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This opportunity adds to the portfolio of projects within the new CDT for Innovation for Sustainable Composites Engineering launched in 2024: https://www.bristol.ac.uk/composites
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to applicant: All application materials must be submitted electronically through Oberlin College and Conservatory's online application process at https://jobs.oberlin.edu. A complete application will be
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analytical techniques, including RAMAN spectroscopy and MALDI-TOF MS, to characterize the composition, structure, and functional groups of synthesized organic materials and organofilms Design and perform
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of wind turbine blades and wind turbines, and LMAT, a specialist SME in composites process modelling. The project focuses on the design, manufacture and performance of next-generation wind turbine blades
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from bulk structures (e.g., Materials Project entries), automatically construct surface slabs, and create targeted compositional variants and vacancy configurations. You will implement and refine post
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shape changes in fiber-reinforced composites Integrating materials systems and fabrication processes for responsive building components Dead line for applications: 20.02.2026, however, later
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Materials Science, Characterisation Materials Science, Defence Composite Materials, Functional Composite Materials, Energy, Nanomaterials, Low Dimensional Materials, Biomaterials Materials, Biological
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populations to understand genetic diversity, evolutionary processes, and population dynamics that shape the genomic composition of species. Applicants should demonstrate strong expertise in analyzing population
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. Background in CAD/CAE, structural design, or composite materials. Practical experience in additive manufacturing or mechanical testing is an advantage. Autonomous, organized, and motivated to work within a
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natural fibres and bio-resins, combining renewable materials with advanced processing and computer-aided design/simulation. The research aims to create high-performance, sustainable composites with tailored