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built by sea urchins, called stereom, is an impressive example of complexity and self-organization. This structure is a micro-porous meshwork made of calcite, which bears a particular saddle-shape
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(bbγγ) channels. In the classical HH(bbγγ) analysis, the H(γγ) channel is treated as a major background process for the di-Higgs channel. A joint analysis of both modes would optimize the overall
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and fabricating transparent and flexible microelectrode arrays (MEAs) based on conductive polymers for recording the electrical activity of enteric neuronal networks, as well as for performing cellular
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collaborations provide access to cutting-edge experimental infrastructure, complementary expertise, and an international scientific network, fostering exchanges, research trips, and participation in international
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semiconductor quantum technologies and condensed matter physics, enabling the exploration of correlated charge and spin states in scalable quantum dot networks. The successful candidate will: • Develop
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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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-turbine capable of converting their energy into electricity. Ultimately, this strategy could significantly reduce the net energy consumption of the process and contribute to the development of low-carbon
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young researchers in connection with the École Doctorale du Pacifique, disseminate results to society, and optimize resources by pooling equipment and means. Thus, the PhD student will have privileged
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neural network tool to design multilayered compound metasurfaces for multifunctional operation. • Collaborate with nanofabrication teams to prototype and validate designs. • Conduct optical