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An important result can be obtained from Table 4 is that the Gibbs free energy (ΔG0) is small and negative with its value decreasing with increasing temperature.
Meanwhile, fitness is taken as a function of trait value, decreasing with distance from an optimum.
All but the meta-assembly show an increase in this ratio as alignment score increases (cutoff value decreasing), with the meta-assembly having several outlier contigs with good alignment scores but low ratio.
For these cases, the larger the Nnew, the more 'hinge-like' they seem to become in terms of their y value (decreasing with increasing Nnew), although arguments based on the presence or absence of contacts alone might conclude they are all equally domain movements via a hinge mechanism; for all of these, y < 0.45.
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The mean amplitude value decreases with increasing pre-strain.
The absorbance and the b* values increased while L* value decreased with time and temperature.
It was observed that the τd value decreased with increasing particle size of the powder formulation.
It was found that the QT value decreases with increase of sweep rate.
The R value decreases with the increase in the applied J-integral.
Using this model, simulations demonstrate the mean and standard deviation of CV value decrease with the application rate.
This δS value decreased with increasing pressure and was slightly affected by initial temperature of the sample.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com