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Exact(18)
Relative analysis verified the conductivity dependence of their EMS performance, indicating the promising prospect of MWCNT-CFRPs for EMS structural composite.
This creates difficulty for EMS performance index comparison and benchmarking.
This will create difficultly in benchmarking or assessing the quality of EMS performance across the region.
There are many challenges in reporting the core measures of EMS performance.
This will create difficultly benchmarking or assessing the quality of EMS performance across the region.
There is non-uniformity in the EMS performance measurement across the Asian cities.
Similar(42)
It was found that the carbon defects, SiC nanocrystals, and heterojunction interfaces among carbon, SiC, and amorphous SiOxCy contribute to the nanocomposite's outstanding EM performance.
Results of present study suggest that interface of Cu interconnects is the key factor for EM performance for advanced BEOL technology design rules.
This work endows the nanowires potential to be utilized as reinforcements in polymers and ceramics for improving their EM performance with mechanical properties.
The effect of three different carbon-based nano and microfillers on the electromagnetic (EM) performance of polymeric composites was examined through the measurement of the effective complex permittivity in the frequency range from 8.2 to 18 GHz.
Results show that polymeric composites based on graphene nanoplatelets are much more easily processable than composites filled with carbon nanotubes, while still retaining much of the EM performance over the investigated frequency band, as well as being light weight.
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