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Field
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noise. In this position, you will further develop our numerical simulations for outdoor sound propagation. You advance our existing simulation platform to consider atmospheric turbulence effects and make
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plumes. Emissions plumes from high-altitude sources (e.g. aircraft) can persist for weeks or even months in the stratosphere, but most global atmospheric models are unable to preserve such fine structure
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The postdoctoral fellow will participate in the PostGenAI@Paris AI Cluster (ANR) project at Sorbonne University, and more specifically in the "AI-Augmented Multiscale Modeling for Energy Storage" sub-project, whose
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their scales, exploring parameter space for vortex behaviour using theory and idealised model simulations, testing the relevance of the new paradigm using case studies observed using during the NERC
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to unravel the atmospheric importance of this interfacial chemistry by means of (i) laboratory-based investigations, (ii) field observations and (iii) modelling. These activities will take place in the frame
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and implemented in Fenics to: - Identify the mechanical properties of collagen hydrogels, depending on their manufacturing conditions, based on experimental data. - Improve these models to include
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model improvements in simulating Moroccan and North African climate. Carry out evaluation of the model outputs and prospect possible changes to improve water cycle modeling, including precipitation
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analysis by integrating diverse datasets (e.g., in situ observations, remote sensing products, model simulations) to inform model development, calibration, and validation. Collaborate with a
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conditions. Write, document, and implement software code and scripts for data acquisition, device control, automation of testbeds, and simulations. Develop standard operating procedures (SOPs) for the MARVEL
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to simulate realistic environmental conditions. Experience with various hydrology, hydraulic, sediment transport, and water quality models, especially public domain models. Experience with simulation of carbon