In the link (10 kg) below at time = 0 seconds, the rotational velocity of the link is zero and theta is 0 degrees. A constant torque of 5 N-m is applied to the link. The system is horizontal so gravity can be ignored. 1. Determine the angular velocity after it has made 3 revolutions and is again at 0 degrees. 2. What is the magnitude of the force in the radial direction on the pin joint when the link has completed 3 revolutions? 0.5 m 5 N-m
In the link (10 kg) below at time = 0 seconds, the rotational velocity of the link is zero and theta is 0 degrees. A constant torque of 5 N-m is applied to the link. The system is horizontal so gravity can be ignored. 1. Determine the angular velocity after it has made 3 revolutions and is again at 0 degrees. 2. What is the magnitude of the force in the radial direction on the pin joint when the link has completed 3 revolutions? 0.5 m 5 N-m
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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
Transcribed Image Text:MECHANISM F= MA
In the link (10 kg) below at time 0 seconds, the rotational velocity of the link is zero and theta is o
degrees. A constant torque of 5 N-m is applied to the link. The system is horizontal so gravity can be
ignored.
1. Determine the angular velocity after it has made 3 revolutions and is again at 0 degrees.
2. What is the magnitude of the force in the radial direction on the pin joint when the link has
completed 3 revolutions?
5 N-m
0.5 m
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