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Field
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of horticultural specialty crops caused by fungal pathogens, physiological disorders, and the control of quarantine insect pests that threaten market access and export opportunities. Research Project
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with experimental and clinical teams to interpret results and translate findings into actionable insights. Design and optimize predictive models of drug response, including the use of digital twin
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quantum optimal control and related methods, and research experience with ultracold atoms. Applicants should have practical problem-solving skills, independence of thought and initiative, the ability
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modeling approaches. Develop, optimize, and maintain code and algorithms supporting predictive models. Combine computational algorithms with laboratory automation to enable self-driving laboratories and
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using languages such as Python, R, and Bash. · Experience developing, implementing, and optimizing computational pipelines and bioinformatics tools for large-scale genomic datasets. · Strong
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(Carbon Capture, Utilisation and Storage) projects. The fundamental characteristics of fault systems exert a major control on subsurface fluid migration, reservoir compartmentalisation, and trapping
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the Gravimetric Atom-Interferometer (GAIN) - prepare, optimize and use GAIN for comparison measurement campaigns - improve GAIN by implementing new technologies which also enable new measurement modes and
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industry to employ quantum technologies to address challenges in, e.g., environmental protection and the optimal use of natural resources. Specifically, this project will use atom Interferometry
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to be achieved: The work plan falls within the final phase of the Koachy project, focusing on the scientific validation, optimization, and demonstration of the intelligent models developed throughout
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. This transition is fundamentally reshaping the structure of energy networks, shifting from centralized control to distributed, prosumer-driven ecosystems where interconnected multi-agents interact strategically in