radius of 10.0 cm and an outer radius of 25.0 cm. It is fixed to a frictionless axle that goes through its center. The moment of inertia (I) of the rotor is 0.0235 kg m2. A set of 5 constant forces act on the rotor, as shown in the diagram below.
c)Assuming it starts from rest at t = 0, how long does it take for the rotor to reach an angular speed of 565 revolutions pre minute (rpm)? Give your answer in seconds.
d) ) At t = 2.50 seconds, how many complete revolutions will the rotor have made?
![35.0 N
25.0 N
37.5 N
27.5°
12.5 N
15.5 N](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc1af4cad-3a82-431e-a6a5-54b2babd4110%2Fb188b91c-fe2e-4630-b2ce-858db45ee56c%2Fzj6pxpq_processed.jpeg&w=3840&q=75)
Transcribed Image Text:35.0 N
25.0 N
37.5 N
27.5°
12.5 N
15.5 N
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