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Both the drugs could enhance the frequencies of MI in all the fixation intervals and the maximum enhancement was shown at 72 hr (p < 0.01 in case of Cad sulph-30 and p < 0.001 in case of Cad sulph-200).
Both Cad Sulph-30 and Cad Sulph-200 could enhance the frequencies of MI in all the fixation intervals and the maximum enhancement was shown at the later intervals (24 96 hr).
The maximum enhancement was achieve for 20 wt.% at 278.15 K and it was almost 400%%.
The maximum enhancement was achieved for 4%% volume concentration of nanoparticles in water at a temperature 333.15 K and it was 390.11 %.
The maximum enhancement was achieved for Ag/Si nanoisland films obtained at Tann = 500 550°C (Fig. 5), similarly to the Rh6G analyte.
Experimental results between runs with MNB and OZMNB in water revealed that dissolution enhancement was dependent on residual saturation conditions, and the maximum enhancement was around 9%.
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Most notably, however, a maximum enhancement is observed in the range between 0.1 and 1 wt.% nanoparticle.
The maximum enhancement is achieved for short non-symmetric periods, with the major part of the cycle under inert gas.
It is noticeable that the maximum enhancement is achieved when the obstacle is closer to the injection wells with sweep enhancements as high as 260%% could be achieved.
The maximum enhancement is limited by the pipe inner radius (tapering of the stacks), the wick effective thermal conductivity, and the prescribed wick superheat limit.
This resonance wavelength is very close to that in the case of single nanorod structure, while the maximum enhancement is ten times higher than the latter.
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