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The current state and prospects of development of the component base for ultra-high-speed electronics with low power consumption are considered. Approaches to the design of solid-state electronic devices based on nanowires that can be used in future digital electronics and their constructions are proposed. Estimates of the expected characteristics of these devices are presented.
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The Influence of the Pusdiklatkar Website Implementation on the Performance of Firefighters in DKI Jakarta This study aims to analyze the impact of implementing the Pusat Pendidikan dan Pelatihan Kebakaran (Pusdiklatkar) website on the performance of firefighters in DKI Jakarta. In the digital era, the utilization of information technology in training and personnel development has become increasingly crucial to enhancing work effectiveness and efficiency.
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Transfer RNAs (tRNAs) are a family of non-coding ribonucleic acids (RNAs) that are involved in protein translation. Cleavage of tRNA through stress-induced ribonucleases results in the production of short tRNA-derived small RNAs (tsRNAs), such as tRNA-derived fragments (tRFs). Recent studies have identified three tRFs - 5'AlaTGC, 5'GluCTC, and 5'GlyGCC - to be released from neurons and significantly elevated in epilepsy patients. Extracellular 5'tRFs are taken up by neurons and act in paracrine to inhibit protein translation.
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Repeated Route Naturalistic Driving Dataset (R2ND2) is a dual-perspective dataset for driver behavior analysis constituent of vehicular data collected using task-specific CAN decoding sensors using OBD port and external sensors, and (b) gaze-measurements collected using industry-standard multi-camera gaze calibration and collection system. Our experiment is designed to consider the variability associated with driving experience that depends on the time of day and provides valuable insights into the correlation of these additional metrics on driver behavior.
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The data is the obtained using the autotracker application of the 'Tracker' software. The data is time versus x-y coordinates of a marked particle subject to movement in presence of E X B drift. This data can be directly used to calculate the charge-to-mass ratio and electrophoretic mobility of the particle of interest.
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Accurate prediction of protein-ligand binding affinities (PLAs) is essential for drug discovery, repositioning, and design.
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