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PhD candidate for the project "Modulation of inflammatory Dendritic cell subsets in atherosclerosis"
for intervention. You will make use of available human atherosclerotic tissue and datasets, design and perform in vitro studies and validate findings in vivo. What you bring We are looking for an enthusiastic
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PhD position within the NWO project ‘The Morphicon: A new gateway to morphological knowledge’. The PhD in this project will work in a small team to build a morphological constructiconfor Dutch and use
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mutual interconnectedness. We work in a safe, stimulating and international environment where people work and study with pleasure and passion, and where building connections and collaboration, both within
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composition (pH, ions) are varied. By linking this to the observed activity, stability and selectivity, you will build interface design principles for electrocatalytic systems. During the project, you will
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building connections and collaboration, both within and beyond the faculty, come naturally. The faculty is home to more than 2,700 staff members and over 6,000 students enrolled in nine bachelor's and
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the experimental lab (https://www.mathbioleiden.nl/software.html#virtualleaf ). Incorporate detailed insights into the model of the mechanical properties of cell walls based on experiments and small-scale
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require the use of more diverse and lower-quality material streams. This PhD position is embedded in the Horizon Europe project DiversEAFy, an interdisciplinary consortium that aims to make future EAF
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, organize their own workshops, and build lasting networks both within and outside the field of linguistics. So you’re never on your own. We offer A 1.0 FTE position on a fixed-term contract for a period of
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benefits package including pension build-up, paid parental leave and additional holiday bonuses. For more information, see our websites: https://www.universiteitleiden.nl/en/working-at/job-application
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the Horizon Europe project DiversEAFy, an interdisciplinary consortium that aims to make future EAF steelmaking more resilient through feedstock upgrading, flexible mix design, AI-supported process steering