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of Mercury) by developing an instrumental model of the PWI/AM2P mutual impedance probe embarked on the BepiColombo Mio probe, - contribute to the design and ground testing aspects of the COMPASS/MIX mutual
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, from their magmatic source to their depositional environment. The construction of these predictive models relies on detailed knowledge of the nature and properties of the fluids expelled from HT-HP
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. ----------------- 1- MISSION: The study will involve detailed experimental characterisation of an annular hydrogen flame and the sound it generates. The goal will be to understand and modelling the flow/flame dynamics
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to establish rational bases between the chemical structure and the ultrafast dynamics of excited states, in particular at conical intersections (CInt). It is these intersections that ultimately determine the
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the ground for reservoir engineering techniques, and efficient ways to stabilise, process or extract information. Goal of the project - The purpose of the project is to build consistent analyses of the energy
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the frequency range 0.1 to 10 THz, plays a key role in many advances in fundamental research and engineering [1]. They open the way to a multitude of applications, including gas spectroscopy, THz imaging and
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Offer Description • This recruitment is part of the ERC-2023-Advanced Grant research agreement entitled 'Moving Bodies and Memories of African Slavery in South America', “MOVING” 101142048, funded by
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advanced structural analyses methods and DFT calculations the H-bonding networks involving water molecules and SbW6 units, responsible of PL quenching effects. - to optimize the recycling procedures
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electromagnetics cover a wide spectrum of fundamental and applied research spreading from multi-physics and multi-scale modelling to biomedical radars and advanced technologies for body-centric wireless
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on a rich but totally empirical knowledge. Similarly, predicting geophysical events such as snow avalanches and landslides requires a better understanding of these materials. A major advance would be