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The average length of structural variants was as follows: 1.5 Mbp for inversion, 59.4 kbp for tandem duplication, 101.3 kbp for long deletion, 1.7 kbp for long insertion.
The length of indels ranged from 1 to 10 bp and the length of structural variants ranged from 100 bp to 100 kb.
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These structures are arranged into several phase diagrams constructed by the main and side chains in various solution concentrations, and we analyze the influence of chain length on structural formation.
The technique allows a designer to, for example, prescribe a minimum allowable length scale of structural members (solid phase) as well as the minimum allowable length scale on holes (void phase).
Different length scales of structural organisation are probed using a combination of Small angle X-ray scattering and neutron/X-rays diffraction.
The influences of concrete filling length on structural behaviors including elastic rigidity, yield load, and ultimate load were revealed on the basis of numerous parametric studies.
The structure shows that although the order and length of secondary structural elements in the monomer is similar to EcoL, their relative spatial orientation is substantially different.
It is shown that a value of averaging time equal to about 1.0-times the effective length of the structural influence area divided by a representative mean velocity, is an appropriate one for structural load effects with simple influence lines.
The first one is force based and the plasticity is distributed along the entire length of the structural member (inelastic force-based frame element -distributed plasticity) IFBEDP.
The fracture density from core observations can be calculated as: f = frac{{sum {l_{i} } }}{S} = frac{{sum {l_{i} } }}{{2pi r^{2} + 2pi r times L}} (1 where f is the fracture surface density, l i is the length of each structural fracture, S is the surface area of the observed core, r is the radius and L is the length of the core.
Even though the amino-acid sequence of this protein shows limited similarity with that of the CTD of EcoL, the order and –to an extent- the length of secondary structural elements are similar in the two proteins [17] (Figure 3).
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