The system in Figure Q6 is developed to gives motion for cylinders A and B. Given the masses of cylinders A and B are 35 kg. Meanwhile, the pulley has a mass of 22 kg with radius of gyration about its center of ko= 100 mm. If the system is released from rest, and cylinder A has moved 2.8 m downward. (a) Calculate the work done for both cylinders, UA and UB. (b) Calculate the velocity for both cylinders, VA and VB.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The system in Figure Q6 is developed to gives motion for cylinders A and B. Given the
masses of cylinders A and B are 35 kg. Meanwhile, the pulley has a mass of 22 kg with radius
of gyration about its center of ko= 100 mm. If the system is released from rest, and cylinder A
has moved 2.8 m downward.
(a)
Calculate the work done for both cylinders, UA and UB.
(b)
Calculate the velocity for both cylinders, VA and VB.
Transcribed Image Text:The system in Figure Q6 is developed to gives motion for cylinders A and B. Given the masses of cylinders A and B are 35 kg. Meanwhile, the pulley has a mass of 22 kg with radius of gyration about its center of ko= 100 mm. If the system is released from rest, and cylinder A has moved 2.8 m downward. (a) Calculate the work done for both cylinders, UA and UB. (b) Calculate the velocity for both cylinders, VA and VB.
150 mm
-75 mm
B
A
Figure Q6
Transcribed Image Text:150 mm -75 mm B A Figure Q6
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