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The evaluated rate constants of the reactions C2H5 + H → C2H4 + H2 and C2H5 + O2 → C2H4 + HO2 were found to be significantly different from currently accepted values.
A detailed chemical mechanism for silane combustion is presented based on the QRRK estimates and other evaluated rate coefficient and thermochemical parameters.
Specifically, the thermodynamic data and reaction kinetics of iso-octane have been re-assessed based on new thermodynamic group values and recently evaluated rate coefficients from the literature.
A kinetic mechanism based on recently published and evaluated rate constants is developed to model these measured laminar flame speeds as well as the literature data on the concentrations of H2, Cl2, and HCl species in flat-burner flames and the ignition delay times from shock tube experiments.
We first evaluated rate variation estimates for datasets simulated on 8-taxon trees with equal-length branches ranging from 0.01 to 1.4 substitutions/site and rates estimated in a Bayesian framework.
Because the uncorrected sequence divergence between paralogs varied among loci, we also evaluated rate asymmetries based on S substitutions as well.
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We evaluated rates and trends of positive nipple margins, subsequent management, and oncologic outcomes.
Studies in the past have evaluated rates of adverse cardiac effects at 30 days and beyond, after hospitalization and after outpatient follow-up.
Where evaluated, rates of outcomes were generally similar between countries.
We evaluated rates and determinants of unplanned readmission following TBI.
Many of the above studies evaluated rates of IPF by age and sex.
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