A force of 12 N is applied to a cylinder of radius r = 0.35 m, as shown in Figure Q2(a). The moment of inertia of this cylinder is J = 6 kg.m². Determine: (i) The magnitude and direction of the torque produced on the cylinder. (ii) The angular acceleration a of the cylinder.

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r = 0.35 m
J = 6 kg.m²
30
F = 12 N
Figure 2(a)
Transcribed Image Text:r = 0.35 m J = 6 kg.m² 30 F = 12 N Figure 2(a)
(a) A force of 12 N is applied to a cylinder of radius r = 0.35 m, as shown in Figure Q2(a). The
moment of inertia of this cylinder is J = 6 kg.m². Determine:
(i) The magnitude and direction of the torque produced on the cylinder.
(ii) The angular acceleration a of the cylinder.
Transcribed Image Text:(a) A force of 12 N is applied to a cylinder of radius r = 0.35 m, as shown in Figure Q2(a). The moment of inertia of this cylinder is J = 6 kg.m². Determine: (i) The magnitude and direction of the torque produced on the cylinder. (ii) The angular acceleration a of the cylinder.
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