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Ion-molecule reactions are important in understanding the chemistry of flames, of electrical discharges, of the upper atmosphere, and of samples subject to radiation.
Samples subject to 2 mm wetting sequestered an order of magnitude more C under elevated CO2 than at ambient CO2; for samples subject to 5 mm wetting, this increase was threefold.
After irradiation, the glass density increased and the SAXS intensity decreased, indicating a compositional homogenization process in the samples subject to a higher dose of irradiation.
The hardness of samples subject to the boride process increases up to 4.5 times compared with that of the un-boride sample.
Samples subject to wetting and drying exhibited significantly greater permanent deformation and had lower values of resilient modulus than those which were not subject to wetting and drying.
Furthermore, the air sensitivity of samples subject to four different combinations of pre-treatments (washed/unwashed and exposed to air before or after vacuum treatment) was explored.
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Samples subjected to previous high cycle fatigue are considered.
Samples subjected to previous low cycle fatigue are considered.
A comparison between the freshly calcined sample and samples subjected to simulated regeneration cycles was demonstrated.
The samples subjected to drug-excipient compatibility studies were mixed with methanol.
The studied samples subjected to permeability and porosity measurements and differentiated into different hydraulic flow units.
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CEO of Professional Science Editing for Scientists @ prosciediting.com