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hundred km²), they play a disproportionate role in controlling water resources. At the core of their functioning are the aquifers they host, which regulate how water infiltrates, is stored, and is released
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predictive modeling and validation techniques. Research & Publication: Skilled at critically reviewing literature, designing rigorous studies, and producing publications for high-impact journals. Collaboration
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predictive modeling and validation techniques. Research & Publication: Skilled at critically reviewing literature, designing rigorous studies, and producing publications for high-impact journals. Collaboration
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to better understand and characterize variability of water at the land surface - i.e. in soils, snow and groundwater - to help in predictions of future water availability, global water cycle dynamics and sea
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based on Machine Learning (ML) emulators have taken the weather predictions research by storm, as they run faster and use less energy than traditional approaches: numerical models based on physical
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properties, scatterometer wind products are commonly estimated from empirically derived geophysical model functions (GMF). The scatterometer-derived ocean surface wind vector data have proved to be very useful
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. Quantitative Analysis: Demonstrated ability to handle multimodal datasets, conduct statistical analysis, and apply predictive modeling and validation techniques. Research & Publication: Skilled at critically
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improvement. The NASA Ocean Biogeochemical model (NOBM) was developed at GSFC and is coupled with the GISS climate model. It simulates the ocean carbon cycle using phytoplankton groups differentiation. Research
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for physics-based prediction of ionospheric potential response to solar wind variations. Earth Planets Space 75, 139 (2023). https://doi.org/10.1186/s40623-023-01896-3 4. Cochrane, C. J. et al. Single- and
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universities (University of Amsterdam and the Vrije Universiteit , Amsterdam), we have one postdoc position focusing on developing the advanced computational tools required to comprehend, fuse, and predict