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Field
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objectives work best for sparse, high-dimensional and heterogeneous microbiome data, and turn the selected approaches into robust trainable models. Your work will cover both foundation-model pretraining and
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or ring-opening polymerisation, conductivity measurements, spectroelectrochemistry, or thin film processing and device fabrication would all be an advantage. The project spans synthesis, degradation and
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Science and Engineering seeks a Postdoctoral Research Associate to conduct experimental research on superconducting and magnetic quantum materials. The research will emphasize thin and ultrathin films
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thin-film transistors (OTFTs), organic electrochemical transistors (OECTs), photovoltaics, photodetectors, photocatalysis, and bioelectronics. Working within a multidisciplinary team, the successful
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. Work will emphasize the development and analysis of advanced methods in areas such as sparse signal recovery, compressed sensing, and statistical estimation, with a particular focus on their role in
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. The XUV Optics Group is embedded in the MESA+ Institute for Nanotechnology, one of the largest nanotechnology research institutes in the world. The group performs fundamental and applied research on thin
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 18 days ago
regions where ground radar and gauge networks are sparse. In the reverse direction, high-resolution precipitation fields (e.g., MRMS) provide spatially distributed validation for fine-scale soil moisture
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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | about 6 hours ago
investigate how structural information from spatially and temporally sparse GEDI measurements can be transferred to continuous satellite and climate records. Ground-based observations from sources such as NSF
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shaping approaches (e.g., pellets, monoliths, composite beads/fibers, thin films), both with and without binders, while preserving or enhancing material performance. Perform advanced physicochemical
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dynamics simulations to understand the growth mechanisms of thin films deposited by magnetron sputtering, with or without ion beam assistance (IBAS), particularly for metallic materials (Ag) and oxides (ZnO