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bacterioplankton in carbon cycling. Focus will be on deciphering the genetic basis for utilization of monomers and polymers of important dissolved organic matter compound classes (e.g. carbohydrates and proteins
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Engineering of Catalysts for Hydrofunctionalization Reactions: From Selectivity Control to a Predictive Model” project financed from the funds of Priority 2 of the European Funds for a Modern Economy Program
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strengths in advanced manufacturing, materials and polymers, energy and sustainability, robotics and automation, and AI-enabled engineering design. Our faculty are particularly encouraged to pursue
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/ Goals to be achieved: Considering the objectives of the project, the work plan will focus on the development of a new concept for a polymer injection production system with automated thermal control
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, the work plan will focus on the development of a new concept for a polymer injection production system with automated thermal control. The system proposes a pioneering technological solution that combines
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at any research group connected to the Nano Area of Advance at Chalmers. You find the full list of PIs of these research groups on the Chalmers homepage: https://www.chalmers.se/en/collaborate-with-us
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(Ref. 2023.17653.ICDT) 3 – Financing source 100% state budget 4 – Scientific area Geosciences, Civil, Mechanical, Chemical, Physical, Materials, Polymers or Environmental Engineering 5 – Duration
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biophysics, ideally on (bio)polymer systems. A well-developed ability and motivation for interdisciplinary work combining theoretical modeling with experimental results. Teaching skills. Additional assessment
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environment thanks to its state-of-the-art infrastructure. With an innovative approach, UM6P places research and innovation at the heart of its educational project as a driving force of a business model. In its
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causing mechanisms and explore therapeutic approaches for collagen IV diseases including haemorrhagic stroke. We have brought together a unique cohort of cell lines from patients and animal models with