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Field
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examines how different bodies and sensoria (i.e., culturally shaped ways of sensing and engaging with the world) are formed and valued through the corporeal, social, and material interactions that shape
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being advertised at UQ, and the two PhD candidates will collaborate closely under a joint DTU-UQ supervision framework, with opportunities for research exchange and interaction between the two
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environment for cutting-edge experimental research, with close interactions with theorists and potential collaborations with industry. Our group is part of Condensed Matter Physics at the Niels Bohr Institute
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organizational theory, the learning sciences, digital transformation, digital technologies, human-computer interaction, and related fields. Within the specific field, the PhD student will engage in both research
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science and technology area, ideally covering the understanding of food macromolecular interactions on a mechanistic level, how processing and formulation affect or determine these interactions, and how
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with experience in zebrafish work, advanced microscopy (in vivo imaging, confocal microscopy), host–pathogen interactions, innate immunity, vaccination, gene expression analysis, or cell-based assays
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plant–microbe associations and harness their potential for sustainable food production. Our focus is on uncovering the molecular mechanisms by which plants and microbes interact—ranging from early
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pressing scientific challenges of our time: understanding how biodiversity is changing in response to multiple, interacting global change drivers. The project will combine cutting-edge analyses of large
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interactions with CSE activities. Please find guidelines and further information on the website of the PhD School: https://www.cbs.dk/en/research/phd-programmes/admission . Recruitment procedure The Recruitment
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PhD Scholarship in Development of Cement-Free Living Building Materials for Sustainable Construction
, biotechnology, and additive manufacturing. As a PhD student, you will investigate fungal-bacterial interactions, develop living bio-composites based on microbial biomineralization, design bio-based hydrogel