weight angle o above the rod. The other end rests on a small frictionless support and presses into a wall as shown in the figure. -Support Determine the magnitude n of the vertical normal force exerted by the support on the rod and find the magnitude T of the tension i the cable. N n=

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter14: Static Equilibrium, Elasticity, And Fracture
Section: Chapter Questions
Problem 33PQ: Problems 33 and 34 are paired. One end of a uniform beam that weighs 2.80 102 N is attached to a...
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One end of a uniform rod of weight w = 74.0 N and length L = 2.85 m is supported by a cable at an angle of 0 = 34.0° above the
rod. The other end rests on a small frictionless support and presses into a wall as shown in the figure.
-Support
-L-
Determine the magnitude n of the vertical normal force exerted by the support on the rod and find the magnitude T of the tension in
the cable.
n =
T =
Transcribed Image Text:One end of a uniform rod of weight w = 74.0 N and length L = 2.85 m is supported by a cable at an angle of 0 = 34.0° above the rod. The other end rests on a small frictionless support and presses into a wall as shown in the figure. -Support -L- Determine the magnitude n of the vertical normal force exerted by the support on the rod and find the magnitude T of the tension in the cable. n = T =
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