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Through the analysis of the core strain in the sensitizing structure, it can obtain the strain transfer distribution in the scope of sensor.
For the same core density, a 100% increase in facesheet thickness leads to a 25%and50%0% increase in the core strain and normalized transmitted impulse, respectively.
An ultrawide photoresponse was theoretically predicted with threshold ranging from 0.4 eV to 1.8 eV in ultrathin nanowires because of the large core strain.
Significant local buckling and cyclic deterioration behavior were observed for the specimens with the b/t ratio of around 8.5 when the axial core strain reached 1.4%, causing 13% reduction in energy dissipation.
In this study the effect of steel core strain hardening ratio of Buckling-Restrained Braces (BRBs) on residual drift demands of Buckling-Restrained Braced Frames (BRBFs) was assessed by using Probabilistic Seismic Demand Analysis (PSDA) methodology.
The results show that the value of the lateral thrust generated by the core during its high-mode buckling increases, possibly up to very high values, with the gap/core thickness ratio, the axial core strain, and the cumulated plastic deformation of the core.
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Hypergeometric distribution was used to test the probability of the over-representation of core, strain-specific or variably conserved accessory genes in a given cluster of orthologous groups (COG).
These were identified as core strains.
Two of the strains, Bormi1 and Bormi2, were found to be recombinants of other core strains.
Additionally, several viruses from Narayanganj macaques appeared to be recombinants of core strains from other sites.
Charmaguria, Dokhola, Dhamrai and Karamjal core strains showed no evidence of recombination according to GARD or the PHI test.
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