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Paths are then scored according to the selected context pairs, and high-scoring paths are reported.
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The results of the average shortest path are reported in Fig. 5, where we can see that the average topological distance between each pair of nodes is small, around 3 for the entire period under study.
The proportion of the effect that is mediated was calculated as β2×β3/β1, while the percentage of total variance explained by each path was reported using the standardized R 2 values.
Proportional stress path experiments are reported, from which are extracted the initial yield surfaces and their evolution with increasing plastic strain.
Standardized path estimates are reported with t values in parentheses.
Standardized path coefficients are reported for the final model (Model IV) to aid interpretation of the probit regression coefficients provided by the WLSMV estimator.
The three-factor model path loadings and r 2 are reported in Tables 6, 7, 8, and 9. Figure 2 shows the model applied to 1998 (dataset not part of EFA) and Fig. 3 shows the model applied to 2011 (dataset part of EFA) with standardized estimates.
All the simulations are reported with the path loss exponent ν=4.
Estimated mean differences and 95%% CI are reported for the α paths.
Estimated odds ratios and 95%% CI are reported for the β paths.
Three values that describe the network connectivity are reported by LENS: minimum shortest path length, average shortest path length, and the count of disconnected nodes.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com