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To further characterize the devices, we study the electrical transport properties of the independently contacted pristine FLG and FeCl3 FLG flakes.
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To further investigate the gate control characteristics of both devices, we studied the region near the cut-off voltage.
In the second part of the article, we focus on nanoscale FinFET devices and we study the dependence of self-heating on device-structure parameters such as buried oxide thickness, source/drain extension length, fin pitch and fin height.
"One of the things that is especially interesting about tablet adoption compared to some of the patterns of other devices we've studied is how these technologies' growth has played out between different age groups," said Kathryn Zickuhr, a research analyst for Pew.
We study memory devices consisting of single-walled carbon nanotube transistors with charge storage at the SiO2/nanotube interface.
In this work, we study novel device characteristics where the channel consists of a 1-nm wide zzGNR as shown in Figure 1a.
As shown in Figure 1 we study the device of a quantum ring with a QD inserted in one of its arms.
We study the device characterization of Si-on-insulator (SOI) metal-oxide-semiconductor field effect transistor (MOSFET) with buried Si1−xGex quantum well (QW) channel.
While it was, therefore, possible to study the reproducibility of the results comparing different ultrasound devices we could not study inter-observer variability, which could have been of interest to validate this method for clinical use.
In order to investigate the differences in applying the DD and HD models to simulation of the high-field transport in high-speed devices, we will first study the transient response of a GaN sample induced by high-electric field ultra-short pulses.
"Given the expansion of smart devices, we are naturally studying how smart devices can be used to grow the game-player business.
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