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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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artificial intelligence (AI) methods that propose, prioritize, and interpret experiments, accelerating the discovery and optimization of catalytic materials for energy and sustainability applications
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. The research focus is on developing and applying first-principles-based and data-driven computational methods to understand multiscale processes and accelerate chemical discoveries for renewable energy
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discoveries for renewable energy, biomedicine, and other areas of societal importance. Specific projects may involve developing multiscale simulation methods for quantum mechanical properties of macromolecules
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discoveries for renewable energy, biomedicine, and other areas of societal importance. Specific projects may involve developing multiscale simulation methods for quantum mechanical properties of macromolecules
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, dissect peptide-immune cell interactions, and examine how the peptide shapes the gut microbiome. The anticipated start of this position is September 2026, with yearly renewals based upon funding and
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, presentations, grant proposals, etc. Assist with laboratory management and training of graduate students. Other duties as assigned. Qualifications: Applicants should have a PhD degree in Neuroscience, Immunology
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students. Other duties as assigned. Qualifications: Applicants should have a PhD degree in Neuroscience, Immunology, Cell and Molecular Biology, Biology or a related field. Strong candidates will have a
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bioinformatics to integrate findings. Scientific Communication: Publish results in peer-reviewed journals and present at internal and external scientific meetings. Qualifications and Skills PhD in cellular biology