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statistical model calibration, machine learning and data analysis. The research environment is international and interdisciplinary, with close links between fundamental method development and technically
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to the development of state-of-the-art nuclear-reaction models and evaluated nuclear-data libraries, supporting safe, reliable, and competitive technologies for both existing and future nuclear-energy systems, as
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, driven by changes such as the electrification of transportation and other sectors, and increased use of heat pumps or air conditioning. Finally, climate change is implying changes in weather, with heat
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modelling of flow and transport, analysis of uncertainties in model predictions, and development of efficient methods for evaluating their implications for geological repository safety. The methods will be
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. To understand how this planet works, our researchers seek answers in the field, through laboratory experiments and advanced models. Our research and education cover a wide range of disciplines, including rocks
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focused on research and development of materials and their applications within the energy storage area: the Ångström Advanced Battery Centre. We develop novel electrode and electrolyte materials
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programs and master's programs. More information is available on our website. Department of Chemistry Ångström Laboratory Project description Within the Ångström Advanced Battery Centre, we develop
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Laboratory has for many years hosted a research environment focused on the development of materials and their applications within the energy storage area: the Ångström Advanced Battery Centre. We develop novel