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mechanical performance—while also optimizing cladding and lining techniques for improved resistance to hydrogen degradation. Ultimately, this research aims to contribute to safer and more sustainable hydrogen
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://www.ntnu.edu/ept ) at the Norwegian University of Science and Technology (NTNU) is seeking a PhD candidate to work within process modeling and simulation of novel zero-emission oxy-fuel combustion CO2 capture
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VASP, Quantum ESPRESSO, VAMPIRE, or MuMax3 Perform simulations to design and optimize material properties for the desired magnetic characteristics Complete the doctoral education until obtaining a
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research challenges the PhD student might work on include: Indexing methods for dynamic, temporal, and streaming graphs Adaptive storage for static and dynamic graphs Workload-aware self-optimizing graph
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understanding of the transition to the Leidenfrost state, and (ii) optimize the heat transfer between the droplet and the substrate. The practical implications will be leveraged by non-academic institutions