14. Figure shows a uniform disk mounted on a fixed axle. A stationary block of mass 6 kg is connected to this disk with a massless cord that is wrapped Icom = MR²/2 around the rim of the disk. As the block descends down the plane, the cord does not slip and there is only friction over the inclined plane. Find the M= 10 kg R= 25 cm m = 6 kg a) acceleration of the block, b) tension in the cord. He = 0.4 Answers: a) 2.98 m/s²; b) 14.9 N 53°

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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14.
Figure shows a uniform disk mounted on a fixed axle. A stationary block of mass 6 kg is connected to this
disk with a massless cord that is wrapped
Icom = MR²/2
around the rim of the disk. As the block
descends down the plane, the cord does not
slip and there is only friction over the inclined
plane. Find the
M= 10 kg
R= 25 cm
m = 6 kg
a) acceleration of the block,
b) tension in the cord.
Hx = 0.4
Answers: a) 2.98 m/s²; b) 14.9 N
53°
Transcribed Image Text:14. Figure shows a uniform disk mounted on a fixed axle. A stationary block of mass 6 kg is connected to this disk with a massless cord that is wrapped Icom = MR²/2 around the rim of the disk. As the block descends down the plane, the cord does not slip and there is only friction over the inclined plane. Find the M= 10 kg R= 25 cm m = 6 kg a) acceleration of the block, b) tension in the cord. Hx = 0.4 Answers: a) 2.98 m/s²; b) 14.9 N 53°
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