Sentence examples for specimens to predict from inspiring English sources

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The proposed method is applied to 355 existing test specimens, to predict the shear strength of deep beams with and without web reinforcement.

Mixed mode modification factor was derived from test results of 36 specimens to predict the fatigue life of CFRP-strengthened steel plates initially inclined cracked with various degrees of damage.

Moreover, Kaplan Meier analysis showed that prostate cancer patients with pT3 stage and GS⩾7, respectively, could be further classified based on the extent of Tiam1 overexpression in their prostate cancer specimens to predict disease recurrence more accurately.

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The aim of this study was to identify tumour-suppressive microRNAs (miRNAs), based on miRNA expression signatures from clinical HSCC specimens, and to predict their biological target genes.

Ruggieri et al. (2015) proposed a modified Weibull stress model incorporating plastic strain effect and employed it in combination with the distribution of measured toughness values from one specimen geometry to predict fracture toughness distribution of another specimen geometry, and also estimated reference temperature for the Master Curve approach from small fracture specimens.

Considering the phase transformation and its latent heat effect, a multi-physical field coupling numerical model is built to reproduce the deep cryogenic treatment (DCT) of a newly developed cold work die steel Cr8Mo2SiV (specimenpecimen, and to predict the microstructure and hardness distribution and the dimensional change.

The parameters of the cohesive zone model have been identified in 2D unpeened specimens and are applied to predict peened specimens directly.

In the analytical study, finite element models of the four test specimens are developed to predict the hysteretic behaviour and the stress distribution.

Published single-lap shear test specimens were used to predict the bond strength of externally bonded FRP systems adhered to concrete prisms.

For CT scanned specimens, the defect sizes and positions obtained by XCT, in conjunction with the (nearly homogeneous) stress distribution of the specimens were used to predict the fatigue life and also the position of the fatigue crack initiation site.

The developed FE model based on measured stress strain curves from test specimens was found to predict the ROPS behaviour more accurately than the FE models developed based on the Ramberg Osgood material model.

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