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Field
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): Altermagnetic Spintronics Magnon transport in two dimensional systems: interplay between quantum geometry, topology and disorder Effective magnetization dynamics in coupled spintronic nano-oscillators Theoretical
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initiation and progression and can contribute to arterial narrowing and an increased risk of adverse cardiovascular outcomes. These flow disturbances are closely linked to arterial geometry, particularly
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Project Overview Iterative RANS-based CFD design is approaching its practical limits. While high-fidelity simulation remains essential, the repeated geometry-CFD-evaluation loop that dominates
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due to its unique geometry and beam characteristics. Additionally, the highly coherent beam enables advanced phase contrast methods such as near-field holography. This position is limited to 3 years and
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nano-tomography setup is among the fastest worldwide due to its unique geometry and beam characteristics. Additionally, the highly coherent beam enables advanced phase contrast methods such as near-field
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of research advised by one of the MPIM directors: Arithmetic Geometry (Scholze) Geometric Langlands Theory (Gaitsgory) Topology (Teichner) Further research directions are available with other IMPRS board
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, Holographic Condensed Matter Systems , HP-Theory , Hybrid Quantum Systems , Imaging , Information Geometry and Materials , Interdisciplinary Physics , ion storage , Lattice Field Theory , Lattice QCD , Light
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. Within this framework, pore-scale geometry is neglected and heterogeneity is captured through effective bulk properties. Governing equations based on Darcy’s law and coupled heat and mass conservation will
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). The project investigates how machine learning (ML) can be used to enhance the modelling of boundary layers in industrial CFD simulations, where complex geometries and computational constraints limit near-wall
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applications require precision machining to achieve their final geometries. If machining conditions are not kept within specification, then damage to the material can occur, which can be detrimental to fatigue