The two forces shown act at pointA of the bent bar. Determine the resultant Rof the two forces.
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Q: The two forces shown act at point A of the bent bar. Determine the resultant Rof the two forces. F1…
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Q: Q1: The two forces shown act at point A of the bent bar. Determine the resultant R of the two…
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Q: 20 kN/m 100 kN 4 kN/m A E F 十- 3 m 3 m 3 m 3 m 3 m
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Q: Q1: The two forces shown act at point A of the bent bar. Determine the resultant R of the two…
A: Given Data |F1| = 5.8 kips |F2| = 6.3 kips
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A: The resultant force is R=15-20-10=-15 N The centroid is y=15×2-20×5-10×815-20-10=10 m
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- Consider a resultant force of 50N along the negative y-axis. The resultant was calculated as a sum of the following four tensile force: F1= 100N at 70, F2= 300N at 190 and F3 = 150N at 340 and F4 . Find the magnitude and the direction of the force F4. Find the force F4. Use the counter clockwise direction as the positive direction of the angle from the positive x-axis . Provide the answer to 2 decimal places.Three forces act on a hook. Determine the magnitude of the resultant of the force. Neglect hook bending. F2 - 1500 N - 1000 N 20 30 16 F3 - 750 N Select one: O a. 1250 N Ob. 1510 N C. 1140 N d. 989 NAs shown in the image below, the rigid member ACB (with negligible thickness) is subjected to three forces. The forces are F1=340N, F2=360N, and F3=170N, an the angles Alpha=34 degrees and Beta=57 degrees. Replace these forces by a single resultant force, then determine the distance x(in m) where its line of action intersects segment AC, measured from point A. Answer must include 2 places after the decimal point.
- 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. 660 N 370 mm 630 N 440 mm. Choices: 5.85 m OO -5.85 m 8.58 m -8.58 mQ1: The 100 lb force of Figure below is the resultant of the couple and four forces, three of which are shown in the diagram. Determine the fourth force and locate it with respect to point А. 100b A 50b 12". 120in -1b 20b 12" 4" 40lbThe beam is subjected to the two forces shown. Determine the magnitude of the resultant force. F2 = 250 lb 60° 135 60° 24- 25 |F, = 630 lb Select one: O a. 200 lb O b. 300 lb O c. 500 lb O d. 400 Ib
- find the sum of the moments of the Forces in Ib.in about Point O, (positive in the counter- clockwise direction) . F1 = 34 lb and F2 = 20 lb. F1 15" F2 40"The force F = 450 lb acts on the frame. Resolve this force into components acting along members AB and AC, and determine the magnitude of each component. 4s0 Ib Select one: O a. 360 lb, 660 lb O b. 450 lb, 700 lb O c. 780 Ib, 530 lb O d. 870 Ib, 640 lbIf lengths a=5.9 m, b=2.3 m, c=3.4, and d=2.1, determine the angle (in degree) between the forces FB and FC. your answer must include 1 place after the decimal point.
- The pole OB is subjected to the 6004b force at B. Determine (a) the rectangular components of the force; and (b) the angles between the force vector and the coordinate axes.The force R is the resultant of P and 0. Determine Q and the angle .1. Aforce of 200 N is directed up to the left of an angle 30 degrees with the x-axis. Determine the component of the givenx and y. 2 Determine the force F in concurrent force system to produce a resultant of 155 kN, downward to the right, 35 degrees with respect to x axis. 30 kN 10 KN 15 deprees 65 degrees 80 kN Please express your answer in 2 decimal places and box your final answer. Kindly write clearly too. Thank you ©