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Numerical simulation is performed on the flow behavior of a bubble rising in a liquid medium at high pressures.
The results showed that transfiguration and fracture were the main transport manners for foam in the porous medium at high gas and liquid transfusion rate.
A Monascus ruber strain was isolated that was able to grow on mineral medium at high sugar concentrations and 175 g/l lactic acid at pH 2.8.
Dissociation of zircon through thermal plasma has been conventionally carried out in argon or nitrogen medium at high input power levels.
The electrolyte is non-aqueous, other wise enormous pressure would be needed to maintain an aqueous medium at high density at 700 C (far above the critical temperature of water).
In situ quantification of the role of heterogeneities on fracture propagation is challenging because of the technical difficulty to image the interior of a 3D medium at high spatial resolution.
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The strains expressing yddG excreted Phe into the medium at higher rate and less intracellular Phe accumulated.
It was found that during immiscible injection condition (i.e., Pop < MMP), higher amount of CO2 can be stored in the porous medium at higher operating pressures.
The transcription of Xcc_CDS2497 was only induced in poor NYG medium at higher density (OD600 = 2.0).
Next, ABE fermentations were performed with food waste medium at higher concentrations of 129, 181, and 228 g/L.
Sperm incubated in an immobilization buffer (SI) at low pH (∼ 7.1 7.2) become motile when diluted with activating medium (AM) at high (∼ 8.5) but not low pH.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com