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at the Copenhagen campus and one at the Aalborg campus. The themes cover key research areas of the department. Stipend no. 3: Data-driven methods for design and operation of human-centric energy-optimized indoor
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-enriched biomass, through the rational design and optimization of microalgae-bacteria consortia, metabolic pathway regulation, nutrient partitioning, and bioreactor performance. You will become part of
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green transition. Due to the complexity and heterogeneity of the biological mechanisms underlying fermentation, achieving optimal performance often requires fine-grained, time-dependent, control
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with numerical experiments Communicate results through publications and presentations You should have a background in one or more of the following areas: Systems and Control Optimization / Operations
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the time-dependent Schrödinger equation. The laser fields are optimized for a desired outcome using various optimization techniques. Our previous work on this topic (see e.g., E.F. Thomas and N.E. Henriksen
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Engineering. Food approved microorganisms will be optimized using classical mutagenesis/screening and adaptive evolution. Genetic engineering will be used for guidance and to elucidate the effect of introduced
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full ownership of their own research project. Responsibilities Design and execute LC-MS/MS-based proteomics experiments (primarily in negative ion mode) Independently operate and optimize chromatographic
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performance PhD enrolment: Technical University of Denmark DC7: High-resolution waste-derived novel biotechnology feedstock-host background data generation to enable sustainability assessments PhD enrolment
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Do you want to work with glass materials for reliable and circular power electronics? And do you see yourself as a team player who is strong in collaboration? If yes, we look forward to reading your
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with improved functions. However, bioprocess scalability is limited by a poor understanding of enzyme function and by the so-called ‘valley of death’ or funding gaps between basic and applied research