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on optimising the Swedish power system and on identifying cost-efficient options for Sweden to meet its climate targets. The research is based on applying the TIMES model framework, which is widely used across
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are defined and the flow through these cells is modelled numerically with URANS/RANS, LES or LBM. This is done with increased complexity regarding flow, heat, chemistry, and relative motion of the particles
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abroad at Technische Universität Ilmenau, Germany (regarding process modelling) and carry out an internship at Jenoptik Automatisierungstechnik GmbH, Germany (regarding system integration) or Powerphotonic
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engineering, space technology, computer and systems science. We are now looking for a PhD student who can contribute to our growing business in electrodynamic calculations at the EISLAB division. We carry out
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actuators having multi-degree of freedom, to tackle the time varying dynamics of the system especially due to time-varying mechanical characteristics -RL based approach to control, stabilize and maximize