Replace the two forces in Figure (2) with a single force at the point (A) and double tension (B) have forces at points A and (B) B 11.4 KN A с
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- Find the internal force systems acting on sections 1 and 2.:Q2:find the the components of the forces shown in the figures along x and y axes: Q-60N F- 200 N P=40N 20 F- 150NFor the bent pipe shown in the figure, it is sought to replace the system of three forces with a single equivalent resultant force R. Find the distance d (in metres) from point O to the point on the x-axis through which the line of action of R passes. a = 379 N, b= 146 N 0.25 m 50 N 0.25 m a b 0.25 m 0.2 m x
- Determine the resultant force of the forces as shown in figure by (components method the x-horizontal component and y-vertical components) F=3 kN F=2 kN 0=60° 0-30° 0-60° F=3 kN R=3 kN O R=2 kN O R=4 kNThe concurrent force system in space is composed of three forces as shown in the figure: Where: P1 = 182 kN at (3,4,2) P2 = 68 kN at (4,1,-2) P3 = 86 kN at (2,-3,3) Problem: a) Solve for the x-component of the resultant force in kN.b) Solve for the y-component of the resultant force in kN.c) Solve for the z-component of the resultant force in kN.2. The force P = 2 kips is applied to point A, and is supported by cable AB, cable AC, and bar OA. The force P and both cables pull on point A, and bar OA pushes on point A. Determine the forces in cables AB and AC, and in bar OA. You can use Excel to solve the equations, but you don't have to for this one. (Point A lies in the zy plane, and points B and C lie in the xz plane.) 6 ft x 4 ft B 4 ft 12 ft AC D 5 ft P 12 ft
- The two forces, F1 = 20 kN and F2 = 4 %3D kN are acting on a system shown in the figure. If 01 = 45° and 02 = 45°, what will be the values of Rx, Ry, R %3D %3D and the angle (0) makes by R with .the positive x-axis Y+ 02 F2 Y- Ry (1) R,= F; (2) R,= Fy; (3)R = (R + R;); (4)0 = tan1 Rx اخترأحد الخيارات a. Rx = 20.13 kN, Ry = 4.99 kN, R = 20.74 kN and 0 = 13.92° %3D b. Rx = 17.72 kN, Ry = 9.31 kN, R = 20.02 kN and 0 = 27.72° c. Rx = 20.95 kN, Ry = 5.62 kN, R = 21.70 kN and 0 = 15.02° %3D d. Rx = 16.97 kN, Ry = 11.31 kN, R = 20.39 kN ande = 33.68°Q4: The forces F1 and F2 act on a bracket as shown in the Figure below. Determine the magnitude of the resultant force. F = 100 N C 20° F2 = 90 NDetermine the magnitude of the resultant force (in N) of the coplanar force system shown in the figure below where the horizontal force P = 228 N and the couple M = 615 Nm. M N m A 150 N 300 mm -250 mm P N 400 mm 90 N
- Replace the two forces in the figure below with a single force at point A and a pair whose forces act on the two points A and BQ1/From the figure below, determine the magnitude and direction of resultant forces and resultant moments at point A. Draw the free body diagram and also determine the magnitude of reaction force at pin B and normal reaction force at roller A. 40 N 3 m- 30 N B 3 m- 200 N·m 50 NThere are two cables attached to the plate on the left with tensions indicated on the figure. We want to replace the two forces by a force F exerted through a single cable. 4N What is the magnitude F of the force applied to it to cause identical motion of the plates and the direction of the cable that needs to be attached to the plate on the right?