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strongly interdisciplinary. Specifically, our star technique is scanning electrochemical cell microscopy (SECCM) , a powerful electrochemical imaging technique for interrogating electrochemical processes
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is currently building and commissioning a network of calibrated multi-sensor observatory-class systems, and developing novel machine learning methods with the aim of collecting science-quality data
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at the Rowland Institute at Harvard (https://www.rowland.harvard.edu/). Our lab's primary focus is on bacterial-encoded domesticated viruses, known as gene transfer agents, that package random sections of the host
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inaccessible regimes. Work in the lab combines optics, protein engineering, chemistry, electrophysiology, simulation, and theory. We work at the levels of individual molecules, single cells, and whole
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. The researcher will take primary responsibility for one or more of the following projects, depending on their interests and qualifications: (i) engineering robust strains of light-attracted, light-indifferent, and
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strongly interdisciplinary. Specifically, our star technique is scanning electrochemical cell microscopy (SECCM) , a powerful electrochemical imaging technique for interrogating electrochemical processes
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position to work in the Tau Airshower Mountain-Based Observatory, TAMBO. TAMBO is a new experiment that aims to detect astrophysical tau neutrinos in the PeV to 100 PeV energy range, whose first phase is now
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Department of Health and Human Services Part 1. Overview Information Participating Organization(s) National Institutes of Health (NIH ) Components of Participating Organizations National Cancer
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field theory, and string theory) at Harvard University, to begin in academic year 2025 – 2026. The appointment would be at the rank of Postdoctoral Fellow. The initial appointment is for one year at a
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position in the Gozzi Lab at the Rowland Institute at Harvard (https://www.rowland.harvard.edu/). Our lab’s primary focus is on bacterial-encoded domesticated viruses, known as gene transfer agents