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![Drawbridges, such as this one at the Tower of London, are raised and lowered by cable systems.
Now consider the drawbridge illustrated below wherein the nearly horizontal brown door is centered along
the vertical brick wall, the door-wall angle is a = 80° as measured relative to the black hinge axis, the
tension (magnitude) in each cable is T = 600 N and the relevant dimensions are a = 300 cm, b = 200 cm, c
= 590 cm and d = 310 cm.
Determine the resultant torque (magnitude) | (MR) azis in Nm that the two cables contribute to the moment
about the hinge axis.
|(MR)azis] = number (rtol=0.01, atol="
α
(c-a)
2
N.m
b
T](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F25850e3e-4949-44e0-9499-7e7e0a7b81cb%2F49478d5e-e550-4647-894d-ca0f3d5e56bf%2Fmyalic_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Drawbridges, such as this one at the Tower of London, are raised and lowered by cable systems.
Now consider the drawbridge illustrated below wherein the nearly horizontal brown door is centered along
the vertical brick wall, the door-wall angle is a = 80° as measured relative to the black hinge axis, the
tension (magnitude) in each cable is T = 600 N and the relevant dimensions are a = 300 cm, b = 200 cm, c
= 590 cm and d = 310 cm.
Determine the resultant torque (magnitude) | (MR) azis in Nm that the two cables contribute to the moment
about the hinge axis.
|(MR)azis] = number (rtol=0.01, atol="
α
(c-a)
2
N.m
b
T
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