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While it has been previously reported that the 6-mercapto-octanoyl species is the stable intermediate generated by LS, one possible explanation for the substoichiometric product is that LS generates both the 6-mercapto- and the 8-mercapto-octanoyl species, but only one of these is competent to form product.
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Whereas we can only speculate about the reason behind the L-LADs decompaction, one possible mechanism is the recently described activation of long interspersed nuclear elements involved in replicative senescence (De Cecco et al., 2013).
Turchi and Ollis [30] showed that such boundary layer reactions could explain kinetic behavior consistent with the L-H model, providing one possible mechanism for near surface reactions that cannot be completely ruled out.
One possible way is to choose L large enough so that all the paths with significant energy are considered.
This small amount of SSI activity is one possible explanation for the fertility of ss1 L /be2b, although other possibilities cannot be excluded.
One possible solution to (9) can be written as [13] w b, k, l DVSINR = C b, k, l, - 1 h b, k, l C b, k, l, - 1 h b, k, l (10).
One possible selection for db,k,l could be d b, k, l = T P b N t b N c ∑ j = 1, j ≠ b B E h j, k, l H w j, k, l type 2 σ 2 (21).
Imagine one possible future.
One possible answer?
Only one possible answer.
One possible way to do it is through the introduction of a phase rotation over the input source symbols s n [l].
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com