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The results of numerical calculations for a real case are described and compared with experimental data.
Both the hydrophilic and the hydrophobic case are described, together with possible implications for the wetting of porous materials.
The experiences and reflections of every case are described to contribute to a better understanding of how collaborative environments should be built up.
The temperature field of absorber plate and flow condition as well as temperature counter of the air gap between the absorber plate and glass cover of a simulation case are described.
Figure 4 The features used in supervised case are described in [19]; a single feature vector (right) is computed for each sequence, by concatenating data coming from each frame of the sequence (left).
The estimation of ({sigma _{z}^{2}} k,ell)) only requires the noise PSD estimate (hat {sigma }_{tilde {v}}^{2}left (k,ell right)) whereas the estimation of ({sigma _{s}^{2}} k,ell)) additionally requires an estimate of the reverberant PSD ({sigma _{r}^{2}} k,ell)), as depicted in Fig. 2. The modifications required for the latter case are described at the end of this section.
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The case was described as a fall.
In particular, the saturation case is described.
The case was described in the Lancet medical journal.
The case was described last week in The Wall Street Journal.
The case was described by the F.D.A. as among the worst catastrophes in recent experimental history.
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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