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Greater initial modulus was found for samples of r = 0.1.
A significant reduction (51%) of fibril modulus was found in Crh− 120/+ mice.
Elastic modulus was found to be significantly affected by diameter in both sites.
The highest Young׳s modulus was found in polyvinylfluoride based multilayers while the lowest values were detected for polyamide based structures.
The Young's modulus was found to be constant between 0.08 and 0.20 GPa in the oxidized state.
The results showed that a higher elastic modulus was found in gels containing greater proportions of β-Lg.
Reduction in material strength and elastic modulus was found to depend on the level of fatigue loading.
While a linear correlation between pore size and compression modulus was found, the effect of porosity was highly exponential.
The reducing Young's modulus was found to correlate with increasing porosity.
The coating elastic modulus was found to be less than half that of bulk Al.
A significantly higher Young's modulus was found for the cobalt-based bond coat.
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