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Configural, metric, scalar, and strict invariance analyses were evaluated.
The solid-phase analyses were evaluated in the context of natural environmental and technical (man-made) production conditions.
The results of the modeling analyses were evaluated by comparing pool dissolution fluxes from the literature to each other and to the corresponding LE and NE model predictions.
The data obtained by chemical analyses were evaluated in terms of suitability as shown in Tables 2 and 3, and are represented in bar diagrams in Figs. 4 and 5.
Item-level analyses were evaluated using the "worst" day between (and inclusive of) Visit 1 and Visit 2, defined as the day with the worst rating on the patient global rating of disease severity.
Results of divergence time analyses were evaluated by examining effective samples sizes and burn-in using Tracer and then calculating the median node heights using TreeAnnotator.
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The performance analyses are evaluated in terms of static performance, dynamic performance, and blade force measurement.
The results of the analyses are evaluated in terms of factors of safety and displacements.
The difference in image interpretation (TC, equivocal, or non-TC) between SPECT-only and SPECT/CT fused analyses was evaluated using a χ2 test with William's correction.
The tribometric results, combined with occasional after-test (ex situ) surface analyses, are evaluated in light of surface physical and chemical data gleaned from the literature.
Findings on lateral load analyses are evaluated and the following conclusions are summarized: For all the investigated structures, torsional irregularity coefficients increase as the story numbers decrease, i.e., maximum irregularity coefficients occur for single-story structures.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com