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capable of automatically selecting the simulation strategy best suited to a given prediction objective, while optimizing the trade-off between accuracy and computational cost. The work will build on multi
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Processes (https://simap.grenoble-inp.fr ) - is a multidisciplinary laboratory with more than 200 participants from chemistry, physics, materials and fluid mechanics. It is one of the leading laboratories in
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perfusion and mechanical stimulation in tumor tissues to investigate their poromechanical properties and optimize molecular transport within explants. The successful candidate will be involved in: - Designing
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systems still face major challenges when operating in fluid environments such as air or water. Unlike ground robots, aerial and underwater robots exhibit dynamics that are strongly coupled with
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hypothesis is that seismicity serves as an observable proxy for the coupled processes linking deformation, permeability evolution, fluid circulation, and hydrogen generation. The strategy consists
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Inria, the French national research institute for the digital sciences | Saclay, le de France | France | 2 months ago
of optimizing both accuracy and computational cost. The question of methodologies for validating results and quantifying uncertainty—critical in an industrial environment—will also be addressed. Two industrial
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by Japanese researcher Akachi in 1990 [1]. These consist of a meandering capillary tube filed partially with a working fluid with heat source on one side (evaporator) and heat sink on the other
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and Université Côte d'Azur. INPHYNI is a physics laboratory covering a broad range of research topics, with strong activities in fluid mechanics, soft matter physics, biophysics, microfluidics, and
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modeling and optimization methods for the management of multi-energy platforms integrating electricity and heat systems within. The research aims at characterizing and valorizing the flexibility potential
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-V’s, the identification of optimal conditions for minimizing defects, and the optimization of strain distribution, paving the way for more stable and high-performance quantum devices. Structural