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. The researcher will contribute to the HySUCCESS project (https://groenvermogennl.org/project/hysuccess/ ), part of the national GroenvermogenNL initiative supporting the development of a sustainable hydrogen
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neuroscience approach to gain a mechanistic understanding of cognitive processes such as decision- making and how they are implemented in the brain. We combine knowledge from functional and structural
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the ERC project Enumerative and Arithmetic Geometry of Logarithmic Curves. This project has two main goals: building and using cohomological field theory (CohFT) structures on logarithmic Gromov-Witten
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and across individuals, populations, and species. To understand this variation, we need to consider how stress responses adapt to the structure of the environment over multiple timescales—through
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pools are most labile and recalcitrant and how this relates to the structure of the peat. We expect that soil porosity, and changes therein, play an important role, and you will also examine feedbacks
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mechanobiology and chromatin structure. The goal is to uncover how physical forces influence genome organisation and how misregulation may contribute to disease. We are seeking a scientist with a strong interest
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integrating open science in their research practice. The Faculty of CEG comprises 28 research groups in the following seven departments: Materials Mechanics Management & Design, Engineering Structures
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main goals: building and using cohomological field theory (CohFT) structures on logarithmic Gromov-Witten invariants; understanding the geometry of the moduli space of genus 2 curves/abelian surfaces
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temporary or even mundane. Examples of such temporary-but-everyday barriers include construction sites and road works planned by municipalities, but also a variety of unplanned situations, such as improperly
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in the area of finite geometry. Finite geometry studies finite structures that satisfy axioms of classical geometrical spaces such as the Euclidean and projective spaces. In this project, by developing