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-impurity systems. Reactor design and scale-up from batch to prototype, including process integration and mass transfer optimization under corrosive conditions. Investigating material stability, impurity
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agents, functionalized materials, ion-exchange resins, staged separation, and selectivity and yield optimization in multi-impurity systems. Reactor design and scale-up from batch to prototype, including
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technologies. The candidate will work at the intersection of Artificial Intelligence, Scientific Machine Learning, and Energy Materials, contributing to the design of self-driving laboratories and no-code
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and develop recommendations. Area of specialization: soil microbiome analysis, general microbiology, Molecular Biology, Agronomy and, Sequence dat analysis and R coding skills Main responsibilities
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challenges Research in modulation, coding, and fault-tolerant communications Contact Information: For questions or more information, please get in touch with [email protected] UM6P.