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The proposed growth kinetics model shows relatively in good agreement with experimental data.
In the range of lower degree of saturation (5%20%%), the modified network model shows relatively higher thermal conductivity than the laboratory measurements.
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Between 36°N and 38°N, E-W trending slices of the resistivity model show relatively high-conductivity (∼10 100 Ωm) lithospheric mantle of the Western Block that extends eastward beneath the relatively high-resistivity lithosphere of the TNCO at depths from 80 to 180 km.
The model showed relatively good discrimination, with an AUROC of 0.852 955% CI, 0.829 0.876; Figure 6).
The validation of the models showed relatively high accuracy.
Validation results show that the reduced nonlinear model performs better compared to the linear model, however, both models show relatively large errors compared to the real plant data.
Compared with the other models, the MPLE and RF models showed relatively larger AD coverages, but the RF models could give better predictions to the test set than the MPLE models.
The standard error of the WLW model was the largest, while the PWP-T and PWP-G models showed relatively small values.
The distance between 155 and 200 m observed in the 2-D magnetic model shows a relatively magnetic quietness correlates with 2-D resistivity structure which imply the segment is devoid of linear features.
The fixed part of the model shows a relatively strong effect of the number of different drugs advised in the DSS.
The linear model showed a relatively high product yield coefficient with a relatively low growth and maintenance coefficient compared to the exponential model.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com