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Field
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will lead the natural language processing and language modelling aspects of the project, focusing on how sensor-derived motion data (from radar) can be transformed into linguistically meaningful BSL
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, physiological, and environmental sensors. Assess human performance capacities using multidomain outcome measures. Analyse and interpret quantitative and qualitative data to generate actionable insights. Develop
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to join our team in advancing new diagnostic technologies. This project focuses on developing real-time electrochemical sensors for continuous, on-site monitoring of key analytes relevant to environmental
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restrictions. Skills and Knowledge: Experience conducting fieldwork in streams, experience with sensors and sensor networks, strong communication skills, project management skills, experience working with large
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young adults (ages 21-19) over the course of one year. Finally, the fellow will assist in projects related to mHealth here at Mizzou, including (for example): (a) validating psychophysiological sensors by
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will lead the natural language processing and language modelling aspects of the project, focusing on how sensor-derived motion data (from radar) can be transformed into linguistically meaningful BSL
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high frequency sensor data. The candidate will also need data management and statistical skills, ideally in the R platform. We offer a competitive salary, medical coverage, and opportunities
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novel nanomaterials for next-generation optical and electronic applications, including integrated optical devices, sensors and actuators, and energy harvesting. For more details, please view https
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learning methods (e.g., predictive modelling, clustering, multivariate integration) to large-scale time series and sensor datasets. Contributing to the development of risk models and decision-support tools
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). Develop electronic and hardware control systems for laboratory instrumentation, including sensors, actuators, microfluidic devices, and automation components. Integrate experimental hardware with software