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Results from numerical model analyses demonstrate considerable accuracy and good agreement with those directly measured from experimental perforated tubular member's samples in terms of axial load-displacement and strains.
The FSCR additivity model analyses demonstrate cumulative effects of low doses of the mixture and synergistic cumulative effects of the highest dosages of the mixture.
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General linear model analyses demonstrated significantly higher mean scores at PSP and BACS for patients remitted according to PANSS-TScr.
The results of the empty model multilevel analyses demonstrate the impact of PHC affiliation on three out of four items (item 1, 2 and 4).
The QMRA model and microbiological analyses demonstrate the need for improved regulatory efforts for the peri-urban area along with improved investment in their water infrastructure.
Cox model regression analyses demonstrated an interaction (p less than 0.01) between type A behavior and an index of disease severity in the prediction of cardiovascular death.
Using an a priori model, regression analyses demonstrated that four variables predicted the primary balance measure (SOT composite score): visual spatial memory (P = 0.005), verbal memory (P = 0.000), FIQR score (P < 0.001) and BMI (P = 0.036).
Nevertheless, these analyses demonstrate how different models of recruitment for providing genetic risk information affect who pursues testing and how they respond to the information they receive.
More so, by using voxel-based correlation and a dynamic causal model analyses we demonstrated that increased amygdala activation to negative music with eyes closed led to increased activations in the LC and VPFC.
Additional analyses demonstrate the robustness of these results to changes in model specification, disaster measure, and estimation method.
The three back analyses demonstrate that the accuracy of rock avalanche runout models can be greatly improved by accounting for the initially rigid phase of motion.
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CEO of Professional Science Editing for Scientists @ prosciediting.com