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of water vapor: How does vapor buoyancy affect the momentum balance and large-scale circulations in Earth's and other planetary atmospheres? How does vapor buoyancy regulate clouds and Earth's energy balance
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on physiologic waveform analysis, biomedical signal processing, and computational modeling of continuous clinical monitoring data. The successful candidate will work on projects involving the analysis
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strong computational skills and a second experimental postdoctoral scholar to work at the interface between the two labs to integrate experimental and computational data. Key Responsibilities: Building 3D
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will develop and compare approaches for learning from sparse, noisy feedback generated during real use, including methods for multimodal signal integration, temporal identification of salient
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, diffusion MRI, EEG, and other neural signal modalities. Build scalable training and evaluation pipelines for large neuroimaging datasets. Collaborate closely with researchers across AI, neuroscience
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(Python, PyTorch/TensorFlow, radiomics, 3D Slicer, DICOM tooling). We foster a commitment to open science practices, rigorous validation, and pathways for translating methods into practice. ALTERNATIVE
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rational strategies for next-generation therapeutics. The Lu Lab develops 2D/3D spatialtemporal omics, spatial pharmacology, and computational/AI approaches to map, model, and reprogram how cells
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place to understand heat exposure and stress include temperature/humidity sensors, wearable devices, and traditional survey administration. The group is poised to begin field implementation of heat
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world. As climate change and population growth place increasing pressure on the food system and ecosystems, the capacity of nature to slow the pace of climate change is changing. This postdoc is funded by
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, collaborative project to aid scientists to specify laboratory procedures for remote execution by robot-controlled, programmable cloud laboratories. We are seeking a post-doctoral research scientist with broad