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formation process of iron electrodes play a crucial role in their cycling stability during battery operation. To improve the battery performance, the development of stable and efficient iron electrodes is
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Your Job: Efficient catalyst materials hold the key for a breakthrough in future energy conversion and storage. The carbon dioxide reduction reaction (CO2RR) is an important process for
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that might optimally lead to these representation. We then aim to understand whether the obtained objectives, applied in a layer-local manner, lead to performant deep network learning. Your tasks in detail
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precision Prepare scientific publications and project reports Mentor junior group members and help to lead our research efforts Your Profile: PhD degree in quantum physics or a related field A background and
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dynamics of energy materials on the atomic and mesoscopic scale using neutron methods, complementary X-ray experiments and support of further techniques including computer simulations Synthesis and
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combination of molecular dynamics simulations and experimental techniques (solid-supported membrane electrophysiology, fluorescence spectroscopy), with the aim to understand transproter dysfunction at atomic
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finding solutions for the realization of the clean energy transition. Your Profile: Above-average university degree (Master) in engineering (energy technology, process engineering, mechanical engineering
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well as intersectoral flexibility options such as power-to-X lead to increasing sectoral interdependencies. Your task is to support our institute in the development of power grid models that are able to analyze
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Your Job: Characterization of catalytic interfaces for chemical hydrogen storage on the atomic scale using operando synchrotron-based high-energy X-ray diffraction Design of chemical hydrogen
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methodology, comprising pulsed laser deposition (PLD), atomic force microscopy (AFM), advanced X-ray diffracation (XRD), and transport measurements (Hall effect and magneto-transport at low temperature). Your