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studies. These pipelines must be capable of efficiently exploiting different types of parallelism, both at the level of a computing node (CPU and GPU) and at the level of a cluster of PCs. This environment
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of the overall (upscaling + downscaling) sequence. Research proposal. Three main research lines are proposed. They may be followed in parallel or sequentially depending on the academic background and motivations
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to develop constitutive laws within the framework of nonlinear viscoelasticity, first under small strains and then under large strains. In parallel with the modeling work, particular attention will be
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photophysical properties. In parallel, the recent emergence of single-photon detector arrays (SPAD) provides direct access to photon arrival times with unprecedented resolution, opening new opportunities
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sound. By exploring reconfigurable coherent perfect absorbers and tunable exceptional points, it will open new routes for real-time acoustic wavefront control. In parallel, the outcomes of this PhD will
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of thermal degradation. This research has enabled the development of effective kinetic models, based on parallel or sequential reactions. However, the actual operating conditions of pellet stoves
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of parallelized fibers around which a binding thread is helically wound, enables alignment of the fibrous core while ensuring its cohesion. This configuration promotes better matrix accessibility and more
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an expanded coherent and exascale-ready software stack featuring breakthrough research advances that meets the needs of complex parallel applications and the requirements of heterogeneous exascale architectures
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massively parallel FFT-based simulation platform for polycrystalline plasticity, enabling efficient simulation of the mechanical response of realistic 3D microstructures. These simulations will be used
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massively parallel FFT-based simulation platform for polycrystalline plasticity, enabling efficient simulation of the mechanical response of realistic 3D microstructures. These simulations will be used