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Field
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coherence lifetimes for the solid state, and the ability to leverage the advanced nanofabrication methods of the semiconductor industry. The selected candidate will join the Quantum Hardware group lead by
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• Good communication skills in English, including the ability to develop and deliver presentations to technical and non-technical audiences, if necessary • Ability to write coherent and persuasive
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, magnetic resonance imaging, and ultrasound imaging to evaluate tendon properties. There are extensive collaborations with the Department of Biomedical Engineering and Health Sciences. The candidate will also
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discussion of results with the team. e) Iteration and improvement of the NUTLY 2.0 tool prototype, incorporating collected evidence and technical recommendations, in coordination with other project members. f
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multimodal signals to improve the performance of multilingual models for low-resource languages, such as Luxembourgish. Particular emphasis will be placed on language-agnostic modalities, including images and
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→ ρ′) to maintain fidelity; and (iii) evaluating entanglement stability and routing performance using metrics such as reliability (β = P(successful routing)), coherence time (Tc), and entanglement
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-Tenure) The University of Pittsburgh, Department of Radiology is recruiting for a qualified imaging research assistant professor to assist with clinical and research imaging analysis. This will be a full
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quality of the state of the art and methodology of the work plan (with a weighting of 40% of the merit of the work plan) – clarity, consistency and coherence will be valued, in accordance with
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the employment contract is signed. Selection process Integrated assessment of the candidate’s curriculum, based on overall scientific merit: I. General scientific coherence of the CV – 40% II. Diversity
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: Integrated evaluation of the candidate’s career trajectory (50%), based on an overall view of scientific merit: I. Overall scientific coherence of the CV – 15% II. Diversity and quality of scientific