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The correlations between microstructure and mechanical behavior have been discussed in details.
Possible mechanisms for the large-scale oscillation and the frequency-doubling behavior have been discussed, although the detailed understanding of the underlying mechanisms will be a future study.
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Moreover, the asymptotic behavior has been discussed.
Their degradation behavior has been discussed.
Grain size dependence of H2sensing behavior has been discussed for both types of Pd films.
The origin of this burstiness in human behavior has been discussed in several papers in the last few years.
This behavior has been discussed in comparison with the Fermi-level pinning observed in metal/Ge contacts.
The problem of securing infrastructures relying on human behavior has been discussed throughout the last decade and more, being one of the very fundamental problems for computer security [11].
The precipitation behavior has been discussed from the point of view of thermodynamics as well as on the basis of the kinetics.
The deviation of current transients from ideal Cottrell behavior has been discussed in aqueous electrolyte and it is compared with that in presence of non-aqueous electrolyte.
Interestingly, an H+ ion allows the iodides to move closer together, so that it can bridge two iodide sites in MAPbI3 (analogous behavior has been discussed in oxide perovskites).[ 20, 21, 29] Depending on the lattice site, the resulting iodide rearrangements can be significant: the distances of neighboring iodides are reduced by up to 0.6 Å, accompanied by octahedral rotations of up to about 4°.
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CEO of Professional Science Editing for Scientists @ prosciediting.com