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. This project will experimentally investigate cavitation erosion in composite materials and develop a structural health monitoring system based on active and passive guided waves for in-situ identification
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, which causes reduced performance and accelerated material degradation in seawater. This project will experimentally investigate cavitation erosion in composite materials and develop a structural health
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. The candidate will contribute to the mechanical design, composite fabrication, and experimental validation of UAV structures, integrating morphing wings and additive manufacturing processes for high-performance
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models for composites of arbitrary structures to predict their homogenized properties. The candidate will also work closely with AI experts to develop workflows for composite structure discovery given
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Interatomic Potentials) code for ternary compounds with variable composition with crystal structure optimization algorithms (evolutionary, random, etc.); - Application of the CSP DFT/MLIP methodology to various
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structures, integrating morphing wings and additive manufacturing processes for high-performance and energy-efficient drones. Keywords: Morphing wings, composites, additive manufacturing, aerodynamics, UAV
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and process carbon materials into polymeric and elastomeric matrices. Conduct mechanical, rheological, and electrical testing of composite materials. Correlate structure–property relationships using
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using grafting or molecular self-assembly methods on semiconductor surfaces, using solution chemistry methods · Characterization of monolayers (chemical composition, structural properties) using ATR-FTIR
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or closely related field. Qualifications within the following scientific areas are required: Genetic engineering and strain construction in bacterial model organisms. Genetic and phenotypic screening methods
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compositional reasoning. The core research thrusts of this position are: • Structured, neurosymbolic models: The research will investigate model architectures that are not learned from a blank slate. Instead