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& Experience A PhD in a related discipline, and/or relevant work experience Experience in experimental aeroacoustics, turbulence measurements and/or wind tunnel testing. Experience in high-speed data acquisition
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complex environments. While the effects of energy release in open air are well-documented, real-world scenarios often involve interactions with surrounding materials that significantly alter how energy is
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Sorbonne Université SIS (Sciences, Ingénierie, Santé) | Paris 15, le de France | France | 24 days ago
large spatial scale. Ultimately, the work presented in this PhD project can contribute to such developments. The overall objective of this PhD project is to understand how wind erosion selects and
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Doctoral Network COMBINE. See https://euraxess.ec.europa.eu/jobs/401249 for the common job offer for all DCs on Euraxess. Within the COMBINE project, a total of 17 PhD positions are available
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of Aerospace Engineering The Department of Aerospace Engineering, the largest in the nation with an enrollment of over 2300 students, offers Bachelor, Master, and Ph.D. degrees, including 75 students in our PhD
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exposures, mainly temperature, humidity and air pollution (e.g. PM2.5, PM10, NO2, O3, wildfires, desert dust); to study the synoptic atmospheric conditions and modes of variability that favour compound
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productivity to the success of the whole institution. The Research Training Group RTG 2947 "AirMetro", funded by the DFG, offers a position, as Research Associate / PhD Student (m/f/x) (subject to personal
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the future of offshore wind structures by developing integrated models of turbine dynamics under wind, waves, and future climate conditions at TU Delft. Job description Offshore wind energy is expanding
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expect to benefit from and contribute to these efforts. Qualifications Candidates must have a PhD in engineering or a related discipline. The successful candidate will be expected to create undergraduate
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the synergistic health effects of environmental exposures, mainly temperature, humidity and air pollution (e.g. PM2.5, PM10, NO2, O3, wildfires, desert dust); to study the synoptic atmospheric conditions and modes