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Carbon monOxide Mapping Array Project (COMAP) line intensity mapping (LIM) experiment, aiming to map the large-scale distribution of star-forming carbon monoxide around Cosmic Noon (targeting redshifts
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distribution of star-forming carbon monoxide around Cosmic Noon (targeting redshifts between z~2–3) and the Epoch of Reionization (z~6–8). Currently, the experiment is in the COMAP-Pathfinder phase, which
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targets for use in laser fusion experiments, to increase, and improve the target ignition and utilization. In addition to developing and fabricating the targets, a part of the project will be to build a
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Norwegian national Laser fusion project FUSENOW , supported by the Trond Mohn Research Foundation. About the project/work tasks: The project aims to design, develop and characterize nano-fabricated targets
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of next-generation strain-specific rapid diagnostics, and to help find potential drug/vaccine targets. Within this network, we are looking for a motivated PhD candidate to join our team at the University
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strain-specific rapid diagnostics, and to help find potential drug/vaccine targets. Within this network, we are looking for a motivated PhD candidate to join our team at the University of Oslo
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curiosity for elucidating the bottlenecks of state-of-the-art lithium-ion battery materials and designs. Ability for scientifically rigorous, target-oriented, organized, and independent work. Good
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Project (COMAP) line intensity mapping (LIM) experiment, aiming to map the large-scale distribution of star-forming carbon monoxide around Cosmic Noon (targeting redshifts between z~2–3) and the Epoch
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Enterobacter spp) Our goal is to make a difference in the development of next-generation strain-specific rapid diagnostics, and to help find potential drug/vaccine targets. Within this network, we are looking
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expected to apply for a planned 25% position at the project partner Vianode in Kristiansand. In this targeted setup the Ph.D. position at the University of Agder would be adjusted to a 4 year 75% position