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optimization, evolving error correction techniques, and applications. We use locally hosted quantum computers based on superconducting technology in our experiments as well as the resources of our national
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frameworks such as Qiskit, CUDA-Q, PennyLane, Cirq, or equivalent platforms, and knowledge of quantum algorithms, quantum error correction, fault-tolerant computing, or quantum resource estimation. Experience
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molecules sit inside a tissue from sequencing data alone, in effect “imaging without a microscope”; encode, store, retrieve and error-correct digital information in DNA, and make molecular data operations
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of Rheumatology/Immunology at WashU. The Schmitt Lab studies immune dysregulation in inborn errors of immunity. We are specifically interested in investigating the mechanisms leading to T and B cell dysregulation
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at WashU. The Schmitt Lab studies immune dysregulation in inborn errors of immunity. We are specifically interested in investigating the mechanisms leading to T and B cell dysregulation. In complementary
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scholars and researchers from around the world are tackling global issues and making a difference to people's lives. We believe that inspiring our people to do outstanding things at Durham enables Durham
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, fault-tolerant quantum computing. The specific focus of this position will be on the theoretical design of quantum platforms and models to improve upon existing error correcting codes, while leveraging