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Three ropes are tied together as shown and are stationary. Assume T1 = 87 N and T2 = 35 N. Find the tension T3.
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- A 145 N sign is supported by two ropes. One rope pulls up and to the right 01 = 28.5° above the horizontal with a tension T2 T1, and the other rope pulls up and to the left 02 = 45.5° above the horizontal with a tension T2, as shown in the figure. T Find the tensions T and T2. EXIT T = N %3D T2 =Find the tension in each of the three cables (in N) supporting the traffic light if it weighs 2.22 ✕ 102 N. w = 222 N T1= N T2= N T3= NA traffic light weighing 100 N hangs from a vertical cable tied to two other cables that are fastened to a support. The upper cables make angles of 37.0° and 53.0° with the horizontal. Find the tension in each of the three cables.
- A 10 kg mass is suspended from a ceiling and wall by three cords as shown. Find the tension T1 and T2 in cords 1 and 2.Two masses m1=4 Kg and m2=D14 Kg are connected with string and pulled with a force F=24 N that makes an angle 0=53° with a smooth horizontal surface as shown in the figure. Find the tension in the string (Newton). FA mi m2Consider a light fixture supported by two wires as shown in the figure. 46° 46° The fixture weighs 115 N. Find the tension in the left supporting wire. Answer in units of N.
- Two masses m,=5 Kg and m2=9 Kg are connected with string and pulled with a force F=27 N that makes an angle of 53º with a smooth horizontal surface as shown in the figure. Find the tension in the string in a unit of Newton. F m2 m1A crate that has a mass of 84.7 kg is held in equilibrium by two ropes as shown in the figure. Find the tension (in Newtons) in rope 1 if a = 45.8 °.pls answer 100% correctly thanks, A box hangs from two cables fastened to the ceiling. The cables make angles of 36 degrees and 33 degrees to the ceiling. The mass of the box is 82 kg. Determine the tension in each cable. Include a diagram showing the addition of the vectors.