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characterization systems for sensors. Functions to be developed: Design and program measurement systems. Process and analyze data from thermal sensors. Carry out measurement campaigns in representative environments
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sensing, and new applications of extreme sensors. One major theme of our research is the study of quantum effects in atomic systems and the light that is used to measure them. At the most fundamental level
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and simple embedding alignment to develop architectures that can process and reason across modalities (vision, language, audio, sensor data) from the ground up. How do we build a truly unified
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and implantable sensors o Microfluidic-based electrochemical platforms o Data-driven sensor signal processing Fluent English proficiency (B2/C1 level or higher). Strong analytical, problem-solving
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. The successful candidate will be joining the Atomic Quantum Optics group led by Prof. Dr. Morgan Mitchell. The group has several active research topics focused on hot-vapor quantum sensors, including
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sensing, and new applications of extreme sensors. One major theme of our research is the study of quantum effects in atomic systems and the light that is used to measure them. At the most fundamental level
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advanced sensing, and new applications of extreme sensors. One major theme of our research is the study of quantum effects in atomic systems and the light that is used to measure them. At the most
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of algorithms for numerical efficiency, algorithms for data management and the efficiency implementation of those algorithms in the most advanced HPC platforms (MareNostrum). Where to apply E-mail eusebio.valero
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analysis. Methods and algorithms including visualisation and reporting tools. Geotechnical, structural and mechanical characterisation of rock from drilling signals. Calibration and interpretation on rock
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Spectrometry” at University of Oviedo, in the integration of nano(bio)sensors into microfluidic chips for the optical detection of species of interest in food control and safety using color sensors and