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PhD position - Stress-testing future climate-resilient city and neighbourhood concepts (Test4Stress)
Work group: Gerics - Climate Service Center Area of research: Other Part-Time Suitability: The position is suitable for part-time employment. Starting date: 08.05.2025 Job description: PhD position
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PhD position - Stress-testing future climate-resilient city and neighbourhood concepts (Test4Stress)
environmental change. The successful candidate will work in the project Test4Stress – “Stress-testing future climate-resilient city and neighbourhood concepts”, which is part of the cluster Trans4Heat – “Paths
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Your Job: Climate change is already reshaping our world and will continue to do so in the coming decades. Reducing greenhouse gas emissions is essential to limiting future climate change, with
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to study whether these groups were able to keep their liberal values and attitudes over a prolonged period of time and which mechanisms contributed to it. The project will be implemented jointly with Tomila
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and complexity theory, and in the chaotic dynamics of quantum many-body systems. Moreover, a breakthrough result in 2024 shows that random unitaries can often be constructed by short-depth quantum
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Protections of Future Generations”. Your tasks The selected candidate will be part of the Minerva Fast Track Research Group led by Dr. Irene Domenici. The group will explore the role of constitutional and
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First Stage Researcher (R1) Positions PhD Positions Country Germany Application Deadline 7 Mar 2025 - 23:59 (Europe/Berlin) Type of Contract Temporary Job Status Full-time Is the job funded through the EU
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4 Mar 2025 Job Information Organisation/Company Karlsruher Institut für Technologie (KIT) Research Field All Researcher Profile First Stage Researcher (R1) Country Germany Application Deadline 31
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for balancing work and private life, as well as a family-friendly corporate policy Flexible working time models i.e. Home Office 30 days of annual leave and provision for days off between public
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and thus they often hijack alternative repair pathways to overcome such stress. Break-induced replication (BIR) is one of the homology-directed alternative DSB repair pathway, which itself is highly