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members, fortified by shared simulation tools and top-quality experimental efforts. Research efforts span diverse domains of modern science, including 2D Semiconductors, Terahertz Photonics, Cosmology
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of process modeling software (e.g., Aspen Plus, COMSOL, or equivalent) is a plus. Excellent written and oral communication skills in English. Ability to work independently and as part of a multidisciplinary
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research and innovation at the heart of its educational project as a driving force of a business model. In its research approach, the UM6P promotes transdisciplinarity, entrepreneurship spirit and
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indirect costs of urbanization. Calibrate this model using real data from specific case studies. Simulate urbanization costs based on various climatic, morphological, and social scenarios. Formulate
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characteristics, and flight dynamics. Develop and enhance computational fluid dynamics (CFD) models, wind tunnel testing techniques, and aerodynamic analysis and optimization simulation tools. Investigate aircraft
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CFD methods DFT and Molecular modelling linked to CCUS Strong analytical and problem-solving skills, with an ability to interpret and analyze simulation and/or experimental results. Ability to work in
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exploration. Data Science and Analysis: Develop algorithms and tools for data processing, modeling, simulations, and analytics to support scientific research and mission planning. Spacecraft Operations: Oversee
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of mining processes, mathematical modeling of flows and extraction decisions, and the use of machine learning algorithms to predict ore quality and optimize operational decisions. 2. Key Responsibilities
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gases Electrochemical and (photo)catalytic approaches for converting captured gases into value-added products. Modeling and simulation of chemical equilibria and mass transfer processes to optimize
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Eucalyptus plantations. Forest Ecology and Management, 494, 119275. Cornut I. et al. (2022a) Potassium-limitation of forest productivity, part 1: A mechanistic model simulating the effects of potassium