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Field
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necessary to consider the continuous evolution of technologies, the regular introduction of new materials, increasingly complex geometries, and the many challenges these pose, particularly for numerical
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–2030). It collects more than 200 scholars from a wide range of higher education institutions in Norway, in collaboration with numerous public-sector actors and industry partners. The main objective
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and chemistry laboratory environments. Experience in experimental methods and data analysis, for example diffraction (XRD), microscopy (SEM, AFM), cryogenic measurements, or numerical/data-driven
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chemical production. In this position, the candidate will contribute to advancing the fundamental science of catalysis by applying cutting-edge methods to industrially relevant reactions. The candidate will
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of the dynamic soft elastic interface and the fluid flow, as well as theoretical and numerical developments. The project provides oportunities to collaborate with both national and international collaborators, as
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soft elastic interface and the fluid flow, as well as theoretical and numerical developments. The project provides opportunities to collaborate with both national and international collaborators, as
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into C1-C2 intermediates like methanol and their subsequent coupling into larger hydrocarbon molecules. The candidate will: Conduct catalytic experiments using advanced transient methods based on mass
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the Research Council of Norway (2025-2030). It comprises more than 200 faculty members from many higher education institutions in Norway, in collaboration with numerous public and private sector partners
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collaboration with numerous public and private sector partners. The primary objective of MishMash is to create, explore, and reflect on AI for, through, and in creative practices. MishMash researchers will