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This may probably be due to a decrease in metabolic oxidation capacity or due to a self-propagating scavenging system, though the system was not fully activated.
The higher concentration of Ca2+ and (K++Na+) in the groundwater of the study area may probably be due to the dissolution of plagioclase feldspars.
The highest concentration of calcium, magnesium, chlorides, and bicarbonates in several cases may probably be due to their low rate of removal of soil (Ahamed et al. 2015).
This may probably be due to the limited number of available active sites on the surface of AgNPs-coated AC to accommodate higher concentration of MO.
Further, the enhanced electrochemical abilities of the Co-doped system may probably be due to the smaller particle sizes achieved by the coprecipitation process.
This may probably be due to the fact that poultry manure contains concentrated nutrients and hence led to enhanced plant growth in those seedlings treated with poultry manure.
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As shown in Figure 1b, the photogenerated electrons can effectively transfer from the conduction band (CB) of CdS to that of TiO2 because of the lower CB level (−4.2 eV) of TiO2 than that (−3.7 eV) of CdS, which may most probably be due to a superposition of the electronic states of TiO2 and CdS.
The discrepancy may most probably be due to the similarity cutoffs used to determine duplicates, which are reflections on the age of duplications.
The inductive effect of D. gnidium extracts on the cytotoxicity of MCF7 and K562 cells may also probably be due to its antioxidant properties by perturbing the favorable redox condition and inducing cytotoxicity [ 47].
This could probably be due to the different biofilm architectures, which may be strain-dependent.
However, considering the relatively large lattice mismatch between the fcc ZrN and the fcc AlN, the coherent spinodal decomposition may probably be hindered due to rapid phase transformation from fcc AlN to the stable hcp AlN.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com