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in field conditions. The samples can now be processed to extract water to analyze it’s stable isotopic composition and estimate root water uptake patterns. We are looking for a motivated intern to work
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. Working environment The PhD student will be recruited by Université Lumière Lyon 2 for a period of 36 months. He/she will be registered as a doctoral student in the Social Sciences doctoral school
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microporous and mesoporous frameworks, which make them highly versatile in catalysis. In this PhD, you will explore how composition, porosity, and metal doping influence catalytic performance, contributing
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Description This is a fully funded PhD position for 3 years (2300 € (gross) per month) supported by the PEPR DIADEM program. The PhD candidate will be recruited in the framework of the AMMETIS (AI-assisted
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that mimic the ecological functions of natural deadwood. The project is conducted jointly between TUM and the Technion in Israel (Professorships of Architecture & Landscape Architecture). The advertised PhD
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Institut de Chimie des Milieux et Matériaux de Poitiers | Poitiers, Poitou Charentes | France | 16 days ago
: Gas physisorption (N2, Ar, CO2, H2), TGA. Compositional: GC/MS, elemental analysis. Adsorption Tests: High-pressure isotherms, selectivity for CO2/H2 and CO2/CH4 Funding category: Contrat doctoral PHD
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institutions such as ESO, NASA, and ONERA. This PhD in astronomical instrumentation for future space missions sits at the intersection of engineering, and astrophysics, a uniquely interdisciplinary opportunity
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at https://fenix.tecnico.ulisboa.pt/fenixedu-admissions and requires registration and validation of the candidate's identity. Applications are only accepted when the form available in the platform is
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with strong expertise and interest in developing MOFs and their composites for sensing. Metal-organic frameworks (MOFs) have gained significant attention in sensing due to their high surface area
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strong expertise and interest in developing MOFs and their composites for catalysis. The job vacancy involves designing, synthesizing, and characterizing highly catalytic active MOF composites