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of two referees to Dr. Andrew Kandel a.kandelspam prevention@uni-tuebingen.de , University of Tübingen, Germany. Application documents should be sent by email, preferably as a single PDF file, by 4 March
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on the advanced characterization of nanostructure materials by transmission electron microscopy (TEM). Your profile: Ph.D. in Chemistry, Materials Science, Mechanical Engineering, or a related discipline Solid
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contribute Completed an excellent doctorate in computer science Proven track record of excellent publications Expertise in cryptography and/or machine learning Leadership capabilities and ability to mentor
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to research with the ability to work independently and in collaborative teams Preferred additional qualifications: Good written and oral communication skills in English Research background in energy materials
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Evolutionary Ecology in the collaborative project “LEAP” (m/f/d, E13 TV-L, 100%) General framework Plant Robustness is seen as the ability of plants to maintain function, despite severe perturbations, such as
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Alfred-Wegener-Institut Helmholtz-Zentrum für Polar- und Meeresforschung | Bremerhaven, Bremen | Germany | about 1 month ago
CEFR level C1) Ability to work in a focused, independent, and cooperative manner in a dedicated team Preferred Qualifications and Skills Expertise in ocean biogeochemistry/carbon cycle research Further
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Requirements: Master’s degree or PhD in biology, ecology, environmental sciences, marine sciences, or a related field Ability to work with complex ecological or environmental datasets Experience with data
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research and knowledge transfer Independent, creative and committed way of working Ability to think conceptually and analytically Excellent English skills Ideally, good knowledge of German Our offer: We
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Max Planck Institute for Multidisciplinary Sciences, Göttingen | Gottingen, Niedersachsen | Germany | 3 months ago
description Single-molecule X-ray scattering experiments with free-electron lasers offer a new route to the structure determination of biomolecules. Due to the super-low signal-to-noise-ratio, computing
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with free electron lasers offer a new route to the structure determination of biomolecules. Due to the super-low signal-to-noise-ratio, computing the structure from such data is challenging, and new