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Job description The cement industry is a major contributor to global CO₂ emissions, largely due to its dependence on clinker—the key constituent of conventional cement. To accelerate
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-oriented mindset, and a passion for (scientific) challenges, you are the right person for us. Our lab develops technologies that integrate advanced imaging, computational analysis, and single-cell & spatial
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Master's programmes with a strong research component. Our scientists conduct ground-breaking fundamental and applied research in the fields of Life and Health Science & Technology, Nanoscience, Chemical
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includes analysis of Flora Batava records, which contain some of the oldest plant distribution data in the Netherlands. Based on an assessment of available data, the postdoc will help determine the
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of this project is to identify commensal bacteria in hydathodes, and to characterize their role in plant protection. Going beyond descriptive microbiota analysis from entire leaves, you will isolate bacteria
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, or a related discipline. You have experience with both quantitative survey research (design, implementation, and analysis) and qualitative, participatory methods (e.g. walk-along interviews, co-creation
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references: [1] Kamber et al., Science 368, eaay6757 (2020), Self-induced spin glass state in elemental and crystalline neodymium. [2] Hauptmann et al., Nature Commun. 11, 1197 (2020), Quantifying exchange
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social, ecological and technological system (SETS) elements that make up the urban metabolism of the PoA. The research will be carried out in co-development with stakeholders in the port area. It will
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perceptions within the context of the broader social, ecological and technological system (SETS) elements that make up the urban metabolism of the PoA. The research will be carried out in co-development with
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economic effects of due diligence requirements. The project will also involve data collection and analysis using natural language processing (NLP) techniques to develop a more comprehensive overview of