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The shear behaviour of the specimens was highly influenced by the applied pre-compression level and almost uninfluenced by the position of the DPC.
In general, the microstructure of the FA 100 AAB specimens was highly inhomogeneous and primarily made up of the reaction product resulting from the alkali activation a sodium aluminosilicate gel that gave rise to the cementitious matrix.
SEM images showed that in general, the microstructure of the FA 100 AAB specimens was highly inhomogeneous and primarily made up of the reaction product resulting from the alkali activation a sodium aluminosilicate gel that gave rise to the cementitious matrix.
Sequence analysis of the PCR-positive specimens was highly informative because it confirmed that all three specimens were XMRV-related.
The monophyly of the Plocamionida specimens was highly supported (1.0/92), and Parts A and B were again recovered with high support (1.0/94 and 1.0/100, respectively; Fig. 4).
As expected, DNA isolated from FFPE specimens was highly fragmented as compared to the HOPE and fresh-frozen specimens, but could be used for successful amplification of shorter amplification products up to 400 bp in length.
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All film specimens were highly transparent, but some of them, although highly translucent, presented a slightly yellow to brown appearance.
It is found that the fracture behaviour and stress-displacement responses of the numerical specimens are highly dependent on the random mesostructures, especially the post-peak softening responses.
The results show that the plastic response of the specimens is highly sensitive to the amount of restraint provided at the supports, particularly for the specimens with ends of the stiffeners free since they experience larger lateral deflections and, consequently, larger axial displacements at the supports.
Some specimens are highly branched in the upper part of the pseudopodetia, causing them to bear some resemblance to P. robustus, although this morphology is uncommon.
Nasal specimens were highly significantly characterised by Actinobacteria (particularly Corynebacterium spp).
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