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with airborne and satellite-based imagery to unravel radiative exchanges. You will also be working on coupling and upscaling of radiative in-situ observations from our spatially distributed sensor
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framework for the temporal integration of Earth system models with observational data from our spatially distributed sensor network (ITEM), as well as Earth observation imagery. With this framework, you will
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systems-on-chip. Energy-efficient hardware solutions for signal processing, machine learning and control in smart sensors and implantable medical devices. Novel computing paradigms, including neuromorphic
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systems. Experience working with sensor data, including data collection, processing, or analysis. Programming skills and experience in Python, JavaScript or comparable programming languages. Excellent
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, including a sensor-based system, for studying human-material experiences with temporal and biofabricated textiles. You will then apply this methodology and toolkit in user studies to investigate how people
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the sensors measured? In the ASPIRE project, we develop knowledge for the new generation of sports tracking technology that integrates athletes’ subjective experiences (such as perceived exertion, motivation
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The postdoc project aims at fabricating graphene edge sensors for single molecule detection and biopolymer sequencing. The device architecture will be scalable and tunable by combining unique
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are encouraged to visit the ESA website: http://www.esa.int Field(s) of activity for the internship Topic of the internship: Development of field tools and Electronic Fieldbook (EFB) for CAVES & PANGAEA The EFB is
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the ESA website: http://www.esa.int Field(s) of activity for the internship Topic of the internship: XR and Machine Learning for Onboard Meta Quest 3 Applications on the International Space Station You will
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precision of optical technologies such as sensors and novel computers. The two projects we offer are at the frontier of nanophotonics, statistical physics, and condensed matter. Both projects involve