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theoretical analysis, implementation of methods in computer codes, use of state-of-the-art high-performance computers in Sweden and in Europe, application of machine-learning and AI techniques, and
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. Development of advanced imaging and characterization technologies (X-ray micro tomography, EPR imaging and spectroscopy) to evaluate performance of electrodes and to map electrolyte chemical composition in
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imaging and spectroscopy) to evaluate performance of electrodes and to map electrolyte chemical composition in micrometer resolution, allowing validation of the model predictions. Validation and evaluation
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applications towards materials science. Generative machine learning models have emerged as a prominent approach to AI, with impressive performance in many application domains, including materials discovery
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to international standards and so-called best practice. Duties As a PhD student, you will perform both experimental and theoretical work within your research area as well as communicate your results at national and
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at the forefront of the research field and advance it through experimental work, molecular annotation strategies and data analysis. You will work with state-of-the art instrumentation and have the opportunity
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, molecular annotation strategies and data analysis. You will work with state-of-the art instrumentation and have the opportunity to contribute with creative and innovative technical solutions to detect
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of local and national documents but also the local processes, in relation to international standards and so-called best practice. Duties As a PhD student, you will perform both experimental and theoretical
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information about the program can be found at Doctoral studies at the Faculty of Medicine . Background and description of tasks The PhD student will use state-of-the-art methods such as cryo-electron tomography
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information about the program can be found at Doctoral studies at the Faculty of Medicine . Background and description of tasks The PhD student will use state-of the-art methods such as cryo-electron tomography