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Field
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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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, optimization, dynamic systems, decision theory, Bayesian inference) ● Is motivated to apply these methods to ecological, evolutionary, and conservation systems; ● Is comfortable with uncertainty, modeling
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- work environment: Research Laboratory. - main mission: The goal is to design and prototype a Reciprocating Expansion Machine with a Linear Alternator (REMLA – 200W–100Hz – 10mm stroke), coupled with
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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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a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The work will be carried out within the Carbon Nanotubes and Graphene and Biotech teams
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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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of Research ExperienceNone Additional Information Additional comments none Website for additional job details https://emploi.cnrs.fr/Offres/Doctorant/UMR8003-NICPAN-001/Default.aspx Work Location(s) Number
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Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The proposed work involves developing a real-time water
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flavonoids, using supercritical CO₂ (scCO₂). Operational conditions will be optimized to preserve their bioactivity while reducing environmental impact. This approach will be compared with more conventional or