Sentence examples for i characterization of from inspiring English sources

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This article reports modeling techniques and results based on experimental Mode I characterization of a layered woven GFRP material with tufting reinforcement.

Three groups of novel results are presented: (i) characterization of feasible weighted centroid designs for a maximum parameter system, (ii) derivations of D-, and and E-optimal weighted centroid designs, and (iii) numerically φp-optimal weighted centroid designs.

Objectives: (i) Characterization of a new antigen carrier, hydroxyapatite-coated nylon (Ha-Ny) beads, and (ii) evaluation of the JEV antigen-coated Ha-Ny beads as a reagent to detect anti-JEV antibodies in human serum samples.

The model developed has five stages: i) characterization of ground motion, ii) construction of the building model, iii) evaluation of the inelastic building response, iv) structural damage assessment, and v) risk evaluation.

i) Characterization of breast masses in a multi-sided way dramatically increased prediction performance.

In particular, we concentrated our analysis on the following aspects: (i) characterization of the temporal profiles of expression, (ii) comparison with human data, (iii) characterization of networks of coregulated genes, and iv) localization of cells expressing differentially expressed genes in the brain of both adult N. furzeri and zebrafish embryos.

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Figure 4 shows the power versus current (L-I) characterization of a 4-mm-long CRPC substrate emitting QCL with ridge width of 390 μm at different heat sink temperatures.

The peak emission spectrum is observed to shift from 2,112.4 cm−1 at 15°C to 2,104.6 cm−1 at 65°C, corresponding to a temperature tuning coefficient ∇v/∇T = −0.155 cm−1 C−1. Figure 4 Power versus current (L-I) characterization of a 4-mm-long CRPC substrate emitting QCL.

It is thus useful to determine fracture toughness under mode-III and characterization of crack front behavior of bonded joints under mixed-mode III/II loading conditions, which were the overall goal of this paper.

The consideration of the problem within a Fokker Planck (FP) stochastic framework yields: (i) the characterization of the global-nonlinear stochastic dynamics, and (ii) the connection between the deterministic and stochastic modeling approaches.

The aims of this study are (i) the characterization of axotrophin regarding its subcellular localization and (ii) its potential E3 activity and (iii) the investigation of the tau axotrophin interaction with tau as a presumable substrate of axotrophin.

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