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Field
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shape-shifting capabilities [1]. The technology is based on multifunctional Shape Memory Composites that can restore their original shape upon exposure to external stimuli like temperature, humidity
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this context, the proposed Ph.D. will focus on identifying phononic features for ultrasonic energy localization in plant-based composite materials and converting plant-based composites into efficient energy
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based on nanocellulose Interesting functional properties of a material arise from its composition (i.e. the number and the chemical nature of its constituents) and/or from the complexity of its structure
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Python. Thermo-Calc software and commercial databases will be used. Composition optimization work will be based on criteria such as melting temperature, absence of solidification interval, heat stored
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of their composition and characteristics. In this thesis, we will use the particle number size distributions (PNSD, measured using a Mobility Particle Size Spectrometer - MPSS) and particle chemical composition (synergy
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features for ultrasonic energy localization in plant-based composite materials and converting plant-based composites into efficient energy harvesters. As part of this, the Ph.D. student will help implement
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to P and including its coupling to the chemistry of S, N and C will be compared with the experimental database to ensure the validity of the scheme over a wide range of temperatures, compositions and
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chemical composition of these microstructures. In manufacturing of virtually all metal products, solidification processes, such as casting, welding, or additive manufacturing, are a decisive step for the
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), Influence of the origin of organic matter and Fe speciation for the remobilization of metals through abiotic and biotic processes, Distribution of metals, speciation and isotopic composition. Hypothesis
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to identify impact and exposure factors by considering numerous parameters determining concentrations (meteorology, traffic composition and density, urban layout...) and requiring the exploitation of numerous