A 34.0 kg mass (m) is suspended by the cable assembly as shown in the figure. The cables have no mass of their own. The cable to the left (7₁) of the mass makes an angle of 0.00" with the horizontal, and the cable to the right (7₂) makes an angle (0₂) of 38.5. If the mass is at rest, what is the tension in each of the cables, T₁ and T₂? The acceleration due to gravity is g = 9.81 m/s².
A 34.0 kg mass (m) is suspended by the cable assembly as shown in the figure. The cables have no mass of their own. The cable to the left (7₁) of the mass makes an angle of 0.00" with the horizontal, and the cable to the right (7₂) makes an angle (0₂) of 38.5. If the mass is at rest, what is the tension in each of the cables, T₁ and T₂? The acceleration due to gravity is g = 9.81 m/s².
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
Transcribed Image Text:A 34.0 kg mass (m) is suspended by the cable assembly as
shown in the figure. The cables have no mass of their own.
The cable to the left (7₁) of the mass makes an angle of 0.00*
with the horizontal, and the cable to the right (T₂) makes an
angle (0₂) of 38.5. If the mass is at rest, what is the tension
in each of the cables, T, and T₂? The acceleration due to
gravity is g = 9.81 m/s².
T₁ =
T₂ =
N
N
T₁
m
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