Q2: For the following figure, find the reactions of the system. The specific weight of the plate is 500 lb/ft³ 2f+ 14 2ft 2f+ 21 (2)
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- 1200 N/m A 900 N/m B 3 m Find the reactions at the supports. 3 m 5: What is the reaction force at roller A? Indicate the magnitude (in Newtons) and direction with an arrow. 6: What is the reaction force at pin B? Indicate the magnitude (in Newtons) and direction for each force with an arrow.Tension at the cable is attached to B. With the given diagram find the Tension, supporting force reactions (Fax, Fay) at point A and the force acting in point C.Q1: Consider the traffic light (mass of 15 kg) suspend from two wires as show in the figure . find the tension in each wires. neglecting the masses of wires. www
- Q2: For the system shown in figure, all chains are of negligible weight, if the tensile force in chain D is 7820 N Determine the mass of the hanging weight W. consider the g=10 nQ2: Find the reactions forces at support A and the tension in cable for the beam shown in figure below. 3 m 500 N 2m BA transmission tower (a truss) for supporting electric wires is shown. The load of wire at D is shown as force F1 at an angle of a and the load of wire at A is shown as force F2 at an angle of B. Using the values given in the table below: F1 (N) F: (N) a (deg) B (deg) w (m) h (m) Value 150 70 30 60 2 a) Find the reaction forces at supports Y and Z. b) Determine the forces supported by members DO, DM, SV, and UX and specify whether the member is in Tension or Compression. M Q B F1 F2 T W X h
- A uniform bar 6 m long is held by ropes at the ends making angle 60° and 30°, respectively, with the horizontal. A weight of 400 N is hung 1.0 m from the left end where the 60° rope is attached. Find the tension in the rope and the weight of the bar.Need handwritten solution in good handwriting and correct answer for an upvoteQuestion 2) The figure shows a mechanical model of the Russel fracture traction device and the leg. The leg is held in balance in the position indicated by the two weights attached to the two cables. The combined weight of the leg and the cast is W=210 N. The horizontal distance between points A and B where the cables are attached to the leg is L=100 cm and the vertical distance is d=6 cm. Point C is the center of gravity of the cast and leg at three quarters of the L measured from point A (3L/4= 75 cm). The angle that cable 2 makes with the horizontal is measured as β=33°. Accordingly, in order for the leg to remain in balance in the shown position; a) Find the tensile force T1 in cable 1. (Write your result in N) b) Find the tensile force T2 in cable 2. (Write your result in N) c) Find the angle α of cable 1 with the horizontal. Response
- Please 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 youI need the answer as soon as possibleThe figure below shows a bird feeder that weighs 184.7 N. The feeder is supported by a vertical string, which is in turn tied to two strings, each of which is attached to a horizontal branch. The left string makes a 60° angle with the branch, while the right string makes a 30° angle. What is the tension in each string (in N)? 60° 30° Bird food left string N right string N bottom string N

