0.3 m 1.1 m O9 m 0.55 m in the figure below, find the force applied to pin B when the vehice is moving at its constant maximum velocity of v = 12.8 m/s. Pin A sits in a frictioniess siot on the ink AB and the mass of the link AB that is connecting the wheels is m - 15 kg. Assume 0= 45°.
0.3 m 1.1 m O9 m 0.55 m in the figure below, find the force applied to pin B when the vehice is moving at its constant maximum velocity of v = 12.8 m/s. Pin A sits in a frictioniess siot on the ink AB and the mass of the link AB that is connecting the wheels is m - 15 kg. Assume 0= 45°.
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1.1 m
O9 m
0.55 m
In the figure below, find the force applied to pin B when the vehicle is moving at its constant maximum veklocity of v = 12.8 m/s. Pin A sits in a frictionless slot on the link AB and the mass of the link AB
that is connecting the wheels is m = 15 kg. Assume 0= 45".
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Transcribed Image Text:0.3 m
1.1 m
O9 m
0.55 m
In the figure below, find the force applied to pin B when the vehicle is moving at its constant maximum veklocity of v = 12.8 m/s. Pin A sits in a frictionless slot on the link AB and the mass of the link AB
that is connecting the wheels is m = 15 kg. Assume 0= 45".
FB
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