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for their functions in PDE, or co-precipitation with known PDE factors, which could not recover transient and/or unstable interactors. To overcome these limitations, this project aims to a) optimize Cas13-based gene
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site, the Institut Pprime is recruiting a Researcher as part of the INFERENCE project funded by the Agence Nationale de la Recherche (ANR) and Nouvelle Aquitaine Region to work on the Modeling and
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, extinctions, and environmental change; ● Running simulations and scenario analyses to explore how different discounting rules or time preferences shift optimal conservation choices; ● Fitting models
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this context, deep eutectic solvents (DES) appear to be a more sustainable alternative: low volatility, increased stability, high flash points, and promising performance. However, their use is still emerging and
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critical for optimizing performance and is an important ingredient in the design of high performance parts in aeronautics, energy, transport, and plenty of other domains. The theory behind the aforementioned
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active material at the voxel level– except for certain composite hydrogels and materials with a high coefficient of thermal expansion – which demands specific deposition orientation for optimal performance
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and Université Paris Cité located on the Saints-Germain-des-Prés campus whose objective is to characterize the mechanisms underlying brain functions, from synaptic transmission to the activity
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materials, heterogeneous catalysis, and the study of structure–property–performance relationships. The candidate will benefit from a stimulating research environment at the crossroads of material synthesis
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and a lifetime compatible with operation at 1450°C (≈2700F) for long periods for internal engine components. The main objective of this thesis project carried out at IRCER is to optimize the PIP
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and fed with data available in the literature. The model will first be developed online and then reduced and optimized for integration into embedded electronics, taking into account performance