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application of novel numerical methods to efficiently and accurately compute volume integral operators that lie at the core of powerful integral equation formulations of acoustic, elastic, and electromagnetic
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accurately compute volume integral operators that lie at the core of powerful integral equation formulations of acoustic, elastic, and electromagnetic wave equations. These methods hold the potential
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complexity and clinical interpretation. Collaborate with top neurosurgeons for real-world impact. Apply now! Irène Curie Fellowship No Department(s) Mathematics and Computer Science Reference number V32.7419
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simulation techniques, focusing on representative volume elements (RVEs). The goal is to understand the role of grain morphology and mesostructure in the avalanching and resting processes during submarine
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or coating solutions, a solidification process where multifunctional monomers in the liquid polymerize into a polymer network: a single large molecule spanning the entire volume. Rates of reactions and
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monomers in the liquid polymerize into a polymer network: a single large molecule spanning the entire volume. Rates of reactions and diffusion define the network formation, but are dramatically influenced by
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of a PhD thesis; participating in meetings and proceedings of the Project Team; publishing two single-authored, peer reviewed articles; publishing one book chapter in the project’s edited volume
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reviewed articles; publishing one book chapter in the project’s edited volume; presenting intermediate research results at workshops and conferences; participation in the Research School and Faculty
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of Technology: High-resolution geological modelling and numerical simulations of geoenergy applications. PhD project 1 will map the Representative Elementary Volume (REV) scales of Rotliegend reservoirs by
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applications. PhD project 1 will map the Representative Elementary Volume (REV) scales of Rotliegend reservoirs by developing a methodology that incorporates geological and petrophysical data (mostly at scales