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animal models for hematopoiesis Experience in high-throughput data analysis, such as single cell RNA sequencing Knowledge in R and foundations of statistics Experience with CRISPR/Cas9 (or similar) genome
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on leveraging modern heterogeneous computing architectures to enable large-scale, high-fidelity reacting-flow simulations. The models developed at the cell level will subsequently be coupled to module-, pack
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district energy systems, both commercial and open-source; Optimization of building energy consumption, both electrical and thermal; Modelling, optimization and/or control of either buildings or energy
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vegetative cells can tolerate severe desiccation and subsequently resume normal growth following rehydration. How a differentiated cell can undergo such an extreme physiological transition while preserving
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following rehydration. How a differentiated cell can undergo such an extreme physiological transition while preserving genome integrity, cellular identity and the capacity to reactivate gene expression
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to use data and modelling to make historic buildings energy efficient – without compromising their cultural value? Join the research project DASHER at KTH. DASHER (Data-driven Structured Historic Energy
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stimulating multidisciplinary research environment focused on regulatory mechanisms that enable cells to retain their identity.We employ Drosophila and human cell culture models, genomics, genetics and
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culture and molecular biology techniques, have hands-on experience with flow cytometry, including analysis and cell sorting, have documented experience working with animal models. The following
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of Engineering Sciences brings together a large part of the University’s Bachelor of Science in Engineering and Master of Science in Engineering programmes in fields such as energy engineering, mechanical
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application! Work assignments The project focuses on electro-enzyme coupled catalysis and reactor system optimization for sustainable energy and chemical conversion. The research will explore the integration