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Field
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with sensor system integration • Familiarity with experimental data analysis and custom device fabrication for materials characterization. • Ability to work effectively in interdisciplinary
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current sensors) Develop and characterize superconducting nanowire single-photon detectors (SNSPDs) using high kinetic inductance materials such as NbN, TiN, and NbTiN, targeting high detection efficiency
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characterization, probing, thermal testing, or dynamic compliance testing. Experience integrating sensors, data acquisition systems, and instrumentation into machining or manufacturing systems. Experience with data
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project that involves designing microfabricated biomedical sensors and the readout circuitry for recording electrophysiology and electrochemical signals from biological samples. The overarching goal
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, film, foam, or textile processing and characterization. Experience with smart textiles, wearable sensors, or wearable systems. Prior experience mentoring undergraduate or graduate students. Interest in
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group aims to bring fundamental changes in the way the sensors and electronic devices are developed using materials designed for sustainability, and resource efficient printed electronics on flexible
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, APIs, BIM platforms, simulation tools, sensors, or robotic hardware. • Ability to engage with academic, industry, government, and professional-society stakeholders. Required Training and Other Conditions
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, deploy, and maintain acoustic recording hardware and sensor systems. Collaborate with interdisciplinary teams to enhance conservation strategies and decision-making. Publish findings in peer-reviewed
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the holistic understanding of space and its broader societal, ethical, and environmental impacts. Through responsible, multi-disciplinary research, including novel sensors, environment modelling
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Modeling, Musculoskeletal Modeling, Wearable Sensors All offers of employment are contingent upon successful completion of a background check. The University of Oregon is proud to offer a robust benefits