(9) A bag of cement of weight 365 N hangs from three wires as shown in the figure below. Two of the wires make angles 0₁ = 56.9° and 82 = 23.1° with the horizontal. The system is in equilibrium. 0₂ 1₂ 20₁ (9a) Calculate the tension T₁. Submit Answer Tries 0/10 9b) Calculate the tension T2. Submit Answer Tries 0/10 9c) Calculate the tension T3. Submit Answer Tries 0/10
(9) A bag of cement of weight 365 N hangs from three wires as shown in the figure below. Two of the wires make angles 0₁ = 56.9° and 82 = 23.1° with the horizontal. The system is in equilibrium. 0₂ 1₂ 20₁ (9a) Calculate the tension T₁. Submit Answer Tries 0/10 9b) Calculate the tension T2. Submit Answer Tries 0/10 9c) Calculate the tension T3. Submit Answer Tries 0/10
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![(9) A bag of cement of weight 365 N hangs from three wires as shown in the figure below. Two of the wires make angles 0₁ = 56.9⁰ and 02
=
T3
T₂
(9a) Calculate the tension T₁.
Submit Answer Tries 0/10
(9b) Calculate the tension T2.
Submit Answer Tries 0/10
(9c) Calculate the tension T3.
Submit Answer Tries 0/10
NON
23.1° with the horizontal. The system is in equilibrium.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1aa927a6-9f17-49bd-8eba-b9f6601f31a8%2Fe425d6f8-be3d-4d9d-946a-c3816f9b8380%2Fbly3rg6_processed.png&w=3840&q=75)
Transcribed Image Text:(9) A bag of cement of weight 365 N hangs from three wires as shown in the figure below. Two of the wires make angles 0₁ = 56.9⁰ and 02
=
T3
T₂
(9a) Calculate the tension T₁.
Submit Answer Tries 0/10
(9b) Calculate the tension T2.
Submit Answer Tries 0/10
(9c) Calculate the tension T3.
Submit Answer Tries 0/10
NON
23.1° with the horizontal. The system is in equilibrium.
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