19. A string is wrapped several times around the rim of a small hoop with radius 0.0800 m and mass 0.180 kg. If the free end of the string is held in place and the hoop is released from rest, calculate a) the tension in the string while the hoop descends as the string unwinds; b) the time it takes the hoop to descend 0.750 m; c) the angular speed of the rotating hoop after it has descended 0.750 m. [This is very similar to the problem you solved as part of the TP Challenge Lab.] 0.0800

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19 Please draw all free body diagrams, label all equations used and if there is an inertia equation, please solve for it, thanks!
19. A string is wrapped several times around the rim of a small hoop with radius 0.0800 m and mass 0.180 kg.
If the free end of the string is held in place and the hoop is released from rest, calculate a) the tension in the
string while the hoop descends as the string unwinds; b) the time it takes the hoop to descend 0.750 m; c) the
angular speed of the rotating hoop after it has descended 0.750 m. [This is very similar to the problem you
solved as part of the TP Challenge Lab.]
0-
0.0800
Transcribed Image Text:19. A string is wrapped several times around the rim of a small hoop with radius 0.0800 m and mass 0.180 kg. If the free end of the string is held in place and the hoop is released from rest, calculate a) the tension in the string while the hoop descends as the string unwinds; b) the time it takes the hoop to descend 0.750 m; c) the angular speed of the rotating hoop after it has descended 0.750 m. [This is very similar to the problem you solved as part of the TP Challenge Lab.] 0- 0.0800
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