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calculations to model and optimize heterogeneous catalysts. Conduct simulations to evaluate catalytic performance and reaction mechanisms. Analyze and interpret computational data to understand the interactions
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plant adaptation to temperature changes through stress priming and memory in the early growth phases. This project is part of a strategic initiative to develop temperature-resilient crops by harnessing
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innovation at the heart of its educational project as a driving force of a business model. All UM6P programs run as start-ups and can be self-organized when they reach a critical mass. Academic liberty is
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collaboration with external institutions to develop up-to-date science at the continent level and address real challenges. All our programs run as start-ups and can self-organize when they reach a critical mass
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(PhD and Master), i.e., supervision for the writing of reports, dissertations and end-of-study papers. Skills Expertise in the following fields: Chemical and process engineering. Modeling (first
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(ab initio calculations, Molecular dynamics, Computational modeling) and materials science. - Excellent skills and understanding in physical-chemistry of materials. - Excellent verbal and written
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collaboration with external institutions to develop up-to-date science at the continent level and address real challenges. All our programs run as start-ups and can self-organize when they reach a critical mass
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start-ups and can be self-organized when they reach a critical mass. Thus, academic liberty is promoted as far as funding is developed by research teams. The research programs are integrated from long
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an innovative approach, UM6P places research and innovation at the heart of its educational project as a driving force of a business model. All UM6P programs run as start-ups and can be self-organized when
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a local storage facility for water from stormflows for irrigation in semi-arid regions. First, we will improve the coupled numerical model that we have developed for surface and subsurface flows. We