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The O element component increases from 31%to65%5%, indicating the increased abundance of OH groups on the Si-OPT surface after OPT.
The pipeline architecture of the multiplier component increases the clock frequency and the throughput.
The contribution of the slow component increases with stimulation frequency and with release probability and decreases when blocking the docking step with latrunculin.
This component increases with the sensitivity of the hazard to temperature or the stock of atmospheric carbon.
It is observed that surface energy and its polar component increases with increasing exposure time, attains maximum and then decreases.
The two-body deformation component increases with decreasing scale due to increasing average asperity slope, an important parameter of interest.
With an increase in beam aspect ratio, the bending component increases while the total axial strain remains constant.
It was found that with extending aging duration, the ratio of the surface free energy component increases, resulting in greater stripping work between asphalt and aggregate.
Low cork content improves the thermal resistance while increasing the bio-based component increases the composite density and the thermal conductivity.
The results show that as the vinyl alcohol content of the copolymer component increases, the level of dispersion of the two components of the blend improves.
It is observed that the shear bridging force component increases with the mode II ratio, while the mode I bridging response decreases slightly with the mode II ratio.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com