In the frame below, calculate for the forces (N) in links: GB, FA, HE and GD (Also draw the FBD of all members) 2a a a 213 7 A FL B 3 G H F C D 200 35⁰ a a 2a
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- perpendicular to the page through the point o. (Let counterclockwise torque be positive and let forces to the right and up be positive. Use the following as necessary: the forces R, Write the necessary equations of equilibrium of the object shown in the figure below. Take the origin of the torque equation about an axis RFF, and F the length l of the object; and the angle e that the object makes with the horizontal.) EF, = = 0 Fy =0 Στ. =0 Need Help? Read ItGIVEN: DISTANCES CO= 7m BO= 7m OD= 8m AD= 8m GIVEN: WEIGHT W1= 195 N W2= 295 N GIVEN: ANGLE X= 55 Degree Y= 48 Degree SOLVE: (a) Tension at CB in NEWTON (b) Reaction at point O in NEWTON PLS PLS SOLVE AND SHOW COMPLETE SOLUTION AND WRITE LEGIBLY. ALSO, DRAW THE FREE-BODY DIAGRAM. ROUND OFF IN 4 DECIMAL PLACES.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.
- Draw the Shear force diagram & Bending moment diagram for the cantilever beam as shown in figure, mark the salient points in the diagram. Neglect the self-weight of the beam, where F1 =10 N, F2 =60N, F3 =30 N, F4 =1ON, a =5 m, b=2 m, c=3 m, d=5 m F4 F3 F2 F1 E A d. a1-Determine the dof (mobility) of the following mechanisms.A weight W= 120 kN is being supported by steel sections with force T, force F, andforce C. The coordinates of A, B, C, and D are given. Assume that E is the origin(0,0,0). Determine Forces T, F, and C. (Hint: Produce three equations fromequilibrium of force system)Note: The Forces T, F, and C must be computed accurately to design the proper sizes ofsteel sections in the subject “Steel Design.”
- voice that the order of the elements of the matrixdeterminant is important; switching rows 2 and 3 of the determinant would change the sign of the moment from positive to negative (or vice versa) Figure 2 of 3 Part B - Moment due As shown, a member is fixed at the origin, point O, and has an applied force F. the tension in the rope, applied at the tree endpoint B (Eigure 2) to a force specified as a Cartesian vector The force is given by F-130 Ni-155 NJ+70 N k. The dimensions are 1.35 m. y; = 1,90 m, and 41 = 1.15 m What is the moment about the origin due to the applied force F? Express the individual components of the Cartesian vector to three significant figures, separated by commas. View Available Hint(s) VAZ Ivec Mo Submit ? L.J.K N-mYou need to find Components of all forces which is acting on Member ABC in the given figure [Must solve in handwritten format ]A truss is facing a two-force member and both of them are in the opposite directions, and the truss is in equilibrium. And both of them are coming to each other. The forces are called Select one: O a. Tensile Forces O b. Compressive forces O c Parallel and collinear forces with same direction of heading O d. The rotational forces Next page est-3 Jump to...
- 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 CI. Solve the following problems completely: Show your complete solution and draw the graph. 1. Locate, and find the magnitude and the position of the resultant R at point A of the forces acting on the Fink Truss shown in the figure. Find the couple at point B. Given Figure: 250N 30⁰ 350N 8m 60% 4m 450N 2100N 8m 8m 60⁰ 8m 60% 350N 4m 60⁰ 30⁰ 8m 250N BMFG 232: Åpplied Statics LAB 8A : Moment ota Force 3-6 Calculate the moment about point A in Figure P3-6. 800 lb 200 lb 400 lb -7' 3- Figure P3-6