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project aims to develop digital polymers capable of storing binary information at the molecular level. To achieve this, we will synthesize sequence-controlled polymers using a multi-step solid-phase
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C Moutou. This project aims at modeling the magnetic topologies and accretion processes of pre-main sequence low-mass (T Tauri) stars, monitored with the SPIRou near-infrared spectropolarimeter
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biology, cell biology, molecular biology, genetics or a related field; • Strong experience in transcriptomics and bioinformatic analysis, preferably single-cell RNA sequencing; • Interest in developmental
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Drosophila and/or mouse models. • Prepare and analyze samples for single-cell and/or single-nucleus sequencing approaches. • Participate in the development and use of 3D spatial transcriptomics approaches
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theoretical and experimental tools to control the magnon dissipation rate using feedback protocols, thereby enabling the continued development, deployment, and use of quantum computing hardware, in alignment
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potential of these antibodies in vivo, notably in a murine model of rheumatoid arthritis, as well as in other relevant disease models aligned with the team's research objectives. The postdoctoral researcher
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dedicated e-beam evaporator, multiple dilution fridges with ultrafast control electronics, and TWPA read-out lines, as well as cryogenics engineers. Our team is large and diverse, providing the necessary
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intestine-on-chip models integrating multiple intestinal segments together with a functional enteric nervous system (ENS). The objective is to closely reproduce the structural, functional, and