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explores the interactions between wood-eating teredinid bivalves (commonly known as shipworms) and their intracellular bacterial endosymbionts. Shipworms offer an exceptional model system for studying
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-symbiont interactions in the shipworm symbiotic model system, (2) design and conduct experiments and analyze results as part of a structured research program created in cooperation with the lead PI, (3
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in network science. NetSI faculty and researchers are working to advance the understanding of complex systems through the lens of networks, and to apply this knowledge to solve real-world problems in a
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information. We develop novel theoretical approaches to characterize the structure and function of the genome using the tools of statistical physics, information theory, and computational modeling
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drug design, protein structure modeling and simulations, target-based and phenotype-based compound screening, single cell data analysis and modeling, medical imaging processing, Natural
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interested in the physical processes involved in the translation of genetic information. We develop novel theoretical approaches to characterize the structure and function of the genome using the tools
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structured mentoring on topics including mentor/mentee research relationship, technology transfer, and proposal development. This fully funded position is renewable for up to two years pending satisfactory
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and conduct cutting-edge research on disease dynamics and epidemiological modeling. The candidate will develop and apply mathematical and computational models to understand the transmission, evolution
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Institute (QMSI) that includes the Experiential Quantum Advancement Laboratories (EQUAL) located at Northeastern's Innovation Campus at Burlington, MA. The PRAs will be closely involved in exciting research
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in network science. NetSI faculty and researchers are working to advance the understanding of complex systems through the lens of networks, and to apply this knowledge to solve real-world problems in a