800 mm C L =1160 mm 840 mm B 13 5 A 5 12 780 N 500 N If the tension in cable BC is 725 N, what is the resultant of the three forces exerted at point B of beam AB in N?
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Q: Q4/ Using three different ways, compute the the moment of the force 400 N about O? 400 N 100 mm 60°…
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Q: 800 mm L=1160 mm 840 mm B 13 12 780 N 500 N If the tension in cable BC is 725 N, what is the angle…
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Q: Q4/ Using three different ways, compute the the moment of the force 400 N about O? 400 N 100 mm 60…
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- P=650N d=0.20m h=0.35m What are the Y components of the forces at B and C?A force F1= 2i – 6k {kN) is applied at the position 3j + 5k {m}, meanwhile another force F2 = - i + 4j + 7k {kN) is applied at the position 8k {m}, on a structure. Evaluate the resultant moment by vector calculationIn the given figure below, a tube was supported at A and E by with a ball and socket and a wire at D connected to F. Determine the following given the Force F is equal to 656.46 N. X_b : 218.078 mm X_c : 451.531 mm Y_a : 215.719 mm Z_e : 163.433 mm Z_f : 463.933 mm 1. Determine the x, y and z-component of Vector DF 2. Determine the moment experienced by the system assuming that there is no wire support 3. Determine the x, y and z-component of the moment experienced by the system assuming that there is no wire support 4. Determine the Tension experienced by wire DF 5. Determine the x, y and z-component of the Tension experienced by wire DF.
- Determine the algebraic sum of the moments of forces relative to a point in F = 10.0 N; m =9.0 Nm, q =8.0 N/mA motor attached to the shaft at O causes the arm to rotate over the range 0≤θ≤180∘. The unstretched length of the spring is 0.65 m, and it can support both tension and compression. If the net moment about O must be zero, determine and plot the required motor torque M as a function of θ. Draw the plot and then answer the questions.Assume k = 780 N/m, r = 0.47 m, a = 0.32 m.Two distributed loads act on the beam AB. If the resultant of this loads is a 2400 N-m counterclockwise couple (a) Determine the load intensity, w at B and the distance “a” (b) what are the reactions at A and B ?
- The trapezoidal force distribution shown in the figure acts on beam AB. Determine the magnitude and position of the resultant force. L= 4m, W₁=75 N/m and W₂= 325 N/m at end B.A beam which is pinned at point A is subjected to three external forces. Determine the net moment of the force system about point A. 175 N-m CCW A picture is provided below showing the details of this problem.1- The distance of the resultant of the applied loads from A = mm Select one: a. 72 b. 44 c. 59 d. 14 e. 35 2- The tension in cable BE is Select one: a. 22 b. 33 c. 11 d. 20 e. 58 3- The tension in cable CF is Select one: a. 7 b. 14 c. 22 d. 6 e. 20
- If dC, = 15 ft. determine (a) : the distances dB and dD, (b) the inuximum tension in the cable.Fig. 7.99ONLY ANSWER 1, 2 & 3!!!!!!!!!!!!!!!!! 1.The problem sketch shows _____ loads. 2.The moment load (the couple) has a magnitude of _____ N*m. 3.The resultant moment induced by all of the loads has a magnitude of _____ N*m.c) moment equation M(x2) in the segment BC, where x2 changes from 0 at point C to b at support B. Enter the equation in terms of variables P, a, b and x2.