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, with far-reaching consequences for multi-messenger astrophysics and black hole astronomy. The HENBoS project is part of this rapidly developing context. The strategy is based on high-performance
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fundamental understanding of climate change and its impacts, extending to the development of prototype climate services co-designed by stakeholders and climate modeling experts. The goal is to accelerate
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interventions, creating environmentally sustainable devices, and developing simulators to reduce reliance on in vivo testing. The training network is interdisciplinary, integrating various fields such as
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project is to develop the next generation of solar jet propagation models from the lower atmosphere to the inner heliosphere, and to allow a direct comparison with real in-situ data of the early solar wind
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on characterizing the structures and functions of viral RNAs, with potential applications for the development of new antiviral therapeutic approaches. The IBMC is a renowned research unit under the supervision
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: This PhD project aims to develop new strategies for improving S&D contacts in OTFTs, reducing contact resistance, and enhancing device stability. Two complementary approaches will be investigated: 1
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one species. Secondly, they will explore the evolution of this molecular complex (or single nuclease) across nematode species to understand its origin. In parallel, they will analyse the dynamics
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of IsoPROPEL is to develop fuel cells that utilize the isopropanol/acetone couple for boats navigating European waterways (canals and rivers). The recruited candidate will be affiliated as a PhD student at ENS
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developed a protocol for synthesising CVD nanodiamonds containing SiV and GeV centres, and demonstrated their first use as high-pressure and stress sensors [3, 4]. These results have also opened up numerous
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simulations in 3D MHD of the propagation of solar jets, in close connection with solar and in-situ observations. This should lead to the development of the next generation of solar jet propagation models, from