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proteostasis, cytoskeletal dynamics, and ferroptotic cell death. This collaborative work combines biochemistry, chemical biology, cell signaling, live-cell imaging, and organotypic brain slice models to dissect
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. This position is designed for scientists with strong computational and quantitative training who are interested in agent-based modeling, network science, infectious disease dynamics, uncertainty quantification
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apply advanced computational and statistical analysis methods to quantify neural signaling dynamics associated with motor learning. Collaborate with faculty, trainees, and research staff to advance
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dynamic academic medical center environment. Be Bold. As a Postdoctoral Associate, you will lead innovative research focused on the interaction between sleep and epilepsy, leveraging advanced
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to learn. Outstanding problem-solving skills. Must adhere to strict safety requirements. Ability to work and communicate effectively in a dynamic group environment. Other Requirements: This position is
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will help drive innovative research with the potential to improve human health. In this role, you'll work alongside scientists, trainees, and research partners in a dynamic environment that values
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position is: Onsite. The work is performed on-site or at a designated assignment location. Be Bold. Key Responsibilities: Choose Duke. Be part of a dynamic team committed to innovating in the fields
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/ estimation / SAR imaging / STAP, cognitive radar / sonar, communications over dynamic channels, orthogonal time frequency space (OTFS) modulation, shared-spectrum / RF convergence, machine and deep learning
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of the following tasks: 1) Laser-based instrumentation design, fiber coupling, and optical characterization. 2) Experimental investigation and computational model simulation of laser-induced bubble dynamics and
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exploratory projects simultaneously in a dynamic research environment. Close mentorship will be provided by the PI, Dr. Song, and a team of senior investigators across basic, translational, and clinical