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through daily discussions, weekly meetings to assess scientific progress, and the preparation of interim reports. Quantum sensing technologies powered by solid-state spin defects have already shown a huge
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and time kinetics of the released heat still remain unclear, which requires adapted probes. In this respect, photoactive p-conjugated organic units display the great advantages to sense or vary
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Inria, the French national research institute for the digital sciences | Rennes, Bretagne | France | about 1 month ago
retrieval: reconstructing the original digital data from the sequenced symbols. This PhD project focuses on the first and fourth challenges, by developing joint compression and error-correction algorithms
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[Srdinsek2025], the sole structure of the tensor networks that could be “salvaged” was the canonical form that provided the ability to dynamically compress/decompress. During this PhD, we will develop more; we
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and fabricating innovative microfluidic devices; - Developing experimental methods to measure tissue permeability, elasticity, and compressibility; - Performing transport experiments under controlled
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(ILM), interacting with PhD students, postdocs, and master's students on related topics. We seek a motivated candidate holding a master's in physics, with skills in ultrafast/nonlinear optics or soft
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biology approaches. • Previous work on neurobiology of marine systems or of genetic models is preferable. • Fluent (B2+) in oral English The Plankton Senses Team is looking for a highly motivated and
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22 Jul 2026 Job Information Organisation/Company UNIVERSITE D'ORLEANS Research Field Environmental science Researcher Profile Recognised Researcher (R2) Positions Postdoc Positions Application
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sensing (DAS) via fiber optics, and active seismic data to detect and characterize seismicity across the entire deformation spectrum (earthquakes, tremors, slow-slip events). These observations will be
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Inria, the French national research institute for the digital sciences | Talence, Aquitaine | France | 2 months ago
locomotion capabilities through a global leg-spine-neck dynamic optimization. Building on the previous outcomes, we will first define the quadruped’s kinematic structure, actuation type, sensing modalities