256 evolution "https:" "https:" "https:" "https:" "https:" "https:" "UCL" "UCL" "UCL" "UCL" "UCL" Fellowship research jobs at University of Oslo in Norway
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-supervised by Prof. Marianne Fyhn: https://www.mn.uio.no/ibv/personer/vit/rafalc/ https://www.mn.uio.no/ibv/english/people/aca/mariafy/ Jarli og Jordan/UiO via Unsplash Jarli og Jordan/UiO What skills
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to team-working and personal skills. For more information and how to apply: https://www.jobbnorge.no/en/available-jobs/job/292642/postdoctoral-fellow-in-molecular-cell-biology Where to apply Website https
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. For more information and how to apply: https://www.jobbnorge.no/en/available-jobs/job/293272/phd-research-fellow-in-palaeoecology-and-sedimentary-ancient-dna Where to apply Website https://www.jobbnorge.no
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of Informatics. You will be part of Visual Intelligence and the DSB group. For more information and how to apply: https://www.jobbnorge.no/en/available-jobs/job/293458/phd-research-fellow-in-deep-learning
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modelling knowledge, incorporate reliability/uncertainty, and/or explainable models. For more information and how to apply: https://www.jobbnorge.no/en/available-jobs/job/293458/phd-research-fellow-in-deep
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: https://www.jobbnorge.no/en/available-jobs/job/292520/postdoctoral-fellow-in-molecular-cell-biology Where to apply Website https://www.jobbnorge.no/en/available-jobs/job/292520/postdoctoral-fellow-in-mo
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and exemptions from the requirements: https://www.mn.uio.no/english/research/phd/regulations/regulations.html#toc8 Grade requirements: The norm is as follows: The average grade point for courses
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understanding of mineral fluid interaction processes and their impact on subsurface architecture and petrophysical and rock physical evolution in mafic and ultramafic rocks during CO₂ injection and mineralization
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PhD Research Fellow in Theoretical and Computational Active Matter Physics for Glioblastoma Invasion
is to identify biomechanical “weak points” in cancer cell invasion and to inform the development of innovative, mechanics-based intervention strategies. By focusing on the biomechanics of cancer cell
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hypotheses related to metabolic rate increases, energy allocation shifts, temperature-dependent bioaccumulation, and varying toxicity across biological levels. For more information and how to apply: https