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, pharmacology, toxicology, immunology, microbiology, bioinformatics, and One Health. We study production animals, companion animals, laboratory animals, and wildlife to advance sustainable animal health, welfare
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, laboratory animals, and wildlife to advance sustainable animal health, welfare, and productivity. The department offers a dynamic, international, and interdisciplinary research environment with strong
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society and industry to develop a bio-based economy where forest biomaterials play a key role. Lindroos’ research group develops advanced methods and technologies to make forest operations more efficient
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forest biomaterials play a key role. Lindroos’ research group develops advanced methods and technologies to make forest operations more efficient, sustainable and data-driven, with work ranging from
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investigate how public agencies adopt and integrate AI technologies, what forms of automation and augmentation emerge, and how these developments influence organizational structures, professional roles, and
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will computationally explore catalyst materials for synthesizing different types of hydrogen storage molecules. Using advanced quantum mechanical calculations, you will develop multi-scale models
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a strong drive to develop expertise and reach research goals. You thrive working independently, taking initiative and approaching tasks in a structured and systematic way. At the same time, you are a
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, hydrogen bonding, and energy transfer mechanisms at interfaces. By integrating molecularly engineered photoelectrodes with advanced spectroscopy and computational modeling, this research aims to establish
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electronics, power system analysis, as well as experience in modelling, simulation, or experimental work. Ability to work independently, in a structured and goal-oriented manner, both individually and in
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of materials and their applications within the energy storage area: the Ångström Advanced Battery Centre. We develop novel electrode and electrolyte materials, characterize them, evaluate and improve them with