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Physical properties of extrudates were measured including radial expansion ratio, unit density, bulk density, and water absorption index.
The properties studied were radial expansion ratio, unit density, bulk spring index, bulk compressibility and Young's modulus.
For high aspect ratio unit cells a clear localization band is found inside the cell, which actually represents several parallel bands, due to periodicity.
The effect of superposed tensile or compressive stresses is found to be bigger for high aspect ratio unit cells than for low aspect ratios.
Regarding the non-acoustic performance, the physical (open void ratio, unit weight), mechanical (compressive strength, Young's modulus, flexural strength, fracture energy, indirect tensile strength, characteristic length, impact strength) and fire resistance properties were determined.
In the materials represented by a low aspect ratio unit cell localization would also occur after that the maximum shear stress has been passed, but this is not shown when periodicity is enforced.
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Analytic approaches varied widely across teams, and estimated effect sizes ranged from 0.89 to 2.93 in odds ratio units, with a median of 1.31.
In Fig. 3a, power in signal-to-noise ratio units is plotted as a function of frequency for the first six modes.
The values of titers at which we observed immunoreactivity to the antigens were represented in relative dilution ratio units.
Copy-number values > 0.05 log2 ratio units represented a gain and values < -0.05 log2 ratio units represented a loss.
Signals were computed into relative ratio units of the fluorescence intensity of different wavelengths (340/380 nm).
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