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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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/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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. This SFI brings together an interdisciplinary team from research, industry and public body partners. The PhD position will focus on the reproduction and early life-stage development of the red alga
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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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, 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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food production that can help the population to shift to a more sustainable diet. To succeed with this transition, inclusion of new alternative biomasses such as algae, insects, legumes in new food
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and 165 employees in Bodø and Steinkjer. The professional community is organised into the following divisions: Aquaculture, Ecology, Genomics and Animal Science, Production and Welfare and Algae and