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The choice of a penetrance model is an important question in any parametric linkage analysis, and this choice becomes even more challenging when analyzing categorical traits, as the number of possible penetrance matrices increases with the number of levels of the trait.
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The seal strength for gelatin matrices increased with lower concentrations of ZnO NRs (Figure 2b).
The glass transition temperature (Tg) of the matrices increased with decreasing the MW of the PEO part from 2000 to 200.
The thermal profile of the matrix increases with increasing addition of [Bmim][TfO] content.
The calculations imply that the Zn solubility in the Zn4Sb3 matrix increases with decreasing temperature.
The branched structure and their degree of entanglement with sPEEK polymer matrix increases with longer curing time.
The size of the matrix increases with the number of sessions J, while more sessions are always desirable for more robust parameter estimation.
The stiffness of the matrix increases with clay content and the recorded strain to failure for the composite films was lower than the neat film.
Absolute values of all coefficients in the added mass matrix decrease as the ratio fv/fb is increased, and the absolute values of the coefficients in the added damping matrix increases with an increase in the advance ratio.
The microstructure results showed that the fraction of the transformed β phase in the matrix increases with increasing quenching temperatures, which leads to a significant improvement in strength at room and high temperatures.
It was shown that the content of chemically fixed β-CD-containing groups in the silica matrix increases with the number of anchor ethoxysilyl groups in the structure of β-CD-containing silane used in the sol gel synthesis.
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CEO of Professional Science Editing for Scientists @ prosciediting.com