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The successful candidate will contribute to a research project at the intersection of engineering (pre-stressed concrete bridges), material science (Cholesteric Liquid Crystal Elastomer), sensing
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group's efforts in modeling combustion-generated aerosols. These modeling framework will be used to understand the impact of inorganic aerosols on sunlight scattering and droplet/ice crystal nucleation
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demonstrated expertise in biomaterials synthesis and tissue engineering, particularly in biomimetic gradient scaffold technologies experience in 3D (bio)printing techniques such as Liquid crystal display
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the impact of inorganic aerosols on sunlight scattering and droplet/ice crystal nucleation. The researcher will interact with graduate students and postdoctoral researchers in the research group and in
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characterise new phosphines and their nickel complexes, using Schlenk techniques, the glovebox, NMR spectroscopy, mass spectrometry, single-crystal X-ray diffraction and other techniques that might be deemed
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Independently conduct molecular cloning, mutagenesis, protein purification, protein characterization, protein engineering and design, enzyme kinetics, protein crystallization. Microbiology assays, including C
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will continue to build from our learnings. https://pubs.rsc.org/en/content/articlelanding/2025/gc/d5gc01813g https://pubs.rsc.org/en/content/articlehtml/2018/gc/c7gc03747c https://pubs.rsc.org/en/content
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& Safety. Finally, this position is funded by a grant, soft and/or restricted funds. Continued employment is contingent on the renewal of funding. Required Qualifications Doctoral degree in Chemistry
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role The successful candidate will contribute to a research project at the intersection of engineering (pre-stressed concrete bridges), material science (Cholesteric Liquid Crystal Elastomer), sensing
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) Theoretical Modeling: Develop and refine models for entanglement harvesting using continuous-variable quantum information theory and Gaussian quantum states steering. (2) Experimental Simulation: Simulate