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honours degree (GPA over 6) Master in the relevant field with a research component, preferably having a journal publication as the 1st author How to apply Apply for this scholarship at the same time you
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Using finite element modelling (FEM) to simulate different hole configurations and validating these models with cadaveric femur specimens, this study will provide crucial insights to optimise
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This project is supported by a full scholarship within the context of ARC discovery project DP240101215. Candidates with a background in Chemistry, Chemical Engineering and Materials science are encouraged to apply. Previous research experience involving catalysis, reaction design or liquid...
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Australia. Knowledge and background in solid mechanics and Finite element analysis will be beneficial to undertake this project. Residual strength degradation and fatigue behaviour of composite laminates
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The PhD candidate will gain intensive knowledge in innovative processing protocols for chemical sensing and to develop data acquisition system with the Machine Learning (ML) and/or Deep Learning (DL). The PhD candidate will gain intensive knowledge in innovative processing protocols for chemical...
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jampaiah.deshetti@rmit.edu.au Experience with metal/metal oxide catalysts, heterogeneous catalysis, and material characterization techniques such as XRD, XRF, N₂-BET, chemisorption, TEM, and XPS, along with hands
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nutrients from food. Working alongside other postdocs and students focused more on structural aspects of these processes, this position will focus on understanding the bioidentity of the surface and how it
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the structure present in food systems dictates functional aspects such as digestion and release of nutrients. Working alongside other postdocs and students focused more on biological aspects of these processes
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populations. Working alongside other postdocs and students focused more on physical aspects of these processes, this position looks downstream at the effects of colloidal structures formed after digestion and
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) + Finite element methods for complex flows in porous media (generalized multiscale finite elements via autoencoders, adaptive in space and time, splitting methods, and variational flux recovery) + Adaptive r