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These giant fibres conduct impulses at much higher conduction velocities than do smaller axons, while the information-handling capacity of many small axons acting together is far greater than that of giant axons.
Semimetallic state is characterized by much higher conduction electron concentration at the liquid nitrogen temperature [3].
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Owing to the much higher thermal conductivity of nanoparticle material, heat conduction inside this kind of building block can be considered to consist of two one-dimensional routes-radial conduction inside cross-sectional planes of the base fluid region and axial conduction along the blade.
The results based on hyperbolic heat conduction show much higher temperature and much more dynamic thermal stress concentrations in the very early stage of impact loading comparing to the Fourier heat conduction model.
The ionic conduction process represents a much higher heat-generating efficacy than the dipolar polarization.
The cooling rate for nonstable/metastable Au nanocondensates is likely much higher because size miniature would enhance heat conduction in nanofluids [42] and Au clusters are frozen to Ih structure at a cooling rate as high as 1011 K/s, according to molecular dynamic simulation [43].
Despite the small thermal conduction enhancement, an excellent enhancement was observed on the convective heat transfer coefficient, which was much higher than that of the thermal conductivity enhancement.
This conduction process requires a T0/T ratio much higher than 1. Figure 6 shows the plots of ln σT1/2) versus T−1/4.
The results showed considerable enhancement of convective heat transfer using the nanofluids; the enhancement was particularly significant in the entrance region, and was much higher than that solely due to the enhancement on thermal conduction.
Moreover, the film can serve as an effective hole- and exciton-blocking layer because of its conduction band of approximately 4.4 eV, which is much higher than the HOMO values of electron acceptor materials [35,36] (seen in Figure 1b).
The activation energy of electric conduction of a-LNO films was found to be much higher than that of c-LNO films.
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