Prob 6-43 6kN 12 kN 9 kN G 4 kN H 2 m 1 m 1 m B D 1.5 m 1.5 m 1.5 m 1.5 m 6kN In this problem, you are asked to determine the forces in members CD, CJ, GJ, and CG. What are the reaction forces at E?
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- A cargo ship is tied down to marine boll arts at a number of points along its length while its cargo is unloaded by a container handling crane. Each bollard is fastened to the wharf using anchor bolts. Three cables having known tension force magnitudes F, = ll0 kN.F, = 85kN.and F, 9OkNare secured to one bollard at a point A with coordinates (0.0.45 m. 0) in the x-r-: coordinate system shown in the figure part b. Each cable force is directed at an attachment point on the ship. Force F, is directed from point A to a point on the ship having coordinates (3 m, 9 m. 0) force F, is directed at a point with coordinates (6.5 m. 8.5 m. 2 m) and force F, is directed at a point with coordinates (8 m. 9 m. S m). The diameter of each anchor bolts is 4 24 mm. (a) Find the reaction forces and reaction moments at the base of the bollard. (b) Calculate the average shear stress in the anchor bolts (in the x-: plane). Assume each bolt cart ics an equal share of the total force.Question 2 Find the value of The reaction force at the support A. (X,XX,XXX represents the last digits number pf your IC) 4m 400 KN 10 m B 60 KN 4m 10 m. 157KN 4m 17 m D- once answered correctly will UPVOTE!!
- Answer the two questions pleasea) Find the forces in the cables AB, BC, CD, DE, and force in the spring CF in terms of P. (a is an unknown of the problem) b) If the maximum force that any cable can support is Smax, determine the maximum value of P that can be supported. c) If the original length of the spring is ??, find the stiffness of the spring, k.Equilibrium of Concurrent Force System. The piston of a reciprocating engine exerts a force of 175 kN on the crosshead when the crank is 45° (angle B) past TDC. If the stroke of the piston is 800 mm and the length of the connecting rod is 1.80 m, find the guide force and the force in the connecting rod. Hint: 1=½ stroke; Angle o may be solved using Sine Law in AACO. K= Compressive Force in the connecting Rod E= Piston Effort 70 120 F, = Guide Force Fig. P-1 Fig. P-2 a Tools: EF cos0=0; F sin .=0. R = Ev)* + (E#): ; R 771 =- : tane = sin A sin B sin C
- Use the method session to find forces along CD, FD, and EF.My answer here is R_av= 150 kN, R_b= 210 kN amd R_ah= 0 kN please verfy if my answers are correct1. Using the slope for each spring, what would be the force required to stretch the spring 0.10 m? 2. Using the slope for each spring, what would be the amount of stretch with a 500 g mass hanging on the spring? Ps: see the graph below for the reference
- Draw a force and vactor diagram to find the reaction force at the screw hook, pulley and wall ring. pulley 50 40 C spring wall ring IE screw hook 23KNQ5/A) From the figure below, determine the reaction force at pin C. A 000 0.6 m 10 kN 0.6 m 0.8 m 60° 0.4 m 6 kN OBG -4 ft- AF FE Вс AB Gx Ax FC AF B Select the freebody diagram that would allow you to solve for the force FE using only that FBD if P1 = 2 kip and P2= 3 kip. GF P₁ Ay F BF E 2 Kip 2 кір 4 ft- B 4 ft- 4 ft- >CF ft B B 2 kip -4 ft- 2 Кір E EF P₁ 3Kip 4 ft- 4 ft E 2 кір 52 TFC -4 ft- FE zkip -4 ft Be 4 ft- экір 4 ft ID P₂ D экір 4 ft 4 ft in