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slag systems. Simulation of monazite and rare-earth phosphate precipitation from multi-component melts. Strong background in slag thermochemistry, particularly oxygen fugacity control and partition
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data analysis (R, multivariate statistics). Experience in GIS. Strong scientific writing skills and command of scientific English. Initiative and autonomy to conduct fieldwork. Application Documents
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sustainable materials for advanced agronomic applications. These materials may include polymers, composites, or hybrid systems aimed at controlled-release fertilizers, biodegradable films, or environmentally
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using biotechnological, physical and chemical conversion strategies and engineering processes (b) understanding and controlling their underlying specific functionalities and the structure-properties
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management and quality control practices. Foster collaborative linkages with other programmatic areas, core scientific teams, and external partners to strengthen conceptual frameworks and accelerate cross
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/electrolyte interfacial structure-property relationships to gain deeper insights into material behavior. Develop innovative approaches to minimize cell polarization by precisely controlling electrolyte
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in the development of advanced biobased products and materials thereof using biotechnological, physical and chemical conversion strategies and engineering processes (b) understanding and controlling
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and arid conditions Test, introduce and upscale new and alternative resilient crops Field preparation and establishment of field trials Conduct controlled trials under greenhouse conditions testing crop
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materials thereof using biotechnological, physical and chemical conversion strategies and engineering processes (b) understanding and controlling their underlying specific functionalities and the structure
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spin coating, slot-die coating, and vapor deposition to produce perovskite thin films with controlled morphology and thickness. Perform comprehensive characterization of perovskite thin films using