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Third-cycle subject area: Landscape architecture Description of the doctoral project: Governance and organisational alignment related to the operation and maintenance (O&M) of urban drainage
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for device performance and stability, since they must sustain both electronic and ionic transport simultaneously. This is the case, for example, at electrode/electrolyte interfaces in organic batteries, where
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. Particular emphasis will be placed on understanding the relationships between catalyst structure, interfacial processes, local reaction environments, and electrochemical performance. The project aims
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ways to reuse this material in cement-based products, helping to reduce environmental impact and support more sustainable, resource-efficient mining. Duties As a PhD student, you are expected to perform
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for screening the subsurface to select areas with H2 -potential source rocks; - acquire and process new MT and controlled-source electromagnetic (CSEM) field data in targeted areas; - perform integrated 3D
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Medicine (WCMTM) and SciLifeLab in the University of Gothenburg. and is tightly connected to a broad network of international collaborators. Duties Develop and perform high-resolution spatial transcriptomics
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reactors, with particular emphasis on statistical methods, uncertainty quantification and machine learning to improve the accuracy and computational efficiency of fuel-performance analyses. The work
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student, you are expected to perform both experimental and theoretical work within your research studies as well as communicate your results at national and international conferences and in scientific
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performance of materials and devices. Contribution to scalable fabrication of multi-cell devices and their validation using representative low-grade heat sources. Analysis and interpretation of experimental
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optimization of the electrical, electrochemical, mechanical, and energy-conversion performance of materials and devices. Fabrication and validation of multi-cell devices under representative low-grade heat