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to improve the energy resolution of jets at FCCee. This task will require again GEANT4 simulations of the detector, including the optical model but necessitates as well to educate the simulation with
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the measurements to be performed. - Determine the isotopic compositions (δ13C and δ18O) of ostracod larval capsules using IRMS. • Organize the dataset: - Verify and update the age models of the cores. - Integrate
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, particularly using reconstructed human skin models that mimic aging or wound-healing conditions. This work takes place in a multidisciplinary framework combining chemistry, biophysics, and tissue engineering
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able to perform both analytical and numerical calculations. Experience with analytical or numerical modelling of active systems is desired. Experience with continuum/ hydrodynamic theories
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the cross-fertilization of research and teaching, is relevant to her country, is known worldwide for her research and teaching in targeted areas, and becomes an innovative model for contemporary European
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rodent models. Skills in flow cytometry, confocal microscopy, and proteomics are highly desirable. Characterize viral vectors and immune cell modifications via bioanalytical and proteomic techniques
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the aim of identifying relevant topological invariants to characterize the underlying dynamics and guide the selection of appropriate reduced models. - Adapt and implement existing topological tools
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facilities. Skills/Qualifications PhD in microbiology, molecular biology, or related field Strong experience in bacteriology and molecular mechanisms of pathogenesis Previous experience with insect models and
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of the yeast Saccharomyces cerevisiae model and human cells to study transcriptional and TCR activities of transposed Mediator variants using genomic approaches. A bioinformatic analysis of NGS data will help
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genetics - Coding eco-evolutionary models - Data analysis - Interpreting and exploiting results - Writing scientific publications - Oral presentations of results - Working as a team and independently Website