For the truss in figure below, the cross-sectional area of the truss members is A = 500 mm² and Young's modulus E= 200 GPa. Let P= 85.8 KN. 1 m τις ελ D 1 m B E √3 m A P Determine: a) Strain energy for truss AC. Enter your answer in J to 2 decimal places. Positive value indicates tension, negative value compression.

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter7: Analysis Of Stress And Strain
Section: Chapter Questions
Problem 7.3.2P: Repeat the preceding problem using sx= 5.5 MPa. ??y= 4 MPa. and txy= 3.2 MPa.
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Hi, I am struggling to understand how to find the strain energy in trusses.

For the truss in figure below, the cross-sectional area of the truss members is A = 500 mm² and Young's modulus E= 200 GPa. Let
P= 85.8 KN.
1 m
√3 m
D
F
1 m
B
C
E
√3 m
A
P
Determine:
a) Strain energy for truss AC. Enter your answer in J to 2 decimal places. Positive value indicates tension, negative value
compression.
Transcribed Image Text:For the truss in figure below, the cross-sectional area of the truss members is A = 500 mm² and Young's modulus E= 200 GPa. Let P= 85.8 KN. 1 m √3 m D F 1 m B C E √3 m A P Determine: a) Strain energy for truss AC. Enter your answer in J to 2 decimal places. Positive value indicates tension, negative value compression.
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