PEARSON ETEXT ENGINEERING MECH & STATS
15th Edition
ISBN: 9780137514724
Author: HIBBELER
Publisher: PEARSON
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The mass of the flowerpot is 47 kg . Set x = 2 m and z= 15m
1. Determine the tension developed in the wire AB for equilibrium.
2. Determine the tension developed in the wire AC for equilibrium.
3. Determine the tension developed in the wire AD for equilibrium.
Cart B , which weighs 75 kN, rolls along a sloping track that forms an angle B with the horizontal. The spring constant is 5 kN/m, and the spring is unstretched when x= 0. Determine the distance xcorresponding to equilibrium for the angle B indicated.Angle β= 30°
bläs 4 The body is in equilibrium when
the resultant of the force acting
.on dose not zero
true O
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- Determine the reactions at A and B.arrow_forwardTake 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_forwardIf the mass of the flowerpot is 65 kg, calculate the tension generated in every cable for equilibrium. Assume r = 1.5 m and z = 2 m. C+2m 3 m - 6 marrow_forward
- The crate has a mass of 130 kg. 1. Determine the tension developed in cable DA for equilibrium. 2. Determine the tension developed in cable DB for equilibrium. 3. Determine the tension developed in cable DC for equilibrium.arrow_forwardThe traffic light has a mass of 15 kg, and if it is held in the equilibrium position shown by the three tension cables AB, AC, and AD. Find the tension developed in cable AB UAB = BAC UAD 4 m 3.m 6 m 4 m 6 marrow_forwardThe cable attached to the tractor in B exerts a force of 975 N on the structure. Determine the vector reaction provided by the structure so that point A is in balance.arrow_forward
- Determine the tension developed in wire CA required for the equilibrium of the 11 kg cylinder. Take θ = 40 ∘. Determine the tension developed in wire CB.arrow_forwardIf the mass of the flowerpot is 27 kg, determine the tension developed in each wire forequilibrium. Set x = 1.8 m and z = 1.6 m.arrow_forwardIf Cable CB is subjected to a tension twice that of cable CA, determine the angle θ for equilibrium of the (30+51) cylinder. Also what is the tension of cable CA and CB.arrow_forward
- The 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_forward3-30. The 5-ft-long cord AB is attached to the end B of a spring having an unstretched length of 5 ft. The other end of the spring is attached to a roller C so that the spring remains horizontal as it stretches. If a 10-1b weight is suspended from B, determine the angle 8 of cord AB for equilibrium. 5 ft 5 ft A 8 5 ft B sesso k= 10 lb/ft Carrow_forwardDetermine the horizontal and vertical components of the reaction at the support A for equilibrium of the beam. Determine the normal reaction at the support B for equilibrium of the beam.arrow_forward
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