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infrastructure to better predict and manage stormwater dynamics under climate-related uncertainty. It will also explore how to optimize design and operation strategies to adapt to future climate extremes. Possible
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on www.blockades.eu At NTNU’s Department of Modern History and Society, the project team will be located within a rewarding professional environment with an active community of PhD candidates and postdocs. Duties
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and innovative methods for predicting metocean data (primarily surface waves and ocean parameters such as currents, temperature, salinity, etc.) by combining advanced numerical simulations and deep
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buildings, timber bridges with long spans, development of high-performance connections based on threaded rods, static and dynamic testing of timber components and investigation of fracture and high-cycle
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” recruiting 10 Doctoral Candidates (DCs). The doctoral candidates will be hired in one of the following institutions: European Molecular Biology Laboratory (2), Gulbenkian Institute for Molecular Medicine (1
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Analysis: Utilize various cell and molecular biology techniques, including histology, microscopy, flow cytometry, RNA-seq, proteomics, Western blot, and qPCR, to analyze organoid and mouse models
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and analyzes quantitative and qualitative data on the firms’ pro bono efforts related to human rights, environment and climate change, and migration. PROBONO seeks to understand these dynamics and their
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research, in and outside academia. The focus for the PhD work will be probabilistic structural lifetime estimation of offshore dynamic riser and power cable systems by use of continuous measurements
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dynamically over time. Second, clinical conditions such as infection, sepsis, ventilation, and hemodynamic instability are often interconnected, necessitating a holistic modeling approach. Third, there is a
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rights, environment and climate change, and migration. PROBONO seeks to understand these dynamics and their implications through three key questions: 1. How does Big Law do pro bono? 2. How do global power