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for understanding questions in geometry and physics. This scholarship is part of an Australian Research Council Discovery Project that aims to develop techniques for the design and analysis of highly nonlinear
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Status: Closed Applications open: 1/07/2024 Applications close: 18/08/2024 View printable version [.pdf] About this scholarship Description/Applicant information Project Overview Theoretical
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, or equivalent) Strong academic track record, with exceptional grades in advanced mathematics, theoretical physics, or computer science courses. Strong understanding of linear algebra, calculus, differential
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). Candidates must have a first-class Honours degree or a Masters degree in an area of theoretical physics related to quantum field theory and/or general relativity. A Masters degree is preferred A letter of
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international network. The Opportunity To grapple with the theoretical, methodological and ethnographic innovations into futures research that the Laureate Programme involves, we need the best and brightest minds
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risks for home helper robots in people’s everyday lives; Provide the theoretical and methodological innovation needed to understand the growing importance of human-like AI and anthropomorphised robots in
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. The specific lattice planes are expected to accelerate rate-limiting steps and ultimately enhance the PCFC output performance. Moreover, theoretical calculations will be employed to understand the mechanisms
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modelling astrophysical phenomena. The PhD project will focus on developing theoretical methods to generate accurate data to meet this demand. The student will gain expertise in high-performance computational
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about future states of species populations and ecological communities. The project will explore the application of dynamical point process models from probability theory to ecology so as to determine
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. The project will take advantage of recent theoretical (Gross, 2015) and measurement (Preece et al., 2018) advances from the affective science field to examine emotion regulation in ADHD more comprehensively