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Figure 4 shows the HRTEM images for iron catalyst particles, in which it is observed that sample heated with 100 °C/h has less defects and less disorders among all samples.
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By filling these vacancies, there is less disorder and therefore, less intraband absorption.
(ii) The IR spectral studies indicate relatively less disorder in ZnBNd glass network.
At the same time, the LO band intensity increased indicating a rearrangement of the Si nitride network towards less disorder.
As the working gas pressure changes from 25too 100 Torr, the outmost shells formed by the dissociated CH4/NH3 molecules tend to be relatively less disordered.
We know that such ZnO Co and ZnO In thin films are chemically purer and have manyfewer defects and less disorder, owing to an almost complete chemical decomposition,and contain higher optical bandgap energy; thus, we have obtained a minimum errorwith crystallite size from Equation 2.
It is to be noted further that we considered the human proteome alone as control for our analysis, whereas a selection of the whole eukaryotic proteome would have less disorder, as it was the case (∼35 51%) in the analysis by Dunker A.K. et al. [4] using PONDR tools, since the disorder contribution from lower eukaryotes was much less there.
Figure S2: Fragments with less disorder than proteins duplicated during heat shock response (HSR).
To some extent disorder is a gradual phenomenon, i.e. proteins may have more or less disorder.
Given the correlation between habitat and disorder, we expect that proteins are more likely to sustain high temperatures with less disorder.
Chloroplast (2 - 13%) and mitochondrial (2 - 19%) proteomes clearly exhibit much less disorder than nuclear ones (Additional file 1: Table S1).
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