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of the position is the development and application of finite element methods for modelling static strength and fatigue behaviour, as well as design and optimization of complex structures. You will work
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of inorganic and coordination compounds, including discrete complexes and related systems, using methods such as X-ray diffraction (XRD), thermogravimetric analysis (TGA), scanning electron microscopy (SEM) and
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of battery test data and you are comfortable working systematically with complex technical problems. Experience with industrial collaboration and battery management systems will be an advantage, as
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analysis and you are comfortable working systematically with complex technical problems. Experience with industrial collaborations and working with EU granted projects will be an advantage, as will a
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control structures and advanced control methods and are comfortable working with mathematical models of complex technical processes. Experience with modelling of thermo-chemical or process systems
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strains and phenotypic screening approaches is highly desirable. Candidates should have experience culturing and characterizing complex bacterial communities, including the use of 16S sequencing approaches
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programming in Python and the modern AI ecosystem, including PyTorch, HuggingFace, and ONNX and you are comfortable working systematically with complex technical problems. Experience with industrial
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antenna solutions developed for communication systems, ranging from compact integrated designs to complex antenna platforms. You will join an international team with colleagues from many different countries