G a Determine the forces in member CF and indicate whether in compression or tension. Assume all plate connections act as pins. (ANS: CF = 0.589kN C) H 2 m EL 4 m B દ m 4 m- -4 m 4 m 5 kN 3 kN
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- Repeat 1.3-9 but use the method of sections go find member forces in AC and BD.Repeat Problem 11.2-3 assuming that R= 10 kN · m/rad and L = 2 m.Two steel wines support a moveable overhead camera weighing W = 28 lb (see figure part a) used For close-up to viewing of field action at sporting, events. At some instant, wire I is at an angle a = 22° to the horizontal and wire 2 is at angle fi = 40°. Wires I and 2 have diameters of 30and 35 mils, respectively. (Wire diameters are often expressed in mils; one mil equals 0.001 in.) (a) Determine the tensile stresses s and s2 in the two wires. (b) If the stresses in wires 1 and 2 must be the same, what is the required diameter of wire 1 ? (c) To stabilize the camera for windy outdoor conditions, a third wire is added (see figure part b). Assume the three wires meet at a common point coordinates (0, 0. 0) above the camera at the instant shown in figure part b. Wire I is attached to a support at coordinates (75 ft, 48 ft, 70 Ft). Wire 2 is supported at (-70 ft. 55 ft, 80 Ft). Wire 3 is supported at (-10 ft. -85 Ft, 75 ft). Assume that all three wires have a diameter of 30 mils. Find the tensile stresses in all three wires
- Repeat Problem 11.3-9. Use two C 150 × 12.2 steel shapes and assume that E = 205 GPa and L = 6 m.A polyethylene tube (length L) has a cap that when installed compresses a spring (with under-formed length L1) by an amount ?? = (L1 = L). Ignore deformations of the cap and base. Use the force at the base of the spring as the redundant. Use numerical properties given in the boxes. (a) What is the resulting Force-in the spring, Fk? (b) What is the resulting Force in the tube, Ftl (c) What is the filial length of the tube, Lf? (d) What temperature change ?T inside the tube will result in zero force in the springRepeat Problem 2.4-8, but assume that the bar is made of aluminum alloy and that BC is prismatic. Assume that P = 20 kim. L = 3 ft.t = 314 in., b1 2m.b 2.Sin.andElO.400ksi.
- 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.can you please write down each step clearly.Hi! Hope you can help me with this. F1 = 500kN F2 = 600kN Find the force member in CD, BD, AB, BC. Indicate if Tension or Compression
- QUESTION 3 Rod ABCD is connected to Rod DEFG at D and is also connected by rod BF by pins. A pulley is connected to end G with radius of 0.1m. The rope is hanging around the pulley to hold a mass M1 of 100 kg. The other end of the rope is connected to point C at rod ABCD. Another rod EH is also connected to point E by pin to hold the structure. Point A and point H are also by pin connections to the wall. Points A, B, C, D, H are vertically in-line. Find reactions at pins H and A. (AB = 0.2m, BC = 0.2m, CD = 0.1m, DE = 0.3m, EF = 0.15m, FG = 0.15m, EH = 0.5m, the mass of the rods are neglected). 0.2m B 0.2m Radius Pulley G- 0.Im 0. Im 0.15 D 0.3m E 0.15 0.5m MI- 100 kg HF, = 20 KIP F = 50 KIP 30 0 450 600 450 150 750 F, = 10 KIP 2. (25 pts) If the circle above is in static equilibrium, what is the force 'F' and angle 'o' ?- once answered correctly will UPVOTE!!