722 structural-health-monitoring "ONERA The French Aerospace Lab" positions in France
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- AMU Institut de chimie radicalaire
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- CNRS UMR 8201 LAMIH
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- CNRS and Université de Bordeaux
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Field
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clade harboring a cell wall made of pseudomurein (archaeal PG), which structurally resembles its bacterial counterpart, but it is chemically distinct. How a PG cell wall emerged in Archaea and what were
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of THz generation. Description: Due to their use as functional materials, ferroelectric thin films are the subject of extensive research. Complex ferroelectric structures have been evidenced that result
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in Acquisition and Signal Processing for Health (CREATIS) is a multidisciplinary laboratory with 200 members. It has a wide range of expertise in medical imaging and plays a major role in the field
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are located at the "Centre interdisciplinaire de microscopie électronique de l'X" (CIMEX). The unique NanoMAX tool will enable in-depth analysis of morphological, structural and chemical information during
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mechanics and acoustics, and is structured into 3 research teams: Materials & Structures, Sounds, Waves & Imaging. The successful candidate will be hosted by the Waves & Imaging team, and will work in close
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application to monitoring quality and defects during manufacturing of optically opaque materials. However, current systems are limited in terms of acquisition speed, and the main obstacles to the use
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scientific theme is the physics and detection of gravitational waves (GW). In this context, the laboratory's researchers, engineers, and technicians are involved in the science and the construction
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resulting in a violent decompression through emission of a shockwave. Stress generated by the passage of the shockwave inside a material may permanently change its structure, transforming it into a denser
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languages and will be well rounded in using the latest methodologies for caracterizing population structures and detect selection signatures. S/he will have a strong experience in working with ancient DNA
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represent an emerging optical technology and correspond to ultra-thin optical components. These devices are miniature, planar optical components made up of arrangements of structures (meta-atoms) of sub