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numerical methods used to design wind turbines and understand turbulent combustion in jet engines, this research aims to address critical computational challenges in simulating the physical dynamics
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for probing and sensing at the nanoscale using optical tweezers. You will contribute to both technical innovation --such as enhancing parallelized detection systems and integrating them with complementary
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for designing, planning, and performing image analysis, dealing with large data sets. The project is a close collaboration with international partners, and you are expected to actively interact as a team member
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(including CV and detailed research plan), and finally, Strict compliance with the MSCA mobility rule that the researcher must not have resided or carried out his/her main activity (work, studies, etc.) in
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the duties. The overarching goal of this research program is to uncover fundamental molecular principles governing membrane protein function, particularly how interactions with subunits, auxiliary proteins
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- Experience of working both in the lab (DNA and RNA work) and in the field (phenotyping) - Ability to formulate a research vision showing how you plan to use previously acquired knowledge and skills to advance
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(written and oral) in English Good ability to design and carry out research tasks independently Good collaboration skills Personal suitability In addition, it is considered as a merit if you have: Experience
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a strong research background and a passion for innovation, this could be the next step in your academic career! About the position The wood products and associated industries are searching for novel
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models of interacting ecological and evolutionary (eco-evolutionary) processes. You will conceptualize and model the complexity in which ecological divergence and speciation drive an adaptive radiation
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to reduce the complexity in simulating lake physical dynamics at scale. Borrowing from numerical methods used to design wind turbines and understand turbulent combustion in jet engines, this research aims