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Postdoctoral Position in Batteries Recycling: Process Optimization and Environmental Impact Assessment Expected Date of Employment: May 2025 Job Description: We are seeking a highly motivated
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and functional interactions within urban infrastructure. Personal and Organizational Skills Ability to model complex systems and identify optimal solutions. Strong analytical skills to translate complex
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disciplines to develop integrated solutions. Modeling and Simulation: Use simulation and modeling tools to analyze and optimize urban energy networks. Conduct case studies on specific cities to evaluate network
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material stability and cycling performance. Scale-Up and Process Optimization: Work on improving synthesis methods for large-scale cathode material production. Collaborations and Knowledge Transfer: Work
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material stability and cycling performance. Scale-Up and Process Optimization: Work on improving synthesis methods for large-scale Na-ion cathode material production. Collaborations and Knowledge Transfer
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processes. This project focuses on designing and optimizing novel materials that enhance the efficiency and effectiveness of converting biomass into valuable products such as biofuels and fine chemicals. We
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development of sustainable solutions to extend membrane lifespan while maintaining optimal performance. Special attention will be given to evaluating the effectiveness of cleaning agents, their chemical
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engineering, and particularly in modeling, simulation and optimization of the phosphate value chain processes. In terms of research, the candidate will reinforce the team of the CBS department. His/her
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. Main Mission The position holder will be responsible for designing and implementing an optimized, resilient, and sustainable logistics architecture for the JORF-Lasfar site. His/her work will focus
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synthesize high-quality perovskite materials tailored for photovoltaic applications, ensuring optimized properties for solar cell performance. Thin-Film Deposition using various deposition techniques such as