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, including 180 permanent staff (researchers, professors, engineers, technicians, and administrative personnel) and around 180 non-permanent staff (PhD students, postdocs, and fixed-term contracts). Each year
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one species. Secondly, they will explore the evolution of this molecular complex (or single nuclease) across nematode species to understand its origin. In parallel, they will analyse the dynamics
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carried using explicit water molecules relying on molecular dynamics (thermodynamic integration and/or metadynamics). The screening for improved catalysts compared to the state-of-the-art (Pt-Ru) will start
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be done via computer simulations, including Monte Carlo and molecular dynamics, combined with the use of statistical mechanics to predict e.g. phase transitions, nucleation rates, etc. The work will be
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forest regeneration, as well as the demography and evolution of seed-consuming animal species, triggering cascading effects on community dynamics and overall forest ecosystem functioning. Understanding
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understanding of the mechanisms that support their development in humans is therefore of major therapeutic interest. The aim of the thesis project is to decipher the cellular and molecular mechanisms supporting
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therefore be part of a particularly dynamic research effort. As part of the JET2SB project, funds have been allocated for: - the acquisition of the computer equipment necessary for the research work
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also recruited via JET2SB. The doctoral student will therefore be part of a particularly dynamic research effort. As part of the JET2SB project, funds have been allocated for: - the acquisition