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central aim is to develop quantitative relationships linking processing, material evolution, microstructure and properties. Applications will focus primarily on metals, phase transformations and materials
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of experimental and theoretical physics, synthetic, physical and computational chemistry, material sciences and related areas. The OPTEXC IRTG involves 20 academics in Australia and Germany working in complementary
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in galaxies: how gas and dust form molecular clouds, how stars are born from these environments, and how stellar evolution and feedback return material back to the interstellar medium. Stars are born
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-dimensional materials. I am interested in creating a low-power topological transistor, in which an electric field can switch a material from a conventional insulator (“off”) to a topological insulator (“on