Sentence examples for stronger temperature from inspiring English sources

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Wafer-based technologies have stronger temperature dependence compared to a-Si-based thin film technology.

However, phonon absorption processes have much stronger temperature dependence than phonon-emitting processes.

Accordingly primary crystallization has a stronger temperature dependence on temperature than secondary.

Figures 4 and 6 suggest that F ex might have a stronger temperature dependence than what we have considered in our calculation.

Finally, for the same degree of fluorination (i.e. CF0.28) the graphene multi-layers exhibit a stronger temperature dependence and a larger transport gap than what is observed in mono-layers.

The graphene nanoribbons fabricated into FETs through this technique displayed a higher on/off ratio and a stronger temperature dependence of the current as compared to the FETs having no patterned graphene nanoribbons [68].

It seems that owing to the decrease of the contact area between the nanowire and the platinum microleads, the nanocontact resistance at low temperature increases with diameter decreasing and shows much stronger temperature dependence.

One should also note that the model predicts stronger temperature dependence (above a certain quenching temperature of about 100 K) which is close to our experimental result at about 200 K.

Flow activation energies obtained from the temperature dependence of steady shear viscosity show that Boltorn polymers have higher activation energies than most linear polymers, indicating a stronger temperature dependence of flow.

Fluid loss of cement slurry was about 42 ml at 77 °C, indicating a stronger temperature tolerance of ADM and resulting from stronger rigidity of ADM molecule due to the existence of −CH3.TGA spectrum of ADM echoed the results shown in Fig. 4.

To further improve the performance of FLA, N,N-dimethyl acrylamide (DMAM) was used instead of AM to copolymerize with AMPS, and the copolymer synthesized (coded as ADM) was found to have a stronger temperature tolerance, resulting from reinforcement of molecular rigidity due to the existence of −CH3 (Guo et al. 2012).

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