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Field
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workshops, career development, and networking Join a dynamic institute hosting over ten atmospheric chemistry research groups, offering rich opportunities for collaboration and learning Extensive
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the lattice dynamics in perovskite systems. The candidate will employ fast time-resolved X-ray diffraction at synchrotron facilities to reveal the details of halide ion migration in lead-halide perovskties and
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to understand the lattice dynamics in perovskite systems. The candidate will employ fast time-resolved X-ray diffraction at synchrotron facilities to reveal the details of halide ion migration in lead-halide
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doctoral student to realize this project. You can expect an exciting research activity at a non-university, internationally networked institute with a dynamic and interdisciplinary working environment. Your
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environment and an excellent working atmosphere in a very dynamic and professional team Extensive state-of-the-art equipment and infrastructure in various analytical methods The opportunity to present your data
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fellows (f/m/d) The place of employment is Heidelberg, in the interdisciplinary Research Training Group (RTG) 2840 entitled “Ambivalent Enmity: Dynamics of Antagonism in Europe, Asia and the Middle East
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Max Planck Institute for Multidisciplinary Sciences, Göttingen | Gottingen, Niedersachsen | Germany | about 2 months ago
(Bio-)Chemistry, Biology, or any related field. What we offer We are a young and dynamic group with a strong focus on collaboration and mutual inspiration. The laboratory has state of the art
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during downstream processing. Theoretical investigation of molecule stability during DSP, using molecular interaction simulations such as e.g. Molecular dynamics (MD). Combination of PAT and data driven
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microbiological approaches. We seek a highly-motivated doctoral student (m/f/div) to join an international, enthusiastic, and collaborative department in an outstanding dynamic scientific environment
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. This project will focus directly on the evolution of common ground. We will explore the implied cognitive complexity of great ape communication to identify evolutionary trends and simulate dynamics that might