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crystallography, and other structural techniques enable them to obtain the three-dimensional structures of these molecular machines. More information can be found on the lab website: https://joshua
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background and expertise in one or more of the following areas: High-dimensional probability and concentration/functional inequalities Markov processes and stochastic analysis Theoretical analysis of neural
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Geometry, Combinatorics, Number Theory, Representation Theory, Information Theory, Geometry, Probability Theory, Optimal Transport Theory, Topology, Machine Learning Theory, High-dimensional Computational
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boron nitride is a new two-dimensional optoelectronic material that is beginning to play an important role in prototypes for next-generation optoelectronic and electronic devices. As it is produced in a
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develop new theoretical frameworks to understand the root causes of active morphing in two-dimensional membrane-like structures and to explore strategies for achieving desired shapes. A key aspect of the
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exploring alternative materials, devices, and circuit architectures, particularly in the rapidly expanding field of artificial intelligence (AI) accelerator hardware. Atomically thin two-dimensional
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realised in experiment are (quasi) two-dimensional, with profound implications for their assembly and usefulness for applications. The successful candidate will build on our recently developed system
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characterisation of material properties. The work will be carried out mainly within the Interface and Multi-dimensional Materials (I2MD) research axis. The host team has internationally recognised expertise in
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manufacturing. Areas of interest include, but are not limited to, wide bandgap and two-dimensional semiconductors, advanced thin film growth and heterostructures, nanoscale fabrication, and materials solutions
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policies in selecting methods and techniques for obtaining solutions. The Bioinformatician will be responsible for analyzing, and interpreting large-scale, high-dimensional datasets, encompassing multi-omics