of the string stationary, the cylinder is dropped from a height of 2.50 [m] from the ground. Right before it hits the ground, the cylinder was found to have an angular velocity of 9.00 [rad/s]. Assuming that the string does not slip or stretch as the cylinder descends and rotates, what is the angular acceleration of the cylinder?

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Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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A solid cylinder of radius 0.300[m] is wrapped with a massless string to simulate a yo-yo. Holidng the free end of the string stationary, the cylinder is dropped from a height of 2.50 [m] from the ground. Right before it hits the ground, the cylinder was found to have an angular velocity of 9.00 [rad/s]. Assuming that the string does not slip or stretch as the cylinder descends and rotates, what is the angular acceleration of the cylinder?
A. 1.83 [rad/s2]
B. 1.94 [rad/s2]
C. 5.71 [rad/s2]
D. 6.92 [rad/s2]

Yo-yo. A solid cylinder of radius 0.300[m] is wrapped with a massless string to simulate a
yo-yo. Holidng the free end of the string stationary, the cylinder is dropped from a height
of 2.50 [m] from the ground. Right before it hits the ground, the cylinder was found to have
an angular velocity of 9.00 [rad/s]. Assuming that the string does not slip or stretch as the
cylinder descends and rotates, what is the angular acceleration of the cylinder?
A. 1.83 [rad/s²]
B. 1.94 [rad/s²]
C. 5.71 (rad/s?]
D. 6.92 [rad/s²]
Transcribed Image Text:Yo-yo. A solid cylinder of radius 0.300[m] is wrapped with a massless string to simulate a yo-yo. Holidng the free end of the string stationary, the cylinder is dropped from a height of 2.50 [m] from the ground. Right before it hits the ground, the cylinder was found to have an angular velocity of 9.00 [rad/s]. Assuming that the string does not slip or stretch as the cylinder descends and rotates, what is the angular acceleration of the cylinder? A. 1.83 [rad/s²] B. 1.94 [rad/s²] C. 5.71 (rad/s?] D. 6.92 [rad/s²]
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