The stress-strain diagram for polyethylene, which is used to sheath coaxial cables, is determined from testing a specimen that has a gage length of 11 in. A load P on the specimen develops a strain of = 0.024 in. /in. (Figure 1) Part A Determine the approximate length of the specimen, measured between the gage points, when the load Express your answer in inches to four significant figures. ΠΟΠ ΑΣΦ ↓↑ • · C wc ? removed. Assume the specimen recovers elastically.

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Chapter1: Tension, Compression, And Shear
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The stress-strain diagram for polyethylene, which is used to
sheath coaxial cables, is determined from testing a specimen that
has a gage length of 11 in. A load P on the specimen develops a
strain of € = 0.024 in. /in. (Figure 1)
Figure
σ (ksi)
5
4
3
2
1
O
= 3,7
e
O
0.008 0.016 0.024 0.032 0.040 0.048
0.004
1 of 1
P
€ (in./in.)
Part A
Determine the approximate length of the specimen, measured between the gage points, when the load is removed. Assume the specimen recovers elastically.
Express your answer in inches to four significant figures.
15] ΑΣΦ | 11 | vec
L =
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?
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Transcribed Image Text:The stress-strain diagram for polyethylene, which is used to sheath coaxial cables, is determined from testing a specimen that has a gage length of 11 in. A load P on the specimen develops a strain of € = 0.024 in. /in. (Figure 1) Figure σ (ksi) 5 4 3 2 1 O = 3,7 e O 0.008 0.016 0.024 0.032 0.040 0.048 0.004 1 of 1 P € (in./in.) Part A Determine the approximate length of the specimen, measured between the gage points, when the load is removed. Assume the specimen recovers elastically. Express your answer in inches to four significant figures. 15] ΑΣΦ | 11 | vec L = Submit Provide Feedback Request Answer www ? Review in. Next >
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