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The lower bar chart of Figure 10 shows the outage probabilities in the backward link for the −124 dB threshold.
The upper bar chart of Figure 10 shows the outage probabilities in the systems' backward links for a gain threshold of BTh=−118 dB.
This can be seen in (the chart of) Figure 6, where the view has zoomed in on cluster 3, and the corresponding feature was selected.
The upper bar chart of Figure 9 shows the outage probabilities of the forward link for the gain threshold of FTh=−47 dB.
The lower bar chart of Figure 9 shows that semi-passive tags lead to a good performance in the on-body systems' forward links, i.e., to outage probabilities lower than 10%%.
The articles shown in the bar chart of Figure 1 are those that have been published in journals between 2003 and 2010; before 2003, there were no published journal articles found using both keywords 'nanofluid' and 'boiling'boiling
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Check out Lau and Junprung's full chart of figures here if you're interested in digging deeper into the data or disputing their findings.
The average performance of all link managers improves along the iterations in all charts of Figure 7.
Now using uniform distributions to generate the pollution concentrations, we may observe, through the charts of Figure 12, that the most divergence of concentration in hotspots, between using QoD and no QoD, occurs when σ is 40 and 60% (i.e., the percentage of minimum changes necessary in the concentration of zones to trigger step E).
The same pattern is clear in the bar charts of Figure 4.
It follows the flux flow-chart of Figure 8, with the detailed SIMULINK block connections shown in Figure 15.
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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