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. Plan and perform measurements using Raman and Infarred spectrometers, under variable conditions. You will also design sample cells that will faciliatate your measurements. Analyse the data, discuss them
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, such as learning analytics (from e.g. click-stream data, eye tracking, screen capture etc.), surveys, or other large-scale data analysis. However, we also welcome qualitative or mixed-method approaches
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encourage research that combines socio-technical perspectives with quantitative methods, such as learning analytics (from e.g. click-stream data, eye tracking, screen capture etc.), surveys, or other large
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certain aspects of the catalyst samples (e.g. nanoparticle shape, size and alloy composition). Thus, we can unravel the interplay between the nanocatalyst structure and composition and its catalytic
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) for complementary information on the catalyst surface chemistry. The ultra-high-vacuum based model catalyst preparation allows us to highlight certain aspects of the catalyst samples (e.g. nanoparticle shape, size
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strengthen your application: Experience with molecular biology. Experience with protein structures. What you will do Prepare, and help others prepare biological samples for mass spectrometry analyses
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protein structures. What you will do Prepare, and help others prepare biological samples for mass spectrometry analyses at dedicated proteomics platforms. Interact with the platforms whenever needed
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or equivalent languages for data analysis Strong publication record in peer-reviewed journals What you will do Perform research in our group (sample preparation, carrying out experiments, characterization
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do Perform research in our group (sample preparation, carrying out experiments, characterization, writing of publications) Develop and optimize materials and processes Collaborate with academic and
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and molecular genetics as well as hands-on experience with cloning, live-cell fluorescence microscopy, image analysis, and sample preparation for sequencing and multi-omics analyses. The main model