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models combined with the finite element method. Constitutive relations are required to describe material behavior. Advanced stainless steel typically possess complex microstructures across various length
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, such as process models (DFGs, BPMN) or Gantt charts, which are primarily suited for experts familiar with these abstractions. This limited use of visualization overlooks the potential for dynamic
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, nanofabrication, chemical functionalization of graphene, spectroscopy, reverse osmosis and electrodialysis, fuel cell development, and theoretical modeling. The candidate should hold a Master degree in one
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and in the solid state. You will operate the optical setups, prepare samples, and collect the data. You will be responsible for processing and analysing the acquired data, and creating kinetic models
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responsible for processing and analysing the acquired data, and creating kinetic models. You will collaborate with your colleagues, discuss and present your results, and compose reports and scientific
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, employees, IT infrastructure, specialized training). Second, they may require the use of quantitative models, data analysis, and algorithms, but these applications must also safeguard the data privacy and non
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of the total arc length to benchmark modelling estimates, realization and performance characterization of optimized plasma reactor model, as well as implementation of quench and its performance
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towards a new conceptual model that explains the individual dynamics of fatigue. The project will start with an analysis of already-collected data. You will use several forms of time series analysis
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candidate will gain training in chemical biology, molecular genetics and cell biology, and use physiologically relevant in vitro and in vivo models. The work will be carried out in an interdisciplinary
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and magnetic fields. A crucial aspect lies in the interpretation/modelling of the results. In this role, you will get to work with a variety of devices structures, with an emphasis on quantifying