A steel tank is to be positioned in an excavation. Knowing that a =20°, determine (a) the required magnitude of the force P if the resultant R of the two forces applied at A is to be 60° with the horizontal (b) the corresponding magnitude of R. 150 N 30°
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Q: Q1. Knowing that the forces values given as: F1=120 N, F2=160 N, F3=280 N, F4=65 N, a)Determine the…
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- A steel tank is to be positioned in an excavation. Knowing that the magnitude of P= 500 lb, determine the required angle a if the resultant R of the two forces applied at A is to be vertical. Also, determine the corresponding magnitude R. 425 lb 30°Q1): The cable stays AB and AD help support pole AC. Knowing that the tension is 120 lb in AB and 40 lb in AD. Determine the magnitude and the direction of the resultant of the forces exerted by the stays at A. 10 t sit -6 it Q2): 425 A steel tank is to be positioned in an excavation. Knowing that the magnitude of P is 500 Ib, determine by trigonometry (a) the required angle a if the resultant R of the two forces applied at A is to be vertical, (b) the corresponding magnitude of R.A hoist trolley is subjected to the three forces shown. Knowing that P=250 lb, determine (a) the required value of α if the resultant of the three forces is to be vertical, (b) the corresponding magnitude of the resultant.
- A steel tank is to be positioned in an excavation. Knowing that the magnitude of P is 500 lb, determine by trigonometry (a) the required angle a if the resultant R of the two forces applied at A is to be vertical, (b) the corresponding magnitude of R.A stake is being pulled out of the ground by means of two ropes as shown. Knowing that a= 30°, determine by trigonometry (a) the magnitude of the force P so that the resultant force exerted on the stake is vertical, (b) the corresponding magnitude of the resultant.At what angle 0 must the 800-lb force be applied in order that the resultant R of the two forces has a magnitude of 2000 Ilb? For this condition determine the angle ß between R and the vertical. 1400 lb ... 800 lb
- A hoist trolley is subjected to the three forces shown. Knowing that α = 40°, determine (a) the required magnitude of the force P if the resultant of the three forces is to be vertical, (b) the corresponding magnitude of the resultant.Two cables BG and BH are attached to frame ACD as shown. Determine the magnitude and direction of the resultant of the forces exerted by the cables at B, knowing that the tension is 555 N in cable BG and 765 N in cable BH. 1.48 m 0.56 m IN G 0.8 m B 0.8 m 1.4 m C H D 1.2 m 1.2 m X N. The magnitude of the resultant of the forces Fis The angle defining the direction of the resultant force exis The angle defining the direction of the resultant force Oy is The angle defining the direction of the resultant force 0₂ is O2.) Three horizontal forces are applied as shown to a vertical cast-iron arm. Determine the resultant of the forces and the distance from the ground to its line of action when P = 200N. A P = 200N 150mm 600 N 150mm 400 N d 150mm
- 600 N Ex (1): Determine the force ( P) shown in fig. knowing that the resultant of the two forces pass through the point ( A). 100 mm 100 mm SolutionA steel tank is to be positioned in an excavation. Knowing that a = 20°, determine by trigonometry (a) the required magnitude of the force P if the resultant R of the two forces applied at A is to be vertical, (b) the corresponding magnitude of R.4. Two members of a truss apply the forces shown to the gusset plate. a. If the Resultant of these forces is horizontal, determine P. b. Knowing that P = 12,200 lb, determine the resultant of these forces. 8000 lb 65° 35° P