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microbial abundances and biomasses via dPCR, flow cytometry, flow imaging and HPLC approaches. - Quantification of microbial activity (soil enzymes, microbial respiration, etc.) - Management of sampling
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nanomaterials to study optical and magnetic properties via fine structural, optoelectronic and magneto-transport characterizations. The position is available from May 1 for a period of 12 months. It will be
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paleontology - Solid knowledge of the anatomy and systematics of current and fossil Chondrichthyans, particularly the Xenacanths - Knowledge of 3D reconstruction, morphometry and phylogenetics methods and their
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, the particle flow incident on the target and particle-matter interactions; - Solving an inverse problem and generating tomographic images, as a function of time, of the target studied; - Participation in on-site
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period. • Development of a retrospective simulation method using paleoecological data. • Data-model comparison on past boreal forest dynamics in response to combined fire-SBW outbreak disturbances
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a great potential for ultra-high-speed wireless communication, with data rates far surpassing those of current 5G systems. We are currently hiring a post-doc with expertise in finite-element
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Brittany and develop population genetics approaches and eco-physiological analyses. Climate change is a major factor in the erosion of biodiversity. Climate stress can interrupt gene flow between populations
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flow) and in solids (porous, granular or composite materials, vibrating structures) as well as the coupling mechanisms. The main objective is to understand the physical phenomena involved, with emphasis
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flows from fertilized crops introduce nutrients, agrochemicals, antibiotics and other chemicals into the waters, threatening the conservation of protected habitats. Microbial communities play a crucial
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while avoiding instability issues through the rheological properties of liquid foams. The ANR project addresses various topics, including the flow of complex foams through porous media