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We offer a 4-year PhD position investigating how tertiary lymphoid structures (TLS) shape local immune responses in different disease contexts and how they can be targeted therapeutically. Tertiary
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Engineering. DCSC is an internationally leading research centre where PhD candidates, postdocs and faculty members work on modeling, analysis, control and optimization of complex dynamical systems relevant
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hydrogen environments. By combining advanced experiments with multiscale modelling, CIRHY aims to enable reliable and sustainable steels for future hydrogen infrastructure and industry. Hydrogen
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(WEFE) nexus, and model-based learning and communication. The group makes use of a variety of tools and techniques: stakeholder mapping, governance analysis, participatory modeling, non-linear feedback
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different feedstock compositions and processing conditions influence performance, and to evaluate the ability of the models to serve as robust tools for dynamic recipe design in real production environments
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of software infrastructure to optimize data workflows Developing analytical methods to integrate different types of sequencing-based DNA data. Developing computational models for prognosis and treatment
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accurately model the relationship between stress responses captured at the physiological, psychological and behavioural levels. The first part of the PhD will focus on addressing measurement issues in
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with this population. The project will be modelled on the Mapping ADHD services in Primary care (MAP) study, which was a nationally representative survey of adult ADHD services, treatment and prescribing
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systems under different attack conditions. RO4: Validate the proposed modelling and execution framework through implementation and experimentation in the Norwegian Cyber Range, assessing its applicability
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explore, and how different ways of structuring learning environments influence curiosity and learning. Computational models will be used to characterise individual differences in information-seeking