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multi-disciplinary approach to understand how double strand breaks are repaired, and how that repair process provides insight into self-assembling systems. The postdoctoral scholar will carry out research
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multi-disciplinary approach to understand how double strand breaks are repaired, and how that repair process provides insight into self-assembling systems. The postdoctoral scholar will carry out research
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Argüelles' group on the development of new algorithms to encode and process particle physics data in near-term era quantum computers. Applicants with backgrounds in quantum information or particle physics
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the intersection between quantum information and particle physics. The successful applicant will work in Professor Carlos Argüelles’ group on the development of new algorithms to encode and process particle physics
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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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of biomechanics and computer vision to document the wingbeat frequencies and phototactic behaviors of diverse insects under diverse contexts. Candidates will be expected to plan and lead behavioral experiments
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imaginative Postdoctoral Researcher to join our team investigating fundamental mechanisms of developmental biology. Our lab focuses on understanding cellular and molecular processes that drive
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electrical activity with high resolution in space and time. We study information processing in the brains of awake, behaving mice and zebrafish. We also work on electrical signaling in other tissues
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microscopy (SECCM) , a powerful electrochemical imaging technique for interrogating electrochemical processes at nanoscale sites of complex electrodes. We aim to expand the capability and applications
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system. We developed fluorescent reporters of membrane voltage and associated instrumentation to map electrical activity with high resolution in space and time. We study information processing in