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high quality factors. These properties make it possible to envision all-optical, high-resolution, and non-invasive photoacoustic imaging systems with potential biomedical applications. The development
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broader nanoscience applications. These coatings will then be exposed to deuterium ions (250 eV) and plasmas (few eV). To ensure accuracy, all experiments will be performed under vacuum or ultra-high vacuum
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, forming floating ice shelves, whose base is melted by ocean heat. At the same time, the change in the ice-shelf geometry, induced by ocean-driven melting affects the rate of ice flow into the ocean, which
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selecting simulations to run based on a given prediction objective. • Implement and validate these developments in the YALES2 code. • Utilize high-performance computing resources to run the simulations
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necessary for calculated reciprocity. Thus, the poor performances observed raise questions about the role of social regulation on primates' abilities to exchange and barter. The aim of RE-PAIR is to replace
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irradiation environments. Computational Skills • Python programming (data analysis and scripting). • Linux environments and high-performance computing (HPC) systems. • Simulation data management, post
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for geophysical flow modelling, uncertainty quantification, and high-performance computing. Its work relies on both deterministic and statistical approaches. The objective of this PhD project is to develop a new
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an exceptional know-how and experimental methodology, in a high-level scientific environment. The context of frequency metrology requires to master and control the noise sources of the experimental setup as
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performed implementing a high-purity, single-pulse shock tube with multiple diagnostics. Shock tubes are experimental devices in which temperature and pressure are raised to well-defined conditions by means