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sensor arrays (temperature, relative humidity, CO₂, TVOC, PM2.5) and collecting biological samples (mould air and surface sampling) across study residences conducting quantitative data analysis across
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strong background in microfabrication processes is expected. Experience in the development and fabrication of sensors, bioelectronic devices, microelectrode arrays (MEAs), or lab-on-chip/organ-on-chip
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technologies and instrumentation concepts for future particle physics experiments. Research areas may include new and emerging quantum sensors based on nitrogen-vacancy centers, development of novel readout
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have access to a well-equipped experimental laboratory for nonlinear dynamics and vibration research. The PI’s laboratory includes a vibration isolation table, high-fidelity data acquisition systems
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Sr gases for quantum sensing, the study of many-body physics and for quantum computing. We explore new ways to build sensors, such as superradiant clocks and collaborate with industry, startups and
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Argonne National Laboratory invites applications for a Postdoctoral Researcher position in Superconducting Detector Development and CMB Instrumentation. This role focuses on advancing large arrays
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computational platforms. • Experience with data acquisition systems, accelerometer arrays, and sensor integration for dynamic testing. • Knowledge of packaging performance testing standards (ASTM D4169, ISTA) and
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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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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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of the Ocean Observatories Initiative Regional Cabled Array (https://oceanobservatories.org/regional-cabled-array/ ) that land in Pacific City, Oregon. One cable runs 500 km west to Axial Seamount, while