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The results for the n-propanol system, portrayed on a bifurcation diagram, indicate the presence of a heterogeneous minimum-boiling quaternary reactive azeotrope at the value of the reaction equilibrium constant reported in the literature.
The dissociation constant Kd of the AChE/AFB1 HRP interaction (0.4 μM) obtained with the surface plasmon resonance (SPR) technique is very close to the inhibition constant reported in amperometric assay (Ki = 0.35 μM), proving that the conjugation of AFB1 to a carrier protein does not significantly influence the affinity of AFB1 for AChE.
In addition, the varying ratio of active to potential TPB sites predicted by the current model (up to 80%) differs significantly from the constant reported in the literature (80%), which lacks analyses of three-phase percolation, gas phase paths, and gas/current collector boundary conditions.
Closer to the present a large proportion of eruptions have low magnitudes, generating the observed relatively constant reported volume production.
For example, nonanal has the smallest Henry's Law constant reported in Table 1 and its headspace concentration decreased the fastest of all the analyzed compounds.
There have been multiple values of the dielectric constant reported in the literature for proteins and lipid bilayers which makes it difficult to define unique values for the peptide and both the hydrocarbon core and head group regions.
Similar(49)
Mean kinetic constants reported are the result of three independent experiments.
These values are in the same range for both metals and in the same range as dissociation constants reported for bacterial Mg2+ transporters (reviewed in ref. 26), consistent with a biological function for both metals in deAMPylation.
The constants reported in Table 3 are from Eqs. 11 and 13.
For them, there have been the two protonation constants reported [13, 14]: FeOH2 + ⇄ H+ + FeOH, pK a,1 = 5.3 and FeOH ⇄ H+ + FeO−, pK a,2 = 8.8.
After substitution of the dissociation constants reported in [40] and T0≈307 K measured above into Eqs.
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