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This could be explained that higher temperature of heating is required to desorb the strong interaction of CO2 from the active basic sites of CaO.
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The higher dosage causes instead higher water absorption; this may be explained that high content of Tungoil may have disturbed the chemical reaction between lime and clay minerals.
It can be explained that high amount of soluble salts in the Haft Tappeh soil can be correlated with higher EC measured in the soil samples while it has been determined in Sangtarashan samples in very lower level.
In the previous section it was explained that high-throughput screening of encoded microcarriers using existing optical reading instruments is possible "on a chip," while the optical components, such as the light source, sensors, lenses and waveguides, remain "off the chip".
In this investigation, it can be explained that in higher velocities of flow probably through interference, the high shear stress causes separation and dislodgement of the inhibitor layers or adsorbed [Fe2+-Inh] complex from the metal surface and can result to the decrease in the value of the inhibition efficiency with the increase in the electrode rotating speeds (Jiang et al. 2005).
The excellent performance in CO tolerance of the NW/TiO2 samples can be explained that the high aspect ratio of the NWs leaving most of the TiO2 film uncovered and allowing for subsequent reactions [22], which were similar to those in the CeO2-Pt composites [29].
Therefore, it could be explained that the high exposure of sunitinib was caused by the loss of ABCG2 protein expression by genetic polymorphism.
It can be explained that the high density probe of the BovineHD beadChip and the strict CNV definition (i.e., it must contain ten or more consecutive SNPs) were used in this study.
This result could be explained that dsDNA has higher stability at high salt concentrations and physiological pH which was in agreement with other report [33].
It can be explained that tweek with higher modes could reflect at the less different altitudes because the D-region during summer season becomes less inhomogeneous.
From characterization and surface analysis, it can be explained that the presence of higher amount of surface oxides and pyridinic nitrogen is the main reason for better performance towards ORR in alkaline media.
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