The diagram below shows a rigid body ABC held in equilibrium by a ball-and-socket joint at 4 and three cables: BD, BE and CD. A 1.80 kN force is applied at F. The mass of ABC can be neglected. a) Draw a large, clear free-body diagram for ABC. b) Determine Cartesian component force equations of equilibrium for ABC. c) Determine a vector moment equation of equilibrium in determinant form for ABC. Take moments about B. d) Determine Cartesian component moment equations of equilibrium for ABC.

International Edition---engineering Mechanics: Statics, 4th Edition
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Author:Andrew Pytel And Jaan Kiusalaas
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Chapter10: Virtual Work And Potential Energy
Section: Chapter Questions
Problem 10.54P: The mechanism of negligible weight supports the weight W. Find the value of for equilibrium. Is the...
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QUESTION 1
The diagram below shows a rigid body ABC held in equilibrium by a ball-and-socket joint at 4 and three
cables: BD, BE and CD. A 1.80 kN force is applied at F. The mass of ABC can be neglected.
a) Draw a large, clear free-body diagram for ABC.
b) Determine Cartesian component force equations of equilibrium for ABC.
c) Determine a vector moment equation of equilibrium in determinant form for ABC. Take
moments about B.
d) Determine Cartesian component moment equations of equilibrium for ABC.
2.00 m
2.00 m
1.00 m
A
E
F
1.00 m
В
1.00 m
1.50 m
1.80 kN
Transcribed Image Text:QUESTION 1 The diagram below shows a rigid body ABC held in equilibrium by a ball-and-socket joint at 4 and three cables: BD, BE and CD. A 1.80 kN force is applied at F. The mass of ABC can be neglected. a) Draw a large, clear free-body diagram for ABC. b) Determine Cartesian component force equations of equilibrium for ABC. c) Determine a vector moment equation of equilibrium in determinant form for ABC. Take moments about B. d) Determine Cartesian component moment equations of equilibrium for ABC. 2.00 m 2.00 m 1.00 m A E F 1.00 m В 1.00 m 1.50 m 1.80 kN
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