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part of the international Refuge-Arctic project (https://www.refuge-arctic.ulaval.ca ) with links to the NASA FORTE project, whose overall objective is to better understand and predict the role played by
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, and nutrient loss in catchment areas. This increases the need for expertise in the design of drainage systems and hydro-technical measures. We are looking for a candidate with a practical background in
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an active student scene and a diverse cultural life. Within the framework of the GENAI-X project, we are looking for a highly motivated PhD Candidate in AI Methods for Hydro-Climatic Extremes (m/f/d) in full
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‑derived oils for phenolic resins, surfactants, and polyurethanes, as well as emerging uses such as flame‑retardant materials. Your core research tasks in this project include (i) (hydro)pyrolysis of lignin
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, (eco)hydro(geo)logy, forestry, geoscience (or related fields), preferably with field and/or lab experience proven experience in working in diverse teams, proven scientific publishing skills (see required
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solutions. To this end, the position combines hydro-economic modeling, remote sensing data, and scenario simulations. The PhD project entails extending an existing hydro-economic multi-agent model with high
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postdoctoral researcher (12 months) with research interests in the thermo-hydro-mechanical-chemical behaviour of clay-based materials. In the context of deep nuclear wastes storage deep galleries will be
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destruction and promising for future medical applications, enriching knowledge about hydro-chemical-mechanical couplings in WJ appears to be crucial for medical innovation. Where to apply Website https
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are: Development of a new model for creep and shrinkage for blended cementitious concrete within a Hydro-chemical-mechanical framework, with extensive verification, and validation against experimental data from a
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hydro-climate studies. Strong background with GIS tools and spatial analysis techniques. Demonstrated expertise in climate variability assessment and the use of climate models. Experience with