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- Help!!! Answer correctly pleaseIf F = 300KN, determine the resultant couple moment. -2 m 2m F 30° 2 m 250 kNA 250 kN 2 m 30° 3. 2mQ6) Replace the force system acting on the beam by an equivalent force and couple moment at point A. Replace the force system acting on the beam by an equivalent force and couple moment at point B. -2m- 2.5 kN 1.5 kN 30° 4 m 2m 3 kN AB
- Replace the three forces shown by an equivalent force-couple system at point A. If the forces are replaced by a single resultant force, determine the distanced belew point A to its line of action. 100 N 470 mm 470 mm 290 N 470 mm 305 N Answers: Force-couple system at A. The force is positive if to the right, and the couple is positive if counterclockwise. R = i M = N-m Single resultant force. d = i mmReplace the two wrenches and the force, acting on the pipe assembly, by an equivalent resultant force and couple moment at point O. Determine the equivalent force at point O and the couple moment at point O.1: Replace the load shown with the equivalent force and moment couple acting at point O. 8 kN/m 5 kN/m - 1.5 m- -0.75 m→-- 0.75 m-
- Please don't provide handwritten solution .....Q5/ Determine the vector expression for the moment Mo of the 600-N force about point O. The design specification for the bolt at O would require this result. Ans. M. - 55.2- 13.86j +40.8k N•m 150 mm 140 mm 50 mm 60 130 mm 45 600 NIf d = 6 ft, determine the resultant couple moment either by summing the moments of the two couples or resolving each force into x and y components and then summing the moments about B of all the force components. Express your answer in pound-feet to three significant figures. Enter positive value if the moment is counterclockwise and negative value if the moment is clockwise.
- Determine the length b of the triangular load and its position a on the beam such that the reaction force at A is zero and reaction moment at A is 29.66 kN.m counterclockwise.(a) Replace the force F=2800i+1600j+3000klb acting at end A of the crank handle with a force R acting at O and a couple-vector CR. (b) Resolve R into the normal component P (normal to the cross section of the shaft) and the shear component V (in the plane of the cross section). (c) Resolve CR into the twisting component T and the bending component M.If F= 270 lb, determine the resultant couple moment. Enter a counter clockwise moment as a positive and a clockwise moment as a negative. 2 ft 2 ft 2 ft 150 lb. 30% B -2 ft-2 ft- RF FRA -F 30° 150 lb Last saved 2:10:18 PM