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Based on experiments on flame extinction in air flow over a horizontal porous plate with uniform injection of H2/N2 and H2/He fuel mixtures, we found that the blow-off condition for a laminar boundary layer can be uniquely defined by two parameters: the nondimensional fuel-mixture blowing rate and the hydrogen mass fraction.
In contrast, for the binary mixtures we found D′bound = 7.5.
When subthreshold doses of individual chemicals were combined in the mixtures, we found significant dose-related decreases in motor activity.
In this head-to-head comparison of the effects of several pollutants and pollutant mixtures, we found an important contribution to vascular toxicity from readily bioavailable monoxide gases and possibly from volatile hydrocarbons.
By performing cell migration and invasion assays on these two cell mixtures, we found that MCF-7hPTTG1 cells significantly promoted the migration and invasion of MCF-7ZsGreen cells, whereas MCF-7Mock cells did not.
Over the analysis of 10,506 in silico simulated pairwise DNA mixtures, we found that 5% of the mixtures have zero informative markers, 95% have at least one informative marker, 76% have at least two informative markers, and 47% at least three informative markers (Table 3 column 1).
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For polydisperse mixtures, we find that depending on the shear rate, different segregation mechanisms can take place.
For some mixtures we find the maximum net power when the temperature glide of condensation matches the temperature increase of the cooling water, while for other mixtures there are large differences between these two parameters.
In desalination experiments with salt mixtures we find a threefold enhancement for K+ over Na+-adsorption, which shows the potential of NiHCF intercalation electrodes for selective ion separation from mixed ionic solutions.
For the mixtures we find that at 423 K the fluorous side chain always provides the largest second shell peak, independent of the composition.
However, although we added relatively large amounts of trace elements (e.g., SynCLAP 6, 300 μg/g of each trace element, see Table 3) to the initial starting material mixture, we found that the resulting flux-grown apatites did not contain high concentrations of trace elements (generally well below 10 ppm of each trace element).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com