P1-1. Draw a free-body diagram of the ring at A and identify each force. 30 45° 200 N 500 N
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- Now that we've found the force F12, which equilibrium equation will allow us to find the force F13 between joint 1 and 3? Question 3 options: Sum of torques = 0 Sum of horizontal forces = 0 Sum of vertical forces = 0When F = 300 N with Θ = 40°, what is the maximum value which P may have for static equilibrium? Neglect the weight of the structure compared with the applied loads.If the h0m0gen0us bar in equilibrium weighs 300N, what is the magnitude (N) of the tensi0n supp0rt at p0int C?
- Include some free body diagrams: A) Draw the components of the load in each member of the frame shown. Note that BC and AC are both cables. DC is a boom that exerts compression. Use the symbols Ax, Ay and Az for the x, y and z components respectively of force AC. Follow the same manner of representing the components of the other forces,i,e, Bx,By, Bz and Dx, Dy, Dz accordingly. (B) Set up the equilibrium equation based on summation of moments about AB. Use the symbols indicated in (A). Take the counterclockwise direction as positive. (C) Set up the equilibrium equation based on summation of moments about a vertical line passing through B (yB).Show how to find the force needed to move the top block. Use reasonable data and use an equilibrium analysis to explain your answer.Someone already solved this and the answr is .0212 and -0.025. My question is is it okay to solve this even if it is not in equilibrium? Why?
- What is the second condition for equilibrium? Cite two or three situations wherein this principle is applicable. State how the clockwise moment of force is related to the counterclockwise moments of force when the meterstick is in equilibriumThe pulley system below is in static equilibrium, where load W3 is 730 N, angle α = 50O and angle θ = 30O. Determine the value of loads W1 and W2, then calculate the ratio of (W1/W2). Give your answer as a ratio of (W1/W2) to two decimal places.The shaft pulley system has a universal joint at point 0. So it is supported by a slide at point A bearing and fixed support at point C. There is a mass of 12kg on the pulley and subject to the belt tensions but the mass of the shaft is negligible. a) what is the static equilibrium equations for the assembly. b) draw the FBD of the assembly. c) show the assembly and the FBD for the components
- Where is the best place to arrange most of the logs in the wheelbarrow so that it minimizes the amount of force on the backbone of the person transporting the load? Do an equilibrium analysis to explain your answer.Please by Section Analysis: Use the method of sections to find the true magnitude and direction in bar DB of the truss. Hint Joint C is in equilibrium). (B to D is not zero)The force P3 to make it to equilibrium in kN is The Stress in section 1 in N/mm2 is The Compressive Stress in section 2 in N/mm2 is The stress in section 3 in N/mm2 is The total change in length in x10-3 mm is