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in supporting Australia’s transition to green ironmaking by developing a quantitative framework that connects impurity content, process parameters and microstructural evolution to scalable, low
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The University of Birmingham is seeking to appoint a Research Fellow to contribute to the creation of knowledge, in terms of chemistry and microstructural effects on the radiation tolerance and integrity of fusion
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nanoparticles. The goal of the PhD will be to seek mechanistic insight into the electrode polarization processes as well as strategies for improving performance by optimization of composition, microstructure, and
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, deformation bands and host rocks for comparative petrographic and microstructural analysis characterization of the mineralogy, coal petrography and microstructure of the studied bands and faults to elucidate
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physics such as heat transfer, melt-pool dynamics, residual stress evolution, and microstructure formation. Experiments and numerical simulations will be conducted to evaluate the predictive capability
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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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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