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using X-ray and neutron scattering. The main research areas are materials for photovoltaics, proteins in solutions and at the interfaces, complex nano-structured materials and machine learning tools
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using X-ray and neutron scattering. One of the research areas is the development of machine learning (ML) based approaches to efficient analysis of the vast data amounts generated in the scattering
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Description The Institute for X-ray Physics of the University of Göttingen welcomes applications for a PhD Position (f, m, d) starting as soon as possible. The salary is based on TV-L E13 (75
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Identify and evaluate online‑measurable proxies (e.g., froth‑camera metrics, X‑ray fluorescence) for ore microstructures; conduct offline μXRF/TIMA analyses to simulate various XRF‑system configurations
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“ mathematics, though we prefer not to make that distinction. Instead, research topics are grouped into eight parts, each covering a broad, but coherent, part of mathematics: Area 1: Geometry and topology Area 2
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Description The Institute for X-ray Physics of the University of Göttingen welcomes applications for a PhD Position (f, m, d) starting as soon as possible. The salary is based on TV-L E13 (75
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environment of plutonium in solution and on solid phases using spectroscopic (e.g. UV-vis, Raman, X-ray absorption spectroscopy) and microscopic (e.g. electron microscopy) techniques Conducting literature
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to coherent phase contrast imaging, particularly to ptychography at synchrotrons. Ptychography is a super resolution phase retrieval imaging technique capable of resolution down to single digit nanometres
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of Coherent (optical) Transition Radiation involved in measuring electron bunches from laser wakefield acceleration (LWFA) Implement physical forward functions in a differentiable form using pyTorch (e.g. COTR
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applications for a PhD Student or Postdoc Position (f/m/d) for any of the following topics: Combining non-equilibrium alchemistry with machine learning Free energy calculations for enzyme design Permeation and