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soilborne pathogens. This position offers an exciting opportunity to work at the interface of applied microbiology and plant health, contributing to sustainable agriculture and environmentally friendly plant
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Context: The synthesis of advanced materials such as LiFePO₄ and FePO₄ through continuous stirred- tank reactors (CSTRs) plays a crucial role in next-generation energy storage technologies
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molecular biology to explore and validate the potential of microalgae in controlling soilborne pathogens. This position offers an exciting opportunity to work at the interface of applied microbiology and
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reactors (CSTRs) plays a crucial role in next-generation energy storage technologies. Achieving high tap density, uniform morphology, and enhanced electrochemical performance depends strongly on the fluid
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collection and analysis systems. Deploy prototypes in the field and optimize their performance based on feedback. Guarantee the reliability, security and scalability of the IoT solutions developed. Work
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processes. Experience in process scale-up and/or pilot implementation. Multisite crop trials establishment with soil and plant analysis, and fertilizer evaluation. Use of tools for plant stress physiology and
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. The candidate will contribute to the mechanical design, composite fabrication, and experimental validation of UAV structures, integrating morphing wings and additive manufacturing processes for high-performance
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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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, remobilization, or metabolic flux analysis. Familiarity with methods such as gas exchange analysis, root imaging, metabolomics. Excellent analytical, organizational, and communication skills. Ability to work both
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deficiencies. Quantify nutrient uptake, remobilization, and use efficiency using physiological, biochemical, and molecular tools. Collaborate with team members in data analysis, modeling, and interpretation