The 40kg and 30kg blocks are attached as shown in the figure below. The length of the rope is constant with the value: rope length = x2 + (x2-c) + x₁ + 2*(half of circumference pulley) Assuming no friction, and neglecting the weights of the pully and cord, determine the tension of the rope at T2 x2 T₁ T₂ 40 kg T₁ T₁ X1 30 kg

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Chapter1: Units, Trigonometry. And Vectors
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QUESTION 7
The 40kg and 30kg blocks are attached as shown in the figure below. The length of the rope is constant with the value:
rope length = x2 + (x2 - c) + x₁ + 2* (half of circumference pulley)
Assuming no friction, and neglecting the weights of the pully and cord, determine the tension of the rope at T2
0000
x2
330
440
110
220
T₁
////
T₂
40 kg
T₁
///
T₁
30 kg
C
X1
Transcribed Image Text:QUESTION 7 The 40kg and 30kg blocks are attached as shown in the figure below. The length of the rope is constant with the value: rope length = x2 + (x2 - c) + x₁ + 2* (half of circumference pulley) Assuming no friction, and neglecting the weights of the pully and cord, determine the tension of the rope at T2 0000 x2 330 440 110 220 T₁ //// T₂ 40 kg T₁ /// T₁ 30 kg C X1
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