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, industry partners, and dual degrees, PROTEMIC is your gateway to scientific impact and career acceleration. Each PhD student will conduct their work at two different institutions, moving to the co-host after
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Project & Group: You will work in the Computational Chemistry group, led by Dr. Mehdi D. Davari, an interdisciplinary team focused on accelerating chemical and biological discovery using computational tools
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Learning”. About the Project & Group: You will work in the Computational Chemistry group, led by Dr. Mehdi D. Davari, an interdisciplinary team focused on accelerating chemical and biological discovery using
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using laser- and accelerator-based pulsed light sources. Set-up and optical characterization of a liquid jet using various optical techniques mainly based on femtosecond optical lasers. Integrating
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Your Job: You will be part of our research team that applies high-throughput experimentation to accelerate research in the emerging field of electrocatalysis. The use of multiple-principal element
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. They are used to generate and manipulate electron beams at the free electron laser facilities FLASH and XFEL, enable pump-probe experiments at those facilities and will drive future compact accelerators at DESY
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compact accelerators at DESY. In addition, state-of-the-art photonic technologies developed at DESY play a key role in numerous transfer activities carried out in collaboration with industry. Building up
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Max Planck Institute for the Structure and Dynamics of Matter • | Hamburg, Hamburg | Germany | 1 day ago
the theoretical and experimental aspects of condensed matter and atomically resolved dynamics, fundamental light-matter interaction, accelerator-based light sources, coherent imaging, coherent controlled molecular
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-known European partners from research and globally leading industry partners for wind energy. Through MiRadOr, you will be at the forefront of developing knowledge and technology to help accelerate
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expertise in the field of magnetic resonance imaging at 7T and susceptibility mapping Develop and implement MRI sequences, acceleration techniques and A.I. algorithms for the acquisition and analysis