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Differences in water adsorption for the protonated form may be explained by the observation that carboxylic acids are weak acids with limited dissociation, whereas the stronger sulfate acid groups facilitate a more complete dissociation.
This Δ33 splice form may be explained by the weak wild-type donor site score of exon 33 (0.11) and the presence of an additional donor site located within exon 33, which exhibits a score of 0.63.
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The low intensity of H4-NEC aNECNEC and their dealkylated counterparts in TPMB, despite the fact that these species are formed, may be explained by their strong interaction with the surface.
This increase would have occurred at the expense of a greater incidence of post-neurosurgical forms that may be explained by the significant rise of head and spinal cord surgical procedures in recent decades [ 32].
In part, the success of this modeling strategy in both forms of decisions may be explained by the fact that symbolic operation cannot completely bypass a highly automatic (and probably the default) circuit of non-symbolic operation [40], [44] [46].
Assuming this scenario, the increase in TfR levels by stimulation of PrP endocytosis by 3F4 and the differential effect of mutant PrP forms on ferritin iron content may be explained by a change in the rate of endocytosis, or altered interaction of normal and mutant PrP forms with Tf or TfR due to misfolding [35] [37].
The lack of npFe0 in the rim, given that it may form through in situ reduction of Fe2+, may be explained by a low dose of administered protons or the loss of H2 during an exposure at elevated temperatures, which prevented the reduction of iron (the reaction 2H ↔ H2 would compete with the reaction FeO +2H ↔ Fe0 + H2O).
This finding is unexpected but may be explained as a form of compensation for synaptic impairment.
This value is significantly higher than the estimated maximum solubility of the penta-Mg2+ salt of Ins P6 proposed to exist in vivo (approx. 50 μM [ 38]), and may be explained by some form of compartmentalization in acidic vesicles (see [ 38] for discussion).
This result reveals a lability of the α-carbon proton which may be explained by formation of enolic form characteristic for dicarbonyl systems.
This effect may be explained by the formation of an acidic form of CMC during preparation and even dispersion of ibuprofen in the film matrix.
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CEO of Professional Science Editing for Scientists @ prosciediting.com