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We can determine if stress values reached KIth using the stress intensity approach from fracture mechanics theory (see Methods) by calculating the thermally generated tensile stresses and resulting KI acting on the exfoliation sheets.
This paper pre-validates each of the proposed methods by calculating annual spatial contrast and annual luminance variability across ten abstract digital models and comparing those results to the authors' own intuitive ranking.
We utilise reciprocal space methods by calculating a per-atom structure factor (PASF) to visualise changes in volume, orientation and structure, thus allowing unambiguous discrimination between key deformation/relaxation mechanisms such as uniaxial strain, twinning and structural phase transformations.
We also compared the computational complexity of these methods by calculating their convergence times for the considered objective functions (Table 1).
We first evaluated the performance of the mapping methods by calculating area under ROC at various CNR.
I assessed the accuracy of filtering methods by calculating the mean displacement from the measured locations to the true location (defined as the centroid of the 3-D fixes) and calculating the 50, 95, and 100 circular error probable (CEP; the radius of a circle that incorporates the specified percentile of locations [27], [28]).
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Finally, we show the versatility of the method by calculating the linear global modes of a gravitational jet.
Thus, we propose a new linear method by calculating the lens distortion parameter independently, which can be computed fast enough for our real-time application.
We demonstrate the capabilities of the method by calculating the electronic states of a large GaAs quantum dot embedded in an AlAs matrix.
We measured the performance of the method by calculating a confusion matrix.
In this study, we evaluate our proposed method by calculating correlation between scores obtained from our method and the scores related to ten experts in each subsection.
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