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motifs; - establish, optimize, and apply quantitative protein-interaction assays; - perform mammalian cell culture, molecular cloning, mutational analysis, recombinant protein work, and fluorescence
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facilities available in the C2N cleanroom. Electron-beam lithography, laser lithography, reactive ion etching, wet chemical etching, and metal deposition techniques will be employed. - low-temperature
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analyze multi-omic data provided by our collaborative partners and interpret the results from a biologically relevant perspective. Planned activities include Python code development, the analysis and
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for this position will specifically study the links between galaxies and their cosmological environment through their morphology and intrinsic alignment. This work will be based, on the one hand, on an analysis
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(bibliographic synthesis). • Participate in a bibliometric analysis in collaboration with a research engineer. • Conduct interviews and organize regular seminars. • Write a scientific article for an international
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(pure and metal-doped) and carbon chains in supernova ejecta. • Apply molecular dynamics (MD) methods to simulate the formation of alumina agglomerates. • Use ab initio wave function methods to model
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environment combining cell biology, advanced microscopy, and quantitative analysis, with access to state-of-the-art imaging platforms and international collaborations. Research Work Environment Resources
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engineering and protein biochemistry is essential. Experience in -omics methods, as well as in protein production and characterisation (FPLC, WB, etc.), is required. Skills in the analysis of omics data and the
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. Activities - Literature review and data compiling - Planification and realization of biochemical experiments (assembly of biochemical reaction networks) - Data analysis and regular (weekly) reporting
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in bioanalytical chemistry, mass spectrometry-based protein analysis. Operational know-how : - In-depth knowledge in intact protein analysis using mass spectrometry - Knowledge in nanoLC-MS/MS