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remodelling introduce viscoelastic and plastic responses near crack sites that remain poorly understood. In this project, we will develop a novel mesoscale modelling approach to capture nonlinear fracture
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to unlock the mysteries connecting TGFs, FGFs, glows, and lightning discharges through modeling and analysis of data from the groundbreaking ALOFT flight campaign. Our group's recent publications revealed
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. Summary This programme of research builds on our previous studies where we identified genes we believe mediate pain and inflammation in the joints of patients with osteoarthritis. The aim of the current
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international research environment. GIANTS is a five-year theoretical and numerical modelling project focused on the late stage of terrestrial planet formation involving giant impacts around the Sun and other
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preliminary data, it combines mechanistic and translational immunology with bespoke in vivo models to define and exploit therapeutically relevant subsets. The Research Fellow will lead studies on cytotoxic T
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antennas in wireless communications. The role will focus on designing, modeling, and evaluating pinching‐antenna–enabled systems to enhance signal efficiency, channel capacity, and network performance
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for meetings with digital and pharmaceutical industry partners, supporting funding applications. To help us achieve our goals, we particularly welcome applications from people from backgrounds who are currently
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and progression, using a combination of mouse models, patient-derived samples, and high-throughput technologies, including next-generation sequencing, flow cytometry, and immunohistochemistry
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-funded research project studying the molecular control of kidney epithelial cell regeneration. The project requires complementary approaches including genetic mouse models, snRNA-seq, CUT&RUN/Tag, kidney
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to develop deep learning models for analyzing whole-slide histopathology images, as well as natural language processing (NLP) methods for clinical records such as pathology reports and electronic health data