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The increase in pH, ionic strength and buffer concentration of the dissolution medium decreased the release rate.
The incorporation of the filtering medium decreased the Euler numbers and increased the total efficiency of the hydrocyclones.
Meanwhile, surface frictional coefficient and the capability of adsorbing proteins from cell culture medium decreased continuously with increasing the mPEGA composition in mPEGA/PPF networks.
Using water as a cooling medium decreased the exhaust gases temperature and the amount of pollutants more than did air as a cooling medium.
The addition of anaerobic sulfate reducing bacteria (SRB) to the test medium decreased RP to 12 kΩ due to an increase in localized corrosion, as indicated by SEM examination.
It revealed that DOX release from the composite hydrogels was considerably accelerated when the pH of release medium decreased from 7.4 to 4.0, and the release DOX remained biologically active and had high capability to kill cancer cells, demonstrating the feasibility of using GO/PVA macroporous composite hydrogels as potential drug delivery platforms for cancer treatments.
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This less permissive medium decreases the availability of alternative pathways.
Our results indicate that heat flux through a fibrous medium decreases by increasing the packing fraction of the fibers when the thickness and fiber diameter are kept constant.
The temperature of the intracluster medium decreases with radius from 0′ to 50′, and it becomes almost constant beyond the 50′ radius.
In fact, due to plant growth, the nitrate content in the medium decreases rapidly.
The pH of the reaction medium decreases continuously until the lime molecules are available for the carbonation.
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CEO of Professional Science Editing for Scientists @ prosciediting.com