Three objects Mi (60 kg), M2 (40 kg) and M3 (80 kg) are connected by pulleys (negligible mass and friction) as shown in Figure Q2(a). A force of 600 N is used to pull object M3, which in turn pull objects M2 and M1. Calculate the tension in the ropes Ti and T2, and acceleration of the system. Given that the coefficient of friction between the surface and objects is 0.43. Mi M2 T2 37° 53° M3

International Edition---engineering Mechanics: Statics, 4th Edition
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ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
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Chapter7: Dry Friction
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Problem 7.78P: The figure shows a steel bar being processed by a rolling mill. Given that P=80kN and r =0.016,...
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Three objects Mi (60 kg), M2 (40 kg) and M3 (80 kg) are connected by pulleys
(negligible mass and friction) as shown in Figure Q2(a). A force of 600 N is used to
pull object M3, which in turn pull objects M2 and M1. Calculate the tension in the ropes
Ti and T2, and acceleration of the system. Given that the coefficient of friction between
the surface and objects is 0.43.
M1
M2
T2
37
53°
M3
F
Transcribed Image Text:Three objects Mi (60 kg), M2 (40 kg) and M3 (80 kg) are connected by pulleys (negligible mass and friction) as shown in Figure Q2(a). A force of 600 N is used to pull object M3, which in turn pull objects M2 and M1. Calculate the tension in the ropes Ti and T2, and acceleration of the system. Given that the coefficient of friction between the surface and objects is 0.43. M1 M2 T2 37 53° M3 F
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