If the cords suspend the two buckets in the equilibrium position, determine the weight of bucket B. Bucket A has a weight of 60 lb. 40 WEDDIN 20 20 ww M B 65°
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- Find the stable equilibrium position of the system described in Prob. 10.56 if m = 2.06 kg.The unstretched length of spring AB is 2 m. If the block is held in the equilibrium position shown, what would be the weight of the block at D? Hint: Find the stretched length of spring AB and use the equilibrium. 3 m 4 m kAC 20 N/m wwww kAn 30 N/mDetermine the force P that will keep the pulley system in equilibrium. Neglect the weights of the pulley. 9000 N
- The pulley system is used to lift a weight of 1.088 N. Determine the force P needed to bring the system into equilibrium.Determine the magnitude of the force PP required to hold the 140-lblb weight in equilibrium.Assuming the pulley system below is weightless and frictionless, determine the distance (d2) when a 1525 N load is lifted a distance d1 = 1.33 m and held in static equilibrium. Give your answer in metres (m) to two decimal places. dz FE FR LOAD d₁
- over two small pulleys at B and C. Determine the weight of 3-39. A "scale" is constructed with a 1.2-m-long cord and passes the 5-kg block D. The cord is fixed to a pin at A and the suspended block at B if the system is in equilibrium. 0.3 m 0.45 m DSif the cords suspends the two buckets in the equilibrium position, determine the weight of the bucket B. Bucket A has a weight of 60-lb. Complete solutions must include all required free body diagrams. E 40° F A 20° 20° B D 65°The unstretched length of spring AB is 3 m. If the block is held in the equilibrium position shown, what would be the weight of the block at D? Hint: Find the stretched length of spring AB and use the equilibrium. 4m 3 т www kAC ww = 20 N/m kAB= 30 N/m 3 m 9:16 PM all 4/17/2021 EN Select one:
- Determine the support reactions at the fixed support A. Show the FBD. 60 lb 150 lb 401 2 ft 80 lb 5ft 10 lb 800 lb-ftDetermine the force P required to hold the 24-lb weight in equilibrium. BDetermine the force P required to maintain equilibrium. The block weighs 100 Ib 42.12 Ib O 33.23 Ib O 23.23 Ib O 10.11 Ib O of