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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 challenges facing science
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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 challenges facing science
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facing science, society and industry. With its ultramodern research infrastructure, its interdisciplinary research platforms and its international networks, DESY offers a highly attractive working
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Performing atom probe tomography Application of deep learning algorithms for the correlation of the obtained experimental data and their analysis The majority of the work will be undertaken in Hamburg Your
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accommodation Deutsches Elektronen-Synchrotron DESY DASHH Data Science in Hamburg – The Helmholtz Graduate School for the Structure of Matter involves several partners in Hamburg and northern Germany: Deutsches
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the opportunity to work with data from the European XFEL facility at DESY. Project website: https://www.mpinat.mpg.de/628848/SM-Ultrafast-XRay-Diffraction Your profile Eligible candidates have strong skills in
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Max Planck Institute for the Structure and Dynamics of Matter • | Hamburg, Hamburg | Germany | about 4 hours ago
(DESY), Universität Hamburg (UHH), and the European XFEL (EuXFEL). Teaching language English Languages English Programme duration 6 semesters Beginning Only for doctoral programmes: any time Application
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, chemistry, and structural biology at the forefront of international research. With interdisciplinary teams from Universität Hamburg, Max Planck Institute for the Structure and Dynamics of Matter (MPSD
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data handling routines You will also have an opportunity to: Participate in X-ray scattering experiments at world-leading large-scale X-ray facilities such as Deutsches Elektronen-Synchrotron DESY in
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development of machine learning (ML) based approaches to efficient analysis of the vast data amounts generated in the scattering experiments. For more information, visit our web page: https://www.soft