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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![Q2: For the following figure, find the reactions of the system. The specific weight of the
plate is 500 lb/ft³](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdab0c7de-2940-4b02-aacb-7bbf2be3f916%2F73d0bb8a-711f-4231-8c50-3a66170cf78a%2Fv02xzkg_processed.jpeg&w=3840&q=75)
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14
2ft
2f+
21
(2)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdab0c7de-2940-4b02-aacb-7bbf2be3f916%2F73d0bb8a-711f-4231-8c50-3a66170cf78a%2F7hc9e7m_processed.jpeg&w=3840&q=75)
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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.Q2: Find the equivalent mass of the rocker arm assembly shown in the figure with respect to the x coordinate 000 m1 000 m2 JoThree hydraulic cylinders control the motion of the backhoe arm and bucket in the given figure. In the position shown, a 18.86-kN horizontal force is applied to the bucket at point L. Assuming the weight of the backhoe arm is negligible compared to forces acting on it, find the force acting on pin A (FA) in kN.
- 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. wwwQ2: 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 nFind the magnitude of the force exerted on bolt A, given:P = 100 lb, L1 = 1.4 in, L2 = 5.4 in, L3 = 12 in, L4 = 0.4 in, L5 = 1 in
- 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 upvoteFind the normal forces at A, B, and C from the figure below. Each pipe weighs 2500 N. 45°
- I can't find C or DQuestion 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. ResponseAn eye bolt is used to attach 3 cables to a steel plate. The tension in the three cables create F,=200 Ibf, F2=250 lbf, and F3=100 lbf with 0 = 30 degrees and p=27.1 degrees. If the eye bolt is in equilibrium, what is the x-component of the sum of other forces (reaction force) on the bolt? If you add up the three force vectors, the reaction force you are looking for will just be in the opposite direction to put the eye bolt in equilibrium. The x-direction is positive and to the right. Eye bolt rsteel plate Nut & Washer
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