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elements should be used to generate the required radiation? how do we generate as many ‘usable’ photons from the plasma as possible? What are the optimal laser and target properties? Project goal The goal
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of secondments and will be enabled to participate in relevant international scientific conferences. Together, this structured training programme is designed to optimally prepare you for a successful career as a
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necessary to get a better grip on these interactions, but also to make sure that uncertainties are propagated in a sound and robust way. The envisaged PhD candidate shall investigate optimal ways
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describing the electron optics of the projection column and optimize its performance through large-scale simulations. You will use commercial electron-optical simulation software but also develop custom Python
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, and high-tech companies covering the full energy value chain. Your main focus will be on modeling systems essential for the design and optimization of hydrogen production processes. Accurate
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electrochemical interfaces for electrocatalysis and batteries. You will investigate how the properties of the electrode-electrolyte interface can be leveraged to optimize the activity, selectivity, and stability
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possible? What are the optimal laser and target properties? Project goal The goal of this joint experiment-theory project is to elucidate the properties of beyond-EUV radiating plasmas. The work will entail
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generation in PBMAs; contributing to the development and optimization of analytical methods; publishing your results in peer-reviewed scientific journals and presenting them at (inter)national scientific
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innovative formulation strategies for lipid-based drug delivery nanoparticles, with a particular focus on the design and optimization of externally triggerable lipid nanomedicines. Combining molecular modeling
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developments, you will work closely with the other PhD, postdocs, engineers in the lab, and other collaborators from TUM and ETH, to establish a digital twin for construction, and optimize CAML hardware