A 17.0 m-high and 13.0 m-long wall under construction and its bracing are shown in the figure below. The wall is in stable equilibrium without the bracing but can pivot at its base. Calculate the force (in N) exerted by each of the 10 braces if a strong wind exerts a horizontal force of 690 N on each square meter of the wall. Assume that the net force from the wind acts at a height halfway up the wall and that all braces exert equal forces parallel to their lengths. Neglect the thickness of the wall. (Enter the magnitude.) ΧΝ Fi wind 17.0m 8.5m 35 10 braces

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A 17.0 m-high and 13.0 m-long wall under construction and its bracing are shown in the figure below. The wall is in stable equilibrium without the bracing but can pivot at its base. Calculate the force
(in N) exerted by each of the 10 braces if a strong wind exerts a horizontal force of 690 N on each square meter of the wall. Assume that the net force from the wind acts at a height halfway up the
wall and that all braces exert equal forces parallel to their lengths. Neglect the thickness of the wall. (Enter the magnitude.)
ΧΝ
Fi
wind
17.0m
8.5m
35
10 braces
Transcribed Image Text:A 17.0 m-high and 13.0 m-long wall under construction and its bracing are shown in the figure below. The wall is in stable equilibrium without the bracing but can pivot at its base. Calculate the force (in N) exerted by each of the 10 braces if a strong wind exerts a horizontal force of 690 N on each square meter of the wall. Assume that the net force from the wind acts at a height halfway up the wall and that all braces exert equal forces parallel to their lengths. Neglect the thickness of the wall. (Enter the magnitude.) ΧΝ Fi wind 17.0m 8.5m 35 10 braces
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