Determine the resultant of the forces shown in Figure P6-13. Find the coordinates.
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- Determine the resultant and angle of concurrent forces system using algebraic method. F1=P F2=2P F3=P F4=3P F5=1P F6=2P F7=P F8=7P F9=7P 0₁-45 0₂-45 03-70 04=20 05=45 06-45 07-30 08-40 09-20 FA F5 F6 04 05 0₂ 06 F3 0₂ 0, 08 09 F₂ Fg 8 F₂ Fg F₁determine the moment that is formed due F at the origin. you must use a SCALAR method. However express your final ansewr as a cartesian vector. The force vector of F & the lever are in the XY plane.3-50 with the following modifications: Change the z-coordinate of point A from +6 ft to +8 ft
- Using the Cartesian components (rectangular components), determine the resultant of the force vectors answering the magnitude in the space provided below and the direction in the procedure document. Only handwritten Draw to approximate scale the sum-of-forces polygon showing the original vectors and the resultant. In a separate document show the entire work. F = 252lbs, F₂ = 130lbs, a = 65° F3 = 55lbs, m = 6.2, and n = 8.6H.W. Determine the resultant and angle for the figure below: F1-400N 30 60 F3=200N F2=300NFind the certroid 4 4 18
- You must have to draw the FBD ,and then solve in handwritten format. [Don't Copy similar solution] Determine the moment of the force about point O. Neglect the thickness of the member. Assume F= 90N$ Magnitude R= Direction 8 = Three forces act on point : A = 60 N at 135°, B = and C in this diagram to the correct magnitudes and directions. When this has been done correctly the dotted vector will become solid. 50 N at -45° and, C= 75 N at 60° 2. Pick up vectors A, B and C by their tails, and move them into a tip to tail arrangement. When this has been correctly done the resultant R will appear. measured Estimate the magnitude and direction of the resultant Based on this diagram, estimate the magnitude R and direction of the resultant. from the force R using the tip-to-tail method. 1. Move the tips of forces A, B, Submit part Submit parti need help solving for F ite the force F in Cartesian vector form and determine the direction cosines. Use point C as (1.5, -1, 3)ft. S: lb, 115°, 73°, 149° F-80 lb 311 6 ft
- Solve for the resultant forces and moments at points A and B in diagram belowSolve Q2-22 using both (a) law of parallelogram and (b) Cartesian vector5- The mast is subjected to three forces shown. Determine all the coordinate direction angles of F so that the resultant force action on the mast is zero. A-500 N A-300N YA-200 N