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of two complementary directions: protein structure-based enzyme specificity and biocatalysis, including computationally demanding tasks such as pose search in high-dimensional binding landscapes
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a Training and Supervision Plan, to structure the 4-year PhD trajectory. Perform the PhD research along four objectives: Analyse reward schemes for biodiversity – considering multiple actors (farms
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utility to more complex-shaped multi-layered structures is limited. In this project you will design and construct advanced DH systems to visualize complex optical samples comprising of multiple layers
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understanding of how light can be used to control polymer formation and structure. A key focus of the project will be chemical recycling. You will develop photocatalytic approaches to selectively break down
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that continuously probe complex nucleic acids: that’s your challenge! Information Nanoswitch sensors are nanometer-scale constructs that change their configuration upon molecular binding and enable the continuous
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. Information Biodiversity restoration in agriculture and horticulture is urgently needed, but difficult to realize in practice. Farmers operate in complex systems: they are embedded in value chains, regional
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engineering involve physical systems that evolve over time while exhibiting rich mathematical structure. Fluid flows, reactive materials, biological systems, plasmas, and complex engineered processes
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to develop a physics-based rational approach to optimal parameter reconstruction from diffraction data from designer multiple scattering structures, designed for, e.g., measuring lithography performance in
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grammatical resources into a digital network. The network will consist of lexical constructions (simple and complex words) and grammatical constructions (word-formation patterns), linked to one another by
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high-value polymers from complex waste streams such as multilayer packaging and mixed plastic waste, leading to large volumes being incinerated or landfilled. Solvent based recycling offers a promising