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Field
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Responsibilities of the candidate: - Growth of the magnetic heterostructures. - Structural/compositional characterization, including synchrotron techniques. - Magnetic and magnetoelectric characterization
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design and end-of-life strategies often overlooks the unique recovery and regeneration challenges posed by these composite structures. End-of-life industrial filtration felts are heavily contaminated with
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layer composition and structure Advanced knowledge of the impact of air pollution on health and on aquatic environment and terrestrial ecosystems Air quality and climate change effects Emission, transport
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Your Job: Digital methods for inverse materials design are essential to efficiently create new, sustainable and recycling-adapted structural metals. Alloys with a reduced number of elements, so
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microstructure and chemical composition correlate with performance improvements? What new sustainable fire-retardant chemical can be used for densified veneers? Research field: Chemical, materials and energy
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signaling, and mechanosensitive ion channels that regulate changes in plasma membrane tension, and has been associated with a wide array of functions. Additionally, differences in the structure and
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the field of the project, namely AI algorithms and regulation. 2. Support in data collection and organization, namely Selection and parameterization of audiovisual materials and structuring a database with
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electrospinning devices, as well as structural characterization tools (microscopy, X-ray, spectroscopy), and mechanical and rheological equipment. Context This PhD is part of the ANR FLIGHT project, which aims
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batteries (RFB), enabling affordable and durable long-duration energy storage. The approach is to use hierarchical structures, i.e. complex material layers that can be optimized to specific battery
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the structural performance of composite sleeves under operational conditions, such as centrifugal forces, bending, and thermal stress. You will work closely with the PEMC and Composites Research Groups, industrial