# Replace the loading by an equivalent resultant force and couple moment at point a

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Replace the force system acting on the frame by an equivalent resultant force and couple moment acting at point A.|Replace the loading by an equivalent resultant force and couple moment at point O. Prob. 4-109 X 0.5 m 0.7 m F, = (-2 i +5j-3 k} KN 0.8 m F1 = {8i - 2 k} kN Previous question Next question COMPANYTranscribed image text: R Replace the loading system by an equivalent resultant force and couple moment acting at point o Assume Fi = { 2801 + 1803 + 220k}N (Ege 1) Determine the resultant force Enter they and components of the resultant force separated by commas. ||⭐⭐⭐⭐⭐ Replace The Loading By A Single Resultant Force; Replace The Loading By A Single Resultant Force ...Resultant moment at O: M O =r 1 × F 1 + r 2 × F 2 + r 3 × F 3. Thus, every complex system of forces can be thus reduced to a simple Couple - Force equivalent system. Unlike the previous case, we may not have resultant moment vector perpendicular to the resultant force vector. The equivalent force couple system is a characteristic of the ...The equivalent force-couple system at A is M SOLUTION Tcos 50. (a) Based on EM : Based on PROBLEM 3.80 The talsion in the cable attached to the end C Of an adjustable boom ABC is 2240 N. Replace the force exerted by the cable at C with an equivalent fœce- system (a) atA, (b) at B. T -2240 N 224 (2240 m) —4633 N.m MA -4.63 kN.m) T = 2240N =3) The location of the single equivalent resultant force is given as x = - M RyO /F RzO and y = M RxO /F RzO Given: The slab is subjected to three parallel forces. Find: The equivalent resultant force and couple moment at the origin O. Also find the location (x, y) of the single equivalent resultant Plan: force.|Equivalent Resultant Force And Couple Moment About Point O. The differentialforce indicated in Fig. a is $d{ F }_{ R } = w dx = left( { w }_{ 0 }cos The equivalent force-couple system at A is M SOLUTION Tcos 50. (a) Based on EM : Based on PROBLEM 3.80 The talsion in the cable attached to the end C Of an adjustable boom ABC is 2240 N. Replace the force exerted by the cable at C with an equivalent fœce- system (a) atA, (b) at B. T -2240 N 224 (2240 m) —4633 N.m MA -4.63 kN.m) T = 2240N =Nm Replace the loading system by an equivalent resultant force and couple moment acting at point O. Assume F1= 130 N, F2= 220 N and Mc= 80 Nm .(Figure 1) Figure 1 of 1The figure shows a pipe assembly consisting of three pipes in the xyz-space. Point O is at the origin. The first pipe extends 0.3 meter from point O along the positive z-axis. The second pipe then extends 0.5 meters parallel to ...4.8 Further Simplification of a Force and Couple System An equivalent system of single resultant force FRacting at a specified point, Oand a resultant couple moment (MR)O for a force & couple system can be further reduced to an equivalent single resultant force if the lines of action of FR and (MR)O are perpendicular to each other.|Equivalent Resultant Force And Couple Moment About Point A. Summing the forces along the y axis by referring to Fig. a, +[latex]uparrow$ [latex]{({ F |Replace the loading system by an equivalent resultant force and couple moment acting at point A. Assume 35N 2 5 N and 55 N Figure 1) - Part A Determine the magnitude of the resultant force Express your answer to three significant figures and include the appropriate units.|a) A single force. b) Resultant force and couple acting at point A. c) Resultant force and couple acting at point B. d) Resultant force and couple acting at point C. 3. Replace the force system by a resultant force and couple moment at point O. 4. Two coplanar forces P and Q are shown in figure. Assume all squares of the same size.|Answer to: Replace the loading system by an equivalent resultant force and couple moment acting at point ''A''. By signing up, you'll get thousands...|Replace the loading by an equivalent resultantforce and couple moment acting at point O. Get the book: http://amzn.to/2h3hcFq|in this question. The resultant force f R. Equal to some of forces in white direction so f r equals negative. 200 22.5, minus 13.5 minus 15. So it's gonna be equal. 51 killer Newton's and the direction is down over for the moment. Fame. The resultant moment are equal to some off moment around zero so m r equals negative. 500 minus 22.5 Multiply the distance five minus 13.5.|4.8 Further Simplification of a Force and Couple System An equivalent system of single resultant force FRacting at a specified point, Oand a resultant couple moment (MR)O for a force & couple system can be further reduced to an equivalent single resultant force if the lines of action of FR and (MR)O are perpendicular to each other.