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(2016). Requirements Specific Requirements We are seeking a highly motivated multidisciplinary team, with complementary expertise: 1 PhD student with expertise in systems chemistry 1 PhD student with
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for motivated master interns, PhD students, and postdocs in theoretical physics to work on the interactions between mechanics, biochemistry, and genetics in stem cell aggregates. The positions are fully funded by
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will be able to run on processors with different architectures (e.g. CPUs, Intel GPUs, NVIDIA GPUs and AMD GPUs) and will be as independent as possible of the geometry of the detector. The latter will be
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applications. The goal here is to synthesize urea-based foldamers with well-controlled helical conformations designed to form homogeneous nanometer-sized channel architectures, characterize their structures and
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of modern computing techniques, such as programming for GPU architecture and developments within a heterogeneous software framework. Situated at the heart of the "Callanques National Park", on Luminy campus
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compounds on a large scale. In addition to this, the parallel study of new families of switches will provide access to new chiral architectures and will promote the chances of success of this project with a
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will join the team "Phagocyte architecture and dynamics" at the IPBS. He/she will develop a research project aiming at understanding the mechanical functioning of phagocytosis. This study will be carried
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involve: i) implementing new isotope labelling strategies and NMR methodologies to probe the architecture of model vaccine formulations at the atomic scale, in particular by probing the conformations
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Post-doctorate position (M/F) : Exascale Port of a 3D Sparse PIC Simulation Code for Plasma Modeling
to exascale architectures an initial 3D simulation code developed as part of previous work [1]. This work will initially focus on scaling up (distributed memory), optimizing CPU algorithms (vectorization) and
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"Phagocyte architecture and dynamics" at the IPBS. He/she will develop a research project aiming at understanding the mechanical functioning of phagocytosis. This study will be carried out under