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explicit solvers. You will have the opportunity to use commercial finite element packages such as COMSOL or ABAQUS but also in-house or open-source codes such as FEniCS or MOOSE. You will also be expected
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analysis for commercial FEA packages (e.g. Abaqus Standard/Explicit, LS-Dyna), ideally with experience of modelling commonly used UTC technologies, such as textile reinforcements. Past involvement with
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or biomechanics. They should be able to demonstrate the ability to write scientific journals. Knowledge of using the ABAQUS simulation software package within the area of biomedical engineering and
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towards one, of advanced finite element analysis for commercial FEA packages (e.g. Abaqus Standard/Explicit, LS-Dyna), ideally with experience of modelling commonly used UTC technologies, such as textile
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or biomechanics. They should be able to demonstrate the ability to write scientific journals. Knowledge of using the ABAQUS simulation software package within the area of biomedical engineering and
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spoken communication skills in English Interest in properties of polymers, in particular under dynamic loading Experience with finite element codes, preferably with Abaqus Ability to program, preferably in
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computational aspects to the project with specific skills in finite element methods, using the software ABAQUS, writing user material models (UMATs) and coupling ABAQUS to external codes using the ABAQUS Python
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, biomedical engineering or biomechanics. They should be able to demonstrate the ability to write scientific journals. Knowledge of using the ABAQUS simulation software package within the area of biomedical
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manufacturing). Proficiency in computational tools such as ANSYS, LS-DYNA3D, Abaqus, or similar FEA software. Excellent written and verbal communication skills. Ability to work independently and as part of a team
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using software (e.g., Abaqus and Ansys)). You will have good IT skills, including the use of MS office which are essential for this role. You will have research experience in composite damage