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”) on the development of material flow analysis (MFA) methods and digital methods for spatial analysis. Specific tasks comprise: Design and apply digital models for analyzing and simulating circular futures
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”) on the development of material flow analysis (MFA) methods and digital methods for spatial analysis. Specific tasks comprise: Design and apply digital models for analyzing and simulating circular futures
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Research Areas: mechanical, fluid transport, photonic, and energy materials, supported by four Cross Areas dedicated to imaging, modeling, data, and exploitation. Together, they form a vibrant
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group of Prof. Jörg Libuda. The position focuses on surface‑science studies on complex model interfaces for catalysis, energy storage, and the production of semiconductor devices. In situ infrared
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apply a data-driven approach to cross-scale materials discovery and design, in particular, goal-oriented, inverse design procedures based on process-structure-property linkages are of interest
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cycle, chromatin undergoes dramatic changes on its material properties that are functionally key. In metaphase, chromatin needs to be stiff to sustain microtubule segregating forces during cell division
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into European energy system models based on the institute's own open-source FINE framework https://github.com/FZJ-IEK3-VSA/FINE . Your tasks in detail: Implementing geothermal plants with material co-production
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Description This PhD project builds on ongoing research projects in the area of photocatalytic membranes at IAMT. Current work will be expanded to (select) novel materials and membrane preparation
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: System-Level Impact Analysis of IAM using Agent-Based Models Supervisor: Prof. Dr. Regine Gerike, Chair of Mobility System Planning and co-supervised by at least one additional professor
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Description This PhD project builds on ongoing research projects in the area of Nanofiltration for Contaminant Removal at IAMT. Novel nanofiltration membrane materials will be examined with