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the sensory and functional qualities of natural seafood. This PhD project is expected to develop technology for cultivated seafood, by selecting the optimal cell source, developing a continuous cell line and
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. Collaborators on the project will use Brillouin microscopy for in vivo study of changes in the mechanical properties of plant cell walls, which have been implied in responses to the two parasites. We will also
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cell walls, which have been implied in responses to the two parasites. We will also use the model species thale cress (Arabidopsis thaliana) as a resource to help identify the molecular mechanisms and
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of these phenomena, and how they affect the performance and operation of cells, using advanced mathematical modelling in the open-source simulation platform OpenFOAM. The main supervisor of the candidate will be Prof
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). The main aim of this PhD project is to develop mathematical models relevant for processes at the anode of aluminium electrolysis cells, with emphasis on evolution of bubbles, including the so-called “anode
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. About the project CLIPEUS aims at creating a communications network among man-made implantable devices and the natural cells inside the body under the novel communication paradigm called Internet of Bio
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the development and application of the MINI-2P—enabling multiplane imaging of thousands of neurons in the cortex of freely moving mice (W. Zong et al., Cell, 2022 ). This transformative technology was
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outside academia. Your immediate leader will be the Head of Department. About the project CLIPEUS aims at creating a communications network among man-made implantable devices and the natural cells inside
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to a five-year Norwegian degree programme, where 120 credits are obtained at master's level. You must have a strong academic background in molecular or cell biology, from your previous studies, and an