In the figure here, a cylinder having a mass of 2.6 kg can rotate about its central axis through point O. Forces are applied as shown: F1 3.7 N, F2 3.1 N, F- 1.5 N, and Fa-8.6 N. Also, r= 7.1 cm and R- 18 cm. Taking the clockwise direction to be negative, find the angular acceleration of the cylinder. (During the rotation, the forces maintain their same angles relative to the cylinder) Rotation axis Unit Number
In the figure here, a cylinder having a mass of 2.6 kg can rotate about its central axis through point O. Forces are applied as shown: F1 3.7 N, F2 3.1 N, F- 1.5 N, and Fa-8.6 N. Also, r= 7.1 cm and R- 18 cm. Taking the clockwise direction to be negative, find the angular acceleration of the cylinder. (During the rotation, the forces maintain their same angles relative to the cylinder) Rotation axis Unit Number
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F1 = 3.7 N, F2 = 3.1 N, F3 = 1.5 N, and Fa = 8.6 N. Also, r= 7.1 cm and R 18 cm. Taking the clockwise direction to be negative, find the
angular acceleration of the cylinder. (During the rotation, the forces maintain their same angles relative to the cylinder.)
Rotation
axis
Unit
Number"
Transcribed Image Text:In the figure here, a cylinder having a mass of 2.6 kg can rotate about its central axis through point O. Forces are applied as shown:
F1 = 3.7 N, F2 = 3.1 N, F3 = 1.5 N, and Fa = 8.6 N. Also, r= 7.1 cm and R 18 cm. Taking the clockwise direction to be negative, find the
angular acceleration of the cylinder. (During the rotation, the forces maintain their same angles relative to the cylinder.)
Rotation
axis
Unit
Number
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