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divisions and users. Our core tasks include mechanical design, feasibility studies, finite element analysis (mechanical, thermal, and vibrational/modal), and contributing to design review meetings with
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include the design and implementation of finite element multiscale models and machine learning algorithms, analyzing related experimental data, and collaborating with industrial collaborators to validate
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of the Division of Dynamics are very broad, from several courses at bachelor level on mechanics and solid mechanics to masters' level courses such as finite element methods, rigid body dynamics, structural dynamics
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finite-element simulation and topological optimization of light guidance in HCFs, and numerical simulation of thermo- and fluid dynamics under fiber-drawing processes. Apart from the main tasks above, the
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analyses (using finite elements) of geotechnical problems in field scale, in particular coupled flow-deformation analyses Ability to read and understand Swedish Contract terms Full-time temporary employment
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on mechanics and solid mechanics to masters' level courses such as finite element methods, rigid body dynamics, structural dynamics, and structural dynamics control. The aim of the Division is to be
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on experimental data. Main responsibilities Pursue your own research related to the project. Develop and implement material models, finite element codes, and calibration procedures. Disseminate research through
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mechanics and solid mechanics to master's courses in structural dynamics, rigid body dynamics, finite element methods, and fatigue and fracture mechanics. Major responsibilities As an Assistant Professor, you
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merging time-domain Finite Element Analyses for the structure and subgrade with a vehicle model. The focus will be on incorporating accumulation models for ballast and subgrade that incorporate (cyclic
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. Duties You will be responsible for developing a damage coupled diffusion finite element model that captures the progressive destruction of cell walls during chemical delignification as