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The maximum strength results of each muscle group statistically correlated with the 6MWT distance.
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While the analysis result of the strength of prism specimens was similar to the test result, even if the strain at the maximum strength was little bit smaller than the test result.
It was noted that ACC at 60 psi (414 kPa) for 10 h resulted in the maximum strength gain and CO2 uptake, leading to a post-ACC compressive strength of more than 200% of the pre-ACC strength, and a CO2 uptake of about 11% by mass of cement.
With the TEG results, we measured the maximum strength of the developed clot: Maximum Amplitude (MA, mm).
The result was determined from the maximum strength value on the stress-strain curve.
The experimental results are analyzed in terms of maximum strength and toughness.
From the finite element results, it is shown that the maximum strength indexes can be reduced by 19%39%% when using the fiber path optimized laminate.
Compressive strength and flexural strength results showed that 0.05% graphene produced maximum increase of 8%and13%3% respectively with respect to FNA mortar.
According to the results of ab initio calculations, carbyne containing five atoms has a maximum strength.
Meanwhile, the tensile testing results of these two laminates also agree well with the predicted maximum strength indexes.
The results show that there exists an optimal filler content corresponding to the maximum strength and modulus.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com