18 master-degree-in-mechatronics PhD positions at Chalmers University of Technology in Sweden
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concepts, aerothermal turbomachinery design, and aeroacoustics. We have a strong national and European network and you will use and master both the state-of-the-art and novel numerical design tools at GKN
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. Qualifications To be eligible for a PhD position, you must: Hold, by the starting date, a Master's-level degree corresponding to at least 240 higher education credits in Computer Science and Engineering or a
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theoretical insights and practical tools to improve the resilience of decentralized infrastructures. We seek candidates with the following qualifications: To qualify you must have a master's level degree in
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, autonomous systems and software for the benefit of Swedish society and industry Who we are looking for: To qualify as a PhD student, you must have a Master's degree (masterexamen) of 120 credits or a Master’s
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for: To qualify as a PhD student, you must have a Master's degree (masterexamen) of 120 credits or a Master’s degree (magisterexamen) of 60 credits in a relevant field such as chemistry and materials science. * You
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teaching including supervision of bachelor and master theses. Your profile We seek candidates with the following qualifications: A master’s level degree in a relevant field such as industrial ecology, energy
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. This will be achieved by combining advanced constitutive models that capture the rate-dependent (creep and porewater pressure) response of sensitive clays with erosion models enabling system-level studies
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. Main responsibilities As a PhD student, your primary responsibility is to pursue your doctoral studies within the strategic themes of the research area. Your tasks will include: Conducting predefined
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Master’s degree (or a 4-year Bachelor's degree for international applicants) in marine science, environmental science, or a related field Strong written and verbal communication skills in English Meritorious
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of quick clays. A novel combination of miniaturised thermal-hydro-mechanical experiments and particle level modelling will be pursued to unravel the unique mechanisms that make quick clays so hazardous and