For the figure shown, have the following information: Bar (1) made of bronze E =100 GPa Bar (2) made of aluminum E =70 GPa A= 528 mm? The force in bar (2) is found to be 25 kN in tension, when the load P is applied. a. Compute the stresses in bars 1 & 2. A= 951 mm2 b. Found the deflection of point A. c. Determine the load P. Enter the stress of bar (2) in the box below in MPg upto 4 digits after the decimal point. Do not enter the units in the box. Upload the pdf file in the next question. Only PDF files will be accepted. Any other file will be rejected and will NOT be evaluated. (2) 0.8 m B 0.4 m 1.1 m 0.5 m 0.6 m (1)

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For the figure shown, have the following information:
Bar (1) made of bronze
E =100 GPa
Bar (2) made of aluminum
E =70 GPa
A= 528 mm?
The force in bar (2) is found to be 25 kN in tension, when the load P is applied.
a. Compute the stresses in bars 1 & 2.
A= 951 mm2
b. Found the deflection of point A.
c. Determine the load P.
Enter the stress of bar (2) in the box below in MPg upto 4 digits after the decimal point. Do not enter the units in the box.
Upload the pdf file in the next question. Only PDF files will be accepted. Any other file will be rejected and will NOT be evaluated.
(2)
0.8 m
B
0.4 m
1.1 m
0.5 m
0.6 m
(1)
Transcribed Image Text:For the figure shown, have the following information: Bar (1) made of bronze E =100 GPa Bar (2) made of aluminum E =70 GPa A= 528 mm? The force in bar (2) is found to be 25 kN in tension, when the load P is applied. a. Compute the stresses in bars 1 & 2. A= 951 mm2 b. Found the deflection of point A. c. Determine the load P. Enter the stress of bar (2) in the box below in MPg upto 4 digits after the decimal point. Do not enter the units in the box. Upload the pdf file in the next question. Only PDF files will be accepted. Any other file will be rejected and will NOT be evaluated. (2) 0.8 m B 0.4 m 1.1 m 0.5 m 0.6 m (1)
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