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The overall conclusions to be drawn from Figures 1, 2, 3, 4, 5 are that the material is from lymphocytes that have transcriptional phenotypes consistent with their known roles as T-cell subsets.
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2. Regarding the attribution: As shown in Fig. 1 of my 2009 PNAS paper, sea ice usually recovers within one year or so from extreme loss events (same conclusion can be drawn from figure 3 of the RealClimate post).
The same conclusion can be drawn from Figure 10.
Similar conclusions could be drawn from Figure 14.Figures 16, 16, and 17 present the effect of clustering on the obtained results.
Essentially, the conclusions that can be drawn from Figure 10 are applicable to the cases where the multiple inversion-based models are taken into account.
Generally speaking, a conclusion can be drawn from Figure 10 that the cost of the ICASST scheme is relatively small compared with its efficiency.
Another important inference that can be drawn from Figure 14 is that the success rate is almost constant with increasing number of nodes in the network, for any latency or node degree.
It can be drawn from Figure 3 that the nanostructured surfaces, including surfaces 1, 2, and 3, lead to higher temperatures of liquid and vaporize argon atoms as a result of increased interaction area between solid surface and liquid.
The quantitative comparison can be drawn from Figure 6 (in Figure 6, the abbreviations not mentioned earlier are the spectrogram (spec), Zhao-Atlas-Marks distribution (ZAMD), Margenau-Hill distribution (MHD), and Choi-Williams distribution (CWD)), where these measures are plotted individually for all the test images.
Patterns of temporal associations between access milestones, and between milestones and beginning implementation, can be drawn from Figure 4.
Three main conclusions can be drawn from Figure 3. First, it turns out that almost all HECT subfamilies, and in general the great majority of HECT-encoding genes currently detected in all species, originated either before the choanoflagellata/metazoa split or just after that split.
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Justyna Jupowicz-Kozak
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