In the figure, block 1 has mass m₁ = 460 g, block 2 has mass m₂ = 590 g, and the pulley is on a frictionless horizontal axle and has radius R = 4.7 cm. When released from rest, block 2 falls 75 cm in 5.3 s without the cord slipping on the pulley. (a) What is the magnitude of the acceleration of the blocks? What are (b) tension T2 (the tension force on the block 2) and (c) tension T₁ (the tension force on the block 1)? (d) What is the magnitude of the pulley's angular acceleration? (e) What is its rotational inertia? Caution: Try to avoid rounding off answers along the way to the solution. Use g = 9.81 m/s². ៣. m2

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
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Chapter5: More Applications Of Newton’s Laws
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In the figure, block 1 has mass m₁ = 460 g, block 2 has mass m2 = 590 g, and the pulley is on a frictionless horizontal axle and has radius
R = 4.7 cm. When released from rest, block 2 falls 75 cm in 5.3 s without the cord slipping on the pulley. (a) What is the magnitude of
the acceleration of the blocks? What are (b) tension T2 (the tension force on the block 2) and (c) tension T₁ (the tension force on the
block 1)? (d) What is the magnitude of the pulley's angular acceleration? (e) What is its rotational inertia? Caution: Try to avoid
rounding off answers along the way to the solution. Use g = 9.81 m/s².
(a) Number
Units
(b) Number i
Units
(c) Number
Units
(d) Number
Units
(e) Number
Units
m₁
m2
>
Transcribed Image Text:In the figure, block 1 has mass m₁ = 460 g, block 2 has mass m2 = 590 g, and the pulley is on a frictionless horizontal axle and has radius R = 4.7 cm. When released from rest, block 2 falls 75 cm in 5.3 s without the cord slipping on the pulley. (a) What is the magnitude of the acceleration of the blocks? What are (b) tension T2 (the tension force on the block 2) and (c) tension T₁ (the tension force on the block 1)? (d) What is the magnitude of the pulley's angular acceleration? (e) What is its rotational inertia? Caution: Try to avoid rounding off answers along the way to the solution. Use g = 9.81 m/s². (a) Number Units (b) Number i Units (c) Number Units (d) Number Units (e) Number Units m₁ m2 >
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