Q1/ In the equilibrium position shown in figure below, the uniform bar (AB) has a mass of (50 kg) and supports load (200 kg) at (A). Determine the tension (T) in the cable and reaction ?force at (B) 2.5m 2.5m A 1200 kg T= 7646 N, FBx= 2000 N, and FBy = %3D %3D 3299 N T = 6511 N, FBx = 3823 N, and FBy% = %3D 8992 N %3D

International Edition---engineering Mechanics: Statics, 4th Edition
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ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter4: Coplanar Equilibrium Analysis
Section: Chapter Questions
Problem 4.125P: The figure shows a three-pin arch. Determine the horizontal component of the pin reaction at A...
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Q1/ In the equilibrium position shown
in figure below, the uniform bar (AB)
has a mass of (50 kg) and supports
load (200 kg) at (A). Determine the
tension (T) in the cable and reaction
?force at (B)
2-5m
2.5m
200 kg
T= 7646 N, FBx= 2000 N, and FBy =
%3D
3299 N
T= 6511 N, FBx = 3823 N, and FBy =
%3D
%3D
%3D
8992 N
T = 7646 N, FBx = 3823 N, and FBy =
%3D
4169 N
Non of the above O
Transcribed Image Text:Q1/ In the equilibrium position shown in figure below, the uniform bar (AB) has a mass of (50 kg) and supports load (200 kg) at (A). Determine the tension (T) in the cable and reaction ?force at (B) 2-5m 2.5m 200 kg T= 7646 N, FBx= 2000 N, and FBy = %3D 3299 N T= 6511 N, FBx = 3823 N, and FBy = %3D %3D %3D 8992 N T = 7646 N, FBx = 3823 N, and FBy = %3D 4169 N Non of the above O
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