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mechanical effects to the domain of 2D materials and comprise exciting new building blocks for exotic new quantum engineering. These are unique and exotic among an already fascinating materials family, with
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Terahertz (THz) is a rapidly expanding field with notable importance for a myriad of disciplines such as physics, chemistry and biology. In the context of material science, optical-pump terahertz
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technology and has an ambitious target to develop commercially viable fusion energy. The materials used to construct future reactors are exposed to extreme temperatures, plasma erosion and intense neutron
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the minerals industry to recover high value materials, less attention has been paid to ridding water of low value ones (e.g. plastics). Surface active agents known as collectors are used to enhance the particle
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an appropriate discipline: materials science and engineering, nuclear/chemical/mechanical/aerospace engineering, physics, plasma-physics, condensed-matter physics. No prior experience is mandatory. Some exposure
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are looking for candidates who: Have obtained or will obtain a first class or upper-second-class degree in a relevant discipline such as materials, mechanical or civil engineering, condensed matter physics
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upper-second-class degree in an appropriate discipline: materials science and engineering, nuclear/chemical/mechanical/aerospace engineering, physics, plasma-physics, condensed-matter physics. No prior
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, enthusiastic and productive researchers. You will be supervised by Dr Leah-Nani Alconcel (School of Metallurgy & Materials, primary supervisor) and Prof. Marina Gashinova (School of Engineering, secondary
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transferrable skills such as project management, communication, team working, which ensures an excellent employability upon completion of the project. If you have a background in Chemistry, Physics, Materials
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efficiency than conventional materials. This research is highly interdisciplinary, so we invite applications from candidates across all relevant areas, including but not limited to: Chemistry: Nanoporous