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The main experimental results from tests carried out on ten composite models are presented and discussed.
Several adhesive bonded composite models are analyzed, including dimensions of adhered joints, local separation of adhesive and material degradation.
Then different SiC3D/Al composite models are reconstructed by changing the volume fraction and core distribution probability in the reconstruction method.
Several two-phase composite models are investigated to describe the modulus vs. crystallinity data above Tg; the Davies model provides a good quantitative description for the copolymers examined.
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Fibre composite models were evaluated using finite element (FE) and mathematical analyses.
The poor predictive ability of the Box-Behnken and central composite models was attributed to poor interpolation of the high curvature of the response surfaces.
Composite models were applied for comparisons and were able to predict the differences in E-modulus and shrinkage between CVC and SCC.
At the end, each of the individual 100 R2 training, R2 test and R2 scrambling values were recorded and their averages for the composite models were reported.
Composite models were also selected for gorillas (distance to NNNP, stratum and X-coordinate; Figure S2).
Model-based abundance estimates for all three species were remarkably similar to design-based estimates (Tables 6 & 7), and composite models were used to generate density surfaces for all three species (Figure 4).
One of these composite models is shown in Figure S2B of the Supporting Information.
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