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tasks Further development of the sensor based on aerosol separation technique and field effect transistor Use aerosol measurement technique, electron-beam lithography and cleanroom equipmen Design of
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field of bioinorganic spectroscopy, with a particular emphasis on electron paramagnetic resonance (EPR) spectroscopy. This position is part of a newly established research group (2025) in the Department
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independently and in a team Desirable: Experience in conducting and analysing semi-structured interviews Knowledge of and/or experience with strengthening and stretching exercises for the prevention and treatment
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experimental partners within the RTG2861-PCL consortium. Specific requirements: We are looking for a motivated candidate, preferentially with theoretical background and strong interest in electronic-structure
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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 the structure from such data is
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obtain further academic qualification (usually PhD). The positions are embedded in the activities of the project “Analyzing structure-property relations in equilibrium and non-equilibrium hyperuniform
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focuses on decoding the structure and function of matter, from the smallest particles of the universe to the building blocks of life. In this way, DESY contributes to solving the major questions and urgent
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research expertise while also developing their clinical skills. Receive exceptional training for a successful career in research, clinic, and academia! Structured curriculum: Core Courses | Lecture Series
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and exploration of novel P-compounds. Characterization of the obtained products and intermediates via spectroscopic methods such as NMR, UV-vis, IR/Raman, mass spectrometry and X-ray structure
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: Syntheses of new phosphorus-rich heterocycles, their follow-up chemistry and application as opto-electronic material. Characterization of the obtained products and intermediates via spectroscopic methods