Knowing that the tension is 490 lb in cable AB and 575 lb in cable AC, determine the magnitude and direction of the resultant of the forces exerted at A by the two cables. B 45 in. A 40 in. 60 in. D C 60 in. x
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- Q.7. Determine the resultant R of the two forces shown as below. 60 600 N 400 NPlease solve quick and correctly. A barge is pulled by two tugboats. If the resultant of the forces exerted by the tugboats is a 25Kn force directed along the axis of the barge, determine the tension in each of the ropes knowing that theta = 45 degrees.6 in. 6 in. 160 lb-in. 18 in. B 30 lb 34 lb H 18 in. 12 in. D 6 in. 8 in. in. Determine whether the force-and-couple system shown can be reduced to a single equivalent force R. If it can, determine R and the point where the line of action of R intersects the yz-plane. If it cannot be so reduced, replace the given system with an equivalent wrench and determine its resultant, its pitch, and the point where its axis intersects the yz-plane.
- The plate shown has seven (7) identical sides that are 300 mm long. Find where the line of action of the single equivalent force (to replace the forces shown) intersects with the edge DC measured from D. 30 kN 30° B 40 kN F D 40 kNThe tailgate of a car is supported by the hydraulic lift BC. If the lift exerts a 128-lb force directed along its centerline on the ball and socket at B, determine the moment of the force about A. 15.3 in. B 12.0 in. 12.0 in. 2.33 in. The moment of the force about A is 118.93 lb-ft Ⓒ.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°
- Q3) Determine the maximum weight of block A for which the maximum tension in cable CD does not exceed 160 N D 60 B. Determine the resultant of the coplanar force system shown in (FIG. Q1) and locate it with respect to point A? 360 N s00 N 220 NThe 300-lb force is to be resolved into components along lines a–a′ and b–b′. (a) Determine the angle α by trigonometry knowing that the component along line b–b′ is to be 120 lb. (b) What is the corresponding value of the component along a–a′?Situation 3. The force system shown consists of the couple C and four forces. If the resultant of this system is 75000 N-mm counterclockwise couple, determine P, Q and C. y 120 N 12 TA 5 C Q 30 mm P 400 N 3 Hle 30 mm В
- Problem (1):-Determine the resultant of coplanar force system of the fig.( 1) and locate it with respect to point (A). 90N 100N .m 2m 3m 90N 200N 3m 4 4m 3 4m 3m Fig.(1) Problem2 / Determine the resultant of the force system of the fig. (2) and locate it with respect to point (A). 200N 360N 3m 500N 3 2m A 200N im 5m Fig.(2) Problem 3/ Determine the resultant of the resultant of the force system shown in fig.(3) and locate it with respect to point (A). 4m 5m 3m l, 4m 40N 30N 20 N Fig.(3)Knowing that the resultant of the two forces is vertical, determine the angle2. Determine the magnitude of the resultant R of the force A and B. B = 10kN A=26kN 30 12 R=,