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Finally, analyses of the edge delamination propagation for several composite laminates are performed and the corresponding failure stresses are calculated.
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Analyses of the leading edge genes revealed that most of them are involved in mRNA transcription (SND1, BTF3, MED30, EXOSC3), rRNA processing (EXOSC3, NAS2), protein translation and folding (RPSs, RPLs, EIF3, EEF1, CCT2, CCT6A, CCT8), cell cycle regulation (CAPRIN1, GNB2L1, CGREF1, DTYMK, PCNP) and mitochondrial function (SND1, CHCHD3, PDSS, SLC25A39) (supplementary material Table S5).
The X-ray absorption near edge spectroscopic analyses of the mercury bound to AC and to polysulfone on AC seems to suggest that on the surface, the chemical bond with mercury is a combination of Hg S interactions [47, 48, 49].
These results indicate that the mononuclear RhI CO 2 sites on γ-Al2O3 are unstable above about 423 K. Table 1 presents the structural and statistical parameters derived from the analyses of the Rh K-edge extended X-ray absorption fine structure (EXAFS) for 4 wt % Rh/Al2O3 before and after 5%% CO/He exposure in the temperature range of 323 573 K.
Our aim was to describe the ways in which groups of individuals, their characteristics and the GPs assessment are associable, through the analyses of the density of the edges which connect nodes to each another [39].
Three plants were sampled for the analyses from the edges of each population (six for the populations of the Aspromonte massif), in order to avoid the collection of clones.
In particular, analyses of free edge stresses in composite laminates subjected to uniform axial and/or thermal loading are conducted.
Surface characterization was accomplished by means of X-Ray diffraction (XRD) and X-Ray photoelectron spectroscopy (XPS) analyses of cut edges, showing the formation of oxides and nitrides.
Theoretical analyses of the dynamic impact effects on the cutting edge radius are undertaken to predict their ultimate cutting edge radii.
Figure 6 shows an extreme enlargement of the edge of the particle analysed in Fig. 4.
The electrocatalysis of CO tolerance of Pt/C, PtRu/C, PtFe/C, PtMo/C, and PtW/C at a PEM fuel cell anode has been investigated using single cell polarization and online electrochemical mass spectrometry (EMS) measurements, and cyclic voltammetry, X-ray diffraction (XRD), in situ X-ray absorption near edge structure (XANES) analyses of the electrocatalysts.
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