2. Determine M, P, and Q in the figure shown so that the resultant of the coplanar nonconcurrent force system is zero.
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- R is the resultant coplanar-concurrent forces composing of P, T, F, and each Q acting on a body. Find the magnitude of the fourth force Q and its angle with respect to horizontal, if P = 840N directed downward to the left at 20 degrees with the vertical, T = 890N is acting to the right along the horizontal, F = 530N is up to the right at 45 degrees with the horizontal and R = 1300N acting downward to the right 30 degrees with the horizontalR is the resultant coplanar-concurrent forces composing of P, T, F, and each Q acting on a body. Find the magnitude of the fourth force Q and its angle with respect to horizontal, if P = 840N directed downward to the left at 20 degrees with the vertical, T = 890N is acting to the right along the horizontal, F = 530N is up to the right at 45 degrees with the horizontal and R = 1300N acting downward to the right 30 degrees with the horizontal. Show your answers in graphucal and analytical methodChoose the following systems that are equivalent to the one shown. Choose all that apply. (Remember conditions for equivalency require the sum of forces to be equal and the sum of moments about on arbitrary point to be equal) 50 N DA OB. OC OD. 1m 1 m 1 m 50 N 1 m 50 N 1 m 100 N 1 m 50 N 1m 50 N 1 m 50 N-m 1 m 100 N-m 1 m
- Determine the magnitude of the resultant force (in N) of the coplanar force system shown in the figure below where the horizontal force P = 204 N and the couple M = 598 Nm.Q1) For the concurrent coplanar force system shown below, do the following: 1) Calculate the magnitude and the slope the resultant 2) Draw the resultant p= 100 N f = 50 N 25 30 → T= 80N200 lb 390 lb 5. The block in the figure has a weight of 400 lb and an applied force of 600 lb to the right. There is also a pressure P exerted by the incline plane. If the direction of the resultant, R, is parallel to the incline, determine the magnitudes P and R. W = 400 lb # F 600 lb
- The block in the figure has a weight of 400 lb and an applied force of 600 lb to the right. There is also a pressure P exerted by the incline plane. If the direction of the resultant, R, is parallel to the incline, determine the magnitudes P and R. F 600 lb W = 400 lbDetermine the x- and y-coordinates of a point through which the resultant of the parallel forces passes. 20 lb 90 lb 85 lb 30 lb 16" 7" 13" 13" 25 lbFind the resultant system of converging forces in the figure below