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activities: · Understanding/simulating the diffusion paths and cavitation in thermoplastic liners. · Multi-physics simulation of the diffusion process in thermoplastic orthotropic composites
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the center's strategic objectives. Develop advanced products, technologies, and innovative methodologies, translating research findings into tangible solutions with potential for commercialization and societal
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investigates the composition of the bone marrow niche in health and the changes associated with disease using a multi-omic strategy. We are generating a comprehensive collection of bulk (RNA+ATAC-seq), single
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-inspired approaches for modeling, designing, and predicting the response of composite systems. Responsibilities: Develop AI approaches for predictive multi-physics response of composites in Energy
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tasks require high-frequency evaluations of forward models, in order to quantify the uncertainties of rock and fluid properties in the subsurface formations. Therefore, the objectives of this research
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, AISTATS, CVPR, ICCV, ACL, EMNLP, etc. Our group is embedded in the BESE (Biological and Environmental Science and Engineering) division, which supports and promotes a rich multi-disciplinary work