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CSAES - Postdoctoral in Experimentation and analysis of the dissolution and diffusion of different fertilizer formulations About UM6P: At the heart of the future Green City of Benguerir
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analysis (TEA). The successful candidate will: Develop innovative strategies for transforming industrial byproducts into high-performance porous adsorbent materials. Design and optimize structuring and
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of computational tools for process monitoring and predictive analysis Candidate Criteria Applicants should have: A PhD in Process Engineering, Chemical Engineering, or a closely related field Strong expertise in
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digital twins for industrial chemical processes Process optimization and model-based decision support tools Development of computational tools for process monitoring and predictive analysis Candidate
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propose evidence-based corrective measures or process improvements. Perform detailed data analysis and interpretation, and prepare high-quality technical reports, presentations, and documentation
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providing guidance on experimental processes and techniques, data analysis, and research methodologies. Collaborate with research colleagues and actively develop internal and external networks relevant
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carriers incorporating biochar for controlled nutrient release. Perform comprehensive physicochemical characterization using FTIR, SEM/TEM/AFM, BET surface area and porosity analysis, XRD, TGA/DSC, and zeta
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real conditions. Collect and analyze operational data, diagnose performance issues, and propose evidence-based corrective measures or process improvements. Perform detailed data analysis and
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optimize laboratory protocols for characterization, and functional analysis of soil biology. Utilize high-throughput sequencing technologies to analyze soil microbiomes and interpret the data using
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execution of lab-scale grinding and classification trials based on experimental design. Contribute to the numerical modeling of beneficiation circuits (e.g., using USIMPAC or similar software). Analyze