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and control. Such compact combs have wide-ranging applications in optical communications, precision spectroscopy, and LIDAR. Project background This project investigates the fundamental physics
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well as external academic and industry partners. Your profile You are a highly motivated and talented candidate with a Master’s degree in Engineering, Control, Computer Science, Physics, Applied Mathematics, or a
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with a Master’s degree in Engineering, Control, Computer Science, Physics, Applied Mathematics, or a related field. You bring a strong analytical background and are proficient in areas like geometric
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properties of bacterial communities (called “biofilms"), particularly in the context of human infections. Our projects are based on highly controlled laboratory experiments or clinical samples. Biofilms
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properties of bacterial communities (called “biofilms"), particularly in the context of human infections. Our projects are based on highly controlled laboratory experiments or clinical samples. Biofilms
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excellent command of English, both spoken and written desirable skills and qualifications: Experience in sterile cell culturing technique Familiarity with protein expression and purification Interest in
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of twisted two-dimensional (2D) materials. Stacking and twisting atomically thin materials offers unprecedented control over their nanoscale magnetic, electronic, and optical properties. In this project, we
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-Wong), we leverage bioprinting to engineer tissues that address critical clinical challenges. Our lab has pioneered innovative light-based 3D printing techniques, enabling precise control over
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analyses. A core part of your project will be interpreting the data and developing scientific hypotheses about the atmospheric processes that control the cycling of selenium and other trace elements. You
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for carefully designed and precisely controlled experiments, high quality temporally and spatially resolved field experiments using particle image velocimetry combined with synchronised measurements