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Field
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involved in unique and innovative experiments. About your role: Design and execute experiments at DESY in the field of laser plasma acceleration Develop novel plasma source technology for multi-GeV electron
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reuse of energy systems analysis processes. In line with FAIR and Linked Open Data principles, you will design interfaces that enable the smooth processing of big data in the context of scientific, AI
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Your Job: This position focuses on building, operating, and testing superconducting quantum devices. Your tasks in detail are: Design and fabrication of superconducting quantum circuits Setting up
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of thin-film catalysts Design and construction of a (de)hydrogenation test rig Use of operando FTIR spectroscopy th determine reaction rates Coordination with internal and external project partners from
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programme including continuing professional development and networking opportunities specifically designed for Jülich’s doctoral researchers by the Jülich Center for Doctoral Researchers and Supervisors
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spatiotemporal coupling (STC) at the far-field Design optical elements to generate a specific RDG and STC, e.g. doublet lens including axi-parabola Perform laser wakefield acceleration using "flying focus
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tomography. To this end, you will utilize pattern matching to identify characteristic sample features both in X-ray tomographic images and the focussed-ion beam workstation in which the samples for electron
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engineering a strong background in digital design, hardware description languages (e.g. Verilog, VHDL, SystemC), reconfigurable architectures (e.g. FPGA, CGRA) What we expect from you: above-average degree
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potential. TUD embodies a university culture that is characterized by cosmopolitanism, mutual appreciation, thriving innovation and active participation. For TUD, diversity is an essential and self-evident
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of liberal values in a repressive authoritarian setting. For this purpose, it focuses on studying the persistence of urban educated groups of the pre-revolutionary era under the Communist rule. We plan