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The thin flame was resolved with fine grid resolution and the autoignition and combustion chemistry were accounted for using a 21-step kinetic scheme.
The uncertainty in the Li estimates, due to uncertainties in the soil, recharge, and chemical data, were accounted for using first-order uncertainty analysis.
At cyclic steady state the simulations contained material balance errors comparable in magnitude to those reported previously for isothermal DR-PSA simulations; however, these were accounted for using a robust correction scheme.
Key factors that mediate the magnitude of mass flux (dilution and source accessibility) were accounted for using measures of source zone cross-sectional area, ganglia-to-pool (GTP) ratio, and relative permeability.
Multiple comparisons were accounted for using the Šidák correction for multiple comparisons.
Ion activity coefficients were accounted for using the extended Debye–Huckel model.
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The viscoelasticity is accounted for using the FENE-CR model.
Turbulence was accounted for using the k−ε model.
Background fluorescence was accounted for using a set of sample blanks generated by repeating the experiment without heating.
Uncertainty must be acknowledged, and can be accounted for using both conservative deterministic and probabilistic approaches.
Cracking of concrete is accounted for using the smeared crack concept.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com