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Field
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aims to reconstruct the thermal evolution and subsidence history of the Comminges, Arzacq-Tartas, and Parentis basins from Cretaceous rifting to Pyrenean compression, in order to quantify their natural
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, autofocus, and multichannel detection. Validate models and workflows using diverse, real-world sample matrices (e.g., drinking water, milk, blood), benchmarking against regulatory and ISO guidelines
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the integrity of compressed storage solutions. Plan and execute research tasks, analyzing data, publishing findings in peer-reviewed journals, and presenting research at scientific conferences. May participate in
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biological matrices. Hands-on acquisition of SERS data from biologically and clinically relevant samples, including in vitro bacterial cultures, experimentally infected wound models, and clinical wound samples
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on artificial molecular networks (neighbour-neighbour interaction matrices) created experimentally in the sample. This is essentially about turning the sequencer into a microscope that uses DNA sequence, not
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. An extension of 1–2 additional years may be offered, subject to satisfactory performance. Job description The successful candidate will contribute to cutting-edge research on topics including: Token compression
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compounds, sustainable protein sources (including by-products and insects), and sensory or techno-functional characterization of food matrices. Publications or demonstrated research experience in skin-related
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: Homogenization of (in)compressible visco-elastic fluids Singular limits such as low Mach and stratification Related topics such as existence theory, especially for limiting systems The applicant must have: a Ph.D
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. An extension of 1–2 additional years may be offered, subject to satisfactory performance. Job description The successful candidate will contribute to cutting-edge research on topics including: Token compression
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engineering to identify variants with high performance towards PFAS degradation. Enzyme immobilization for efficient and continuous enzymatic PFAS degradation in realistic water matrices and under water