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Its distributed architecture scales to any building construction regardless of the devices' performance and connectivity limitations.
A simple Fitts' law task was conducted and the devices' performance was evaluated with both subjective and objective measures.
However, the current designs mainly utilize graphene as an active medium, which only modulate the devices performance slightly and the applications in tunable magnetic response have not been explored.
The influence of thickness, hole mobility and defect density of Sb2Se3 layer, as well as the CdS layer thickness and the work function of back contact on the devices performance are simulated and analyzed in detail.
The devices' performance parameters including J sc, V oc, FF, and PCE are summarized in Table 1.
After testing the two devices on the spot and standardizing the data, the devices' performance indexes are shown in Table 3.
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The device performance suggests that our devices can be used for both memory and computing applications.
The influence on the device performance is evaluated.
Temperature is a thermal parameter which affects the device performance.
Glucose solution is utilized to characterize the device performance.
Four strategies were pursued to boost the device performance.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com