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Field
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conventional simulators. Finite element-based methods such as Mixed-Finite-Element or Control-Volume methods are convenient thanks to their suitability for complex unstructured grids. Applications are sought
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have an excellent PhD in biomechanics (or a related discipline), possess a solid knowledge of non-linear finite element modelling, have a strong experience in developing and validating patient-specific
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Digital Image Correlation and stress wave analysis, and the development of custom material subroutines within finite element software to accurately reflect experimental observations. This is a hands-on
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for the eye. We have a diverse group of researchers with expertise in surgery, microfabrication, additive manufacturing, finite element analysis and cell-nased therapies. About the position: We are looking
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related field with expertise in one or more of the following areas: Finite element methods for partial differential equations Multiscale numerical methods Flow and transport in porous media Scientific
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on the microlocal analysis of the problem, an efficient alternative to the standard Finite Element approach can be designed. The main aim of this postdoctoral project will be to adapt the methods developed so far
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the relevant area of expertise, including numerical simulations and laboratory experiments. Demonstrated experience with the finite element program ABAQUS. For best consideration, applicants must submit
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. The central aim of these projects is efficient computational method for wave propagation on complex geometry. We will use a novel and unconventional finite element method based on the Galerkin difference
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universities. Experience in effective student mentoring. Dedication to ensuring a respectful, equitable and inclusive work environment. Experience with finite element analysis and design optimization preferred
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below, attaching as a separate document: Essential A PhD in materials science, photovoltaics, photonics or a closely related discipline Expertise in optical modelling using finite element and ray tracing