Impact
Our research aims to have a positive impact by addressing some of the most pressing challenges of our time: climate change, biodiversity loss, and water quality decline.
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Permutation-Based Visualisation of Inputand Encoded Space in Autoencoders
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Dynamical adjustment reveals spatial patterns of wetting and drying in European winter precipitation
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Phenological benchmarking with a land surface model: an in-silico experiment for temperate forests
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Fitting soil extracellular enzyme activity into the complex network of abiotic and biotic soil properties often associated with soil health
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Climate change risks illustrated by the Intergovernmental Panel on Climate Change (IPCC) “burning embers”
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Using dynamic documents to mend cracks in the reproducible research pipeline
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Changes in the Regional Water Cycle and Their Impact on Societies
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Are dependencies of extreme rainfall on humidity more reliable in convection-permitting climate models?
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Bivariate Extreme Value Analysis for Space Weather Risk Assessment: Solar Wind—Magnetosphere Driving in the Terrestrial System
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The Needs, Challenges, and Priorities for Advancing Global Flood Research
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Sub-hourly precipitation and rainstorm event profiles in a convection-permitting multi-GCM ensemble
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Indicators of Global Climate Change 2024: annual update of key indicators of the state of the climate system and human influence
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