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Tests were carried out at a common set of conditions and covered a full matrix of specimens with six thicknesses (B) ranging from 7.9 to 254 mm and four widths (W) ranging from 6.4 to 50.8 mm.
The gene expression matrix of specimens was received and was used to the follow-up analysis.
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By using neutron diffraction, high compressive residual stress component parallel to the drawing direction was detected in the ferrite matrix of specimen P2, whereas this stress level was partly relaxed in P3 and mostly in P4.
Cryosubstitution studies of frozen and vitrified constructs revealed negligible ice in the vitrified specimens and extensive ice formation in the extracellular matrix of frozen specimens.
The integrated strategy can be described as follows: use the transform which derives from neural networks to convert the primary matrix which is compose of specimens into a new matrix, and then extract useful components from the converted matrix applying a statistical method, and lastly process the extracted components to establish a discriminant model.
Volume averaging of the pore-scale fluid flow properties allows calculation of the apparent permeability matrix of trabecular bone specimens.
The jack-knifed classification matrix successfully classifies 72% of specimens to the right colony (Table 2B).
The fast neutron fluence of matrix material specimens reached 1.3 × 1021 cm−2 (E > 0.1 MeV).
Intermetallic matrix composite specimens of Ni3Al-matrix reinforced with continuous Al2O3 fibres (FP-fibres) were investigated by means of TEM, SEM, EDS and EPMA with regard to chemical stability during diffusion bonding.
The maximum likelihood test indicates that the between-population covariance matrix and the pooled within-population covariance matrix of all T. moorii specimens deviated significantly from proportionality (P<0.001).
Due to the limited size range of the studied samples it was not necessary to transform the data, and we used the raw measurements for the analyses to obtain the matrix of Euclidean distances among specimens.
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