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This difference can be rationalized in terms of the different nature of the synthesis routes employed as in co-condensed films a fraction of amine functions are contained within the oxide backbone and thus unavailable for reaction.
This difference can be rationalized by the smaller heterogeneity of genomic DNA copies (with respect to their sequences and fragment-lengths) and especially by the smaller range of copy number variations compared with the range of variation of mRNA-transcript concentrations.
This difference can be rationalized by the absence of the eutMNLK genes in Vibrio alginolyticus which code for the metabolosome.
This difference can be rationalized when a unique characteristic of pol η, part of which may also be shared by the E. coli pol V, is considered.
This difference can be rationalized by considering that NEDD1 and γ-Tubulin localize at the proximal and distal ends, respectively, of γTuRCs.
This difference can be rationalized by considering that ASE (peaked at 950 nm) is affected by self-absorption losses that are lower than those of the spontaneous emission (peak at ∼865 nm).
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The observed differences can be rationalized when the two compounds are C-8 epimers, which was confirmed by the ROESY interaction of H-6 (δ H 5.81)/Me-19 (δ H 1.36) (Fig. 3).
The differences can be rationalized by assuming that the energy of the charge separated state is 0.33 0.45 eV higher than the energy determined from oxidation and reduction potentials of donor and acceptor, respectively.
The differences can be rationalized by the electrostatic interaction between the sublattices of the mixed-SAM components.
This behavior can be rationalized as a result of the island evolution towards steeper and more relaxed morphologies.
This behavior can be rationalized by the model of oxygen ionization, which has relation to the oxygen adsorption.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com