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Both processes were found to follow a zero order kinetic model.
Both processes were found to be much slower than that observed by Kishimoto et al. (J Phys Chem 1960 64 594) in nominally the same system.
Both processes were found to be defective in schizophrenia patients.
Both processes were found to be repressed to a greater extent than in non-dividing insect (promastigote) stages, suggesting that lesion amastigotes enter into a semi-quiescent state in which major energy-consuming processes are specifically repressed.
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The behavior of both processes was found to be "strikingly different" compared to their behavior in static networks.
Both aggregation processes were found to be a function of temperature and type of asphaltenes.
Both studied processes were found to be profitable and cost-competitive in the geographic regional context, with a mean gross margin of 70% and mean internal rate of return of 25.5%.
Both redox processes were found to involve a transfer of two electrons via controlled-potential electrolysis experiments, and it is surmised that vanillin first undergoes a −2e−/-H+ oxidation, followed by a hydrolysis reaction and the loss of its methoxy substituent to generate a corresponding 1,2-benzoquinone that can subsequently be reduced via +2e− /+ 2H+.
On the flame centerline, both PAH and acetylene-related processes were found to be important for soot growth.
For both lineages genes and biological processes were found to be predominantly down-regulated prior to commitment.
However, in both sites, public accountability strategies or processes were found to be virtually absent.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com