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Field
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the further development and application of IQCELL 2.0, our lab’s next-generation GRN-cell simulation platform, to model spatial gene expression, cell-cell communication, and T-cell developmental
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or use existing simulation platforms to validate the developed algorithms and models. Analyse simulation data, and create visualizations to support research findings. Design and build prototypes
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simulation models to design and/or analyze observed lab experimental results. • Explore the exploitation of geothermal resources and investigate the potential for hydrogen generation. • Coordinate the work
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development and application of IQCELL 2.0, our lab’s next-generation GRN-cell simulation platform, to model spatial gene expression, cell-cell communication, and T-cell developmental repertoires within
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their toxicity using sorbent materials. Key responsibilities include: Performing experiments in cell cultures, molecular biology, and animal models. Maintaining routine cultures of living organisms in the lab
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of atmospheric and climate variability. The successful applicant will test this hypothesis by performing new simulations with the UKESM1 model that incorporate improved representation of stratospheric smoke
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models, frameworks, and methods to confront complexity underlying persistent societal challenges affecting the well-being of people and the planet. This position represents a unique opportunity to
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related orthopaedic trauma. In particular, contemporary cell / molecular biology in vitro approaches as well as clinically relevant small and large animal models of orthopaedic trauma are utilized
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multiscale and multiphysics modeling for thermomechanical effects on high performance heat spreaders based on materials such as diamond thin films. Collaborate with experimental groups on characterization
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well as of the cyclone family itself. The candidate will investigate the mechanisms by which moisture is drawn into and processed within cyclone families using reanalyses, idealised and realistic model simulations