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Because the comparison result between CFX 11 and GAMMA showed a difference tendency, the modification of heat transfer correlation included in GAMMA was performed.
The data used to derive the correlation included samples with bubble point viscosity from less than 0.1 14,000 cp.
The credible interval on the correlation included a value of 0.0 but was wide, r(23) = − .14, 95% BCI = [− .58,.30], indicating that the data lacked resolution to strongly support or discredit the possibility of tradeoffs between the two tasks.
Other experiments which exhibited stronger CBP60g SID2 correlation included experiments investigating plastid function.
For the non-EU cohort, this correlation included assessment of OPAQ versus HUI and NHP versus HUI.
Some of the predictor variables examined for correlation included caring attitude/friendliness, first visit, routine reason for visit, male gender, waiting time, and time spent with physician.
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The correlation includes the relevant primary parameter, fit the data well, and is sufficiency accurate for engineering purposes.
The revised correlation as well as the newly-developed correlation including the influence of atomizer configurations, presented in good agreement with the experiment data.
Cool flame delay times were found to follow an Arrhenius behavior, and a correlation including pressure and equivalence ratio dependences was deduced.
To understand the influence of convection through computational methods in the aforementioned conditions, we performed numerical procedures and found a correlation including the aspect ratio influence (H/L).
Despite the long and tedious conventional empirical correlations, the new developed correlation includes less involving terms.
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