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work will contribute to the development of new transient (epi)genomic editing tools for asexual plants—technologies with significant potential applications in the improvement and breeding of clonally
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will work in a collaborative environment that seeks to improve one another’s research; You will present your work at international conferences for academics, policy makers, and educators.
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. This project represents a frontier in ecological epigenetics, marking the first application of epigenomic editing in a wild, non-model plant species. Beyond fundamental evolutionary questions, your work will
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or under the threat of volcanic eruptions, (urban) residents of seismic risk zones, employees of geological monitoring institutions and state-led disaster risk authorities, or people involved in
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articles suitable for publication in peer-reviewed academic journals in competition law or policy. Throughout this project you will work in close collaboration with two dedicated PhD supervisors, who will
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; Experience in handling spatial data; Programming experience in Python, and/or R; Proficiency in English; and The ability to work as part of an interdisciplinary research team. The following qualifications
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. You will work on the project: DEEP-FLUX: Journey of low-density particles to the DEEP ocean floor – terrestrial organic carbon and microplastics FLUX through submarine canyons. Your job More than 10,000
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fields. You will work on the project: DEEP-FLUX: Journey of low-density particles to the DEEP ocean floor – terrestrial organic carbon and microplastics FLUX through submarine canyons. Your job More than
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room to learn and develop professionally at the frontier of academic research. You will work under the supervision of Dr Burcu Özgün , Dr Giovanna Capponi , and Professor Carolina Castaldi .
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forms of climate risk. Focusing on local processes during this period allows us to trace when and why cooperation breaks down or endures, and to assess the consequences for sustainable development