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working on projects aimed at developing innovative, accurate, and cost-effective tools for foliar analysis and diagnosis. These tools will leverage various spectroscopic techniques (VNIR, SWIR, and XRF
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) to monitor and improve public health. You will contribute to modeling smart cities with a focus on health and designing decision-support tools for sustainable and inclusive urban environments. Key
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transformer-based architectures to create a powerful tool for understanding and predicting bacterial genomic sequences. The successful candidate will play a key role in developing and optimizing these models
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. Our mission is to accelerate the adoption of these resilient crops across Africa's marginal lands, bridging the gap between cutting-edge genome editing tools and the unique agricultural needs
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functional analysis of soil biology. Utilize high-throughput sequencing technologies to analyze soil microbiomes and interpret the data using bioinformatics tools. Collaborate with interdisciplinary teams
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/unknown secondary metabolites using advanced analytical tools. Proven experience in mastering cell culture/treatments/cell viability. Excellent skills in vitro biological assays (enzymes involved in skin
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, etc.). Proven experience in protein purification methods (FPLC/HPLC chromatography). Strong expertise in protein analysis tools (SDS-PAGE, Western blot, ELISA, UV spectroscopy, BCA/Bradford assays
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dynamic models. Model complex interactions between physical systems (infrastructure) and digital systems (software, platforms). Develop decision-support tools based on simulations for public and private
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several major areas that aim to ensure the challenging Food and Water security goal in Africa, with a special focus on developing methods/tools that use multi-source remotely sensed data. The research aims
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initiative and undertake outreach, including publication of research findings Prepare and design simulation studies using water, soil and crop modeling tools Compile and analyze experimental data, interpret