PEARSON ETEXT ENGINEERING MECH & STATS
15th Edition
ISBN: 9780137514724
Author: HIBBELER
Publisher: PEARSON
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The ring weighs 6 lbf and is in equilibrium. The force F1 = 4.5 lbf. Determine the force F2 and the angle α.
Find the value of each of the angles β and α that keep the system of forces in equilibrium
The ring weighs 5 N and is in equilibrium. The force F1 = 4.5 N. Determine the force F2 and the angle ∝.
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- Take F = 310 N and d = 1.0 m Determine the force in cable AC and AB needed to hold the 24-kg ball D in equilibrium.arrow_forwardDuring crash testing of an automobile, the lap and shoulder seat belts develop tensions of F = 260 lb. Treating the buckle B as a particle, determine the tension T in the anchor strap AB and the angle at which it acts. Use the force components method. Find the horizontal and vertical components T, and Ty. Use your solution for T, and Ty to determine the magnitude T and direction 0 of the anchor strap's tension. 60° F (Express your answer using three significant figures.) T, = ]lb (Express your answer using three significant figures.) Ty =| |lb (Express your answer using four significant figures.) T = lb (Express your answer using two significant figures.) counterclockwise from the negative x-axis.arrow_forwardThe rope that makes up the system has a total length of 5 m.At D there is a load of weight W = 1320 N.Calculate the value of the load to be placed at B so that the system remains in equilibrium when S = 1,5 m.arrow_forward
- Find the magnitude of the force F and its direction θ so that the particle P is in equilibrium.arrow_forwardThe forces are acting on the system that is in equilibrium as shown below. If the magnitude of the force of H is 173 lb, then what is the magnitude of the force of J in lb? y G 35° F * -50° 125° J 30° H N Xarrow_forwardIf the plate is to remain in equilibrium, find the tension for all the three cable that supports the plate weighing 2200kg. 2400 mm 1200 mm 1200 mm 1200 mm 2400 mmarrow_forward
- bläs 4 The body is in equilibrium when the resultant of the force acting .on dose not zero true O False Oarrow_forwardThree forces, FA, FB, and FC, intersect at the origin. Only 2 of these forces are shown on the diagram. Find the magnitude of FC and its direction coordinate angles for equilibrium, given:FA = 825 N, α = 150 °, β = 75 °FB = 600 N, θ = 20 °, Φ = 30 °arrow_forwardAll solutions must include a free-body diagram. 3-43. Determine the magnitude of the force P and the orientation of the 200-lb force required to keep the particle in equilibrium. (-1 ft, -7 ft, 4 ft) F3= 200 lb X F₁=360 lb F₂= 120 lb 20° F₁ = 300 lbarrow_forward
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