s from a string wrapped around the large pulley, while a second block of mass M = 7.00 k K. Use g = 10 m/s².
s from a string wrapped around the large pulley, while a second block of mass M = 7.00 k K. Use g = 10 m/s².
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![A particular double pulley consists of a small pulley of radius 20 cm mounted on a large pulley of radius 50 cm, as shown in the figure. The pulleys rotate together, rather than independently. A block
of mass m = 3.00 kg hangs from a string wrapped around the large pulley, while a second block of mass M = 7.00 kg hangs from the small pulley. Each pulley has a mass of 0.500 kg and is in the
form of a uniform solid disk. Use g = 10 m/s?.
M
m
(a) What is the magnitude of the acceleration of the block attached to the large pulley?
0.1942
X m/s2
(b) What is the magnitude of the acceleration of the block attached to the small pulley?
0.4854
x m/s?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5ea9d1b2-8f99-46bf-8a92-8bbfd1b1e697%2F3bb31f79-a8f9-489c-aa74-a7f6f1118164%2Fhzh2dc_processed.png&w=3840&q=75)
Transcribed Image Text:A particular double pulley consists of a small pulley of radius 20 cm mounted on a large pulley of radius 50 cm, as shown in the figure. The pulleys rotate together, rather than independently. A block
of mass m = 3.00 kg hangs from a string wrapped around the large pulley, while a second block of mass M = 7.00 kg hangs from the small pulley. Each pulley has a mass of 0.500 kg and is in the
form of a uniform solid disk. Use g = 10 m/s?.
M
m
(a) What is the magnitude of the acceleration of the block attached to the large pulley?
0.1942
X m/s2
(b) What is the magnitude of the acceleration of the block attached to the small pulley?
0.4854
x m/s?
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