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Generally for the sorption of As V) ions it can be seen that increase in the pH values from 4 to 10 results in the increase in metal sorption on the above mentioned anion exchangers.
By comparing these brake thermal efficiencies values of Figure 5 for 0.05% Cu Nano sample with those in Figure 8, it can be seen that increase in brake thermal efficiency at higher loads is found to be more marked.
When the two sets of data (rates obtained by varying peroxide at constant final peroxidative substrate versus rates obtained by varying final peroxidative substrate at constant peroxide) were compared, it could be seen that increase in peroxide (at constant peroxidative substrate) had a greater effect on lowering rate.
From this line it can be seen that increase E' with increasing f is greater a lower f values, since its slope, is inversely proportional to f. Figure 3 shows the storage modulus against frequency plotted at frequencies of up to 18 Hz.
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Further, it can be seen that increasing the ammonia mass fraction increases the discharge pressure.
Further, it can be seen that increasing the ammonia mass fraction decreases the compressor discharge temperature.
It can be seen that increasing of K Q will greatly enhance the damping of λ3.
It can be seen that increasing the ZnO content can improve the electrochemical properties of graphene-ZnO hybrid.
As shown in Figure 2, it can be seen that increasing N or the SNR enhances the probability of detection.
It can be seen that increasing the integration time resulted in slight increase in the intensity of the fluorescence, but the three characteristic peaks remain unchanged.
It can be seen that increased false alarm probability has a direct effect on the available spectrum, and hence, it heavily influences the spectrum utilization.
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