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Field
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proximity effect of materials of non-trivial topology and magnetism in 2D materials. Requirements include a Ph.D. in Physics, and a history of Ph.D. level research experience in experimental condensed matter
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. The successful candidate will work with Prof. Zhiqiang Mao on a quantum materials research program focused on the discovery and synthesis of novel quantum materials, including magnetic topological materials and
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topologies, identify suitable topologies for detailed modelling, and collect data to enable future comparison of the modelled polygeneration systems with regards to the three core elements of sustainability
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smectite, sepiolite, and layered double hydroxide. -Summarize the MD data to find the optimal mineralogy properties need to maximize the binding efficiencies of the minerals for the toxins. -Summarize
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span a broad range of areas including strongly correlated fermion materials, high-temperature superconductivity, topological electronic states of matter, developments and applications of computational
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-processing pipeline for high-field MRI medical data (normalization, denoising, spatial registration) to optimize the quality and consistency of data used in analyses, and to facilitate the search
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reactive chemical group(s), and purifying and fully characterizing the final compounds. Additional tasks include the elaboration and optimization of the conditions necessary for the effective and controlled
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ore quality and optimize operational decisions. 2. Key Responsibilities The selected candidate will be responsible for: Analyzing mining extraction processes and their interaction with the new washing
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research project aiming to design, optimize, and evaluate electrochemical systems [electrodialysis with bipolar membranes (BMED] for sustainable desalination brine treatment, at the crossroads
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Abilities: Experience with topological quantum materials High pressure processing including spark plasma synthesis Experience with dilution refrigerators Synchrotron based materials characterizations