2. The stress-strain diagram for a bone is shown and, according to the data analysis curve fitting tool, it can be described by the equation ε = 0.45∙10-6 +0.36 10-12³, where stress is in kPa. Determine the modulus of toughness and the amount of elongation of a 200-mm-long region just before it fractures if failure occurs at ε = 0.12 mm/mm. . € = 0.45(106)o +0.36(10-12)³ P

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 7.6.13P: A solid spherical ball of magnesium alloy (E = 6.5 × l0-6 psi, v = 0.35) is lowered into the ocean...
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2. The stress-strain diagram for a bone is shown and, according to
the data analysis curve fitting tool, it can be described by the
equation ε = 0.45 · 10-6 +0.36 10-12³, where stress is in
kPa. Determine the modulus of toughness and the amount of
elongation of a 200-mm-long region just before it fractures if failure
occurs at ε = 0.12 mm/mm.
-€ = 0.45(106) + 0.36(10-12)³
€
↑P
Transcribed Image Text:2. The stress-strain diagram for a bone is shown and, according to the data analysis curve fitting tool, it can be described by the equation ε = 0.45 · 10-6 +0.36 10-12³, where stress is in kPa. Determine the modulus of toughness and the amount of elongation of a 200-mm-long region just before it fractures if failure occurs at ε = 0.12 mm/mm. -€ = 0.45(106) + 0.36(10-12)³ € ↑P
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