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Convective heat transfer coefficients tested in a laminar flow showed that the coefficients increased with the augment of Reynolds number and the volume fraction.
The CV values for most of the cases considering all the study sites were well within 4% for summer counts; however, for winter counts, the coefficients increased to as high as 15.5%.
For the random effects model, the results were similar in that all the coefficients had the expected negative sign but differed from the mean level model as not all of the coefficients increased with absolute size as the level of each dimension worsened (namely the movement from level 2 to level 3 in social activities and the movement from level 2 to level 3 in travelling).
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The coefficient increased minimally when importations plus cases of unknown source were examined (r = 0.38, p = 0.23).
Actually the coefficient increases a little.
The coefficient increases with increasing gas and liquid velocities in three phase fluidized beds.
The coefficient increases almost linearly with number of taxa with a regression k = 0.04 × N taxa + 0.45.
Although the remaining variables were the same as those using the Korean tariff, the magnitude of the absolute coefficients increased.
The attenuation coefficients increased near the fracture zone (Fig. 4d f).
Results showed that with the increase in feed concentration, the coefficients increase accordingly.
MEBC, MWF, and BGF had similar patterns for their negative and significant correlations, where the Spearman coefficients increased monotonically.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com