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are merits. Advantageous attributes include a working knowledge of aquatic food webs (e.g., algae, macroinvertebrates, zooplankton, fish), Arctic ecology, and/or biogeochemistry. Experience in relevant
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working knowledge of aquatic food webs (e.g., algae, macroinvertebrates, zooplankton, fish), Arctic ecology, and/or biogeochemistry. Experience in relevant biological sampling techniques and in biomarker
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and resource-efficient Swedish energy system, the PhD candidate will first develop a module for the existing TIMES-Sweden model, and thereafter, apply the model to analyse different feedstocks, biofuel
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of microorganisms in fluids. Living systems such as bacteria or algae exhibit remarkable capabilities: they swim, adapt, interact, and self-organize into dynamic patterns. Understanding and replicating these life
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commercial conversion of biomass waste to biofuels. The main objective of this project is to accelerate the utilization of biomass wastes for production of a green syngas via fluidized bed gasification with
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the doctoral project The research project aims to develop a viable technology relevant for the sustainable commercial conversion of biomass waste to biofuels. The main objective of this project is to
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/microrobots that can move and interact autonomously in 3D environments, mimicking the complex dynamics of microorganisms in fluids. Living systems such as bacteria or algae exhibit remarkable capabilities
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microswimmers/microrobots that can move and interact autonomously in 3D environments, mimicking the complex dynamics of microorganisms in fluids. Living systems such as bacteria or algae exhibit remarkable
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, including the Polydiv2 and PI3 networks. About the role We are looking for a highly motivated PhD student to study the impact of genome duplication on volvocine algae, with a particular focus on
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. This leaves a major gap: how to valorize low-grade waste into high-value products beyond biofuels/biogas at industrially-relevant scales? The NWA-ORC funded consortium project ABEL addresses this challenge by