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-edge research in particle physics and quantum field theory, while collaborating with leading experts worldwide. About us The High-Energy part of the Theoretical Subatomic Physics group performs research
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focus on two main lines of research. The first concerns the modeling of general dark matter–electron interactions in detector materials. This will be achieved by combining methods from particle and solid
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: Design and operate combustion systems of single aluminum particle and a spray of aluminum particles burning in steam dominated environments. Design and perform optical measurements in the combustion system
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descriptors of spatial distribution in the field of materials science (e.g., Voronoi tessellations, particle-particle distances, etc.)? What are appropriate algorithms for efficient quantification of spatial
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Description of the workplace The Acoustofluidics Group at the Department of Biomedical Engineering mainly focuses on the emerging field of combining ultrasonics and microfluidics for particle and
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consists of three pillars: material characterization (mineralogical and particle analyses), unit operations (such as comminution and separation processes), as well as system engineering approaches (modeling
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at the Department of Biomedical Engineering mainly focuses on the emerging field of combining ultrasonics and microfluidics for particle and fluid manipulation in micro- and nanoscale, and it is one of the world
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, our research in mineral processing consists of three pillars: material characterization (mineralogical and particle analyses), unit operations (such as comminution and separation processes), as
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models Theoretical knowledge of particle transport in plasmas Documented very good oral and written proficiency in English. Consideration will also be given to good collaborative skills, drive and
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in modelling the systems as large clouds of interacting particles and to derive and analyse reduced models in the infinite particle limit. Often, the interaction between the particles can be modeled