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into addressable microstructures, exploiting the principles of crisscross assembly innovated in our lab. In addition to carrying out research, the successful candidate will be expected to apply for fellowship
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variability in their composition and microstructure, which results in variability in their mechanical, thermal, and diffusion properties. Therefore, predictive modeling of the performance of these composites is
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techniques, such as particle size and shape, powder flow assessment, advanced electron beam microstructural characterisation techniques and sample preparation for powders (e.g. cryo-SEM, FIB and/or TEM) and X
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-on experience in: Additive manufacturing of High Entropy alloys and Al-based alloys Powder characterization – Microstructure characterization (SEM, EBSD, TEM, XRD) Mechanical testing (tensile, fatigue, creep
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that generate accurate anatomical volumetric images and quantitative biomarkers, for the characterization of tissue composition or microstructure and blood flow quantification. We recently unlocked 2D ultrasound
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manufacturing, material characterization, microstructural and mechanical analysis of prototypes. The main objectives and results to be achieved are the execution of the planned work and the writing of scientific
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characterization, microstructural and mechanical analysis of prototypes. The main objectives and results to be achieved are the execution of the planned work and the writing of scientific articles as well as a
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of the Future. https://cordis.europa.eu/project/id/101226431 This network has 8 host institutions hiring doctoral candidates: Uppsala University, Universitat Politecnica de Catalunya, Dublin City University
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the Australian context, including impurity management, microstructure evolution, ore processing, and the development of green ironmaking infrastructure. Monash University hosts a unique suite of green ironmaking
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implant microstructures. Implement and test topology optimization strategies for designing architected implants subject to multiple objectives (for instance maximum strenght and fatigue life). Collaborate