25 coding-"https:"-"FEMTO-ST"-"Prof"-"AMOLF" "https:" "https:" "https:" research jobs at CNRS
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. Generating fortran code for VUMAT for Abaqus Explicit. Developping python codes for microstructure generation Finite elements simulations on a cluster. Parameter study and comparison with experimental results
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have access to the state-of-the-art general relativistic radiative particle-in-cell code Zeltron, and to high-performance computing facilities at the French and European levels. IPAG is a major French
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protocol: defining annotation categories; describing the criteria and procedures to be adopted; drafting the coding manual. - Supervision of expert multimodal annotations: o Delivering training on annotation
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numerical results with observations from scanning and transmission electron microscopy provided by the partners of the ANR project IMP3D (https://anr.fr/Projet-ANR-24-CE08-3737 . - Select a discrete
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entanglement. - Theoretical and Analytical Studies: Conduct theoretical and numerical analyses of superradiant molecular ensemble models, with thorough documentation of processes and results. - Simulation Code
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the performance and sensitivity of a future space mission for cosmology. The candidate will be required to simulate the performance of a specific instrument using Python code in order to predict the sensitivity
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ultrafast processes involved in LWFA. You will use the PIC code Smilei to model short time-scale phenomena (plasma ionization, initial heating, and LWFA dynamics within the formed channel). You will also
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transcriptomics data and network-theoretic approaches. - design of a new mathematical method - monitoring and study of publications relevant to the field - programming/coding in Python (Pytorch) - presentation
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project (PR and IR). Possible benefits: partial coverage of public transport costs by the employer, access to a subsidised company restaurant. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre
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of chemically storing and releasing hydrogen, using methanol as a reservoir. Main activities: • Utilize global optimization codes and perform DFT calculations on supercomputers. • Analyze results and