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In light of the discussion of Figure 1 (see paragraph above) we interpret the observed decrease in the ESE amplitude in the ascorbate- vs dithionite-reduced samples as a result of an enhancement of the cluster relaxation induced by magnetic interaction with oxidized heme bL present in the ascorbate-reduced samples.
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Analytical expressions are derived from first principles so as to interpret the observed experimental trends.
Inspection of the loadings allowed to interpret the observed differences in terms of the experimental variables.
Therefore, we cannot interpret the observed SSE as a direct response to an external stress change.
A simple kinetic model is adopted to interpret the observed dispersion trends in plasma-treated MWCNTs.
We interpret the observed relaxation resonances as being caused by cross-relaxation resulting from the dipole-dipole interaction.
Theoretical calculations based on free ion and crystal field Hamiltonians are used to interpret the observed transitions.
A modified hard-sphere fluid model describing the ion-rich phase is applied to interpret the observed scattering function.
A mechanistic model based upon structural evolution has been developed to interpret the observed non-Newtonian behavior.
To interpret the observed NMR profiles in more detail, simulations based on a reaction-diffusion model were performed.
In addition it provides a platform to interpret the observed changes on the systemic level.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com