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for a duration of six years. NumPEx contributes to the design and the development of numerical methods, software components and tools that support future productive European exascale and post-exascale
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, numerical methods, and Earth system modeling to develop and evaluate a coupled xylem–phloem transport framework that translates multiscale physics into next-generation vegetation model schemes. Key
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Probe (IMAP) mission in development for launch in 2025 to explore the details of particle acceleration and the Sun's interaction with the local interstellar medium. See https://spacephysics.princeton.edu
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numerical models and machine learning tools to predict loads, assess structural responses, and identify damage under extreme conditions. By combining computational simulations with data-driven approaches
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for analysis, (for example water sampling). Experience in the behavior of water under pressure, and to work with life support piping under pressure. Applied experience and ability to handle laboratory animals in
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Specific Requirements M2 Hydrologie ou analyse numérique avec appétence pour les problèmes appliquésMaster's degree in Hydrology or Numerical Analysis with an interest in applied problems Additional
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analysis or strong motivation to further develop these skills Background in lifespan developmental and/or environmental psychology is highly desirable Experience in project coordination and good
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/biologics; - Analysis and interpretation of experimental data, ensuring scientific rigour and reproducibility; - Production of technical and scientific documentation to support intellectual property
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embedded in the Bremen Research Cluster for Dynamics in Logistics (LogDynamics) (http://www.logdynamics.de ). LogDynamics is a cooperative network of research groups from five different departments
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. The faculty’s research is supported by numerous grants from government agencies, private foundations, and private industry including: the NIH, the Health Resources & Services Administration, the Indiana