attached to the wall of M-56.5 kg is suspended by a rope from the midpoint of a uniform boom. The boom has a mass of m = 118 kg and a length of 1 = 9.45 m. The end of the boom is supported by another rope which is horizontal and is as shown in the figure. m Ꮎ M The boom makes an angle of 0 = 65.9° with the vertical wall. Calculate the tension in the vertical rope. 511N Submit Answer Incorrect. Tries 2/12 Previous Tries What is the tension in the horizontal rope? 210.3N Submit Answer Incorrect. Tries 3/12 Previous Tries

College Physics
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Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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attached to the wall of M-56.5 kg is suspended by a rope from the midpoint of a uniform boom. The boom has a mass of m = 118 kg and a length of 1 = 9.45 m. The end of the boom is supported by another rope which is horizontal and is
as shown in the figure.
m
Ꮎ
M
The boom makes an angle of 0 = 65.9° with the vertical wall. Calculate the tension in the vertical rope.
511N
Submit Answer Incorrect. Tries 2/12 Previous Tries
What is the tension in the horizontal rope?
210.3N
Submit Answer Incorrect. Tries 3/12 Previous Tries
Transcribed Image Text:attached to the wall of M-56.5 kg is suspended by a rope from the midpoint of a uniform boom. The boom has a mass of m = 118 kg and a length of 1 = 9.45 m. The end of the boom is supported by another rope which is horizontal and is as shown in the figure. m Ꮎ M The boom makes an angle of 0 = 65.9° with the vertical wall. Calculate the tension in the vertical rope. 511N Submit Answer Incorrect. Tries 2/12 Previous Tries What is the tension in the horizontal rope? 210.3N Submit Answer Incorrect. Tries 3/12 Previous Tries
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