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Max Planck Institute for Chemical Energy Conversion, Mülheim an der Ruhr | M lheim an der Ruhr, Nordrhein Westfalen | Germany | 16 days ago
for the development of new (electro)organic reactions and processes. Opportunities for cooperation exist with leading groups in electro- and organic synthesis, spectroscopy, simulation, and process control in RESOLV
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The ‘Mathematics for Vehicle Engineering’ division at Fraunhofer ITWM focuses on the development and validation of modelling and simulation technology for the virtual product development
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industrial combustion processes. Introducing hydrogen as a CO₂-neutral energy carrier poses numerous technological challenges, particularly when emissions of noise or nitrogen oxides (NOₓ) must also be reduced
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plants and perform a techno-economic analysis for this scenario. Your Responsibilities Within the Team Literature review of Fischer-Tropsch synthesis process simulations Familiarisation with Aspen Plus
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simulation with system-level TEA and LCA, establishing a closed loop between process and system modeling Regulatory Frameworks and Energy Policy Assessment Analyze regulatory frameworks for hydrogen
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". The new seminar is intended as an introduction to the use of computer-based simulations in population health (e.g. based on Agent-Based Modeling or Systems Dynamics Modeling). To support the development and
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, energy economics and system design, energy process engineering and storage, network planning and operation, grid stability and converter technology, as well as thermal energy technology. Around 450
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technology—is offering the opportunity to write a thesis on the topic: »Formation and Effects of Stress in N-BK7 During 3D Glass Processing Using Selective Laser-induced Etching (SLE)«. The In-Volume
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, cavitation will be investigated both experimentally and via computer simulation. This doctoral project is a joint initiative between the Fraunhofer ITWM »Grid-Free Methods« Department and the Department
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tool for process design and laser-scanning strategies, the integration of simulation and experimental pulse-signal data to characterize lateral energy distribution, and the prediction of material removal