The slope of the 6.4 kN force F is specified as shown in the figure. Express F as a vector in terms of the unit vectors i and j. Assume a = 15, b = 6. F a b Answer: F = ( i i+ i j) kN
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- 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.DUE NOW. Please answer it correctly. Thank you!How do you calculate the force on the cables using vectors? I tried using geometry and it didn't work. You have to solve it using moment.
- A beam is supported by a pin at point A and a roller at point B. Distributed loads are applied to the beam. W2 Wi di d2 Values for the figure are given in the following table. Note the figure may not be to scale. Variable Value W1 5 kN/m 6 kN/m W2 di 4 m d2 5 m a. Replace the force system with an equivalent force, FR. (enter the magnitude) b. Determine the moment about point A, MĄ, express as a cartesian vector c. Determine the location of the FR on the beam, d, measured from point A. Round your final answers to 3 significant digits/figures. FR = ( 47.5 kN MA = xk) kN-m d = (| 4.44 V o) mA beam is supported by a pin at point A and a roller at point B. Distributed loads are applied to the beam. W2 Wi di d2 Values for the figure are given in the following table. Note the figure may not be to scale. Variable Value W1 5 kN/m W2 6 kN/m di 4 m d2 5 m a. Replace the force system with an equivalent force, FR. (enter the magnitude) b. Determine the moment about point A, MA, express as a cartesian vector c. Determine the location of the FR on the beam, d, measured from point A. Round your final answers to 3 significant digits/figures. FR = kN MA = k) kN-m d =Problem Statement Based on Problem 4-9 from the textbook. The cable exerts a force P at the end of the crane boom. Determine the position of the boom so that force P creates a maximum moment about point O. What is this moment? p=4.8Kn x=12.9m y=7.6m 17 735 8
- Replace the three forces acting on the bent pipe by a single equivalent force R. Choose point "O' as your convenient point. Calculate 1- Resultant Force "R" and Resultant Moment "Mo" at point O and show them on a diagram. 2- Specify the distance X from point "O" to the point on the x-axis through which the line of action of R passes. Show your result on a separate diagram. -10"- 40 lb -10" fort 60 lb 50 lb 10"Find the magnitude and direction of the resultant force for the system of forces shown in the figure. Where F1 =15 N, F2 =5N, F3 =25 N, F4 = 15N, F; = 20N , Fg = 10N & F7 =30N. The angles e, =15°, ez =40° , E4 = 50°, O6 = 15° F2 F3 F4 + Fs F7 F64) Determine the total moment caused by the forces Fp4 and Fca about the plate diagonal that goes through point B (the dashed line). Write your answer in cartesian vector notation. FCA= 500 lb 14 ft FRA = 350 Ib FDA= 400 lb 3 ft-> 3 ft 3 ft 2 t 6 ft
- Problem Statement Based on Problem 4-9 from the textbook. The cable exerts a force P at the end of the crane boom. Determine the position of the boom so that force P creates a maximum moment about point O. What is this moment? p=4.1 Kn x=12.3 m y=9.6m 477 735 84Please don't provide handwritten solution .....

