4,5 please answer the problems, the answer is already given i just need the solution please type your answer if you can because i can't view written
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4,5 please answer the problems, the answer is already given i just need the solution
please type your answer if you can because i can't view written answers
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- The bar ABC is supported by three identical, ideal springs. Note that the springs are always vertical because the collars to which they are attached are free to slide on the horizontal rail. Find the angle at equilibrium if W = kL. Neglect the weight of the bar.The bent rod of negligible weight is supported by the ball-and-socket joint at B and the cables attached to points A and C. Find the forces in the cables and the magnitude of the reaction at B. Dimensions Figure P.5.39Q2: In the Figure 2, there are four forces in one plane. I was applied another two forces that acting on the same point of the four forces (0. where the lines of action of the new two forces are gl and g2. Determine the magnitude of forces Fai and Fz that keep the system in equilibrium? Where: F, 5000 N a = 25 a = 15° F2 = 2000 N a: = 40° a = 60 F, = 3300 N as= 45° F.= 4600 N a 20° F2 F1 ag2 F4 Fig. 2
- A crate with a mass of 400 kg is held in equilibrium by three ropes attached to a steel ring. B d2 m Variable Value d₁ 2.5 m d₂ 5 m d3 3.5 m d4 3 m d5 2.5 m C da ds Values for the figure are given in the following table. Note the figure may not be to scale. a. Determine the magnitude of the force/tension in cord A, TA. b. Determine the magnitude of the force/tension in cord B, TB. c. Determine the magnitude of the force/tension in cord C, Tc. Round your final answers to 3 significant digits/figures. The magnitude of the force/tension in cord A is N The magnitude of the force/tension in cord B is N The magnitude of the force/tension in cord C is NA smooth inclined plane has a gradient of 1 in 6. Calculate the mass of a body that can be held in equilibrium on the plane by a force of 80 N when the force acts: (a) parallel to the plane answer M=49.62kg (b) horizontally answer M=48.94 kg (c) at an angle of the 20° with the plane. answer M=46.62kg5) The system shown is in equilibrium. Find the force exerted on the strut by the hinge at point A. Neglect the weight of the strut. 45 45 60 N
- Consider a ladder used by a construction worker as shown below. The worker weight plus his tools is estimated to be 200 lb at mid-height. The ladder is supported at points A and B, developing reactions as shown in the free-body diagram. Assuming that reaction forces RAx and RBx develop magnitudes of 50 lb each and RAy=200 lb, determine MA, MB and MC.Q- Two radial 200 N and 500 N forces and tangential 700 N force are applied to shown system. If the system is in equilibrium find reactions at A and B. 500 N 200 N 700 N 10 15 2m 1.1 mConsider the 100-cm board supporting three loads as shown below. The beam weighs 35 grams. If the system is in equilibrium, a. what is the magnitude of the force exerted by the pin support to the board? b. Find the perpendicular distance, x, of the pin support from the left end of the board. 20 cm C. B 65 g 20 g 10 g A,
- An eye bolt is used to attach 3 cables to a steel plate. The tension in the three cables create F1=200 lbf, F2=250 lbf, and F3=100 Ibf with 0 = 30 degrees and p=44 degrees. If the eye bolt is in equilibrium, what is the y-component of the sum of other forces on the bolt (force from the nut and plate on the bolt) ? If you add up %3D the three force vectors, the sum other force you are looking for will just be in the opposite direction to put the eye bolt in equilibrium. The y-direction is positive going up. For example, if you find the sum of forces 1, 2, and 3 are 100 Ibf going up, then the other forces in the y-direction must be pointing to the down (-100 lbf) to put the eye bolt in equilibrium. Eye bolt steel plate Nut & Washer esc DOO D00 F4 F3 AA %24 F10A door weighing 150 lb. is supported by a cable AB and a metal post BE (via bearings C and D) as shown below. Determine the tension in cable AB and the support reactions at bearings C and D. Bearings do not exert any moment reactions and are free to move along the post BE. Enter the magnitude of tension in cable AB (in lb.) as the answer in the RESPONDUS answer box. A 2- Go W 18 in. 4 in. 10 in. EE 4 in. 8 in. 6 in. B C 24 in. D 10 in. EA bar AE is in equilibrium under the action of the five forces shown in Figure. Determine T, P, and R.