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- Q1: Find the resultant force (R) of the two forces shown in Fig. below. F1= 45 N F2= 55 N 35200 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 lbThe force R is the resultant of the forces P1, P2, and P3 acting on the rectangular plate. Find P1 and P2 if R = 40kN and P3 = 20 kN.
- 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. F= 600 lb W = 400 lbQ) Find the components of the forces G = 2 kN and K = 5 kN as shown in the *.following figure G = 2 kN 20 F = 4 kN 40° 30° 40° H= 3 kN K 5 kNQ3/ Replace the force system with a single force and determine its exact location. 3m 500 N 2 m 500 N 200 N m 2 m
- The metal plate is held by two cables as shown in the following figure. If the force of each cable acting at A is FAB = 1000 Ib and FAc = 200 Ib. Determine the magnitude of the resultant force of the two forces acting at A. -8 ft- 8 ft 6 ft B FAC FAR A(10;6;0) Select one: O a. FR = 1010 lb O b. FR = 1100.21 lb O c. FR = 780.64 lb O d. FR = 1200 lb %3DThe metal plate is held by two cables as shown in the following figure. If the force of each cable acting at A is FAB = 900 Ib and FAc = 200 lb. Determine the magnitude of the resultant force of the two forces acting at A. 8 ft- 8 ft 6 ft B Y FAC FAR A(10;6;0) Select one: a. FR = 1010 lb b. FR = 780.64 lb c. FR = 1100 lb d. FR = 1001.72Q4: 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 N