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catalytic reactors to measure activity, selectivity, and kinetics for targeted thermo- and/or electrocatalytic reactions Develop and run closed-loop autonomous workflows that couple automated synthesis, high
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cartilage-targeted gene delivery within a fast-paced, NIH-funded and industry-collaborative environment. This position is designed for top-tier, self-driven scientists who can independently execute, manage
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. The postdoc will join an interdisciplinary program that combines quantum sensing instrumentation, surface and interfacial chemistry, and the physics of the target systems, with current directions including
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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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both mice and humans. The ultimate goal is to discover novel biomarkers and therapeutic targets that can guide future clinical interventions for substance use disorders. PROJECT 2. Distinct Temporal
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biomarkers and therapeutic targets that can guide future clinical interventions for substance use disorders. PROJECT 2. Distinct Temporal Architectures of Spontaneous versus Precipitated Opioid Withdrawal
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research group. We are particularly targeting candidates whose interests and expertise intersect with the following project areas: Topic 1 - Perceptual Learning-based interventions focused on improving
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therapeutic targets, and support highly translational research initiatives. Key Responsibilities Experimental Design & Execution: Develop and execute in vivo studies using murine models to investigate