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complex chemical and biochemical reactions to scale-up and validation of process engineering. CBS projects aim at an in-depth understanding of the molecular mechanisms of all transformations to propose new
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; Assess the effect of using organo-mineral resources on soil carbon stock in the field; Implement agronomic assay to evaluate the stability of clay-humic complexes under culture conditions and how
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major areas, which aim to answer challenging industrial questions, from complex chemical and biochemical reactions to scale-up and validation of process engineering. CBS projects aim at an in-depth
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into scalable technologies while reducing development time, cost, and experimental complexity. Starting date: 1st September 2026 Sodium-ion batteries are a growing technology and show promising potential
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platforms like Aspen Plus. In-depth knowledge of electron microscopy, spectroscopy, and structural analysis methods for complex materials. Familiarity with REE and vanadium chemistry, oxidation states, and
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to integrate and analyze genomics, transcriptomics, proteomics, metabolomics, and microbiome datasets to uncover biomarkers, therapeutic targets, and mechanistic insights into complex diseases. The project
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analysis, facilitating the discovery of efficient and sustainable synthetic routes for complex molecules in chemistry, pharmaceuticals, and agrochemicals. The position provides a unique opportunity to work
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, or enrichment of mineral resources, particularly those derived from complex or secondary ores. The work will include the study of the thermal and physicochemical properties of minerals, design and execution
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experimental complexity. Starting date: 1st September 2026 Sodium-ion batteries are a growing technology and show promising potential for large scale applications. However, developing efficient positive
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, chemical biology, biochemical and thermal reactions. Research at CBS is organized around several major areas, which aim to answer challenging industrial questions, from complex chemical and biochemical