The shear leg derrick is used to haul the 162-kg net of fish onto the dock. Determine the compressive force along leg AB. Assume the force in each leg acts along its axis. Supply the answer in kN and as a negative number. D 5.6m. 2 m m
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- In the equilibrium position shown, the resultant of the three forces acting on the bell crank passes through the bearing O. Determine the vertical force P. Does the result depend on 0? 77 lb 8" 24° $ 46 lb Answer: P = i O 10" lbThe following concurrent forces are acting on a body in xy plane: A 300 lb pointing up to the right 30 degrees with x axis, 400 lb at 45 degrees with x axis acting up to the left, 200 lb down to the left at 60 degrees with x axis, 150 lb down to the right at 75 degrees with x axis and a 100 lb directly to the right. Determine the resultant force and its direction using graphical and analytical method. Pls show the solution, formula and free body diagram.The force system shown is composed of three forces: A = 35.75 kN, B = 41.83 kN. If β = 56.36°, what should be the magnitude of force C such that the three forces are in equilibrium? Round off to two decimal places.
- The body on the 15-degree incline is acted upon by force P inclined at 20 degrees with the horizontal. If P is resolved into components parallel and perpedicular to the incline and the value of the parallel component is 41 Ibs, compute for the value of the perperdicular component, Pper. Pper 200 par 15° .The following concurrent forces are acting on a body in xy plane: A 300 lb pointing up to the right 30 degrees with x axis, 400 lb at 45 degrees with x axis acting up to the left, 200 lb down to the left at 60 degrees with x axis, 150 lb down to the right at 75 degrees with x axis and a 100 lb directly to the right. Determine the resultant force and its direction using graphical and analytical method. Show solution, formula and the FBD and pls write legiblePlease help. Please make sure you clearly state how you got the numbers you got and why you are using them. Also please make sure you clearly put your formulas and label your units along the numbers that you are using. In the following frame ilustration, F1s 60 N and F2 is 9 N. What is the tension in the cable AB and the reaction force vector necessary to keep the system in static equilibrium? Give the X component reaction force at C( for an x axis going left to right). Also please solve for the rest of the 3 unknowns please. Thank you
- Problem 1d: Find the resultant for this system of forces: 7 ft F₁-81 lb F₁-100 lb 3 ft 40%In the equilibrium position shown, the resultant of the three forces acting on the bell crank passes through the bearing O. Determine the vertical force P. Does the result depend on 6? 55 lb 78 lb Answer: P = $ 25+2. The force P = 2 kips is applied to point A, and is supported by cable AB, cable AC, and bar OA. The force P and both cables pull on point A, and bar OA pushes on point A. Determine the forces in cables AB and AC, and in bar OA. You can use Excel to solve the equations, but you don't have to for this one. (Point A lies in the zy plane, and points B and C lie in the xz plane.) 6 ft x 4 ft B 4 ft 12 ft AC D 5 ft P 12 ft
- PS2-5 Three forces are acting on the problem. List all of the simplifications that can be used in the problem. What is the simplest problem? F₂ 45° R2- The body on the 30° incline as shown below is acted upon by a force P inclined at 20° with the horizontal. If P is resolved into components parallel and perpendicular to incline and the value of the parallel component is 1800 N, compute the value of the perpendicular component and that of P. P 20° 30°Determine the magnitude (lb) of the horizontal component of force at point C if P = 130.9 lb, x = 14.3 in, y = 7.4 in, and z = 6.8 in. Round off only on the final answer expressed in 3 decimal places. Instead of units, indicate the direction: use L if to the left or R if to the right.