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understanding and optimize performance. Develop innovative approaches to minimize heat loss and maximize energy storage efficiency, considering both sensible, latent, and thermochemical energy storage methods
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. Investigate the thermodynamics and interfacial structure-property relationships of materials intended for thermal energy storage to deepen understanding and optimize performance. Develop innovative approaches
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: transport properties and selectivity. Monitor and analyze system performance: current efficiency, ion separation rates, energy consumption, etc. Model ion transport and system behavior under different
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. The research aims to improve our understanding of the integrated functioning of continental surfaces and their interaction with climate and humans, with emphasis on sustainable management of natural resources
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evaluate the performance of unit operations. Ability to carry out feasibility, cost, risk and opportunity assessment studies. A proven track record of research publications in reputable peer-reviewed
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experiments to assess the efficacy of microalgae and cyanobacteria in improving soil quality and plant performance. Analyze experimental data using appropriate statistical methods and communicate findings
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interphase generation at both anode and cathode interfaces to improve battery performance. Implement strategies to enhance the manufacturing processes for electrode and electrolyte materials, focusing
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ability to: Design, implement, and validate an experimental photocatalytic measurement setup Perform conversion measurements at laboratory scale Synthesize and develop new catalytic materials Characterize
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performance and enhancing resource recovery. The ideal candidate will have a strong background in mineral processing, comminution modeling, and ore characterization, and will contribute to developing
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Postdoctoral researcher will be for one-year renewable depending on satisfactory performance. Applications and selection procedure: Applications must be sent using a single electronic zipped folder with