The 6 kg rod BC connects a 10 kg disk centered at A to a 5 kg rod CD. The motion of the system is controlled by the couple M applied to disk A. Knowing that at the instant shown disk A has an angular velocity of 36 rad/s clockwise and an angular acceleration of 150 rad/s counterclockwise, determine (a) the couple M, (b) the components of the force exerted at Con rod BC. (Mechanism lies on the vertical plane) 400 mm 30 В wnc = 0, aạc = 148.88 (ccw) %3D 30° A 200 mm 250 mm rad cD = 28.83 (cw) D wa- 36는(cw) red acD-239,06분 (cew) isk 150분 (cow)
The 6 kg rod BC connects a 10 kg disk centered at A to a 5 kg rod CD. The motion of the system is controlled by the couple M applied to disk A. Knowing that at the instant shown disk A has an angular velocity of 36 rad/s clockwise and an angular acceleration of 150 rad/s counterclockwise, determine (a) the couple M, (b) the components of the force exerted at Con rod BC. (Mechanism lies on the vertical plane) 400 mm 30 В wnc = 0, aạc = 148.88 (ccw) %3D 30° A 200 mm 250 mm rad cD = 28.83 (cw) D wa- 36는(cw) red acD-239,06분 (cew) isk 150분 (cow)
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The 6 kg rod BC connects a 10 kg disk centered at A to a 5 kg rod CD. The motion of the system is controlled by
the couple M applied to disk A. Knowing that at the instant shown disk A has an angular velocity of 36 rad/s
clockwise and an angular acceleration of 150 rad/s counterclockwise, determine (a) the couple M, (b) the
components of the force exerted at C on rod BC. (Mechanism lies on the vertical plane)
400 mm
30°
rad
B
wac = 0, apc = 148.88 (ccw)
30°-1
200 mm
250 mm
wCD = 28.83 (cw)
DO
aco - 239.06 (ccw)
wdisk = 36 (cw)
adisk= 150 (ccw)
HSUDUI
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