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Field
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‑guided optimizations across languages (Julia/JACC, Mojo/MLIR, Rust/LLVM). Incorporate Enzyme-based automatic differentiation and multi-language IR tooling for AI‑driven analysis. High‑Productivity
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tissues. An integrated interdisciplinary approach has the potential to dramatically accelerate healing and optimize functional recovery following a range of tissue damage levels and even help prevent
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on finishing up studies (30% effort) and drafting (50% effort) of two manuscripts exploring optimization of immune editing methodologies. The postdoc will also dedicate effort (20%) to collaborations with other
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Design Design, execute, and optimize experimental protocols related to wound healing, tissue regeneration, and fibrosis. Lead studies utilizing animal models under IACUC-approved protocols. Apply advanced
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, assesses findings, and compiles comprehensive reports. Maintains instruments, develops new methods, and optimizes existing ones. Keeps meticulous records of procedures and research findings. Demonstrates
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developing machine learning surrogates and emulators for dynamical systems. Proficiency in managing large datasets and training with GPU-enabled computing resources. Expertise in numerical optimization and
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experimental animals Experience implementing and optimizing eye tracking, body tracking, and/or visual reality environments Proficiency in Python and scientific computing libraries Familiarity with spike sorting
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modeling, control, and optimization of power and energy systems with applications to maritime and coastal infrastructures (e.g., shipboard microgrids, port facilities, islanded communities, desalination
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planetary health— located in Ithaca, NY, invites applications for a Postdoctoral Research Associate in Transportation Systems Modeling, Computing, and Cloud-Based Mobility Analytics Platforms as part of
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in materials for electrochemistry. While the focus in on computational expertise, this position will involve some experimental work in adapting workflows for automation and artificial intelligence