Four objects are held in position by massless rigid rods as indicated in the figure above. The masses of the objects are: m₁ = 8.6 kg, m₂ = 2.69 kg, m3 = 2.68 kg, andm4 = 21.47 kg. For each of the possible axes of rotation (x, y, and through the origin, the z-axis)what torque would be necessary for the system shown in the above diagram to have an angular acceleration of 2.08 s-2. (The dimensions in the diagram are A = 12.87 m, B = 18.69 m) T₁ = T₂ =

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Four objects are held in position by massless rigid rods as indicated in the figure above. The masses of the objects are: m₁ = 8.6 kg, m₂ =
2.69 kg, m3 = 2.68 kg, andm4 = 21.47 kg. For each of the possible axes of rotation (x, y, and through the origin, the z-axis)what torque would
be necessary for the system shown in the above diagram to have an angular acceleration of 2.08 s-2. (The dimensions in the diagram are A =
12.87 m, B = 18.69 m)
T₁ =
Ty =
T₂ =
Transcribed Image Text:Four objects are held in position by massless rigid rods as indicated in the figure above. The masses of the objects are: m₁ = 8.6 kg, m₂ = 2.69 kg, m3 = 2.68 kg, andm4 = 21.47 kg. For each of the possible axes of rotation (x, y, and through the origin, the z-axis)what torque would be necessary for the system shown in the above diagram to have an angular acceleration of 2.08 s-2. (The dimensions in the diagram are A = 12.87 m, B = 18.69 m) T₁ = Ty = T₂ =
m
A
E
#
E
E
Origin
ww
B
m₂
Transcribed Image Text:m A E # E E Origin ww B m₂
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