A tensile test was performed on a metal specimen having a circular cross section with a diameter of 0.510 inch. For each increment of load applied, the strain was directly determined by means of a strain gage attached to the specimen. The results are shown in Table 1.5.1. a. Prepare a table of stress and strain. b. Plot these data to obtain a stress-strain curve. Do not connect the data points; draw a best-fit straight line through them. c. Determine the modulus of elasticity as the slope of the best-fit line. Load (Ib) Strain x 10° (in. /in.) 250 37.1 500 70.3 1000 129.1 1500 230.1 2000 259.4 2500 372.4 3000 457.7 3500 586.5

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Problem 1.5.3P: A tensile test was performed on a metal specimen having a circular cross section with a diameter 0....
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A tensile test was performed on a metal specimen having a circular cross
section with a diameter of 0.510 inch. For each increment of load applied,
the strain was directly determined by means of a strain gage attached to
the specimen. The results are shown in Table 1.5.1.
a. Prepare a table of stress and strain.
b. Plot these data to obtain a stress-strain curve. Do not connect the data
points; draw a best-fit straight line through them.
c. Determine the modulus of elasticity as the slope of the best-fit line.
Load (Ib)
Strain x 10° (in. /in.)
250
37.1
500
70.3
1000
129.1
1500
230.1
2000
259.4
2500
372.4
3000
457.7
3500
586.5
Transcribed Image Text:A tensile test was performed on a metal specimen having a circular cross section with a diameter of 0.510 inch. For each increment of load applied, the strain was directly determined by means of a strain gage attached to the specimen. The results are shown in Table 1.5.1. a. Prepare a table of stress and strain. b. Plot these data to obtain a stress-strain curve. Do not connect the data points; draw a best-fit straight line through them. c. Determine the modulus of elasticity as the slope of the best-fit line. Load (Ib) Strain x 10° (in. /in.) 250 37.1 500 70.3 1000 129.1 1500 230.1 2000 259.4 2500 372.4 3000 457.7 3500 586.5
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