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Additionally, by increasing the defect thickness, it is also possible to have a filter with multiple resonant peaks, leading to a multichannel filter.
Finally, by increasing the defect thickness leads to the presence of multiple defect modes which can be used to design a multichanneled filter.
Unexpectedly, the G/M interfacial thermal conductance is found to increase with increasing the defect density near the interface, which is in strong contrast to the in-plane thermal conductivity.
In the case of crystalline ceramics (pyrolyzed at 1150 1500 °C), the presence of a nano-crystalline graphite (NC-G) phase with sp3/sp2 hybridization ratios of 0.40 1.27 further enhanced the swelling resistance of nano-SiC by increasing the defect trapping capability of the interfaces.
It could be concluded that by increasing the defect rate, the artificial immune classifiers perform better and gives a finest prediction model compared to others.
Increasing the defect fraction from 0 to 0.1, however, results in decreasing the elastic modulus E and Poisson's ratio ν, with approximately linear relaxations.
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In UHP Fe, conversely, the presence of He strongly increases the defect number density.
In order to increase the defect detection limit of the SATIR test bed, several possibilities have been evaluated.
The presence of doped boron improves the electron density and increases the defect sites, resulting in the acceleration of electron transfer rate through the graphitic network.
The rapid potential decrease in the Cu-containing alloys was primarily due to the Cu-dissolution from the film, which increased the defect density of the passive film and hence decreased its stability.
This result indicates that GO reduction to ERGO did not increase the defect density significantly.
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