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the understanding of the transition processes in practice and develop ways to better govern the collection of transitions. This research setting builds on knowledge and theories at the intersection of innovation
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study designs to investigate how such multi-team systems adapt to unexpected events. Thereby we specifically focus on the role of faultlines--the imaginary dividing lines that split up a system into
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Description Do you want to creatively design polymers and coatings for cutting-edge energy applications? Are you motivated by the challenge of advancing emission-free transport? Do you thrive in a
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calculated pro rata. 8% holiday allowance and 8.3% end-of-year bonus optional model for designing a personalized benefits package contribution to commuting expenses a wide range of sports facilities which
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dominate the lithium budgets of these magmas (e.g., muscovite, cordierite, garnet); conduct HP-HT crystallisation experiments designed to cover underrepresented P-T-X space relevant for lithium pegmatite
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outdoor activities. Additionally, if you are a nature lover, we have great news for you: In the final year of your PhD, you will participate in designing nature retreats in Czechia and Poland for a small
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experiments, design and implement advanced detection techniques, analyse data, and carry out numerical trajectory simulations of deceleration and scattering processes. You will have the opportunity to work with
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analysis, and high-performance simulations? We offer a challenging PhD position in the Mathematics of Computational Science group to design and analyse novel structure-preserving methods for stochastic
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crystallisation experiments designed to cover underrepresented P-T-X space relevant for lithium pegmatite genesis; and calibrate empirical expressions that describe the partitioning of lithium between major mineral
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will: Gain expertise in translation regulation, single-cell sequencing and developmental biology Learn to design and carry out experiments using state-of-the-art methods Develop strong skills in data