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CSAES - Postdoctoral Position in Experimentation and modeling of the interactions of different fertilizer formulations with the water-soil-plant-atmosphere continuum. About UM6P: At the heart of the
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, and decision support, and implement advanced features such as virtual assistants (chatbots) to facilitate user interaction. • Actively collaborate with partner teams (academic and industrial
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understanding of soil-plant-fertilizer interactions and nutrient-use efficiency. Experience with organo-mineral fertilizers, biostimulants, micronutrient formulations, or sustainable crop nutrition strategies
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, conducting, and analyzing laboratory, greenhouse, or field experiments. Good understanding of soil-plant-fertilizer interactions and nutrient-use efficiency. Experience with organo-mineral fertilizers
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advanced characterization techniques (e.g., XRD, SEM-EDX, TEM, BET, TGA, XPS, …). Strong analytical thinking, problem-solving skills, and a creative approach to research challenges. Excellent English
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understanding of the interactions between communication, sensing, control, and decision-making in autonomous robotic systems. Experience in developing algorithms for robot navigation, path and trajectory planning
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(written and spoken). Knowledge of French is considered an advantage. Strong organizational skills, creativity, problem-solving abilities, and a commitment to innovation and industrially relevant research
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. Although the key contribution of mineral fertilizers (N and P) to sustain crop production, the plants root plasticity, rhizosphere microbial activities and their interactions play a pivotal role in enhanced
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microbial activities and their interactions play a pivotal role in enhanced nutrient acquisition and crop productivity through a range of beneficial plant-growth-promoting traits (N fixation, phytohormones
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systems, UAVs, trajectory planning, or intelligent control. Strong understanding of the interactions between communication, sensing, control, and decision-making in autonomous robotic systems. Experience in