Q.1) Cables AE and CF are fastened to either side of a triangular plate to keep it from rotating about line DB. Points E and F are fastened to the ground in the x-z plane. If the tension magnitude in cable AE is FAE = 55 N, a) Compute the moment about point D created by tension vector FAE (pointing from A to E). Express the moment in Cartesian notion. b) Compute the magnitude of the moment that force FAE creates about the axis passing through D and B. c) Determine the tension required in cable CF (magnitude of force FCF, pointing from C to F) that would cause the combined resultant moment about line DB to be zero. 0.7 m 0.6 m 0.2 m D 0.9 m 0.4 m 0.3 m 0.9 m 0.6 m VF B 0.35 m 0.4 m 0.6 m x A (0, 0.6, 0.2) m B (1.2, 0.35, 0) m C (0, 0.9, -0.4) m D (0, 0.7, 0) m E (0.9, 0, 0.4) m F (0.6, 0, -0.6) m

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
Chapter6: Beams And Cables
Section: Chapter Questions
Problem 6.6P: Find the internal force systems acting on sections 1 and 2.
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Q.1) Cables AE and CF are fastened to either side of a triangular plate to keep it
from rotating about line DB. Points E and F are fastened to the ground in the x-z
plane. If the tension magnitude in cable AE is FAE = 55 N,
a) Compute the moment about point D created by tension vector FAE (pointing
from A to E). Express the moment in Cartesian notion.
b) Compute the magnitude of the moment that force FAE creates about the axis
passing through D and B.
c) Determine the tension required in cable CF (magnitude of force FCF, pointing
from C to F) that would cause the combined resultant moment about line DB
to be zero.
0.7 m
0.6 m
y
0.2 m
0.9 m
0.4 m
0.3 m
E
C
0.9 m
B
0.6 m
F
0.35 m
0.4 m
0.6 m
x
A (0, 0.6, 0.2) m
B (1.2, 0.35, 0) m
C (0, 0.9, -0.4) m
D (0, 0.7, 0) m
E (0.9, 0, 0.4) m
F (0.6, 0, -0.6) m
Transcribed Image Text:Q.1) Cables AE and CF are fastened to either side of a triangular plate to keep it from rotating about line DB. Points E and F are fastened to the ground in the x-z plane. If the tension magnitude in cable AE is FAE = 55 N, a) Compute the moment about point D created by tension vector FAE (pointing from A to E). Express the moment in Cartesian notion. b) Compute the magnitude of the moment that force FAE creates about the axis passing through D and B. c) Determine the tension required in cable CF (magnitude of force FCF, pointing from C to F) that would cause the combined resultant moment about line DB to be zero. 0.7 m 0.6 m y 0.2 m 0.9 m 0.4 m 0.3 m E C 0.9 m B 0.6 m F 0.35 m 0.4 m 0.6 m x A (0, 0.6, 0.2) m B (1.2, 0.35, 0) m C (0, 0.9, -0.4) m D (0, 0.7, 0) m E (0.9, 0, 0.4) m F (0.6, 0, -0.6) m
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