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- Forschungszentrum Jülich
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Field
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systems. These systems are characterised by the high spatial and temporal variability of energy supply and demand, and by the high degree of interdependence of material and energy flows. Our research aims
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uncomplicated. We look forward to getting to know you. A complete application includes the following materials: (1) a cover letter explaining your interest in this position, (2) a curriculum vitae with a list of
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of energy materials Develop and optimize advanced X-ray optical concepts with emphasis on maximizing photon flux, transmission, stability, beam quality, and experimental flexibility Design next-generation
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architecture based on coherent long range qubit shuttling Nat. Commun. 15, 4977 (2024) is currently one of our main activities. To this end, we pursue a holistic approach addressing material challenges, device
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, law, and material culture across Asia-Pacific and the world, with emphasis on knowledge creation, ownership, and belonging, and on methodological approaches that foreground artistic, curatorial, and
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-MS. (previous works e.g.: https://www.nature.com/articles/s41563-019-0555-5). Ideally, the applicant takes over the co-supervision of selected PhD candidates. We are looking for an individual with a
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-XRF, Raman, FTIR in reflection mode) to enable multimodal data fusion and automated material characterization. • Apply and further develop machine-learning and statistical models (e.g. PCA, SAM
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functionalities. The prospects of porphyrin-based 1D, 2D, and 3D materials for device development will be assessed in collaboration with research partners from industry and academia. A key concept is to combine