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this project, we will develop neural diffusion techniques to design materials with targeted optical properties, scaling to large systems through efficient representations and GPU parallelization. We will also
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reaction pathways, particularly scaling relationships and their implications for catalyst design. Spectroscopy and Instrumentation: Hands-on experience in the design, construction, and operation of in-situ
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technology. DTU Space is involved in the full life cycle of space activities, including concept and design, construction and prototyping, calibration and validation, implementation and operations, data
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emphasis on material design, reactor integration, and mechanisms investigation. Responsibilities: Design, synthesize, and immobilize advanced catalytic materials for plastic depolymerization and
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solutions. We design and develop new functional materials, contribute to advances in geosciences and life sciences, and we develop and exploit quantum physics and quantum technologies. Technology for people
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focused on integrating synthetic biology, AI, and multi-omics technologies to decode and design gene expression regulation for human cell engineering. About the role We are looking for an ambitious and
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staff. Design 3D structures in collaboration with research partners. Learn 3DIL instrument adaptation and improvement. Independently, you will use the 3DIL instrument to print biomedical active devices
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Validation of turbine response models against measurements Inflow and wake modelling Wind turbine controller design Aero- and hydro-dynamic modelling Structural dynamics, beam models and cross-sectional
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for leading the following efforts: Design, build, and characterize engineered yeast strains and synthetic biology systems (e.g., DNA design, cloning, PCR, plasmid building, genetic engineering, mutagenesis
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/or high-temperature heat pumps based on power cycles. Design thermal and/or thermochemical energy storage systems. Implementing and validating advanced thermodynamic models for performance prediction