Using the principles to be developed in Chapter 3 on equilibrium, one can determine that the tension in cable AB is 289.8 N. Deter

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter5: Three-dimensional Equilibrium
Section: Chapter Questions
Problem 5.42P: The 350-lb homogeneous plate has the shape of an isosceles triangle. The plate is supported by a...
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Your answer is partially correct.
Using the principles to be developed in Chapter 3 on equilibrium, one can determine that the tension in cable AB is 289.8 N. Determine
the moment about the x-axis of this tension force acting on point A. Compare your result with the moment of the weight W of the 25-
kg uniform plate about the x-axis. What is the moment of the tension force acting at A about the line OB?
Mx =
0.38 m
Answers:
0.57 m
(Mx)w =
MOB =
i
0
-74.047
-63.853
A
0.51 m
W
25 kg
23⁰
0.92 m
N•m
N•m
N•m
Transcribed Image Text:Your answer is partially correct. Using the principles to be developed in Chapter 3 on equilibrium, one can determine that the tension in cable AB is 289.8 N. Determine the moment about the x-axis of this tension force acting on point A. Compare your result with the moment of the weight W of the 25- kg uniform plate about the x-axis. What is the moment of the tension force acting at A about the line OB? Mx = 0.38 m Answers: 0.57 m (Mx)w = MOB = i 0 -74.047 -63.853 A 0.51 m W 25 kg 23⁰ 0.92 m N•m N•m N•m
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