1. The single resultant force of the three forces applied to the bracket is a force R which passes through point B. Determine the magnitude of forces R and F, and the direction of R. y -450 mm- 160 N B F 12 -1200 mm 135 N 900 mm x
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Why can we not solve this by finding the moment about point O and creating a system of equations
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- Three forces are applied to a bracket as shown. If the resultant R of these three forces is directed along the positive u axis, for e = 15° determine the magnitudes of the force F, and the resultant R. F = 52 lb 12 F, = 80 lb 25°3. Express each of the forces in Cartesian vector form and determine the magnitude and coordinate direction angles of the resultant force. Use FAB = 780 kN. FAD = 850 KN, and FAC = 520 KN FB Fp Fc 24 m 8 m. D. 12 m B 10 m 16 m 18 mExpress each of the forces in Cartesian vector form and then determine the magnitude and coordinate direction angles of the resultant force. 0.75 m A- FAR = 250 N = 400 N 3 m 2 m 40°2 m Fim-
- Where does the resultant of the two forces act? Replace the two forces with a single equivalent force applied at a point on a horizontal line going through point A. Determine the distance d from point A. Your answer will be positive if to the right of A, negative if to the left. 750 N 250 350 mm mm 770 NIf the magnitude of the resultant force is 1300 N and acts along the axis of the strut, directed from point A towards , determine the magnitudes of the three forces acting on the strut. Set x = 0 and z = 5.5 m.Determine the resultant sum of the moments and the magnitude of the resultant Force.
- If FA= 6 kN and FB=3 kN determine the magnitude of the resultant force (A) and specify the location of the resultant force on the x-y plane (B).2-10, Determine the magnitude of the resultant force and its direction, measured counterclockwise from the positive x axis SII Ib Probs. 2-13/14 2-15. Force F acts on the frame such that its component acting along member AB is 650 Ib. directed from B towards A, and the component acting along member BC is S0M) Ib.directed from B towards C.Delermine the magnitude of Fand its direction a. Set d = 60r. S00 Ib Proh. 2-10 2-11. The plate is subjected to the two forces at A and i as shown. If 6 = 6Y, determine the magnitude of the resultant of these two forces and its direction measured clockwise from the horizontal. 2-16. Force F acts on the frame such that its component acting along member AB is 65o Ib. directed from B towards A. Determine the required angle 10 = 4 = 45) and the component acting along member BC.Set F = 850 Ih and e = 3D, Determine the angle 8 for connecting member A 10 +2-12. the plate so that the resultant force ofF, and F is directed horizontally to the right, Also, what…Q6- Two forces F1=240 lb and F2=160lb act on the hip joint. Determine the resultant of the two forces and express the result as a cartesian vector. Also, find the coordinate direction angles of the resultant force. Z F1= 240 lb 75° 131 F2 = 160 lb ww 45° y
- 2-69. The bracket is subjected to the two forces shown. Express each force in Cartesian vector form and then determine the resultant force FR. Find the magnitude and coordinate direction angles of the resultant force. D X ( 120% 60° F₂ = 400 N Prob. 2-69 45° .y 25° 35° F₁ = 250 N :please show work3. Find the Resultant Foroe for the Forces shown by resolving the Forces into their X& Y components. Draw the Resultant Force on the lower X & Y cross and show the resultant angle in relation to the +X axis. Show all your work. Make sure to box all your answers F1=3N, F2-5N 65° 30° 50° F3=8N