A uniform beam of length L = 13.6 meters and mass of 115.1 kg is pinned at one end and is being supported by a wire as shown. The wire is connected to the beam x = 4.4 meters from the pin. A person of mass 98.3 kg is standing all the way out on the edge of the beam, the tension in the wire is 4624 N, θ = 16.2 degrees, and φ = 78.9 degrees. If the positive x-axis points to the right, find the horizontal component of the force from the pin on the beam. (in N) a. 1463 b. 2121 c. 3075 d. 4459 e. 6466
A uniform beam of length L = 13.6 meters and mass of 115.1 kg is pinned at one end and is being supported by a wire as shown. The wire is connected to the beam x = 4.4 meters from the pin. A person of mass 98.3 kg is standing all the way out on the edge of the beam, the tension in the wire is 4624 N, θ = 16.2 degrees, and φ = 78.9 degrees. If the positive x-axis points to the right, find the horizontal component of the force from the pin on the beam. (in N) a. 1463 b. 2121 c. 3075 d. 4459 e. 6466
International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter9: Moments And Products Of Inertia Of Areas
Section: Chapter Questions
Problem 9.46P
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A uniform beam of length L = 13.6 meters and mass of 115.1 kg is pinned at one end and is being supported by a
wire as shown. The wire is connected to the beam x = 4.4 meters from the pin. A person of mass 98.3 kg is standing
all the way out on the edge of the beam, the tension in the wire is 4624 N, θ = 16.2 degrees, and φ = 78.9 degrees.
If the positive x-axis points to the right, find the horizontal component of the force from the pin on the beam.
(in N)
a. 1463
b. 2121
c. 3075
d. 4459
e. 6466
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