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In addition, high QP content increased the thermal shock resistance.
Increase in Zn content increased the charge carrier density.
As the carbon content increased, the elastic constant values increased.
Higher CA content increased the existence of obstacles, thereby increasing BR.
Increasing the black pepper content increased the levels of NPIP and NMTCA.
The higher soil moisture content increased the soil upward movement by 17%.
The increase in silver oxide content increased the powders' antimicrobial activity.
Higher Fe content increased the beta phase stability and onset stress for SIM transformation.
As expected, increasing the hard segment content increased the stiffness and the flow stress levels.
As the HAp content increased, the porosity of the scaffolds decreased from 84.98 to 74.54%.
As the B content increased, the TiB phase gradually transformed to the TiB2 phase.
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