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The results of an experimental investigation of the effects of span length disorder on the dynamics of mono-coupled, multi-span beams are reported.
A general closed form expression is then derived for the localization factor of a weakly disordered undamped system; this expression is evaluated explicitly for the case of either bay length disorder or disorder in the inter-bay junction properties.
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Conditions have been identified under which some specific beam length disorders do not interfere with the free wave propagation in certain frequency bands and can even broaden such bands.
We consider a damped nonlinear periodic structure of finite length with disorder.
For comparisons of length and disorder content, we also created two subsets from mesophiles, with the same average proteome size as thermophiles (meso-thermo) and hyperthermophiles (meso-hyper), respectively.
We maintain that the changes in basal and stimulated activity are both important indications that linker length and "disorder" are crucial to maintain an appropriate amount of built-in flexibility and allow the kinase to phosphorylate target substrates in a spatially constrained microenvironment.
The results of this structural annotation indicate that all CSEPs had comparatively low values for mean lengths, mean proportion disorder, mean maximum length of disorder, mean model quality and mean number of domains (Additional file 16).
As the molecule length increases, the disorder increases, and the disorder energy increases leading to more localization of charge carriers.
In paralogous pairs that have the same number of internal disordered segments but diverged in the total internal disorder length (i.e., the sum of all internal disordered segments), the half-life of the protein with the longer total internal disorder also tends to be shorter (median half-life difference is 5 min; Table S6A).
In this review we will present findings from the literature on telomere length in bipolar disorder, with a specific focus on lithium.
Other eukaryotic and prokaryotic proteomes show similar disorder length profiles.
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Justyna Jupowicz-Kozak
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