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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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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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-risking CO2 storage in volcano-sedimentary systems offshore Norway. The PhD research project targets ML-assisted quantitative interpretation and geomechanical modeling by integrating seismic, well log, lab
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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 targets the CO1-0 line, and soon a
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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 for the project: DC14 - ESKAPE pathogen
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, targeting dual-use applications for both military and civilian purposes. The fellow will mainly work on robot development and autonomous navigation but based on the interests of the PhD fellow there are also
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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 for the project: DC4 - The role of invasin-integrin
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-sedimentary systems offshore Norway. The PhD research project targets ML-assisted quantitative interpretation and geomechanical modeling by integrating seismic, well log, lab and literature data to de-risk