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The recovery and precision data for the samples are summarized in Table 1.
The data, for the samples S650 and S850, are reported in Figure2a,b, respectively.
Figure 2 shows the experimental data for the samples with indium droplets.
Thermal conductivity (k, W/mK) data for the samples are presented in Figure 2. The trends of k of the nanofluid and base liquid appear alike.
We interpreted the experimental data for the samples that were HF-treated for 17 min assuming that these samples can be considered as an ensemble of randomly oriented elongated nc-Si, embedded in an effective dielectric medium.
All the samples tested were below the suggested guidelines but a closer examination of major ion composition data for the samples (Table 6) reveals that concentrations for most of the major ions are considerably below the applicable standards.
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Accurate sample thickness processing is achieved using the known material dispersion data for the sample and the few (e.g., 5) accurately measured optical power null wavelengths produced via the sample etalon effect.
Descriptive data for the sample are shown in Table 1.
Therefore, data for the sampling at day 5 were removed.
The Igeo data for the sampling sites are presented in Table 1.
Using various software tools, the raw three-dimensional data for the sample set are integrated into ion peaks organized by mass, retention time (RT), and peak area.
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