Figure Q4b shows a pulley system suspended by a hook and a bolt fixed to the ceiling. The pulley system is used to lift a load (FL) of 250 N when an effort force (FE) is applied. Determine the tension force in each support rope, the effort force (FE) and reaction force (FR) necessary to lift and hold a load of 250 N. *Assume that the pulley system is weightless and frictionless. FR winul FE

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e) Figure Q4b shows a pulley system suspended by a hook and a bolt fixed to the
ceiling. The pulley system is used to lift a load (FL) of 250 N when an effort force
(FE) is applied. Determine the tension force in each support rope, the effort force
(FE) and reaction force (FR) necessary to lift and hold a load of 250 N. *Assume
that the pulley system is weightless and frictionless.
FR
+3
www
FE
d₂
d₁ ↑
FL
Figure Q4b (Illustrative and not to scale)
f) Calculate the ideal mechanical advantage (IMA) for the pulley system in Figure Q4b
and calculate the distance d₁ moved when distance d₂ is 1.75 m.
Transcribed Image Text:e) Figure Q4b shows a pulley system suspended by a hook and a bolt fixed to the ceiling. The pulley system is used to lift a load (FL) of 250 N when an effort force (FE) is applied. Determine the tension force in each support rope, the effort force (FE) and reaction force (FR) necessary to lift and hold a load of 250 N. *Assume that the pulley system is weightless and frictionless. FR +3 www FE d₂ d₁ ↑ FL Figure Q4b (Illustrative and not to scale) f) Calculate the ideal mechanical advantage (IMA) for the pulley system in Figure Q4b and calculate the distance d₁ moved when distance d₂ is 1.75 m.
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