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. About the project/work tasks: The position is affiliated with the research group for Energy and Process Safety (EPT) and is funded by the Faculty of Science and Technology as part of the in-kind from
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graduates to people with relevant experience from industry. About the project/work tasks: The position is affiliated with the research group for Energy and Process Safety (EPT) and is funded by the Faculty
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of the art in mathematical and numerical modelling of CO2 storage? This might be the right position for you! About the project/work tasks: About the project TIME4CO2 TIME4CO2 aims at advancing simulation
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of the following areas is an advantage: Modelling and simulations of flow in porous media. Programming, image processing and machine learning Personal and relational qualities will be emphasized. Motivation
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be proficient in both written and oral English. Experience from one or both of the following areas is an advantage: Modelling and simulations of flow in porous media. Programming, image processing and
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an interdisciplinary and international team of experts in antibiotic drug discovery, molecular simulations, structure-based drug design, covalent enzyme inhibition, organic synthesis, and medicinal chemistry. We will
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numerical simulations. The PhD candidate will collaborate with industry partners and take active part in a larger professional environment in applied research. Qualifications and personal qualities
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experiments on pore scale and core scale using MRI, but also to provide input for modelling and numerical simulations. The PhD candidate will collaborate with industry partners and take active part in a larger
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group there has been a long-standing involvement within studies of ultra-peripheral collisions, where the group has developed one of the leading simulation tools (called 'STARLIGHT') and has been involved
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simulation tools (called 'STARLIGHT') and has been involved in several studies of two-photon and photonuclear interactions using ALICE data. Many of the physics analyses include studies of charmonium (a bound