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education to enable regions to expand quickly and sustainably. In fact, the future is made here. The Department of Mathematics and Mathematical Statistics is opening a PhD position in spatial statistics
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circulating tumor DNA, with comprehensive tissue-based profiling methods such as gene expression analysis, DNA sequencing, single-cell sequencing, and spatial transcriptomics. These high-dimensional data
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new method to study human pancreatic tissue slices using high-resolution calcium imaging in combination with spatial transcriptomics. The researcher will develop methods to improve the viability
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spatial and temporal variability in sediment accumulation and vegetation development. This PhD project is part of a larger interdisciplinary research initiative aiming to enable a transition towards more
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interactions at both local and larger spatial scales. The PhD position is in a project which will support effective strategic planning for coastal marine restoration by developing key performance indicators
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international entrepreneurship and the spatial, regional, and institutional conditions for entrepreneurship and innovation. Gender, diversity, and inequality in entrepreneurship, including differences in
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, their performance depends on effective operation and maintenance which in practice is often reactive or based on fixed schedules, despite large spatial and temporal variability in sediment accumulation
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tissue-based profiling methods such as gene expression analysis, DNA sequencing, single-cell sequencing, and spatial transcriptomics. These high-dimensional data are analyzed using advanced bioinformatic
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processes, and team dynamics within entrepreneurial ventures. New venture creation, growth, and exit, including international entrepreneurship and the spatial, regional, and institutional conditions for
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tissue formation, and limited spatial precision. Building on our recent advances in enzyme-triggered electrode fabrication in living systems (Strakosas et al., Science, 2023, https://doi.org/10.1126