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atmospheric aerosol particles, their interactions with clouds and turbulence, and cloud microphysics. The focus is on both process-based studies and long-term observations, with which we contribute
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assays to assess for intercellular interaction and migration, CRISPR-based perturbation-of-adhesion and synthetic lethality screening, drug synergy assays, and others. The PhD student will work closely
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X-ray videocystometry in awake mice. The candidate will design and conduct experiments exploring the signalling interactions between urothelial cells and sensory nerves innervating the bladder, and
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interaction and human motion analysis Prior knowledge of machine learning/deep learning applied to motion analysis (e.g., relevant courses and research experience) would be an advantage IELTS score of 6.5
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-phonon interactions, which together form tri-partite coupling that gives rise to effective optomechanical interaction between collective excitonic states (optical) and vibrational modes (mechanical
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required new IEC standards relevant to the performance and lifetime of printed solar technology through developing a detailed understanding of printed solar degradation mechanisms and interactions with
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interdisciplinary team bridging molecu-lar microbiology, ecology and infection research with the focus to understand mechanisms of host-microbe and microbe-microbe interaction in the gut. Our lab has a broad
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multimodal learning data (e.g., individual as well as collaborative verbal interactions, student gestures, task and activity sequences) and evaluating long-term learning outcomes. The work package is part of a
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that combines structural biology, biochemistry, and cell biology. The lab is particularly focused on biomolecular interactions, characterizing regulatory complexes, and developing novel therapeutic
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experiments exploring the signalling interactions between urothelial cells and sensory nerves innervating the bladder, and their impact on bladder function under physiological and pathological conditions. Work