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Energy-efficient catalytic synthesis of hydrogen carriers is essential for a sustainable society. In this project, you will develop and apply advanced computational techniques to explore nano-catalysts
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is essential for a sustainable society. In this project, you will develop and apply advanced computational techniques to explore nano-catalysts for hydrogen carrier synthesis. Our vision is to
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and plasmonic effects. Manufacture of nano(opto)electronic components, particularly based on individual semiconductor nanowires. Experimental characterization of nano-optoelectronic devices
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ecosystem services are managed sustainably. In Uppsala, the focus is on wood science and technology, with research and education on wood materials from nano to macro level, wood composites, and wood adhesives
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, quantification, and data analysis, including statistics. Variations of liquid extraction-based techniques, based on nano-DESI and electrospray ionization, will be developed further and coupled to modern mass
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-based techniques, based on nano-DESI and electrospray ionization, will be developed further and coupled to modern mass spectrometers. As a PhD candidate you will be involved in all the steps
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to the eukaryotic cytoskeleton.[AB2] [BF3] [AB4] The thesis project will focus on electron microscopy (EM) method development. This by combining cryo-EM sample preparation, single particle and helical 3D
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project will focus on electron microscopy (EM) method development. This by combining cryo-EM sample preparation, single particle and helical 3D reconstruction, as well as in situ electron tomography
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our research team for addressing a timely societally relevant problem. Project overview The aim is to unravel the mechanisms, and time scales involved at particle scale, for the formation and failure
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on building the next generation of quantum processors based on superconducting circuits. To achieve this ambitiuous goal, we have a variety of projects related to: Development and optimization of nano