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cellulose. In the context of replacing plastic materials and leveraging biomass as a renewable resource, the goal is to develop green chemistry pathways for modifying cellulose—the primary component of
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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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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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to the analysis of locomotor phenotypes using behavioral assays. • Participate in the bioinformatic analysis of the generated data, in collaboration with other team members. • Present results at team meetings
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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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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
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Additional Information Eligibility criteria - Remote sensing (applied to tropical forests) - Knowledge of (tropical) climatology is an advantage - Statistical analysis of time series (correlations, composites
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, ideally applied to thin-film growth by PVD. Skills in data analysis, programming (Python, etc.), and the ability to work at the interface between simulation and experimentation in collaboration with
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fabrication of devices and experiments to their operation and the analysis of the associated data. The Cryogenic Service at IJCLab designs and develops low-temperature refrigeration systems for superconducting
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based on PDMS, thermoplastics, or other polymeric materials; Surface chemistry and functionalization for the engineering of biointerfaces; Data analysis, signal processing, and scientific programming