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Comparing figure 6(c) to figure 6(b), the effect of diffraction can easily be seen.
The temperature effect is apparent by comparing Figure 6a and Figure 6b.
By comparing Figure 8 to Figure 6, the is relatively high at and the value is.
Comparing Figure 4 with 3, we can indeed observe a performance improvement.
The poor classification can be easily understood when comparing Figure 2b with Figure 1a.
Comparing Figure 7a with Figure 7b, and comparing Figure 8a with Figure 8b, we can find if the accuracy of the VAD algorithm is very high, the combination method can keep the VAD accuracy, else the performance will degrade dramatically.
Comparing Figure 13f with Figure 13i, we can note that the two methods have similar compensational performance.
The threshold voltage decreases and the reaction zone widens, as can be observed by comparing Figure 9h and Figure 9l.
Comparing Figure 2a, b, the compressed film is homogeneous and smooth which may enhance the electron transport between NPs.
By comparing Figure 2c,d, it can be clearly seen that the CdS nanoparticles were uniformly deposited onto ZnO nanosheets.
Comparing Figure 7 with Figure 5, a slight difference is seen in the case of 13.56 MHz.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com