Determine the resultant R of the system of distributed loads and locate its line of action with respect to the left support for w= 200 VE Ib/it B. 16 ft
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- The intensity of the line loading acting on a quarter circle is w=w0(2/). Use intergration to determine the resultant of the loading and its line of action.Determine the resultant force or resultant couple for each of the line loads shown. In each case the loading is normal to the line and has constant intensity w0.The force-couple system consists of the force R=250i+360j400kN and the couple-vector CR=1200i+750j+560kNm. Determine the equivalent wrench and find the coordinates of the point where the axis of the wrench crosses the xy-plane.
- The two forces are applied to the end of the boom OA. Determine the force F so that the resultant of the two forces lies in the yz-plane.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 trapdoor is held in the horizontal plane by two wires. Replace the forces in the wires with an equivalent force R that passes through point A, and determine the y-coordinate of point A.