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will include the development of language features and formal semantics for programming and modeling distributed quantum systems, enabling correct composition, communication, and verification of quantum
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will include the development of language features and formal semantics for programming and modeling distributed quantum systems, enabling correct composition, communication, and verification of quantum
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biochemical flux and pathway regulation. The RIBOTICS project involves a team of 3 postdocs and 3 PhD students, who will work on design, characterization, and experimental verification of several RNA systems
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biochemical flux and pathway regulation. The RIBOTICS project involves a team of 3 postdocs and 3 PhD students, who will work on design, characterization, and experimental verification of several RNA systems
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biochemical flux and pathway regulation. The RIBOTICS project involves a team of 3 postdocs and 3 PhD students, who will work on design, characterization, and experimental verification of several RNA systems
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circuits for driving, sensing, and reading spintronic devices. Participate in the full IC design flow from architecture to schematic, layout, and verification. Perform post-layout simulations and contribute
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barrier structures and associated vessel operations. However, the mechanical design and verification of standardised subsea HVDC electrode units require a rigorous understanding of environmental loading
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experimental verification of several RNA systems that can regulate gene expression, control enzyme proximity, sense product yields, and do molecular computations for feedback control. The successful candidate
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a team of 3 postdocs and 3 PhD students, who will work on design, characterization, and experimental verification of several RNA systems that can regulate gene expression, control enzyme proximity
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a team of 3 postdocs and 3 PhD students, who will work on design, characterization, and experimental verification of several RNA systems that can regulate gene expression, control enzyme proximity