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Field
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, shaker systems, laser sensors, force sensors, accelerometers, and a full suite of signal conditioning and data acquisition equipment to support advanced experimental studies in nonlinear vibration and
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Research Engineer or Postdoctoral Researcher (m/f/d) in the field of Engineering Physics or Material
of microstructured optical fibres, in particular novel hollow-core fibres for applications in high-speed communications, quantum technology, sensor technology, etc. Publication of the achieved results in scientific
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– specifically focusing on “360 cameras” as the main sensor modality. The works will develop multi-session visual SLAM pipelines and feed-forward reconstruction (e.g. VGGT, MapAnything) to project rich 3D
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place to understand heat exposure and stress include temperature/humidity sensors, wearable devices, and traditional survey administration. The group is poised to begin field implementation of heat
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sensor data in a materials science context. An excellent record of productive and creative research demonstrated by publications in peer-reviewed journal papers. Excellent written and oral
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particular novel hollow-core fibres for applications in high-speed commu-nications, quantum technology, sensor technology, etc. Publication of the achieved results in scientific journals and at conferences
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(TMDH) project that aims to integrate NASA Earth observation (EO) products, in situ and field-sensor records, and advanced hydro-geologic models into an operational platform to support U.S.–Mexico treaty
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) Development and use of optical sensors to understand neuromodulation,(iv) Molecular and cellular mechanisms of GPCR signaling and trafficking (v) Genetic and proteomic screens to identify novel GPCR regulators
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, you will: Contribute to defining metrics and indicators across spatial (schoolyard, street, neighborhood, city) and temporal (daily, weekly, seasonal) scales, combining sensor-based data with human
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chemistry. You will use this combination to develop a new class of quantum sensors for biosensing and nanoscale magnetic resonance. Background Optically addressable spins—most prominently the nitrogen-vacancy