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significant role in addiction-related behaviors by influencing brain function, immune signaling, and metabolite production. This project seeks to uncover the biological mechanisms linking the gut microbiome
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simulations. Minimum Qualifications Ph.D. in mechanical engineering, chemical engineering, materials science, or a closely related field, with 0–3 years of relevant research experience in battery systems
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influencing brain function, immune signaling, and metabolite production. This project seeks to uncover the biological mechanisms linking the gut microbiome, host genetics, and addiction vulnerability
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, biomedicine, and other areas of societal importance. Specific projects may involve developing multiscale simulation methods for quantum mechanical properties of macromolecules; developing novel ways to combine
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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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QUALIFICATIONS: • PhD in Electrical and Computer Engineering, Mechanical Engineering, Physics, or a closely related field. • Demonstrated expertise in MEMS/NEMS design and modeling, including finite element
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://tanglab.sites.northeastern.edu/ Qualifications: Having a PhD degree from all science and engineering majors, especially Mechanical Engineering, Chemical Engineering, Physics, and Materials Science. Highly motivated. Having
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, biomedicine, and other areas of societal importance. Coding and/or machine learning experiences are highly valued. Specific projects may involve developing multiscale simulation methods for quantum mechanical