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generating electron-positron pairs through the collision of structured laser pulses. As a PhD student, you will work at the interface of plasma physics, quantum electrodynamics, and computational modeling
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in fluorescently labelled SecYEG complex reconstituted into model lipid systems. In the framework of the ITN project, Ph.D. student will undergo 2 secondments at Johannes Kepler University, Linz
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22 Aug 2025 Job Information Organisation/Company UCT Prague Department Department of Informatics and Chemistry Research Field Computer science » Modelling tools Chemistry » Structural chemistry
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at industrial partners at TRL 6. Our objectives: Multiscale modelling to better understand RFB behavior and identify optimal hierarchical shaped pore- and electrode-structure to encounter optimum electrolyte as
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generating electron-positron pairs through the collision of structured laser pulses. As a PhD student, you will work at the interface of plasma physics, quantum electrodynamics, and computational modeling