The shaded shape is supported by Cable 1 and Cable 2 in the position shown (Drawing is NOT to scale). The shape has a uniform weight per unit area of 6kN/m². Step 1: If A=1.7m, C=0.8m, x=1.2m, y=1.8m, z=3.8m, a = 62°, and 3 = 20°, find the value of B %3D needed to keep the shape in static equilibrium. Then solve for the tension in Cable 1 (T1) and the tension in Cable 2 (T2).

Residential Construction Academy: House Wiring (MindTap Course List)
5th Edition
ISBN:9781337402415
Author:Gregory W Fletcher
Publisher:Gregory W Fletcher
Chapter7: Introduction To Residential Service Entrances
Section: Chapter Questions
Problem 13RQ: Describe the support requirements for service entrance cable. (Objective 7-3)
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The shaded shape is supported by Cable 1 and Cable 2 in the position shown (Drawing is NOT to
scale). The shape has a uniform weight per unit area of 6kN/m².
Step 1: If A=1.7m, C=0.8m, x=1.2m, y=1.8m, z=3.8m, a = 62°, and 3 = 20°, find the value of B
needed to keep the shape in static equilibrium. Then solve for the tension in Cable 1 (T1) and the
tension in Cable 2 (T2).
Transcribed Image Text:The shaded shape is supported by Cable 1 and Cable 2 in the position shown (Drawing is NOT to scale). The shape has a uniform weight per unit area of 6kN/m². Step 1: If A=1.7m, C=0.8m, x=1.2m, y=1.8m, z=3.8m, a = 62°, and 3 = 20°, find the value of B needed to keep the shape in static equilibrium. Then solve for the tension in Cable 1 (T1) and the tension in Cable 2 (T2).
Cable 1
a
A
Cable 2
B
X
y
Transcribed Image Text:Cable 1 a A Cable 2 B X y
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