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At high temperatures (T > 77 K), the phonon scattering seems to be dominant and the resistance rises with increasing temperature (metallic phase).
Permeability rises with increasing temperature, as expected, and differences of a factor of approximately 4 were observed between room temperature and 600 °C.
In this investigation, the heat capacity chart is calculated and shows a trend rises with increasing temperature gradually, as shown in Figure 2. Comparing at 300 K, the specific heat capacities of cumulene, polyyne, and (5,5) SWNT are about 1.307, 1.162, and 0.174 J g-1 K-1, respectively.
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Spectral refractive indexes rise with increasing temperature and decrease with wavelength.
It is evident that the concentrations of releasing gas (containing methane, carbon dioxide and ethane) slightly rise with increasing temperature.
These increases rise with increasing temperature, especially for the 343-K isotherm reaching a maximum increment of 12.6% for the 0.50 wt.% GOnP mass concentration.
It is shown here that the transfer coefficient calculated on the basis of electron and atom group transfer theory does in fact rise with increasing temperature.
Since the surface diffusion is thermally activated, its contribution to the total diffusivity was expected to rise with increasing temperature, which could lead to the increase in gas permeance and enhancement factor.
Increasing the operating temperature in biomass-fueled power plants is a very difficult task as the corrosion rate generated by alkaline deposits, sulphur and/or chlorine present in biomass, will dramatically rise with increasing temperature, and a higher content of water vapor and SO2 characteristic of oxy-combustion will likely further increase it.
Compared with the solute reflection coefficient, solute permeability, which also represents the retention performance of membrane for GAH and NAG, shows rising tendency with increasing temperature.
Such a steep rise in Hci with increasing temperature is unique to MnBi.
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CEO of Professional Science Editing for Scientists @ prosciediting.com