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The experimental procedure here presented using the temperature and time superposition allowed for the identification of the contribution of each reversible bond type to the network behaviour (rheology) and healing (fracture).
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The two procedures here presented are the evolution of analytical protocols previously reported in the literature [27, 35] Figure 1 A comparative scheme of the two analytical procedures.
Thus, the here presented procedure works well under biologically realistic scenarios of unbalanced group sizes, non-normality and heteroscedasticity.
The mathematical model, the regression procedure and the results are here presented and discussed.
A novel numerical procedure aimed at predicting collapse layout and limit settlement is here presented.
I here present simple procedures to measure and evaluate digitized cores, combining existing programs via VBA macros.
A probabilistic data processing procedure is presented here for diagnosing structural condition.
An innovative procedure is presented here for determining the minimum low cycle fatigue (LCF) life of turbine disk bores under multiaxial states of stress.
A new flux formulation and gradient limiting procedure is presented here which eliminates these artificial extrema, preserves the second-order accuracy, and preserves the monotone character of the van Leer method, even in the limit of vanishing mass density.
Therefore, the results after the 'hot-deck imputation' procedure are presented here.
The GEMM-ESC procedure as presented here, can be divided in two separate phases: a resource phase and an experimental phase (Fig 5).
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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