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. This postdoctoral position focuses on developing high-fidelity Finite Element Method (FEM) simulations to characterize mechanical properties and deformation behavior in advanced packaging applications. It involves
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computational modelling. The project will focus on the development of advanced numerical models (e.g. finite element method). The aim is to enable rapid and reliable prediction of material failure in complex
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mechanics and materials mechanics - Strong interest in multiscale and multiphysics modeling - Knowledge of numerical methods and finite element analysis - Interest in hybrid physics–data approaches and
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degree in biomedical engineering, mechanical engineering or related relevant field A demonstrated and substantial experience with computational simulation methods, i.e. finite element analysis English
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computational modeling, including numerical analysis, finite element methods, and software engineering Experience in software development in the C++ and Python languages The ability to work flexible hours and
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Location:South Kensington campus About the role: We are seeking a highly motivated researcher with a background in computational structural or mechanical engineering and finite element modelling
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of Nonductile Reinforced Concrete Frames with Masonry Infill Walls: I. Development of Strut Model Enhanced by Finite Element Models”, Earthquake Spectra, (2015), 32 (2), 795-818. Sattar, Siamak and Abbie B. Liel
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, residual stress, tolerancing and finite element analysis, as well as in manufacturing processes such as AM, welding and megacasting Proficiency in written and spoken English (Swedish language courses
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Develop instrumentation and fixtures for the automation. Capabilities in advanced finite element or machine learning tools for process optimisation Disseminate the research outcomes into Journal
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-mechanical processing. Some of these modeling tools include density functional theory (DFT), CALPHAD-based models, phase-field models, and finite-element models (FEM) to predict as-built microsegregation