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of the project MESSENGER: « Can rock-powered Microbial EcoSyStEms provide valuable iNsiGhts into early life and its emERgence? » funded by the PEPR ORIGINS (https://pepr-origins.fr/en/ ) and integration
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Post-doctoral position (M/F) for testing drought-based BEF relationships at CEFE Montpellier, France
the largest and most diversified ones in Europe (from Mediterranean to alpine forest ecosystems). Like most ecosystems on Earth, French forests are increasingly impacted by on-going climate change, and
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on the planet. Archaeological and genetic evidence suggests that the ancestors of the New Guineans reached Sahul (present-day New Guinea and Australia) at least 55,000 years ago. However, little is known about
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associated to the most stable interfaces (magnetization, magnetic anisotropy), - Calculate the magnetic order associated to the modulated exchange parameters, - Calculate the orbital torques as a function of
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, visit https://www.biocean5d.org/ . The applicants will work on close collaboration with Jose M. Montoya, from CNRS. - Developing analytical theory and/or simulation models on the relative importance
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supplied. The postdoctoral researcher will build tree electrode cells containing ammonium salts dissolved in water or WISE electrolytes in both laboratories. These tests should give information about the
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stability (beam break-up). The Grenoble Laboratory of Subatomic Physics and Cosmology (LPSC) ( http://lpsc.in2p3.fr ) is a mixed research unit associating CNRS-IN2P3, Grenoble Alpes University (UGA) and
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at various points in a subcritical model reactor operating at near-zero power and driven by an external high-intensity, high-reliability neutron source; 2) Extending the previous results to a power ADS loaded
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of the French Alps, about 1 hour away from Lyon and 2 hours away from Geneva. IPAG has about 160 personnel active in fields as diverse as high-energy astrophysics, astrochemistry, exoplanets, star and
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at various points in a subcritical model reactor operating at near-zero power and driven by an external high-intensity, high-reliability neutron source; 2) Extending the previous results to a power ADS loaded