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, mechanochemistry, multi-component reactions, atoms and steps economy, and both homogeneous and heterogeneous catalysis. Experimental Validation: Designing and performing experiments at both laboratory and pilot
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include laboratory investigations, prototyping, field testing, and performance analysis of water harvesting systems across various climatic contexts. In line with E4W’s mission, the postdoctoral researchers
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. The goal is to explore innovative, renewable solutions that support environmentally responsible mineral processing, while maintaining high efficiency and selectivity in flotation performance
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operate lab-scale BMED setups, including multi-compartment electrochemical cells. Test and characterize membranes: transport properties and selectivity. Monitor and analyze system performance: current
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candidate will be expected to: Design and implement advanced decision-making model for mining activity planning, considering field constraints and performance objectives. Propose mechanisms for dynamically
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datasets generated by the Phenomobile.v2+ to identify key traits affecting crop performance under stress conditions. Implementing a multimodal approach for large-scale data analysis using CPU and GPU
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processes. This project focuses on utilizing computational techniques to understand and enhance the performance of catalysts in reactions such as hydrogenation, oxidation, and biomass conversion. We
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, FactSage) to simulate vanadium phase behavior and guide process improvements. Performing advanced characterization of vanadium-bearing materials to understand their transformation and recovery mechanisms
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on multiple components by analyzing maintenance data, performing failure analysis and giving recommendations backed by laboratory testing and emulation results. The candidate must be comfortable with operating
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, liquid formulations, and their applications. Design and develop formulations based on specific requirements, such as sustainability, performance, stability, and cost-effectiveness. Perform chemical