37 optimization-nonlinear-functions Postdoctoral positions at Northeastern University in master
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neuromodulation for pain and muscle function in orthopedic conditions. The lab studies arthrogenic muscle inhibition, treating pain and muscle weakness as co-occurring features that share nervous system pathways
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behavior and nonlinear dynamics. The position also includes mentoring graduate and undergraduate researchers and contributing to sponsored research reporting. This is a full-time, fixed-term postdoctoral
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autonomous, closed-loop (“self-driving”) laboratory workflows. The role integrates catalyst synthesis, high-throughput reactor testing, and in situ/operando characterization with machine-learning and agentic
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-deposited oxide films, and covalent or electrostatic functionalization (30%); 3. Build and optimize experimental hardware, including optical excitation and collection paths, microwave and RF delivery (30%); 4
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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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. Research results are often deployed as widely used open-source software and services. The lab’s work is supported by a portfolio of federal and foundation grants spanning biomedical knowledge integration
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. The Postdoctoral Research Associate will work closely with Prof. Woolston and a collaborative, interdisciplinary team of graduate students and undergraduate researchers. The Woolston Lab places a strong emphasis on
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energy-innovation technologies. Applying catalysis and reaction-engineering approaches, the role targets low-carbon fuel pathways—such as hydrogen, ammonia, synthetic and electro-fuels, sustainable
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above are preferred Required Documents Resume Position Type Research Additional Information Northeastern University considers factors such as candidate work experience, education and skills when extending
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multiple projects, and deliver at a high level. This work integrates gene therapy, chemical conjugation, and quantitative transport modeling to engineer charge-guided delivery systems for dense, negatively