The guy wires AB and AC are attached to the top of the transmission tower. The tension in cable AB is 8.7 kN. Determine the required tension T in cable AC such that the net effect of the two cables is a downward force at point A. Determine the magnitude R of this downward force. Assume a = 39 m, b = 50 m, c = 23 m, and d = 28 m. A B Answers: T = i R= i IXIXIXIXI▶> b KN KN
The guy wires AB and AC are attached to the top of the transmission tower. The tension in cable AB is 8.7 kN. Determine the required tension T in cable AC such that the net effect of the two cables is a downward force at point A. Determine the magnitude R of this downward force. Assume a = 39 m, b = 50 m, c = 23 m, and d = 28 m. A B Answers: T = i R= i IXIXIXIXI▶> b KN KN
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![The guy wires AB and AC are attached to the top of the transmission tower. The tension in cable AB is 8.7 kN. Determine the required
tension T in cable AC such that the net effect of the two cables is a downward force at point A. Determine the magnitude R of this
downward force.
Assume a = 39 m, b = 50 m, c = 23 m, and d = 28 m.
A
B
Answers:
T =
i
R=
i
IXIXIXIXI▶>
b
KN
KN](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F94474d3d-09b4-4d06-b80d-6d6c1857665c%2F4c797391-efd2-46ea-85bc-1d2776305dbd%2Fw3u7cjn_processed.png&w=3840&q=75)
Transcribed Image Text:The guy wires AB and AC are attached to the top of the transmission tower. The tension in cable AB is 8.7 kN. Determine the required
tension T in cable AC such that the net effect of the two cables is a downward force at point A. Determine the magnitude R of this
downward force.
Assume a = 39 m, b = 50 m, c = 23 m, and d = 28 m.
A
B
Answers:
T =
i
R=
i
IXIXIXIXI▶>
b
KN
KN
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