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Field
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and functionalize biopolymers from agricultural and marine biomass and develop carrier formulations using crosslinking techniques such as ionotropic gelation and freeze-drying, including composite
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recalibrating pavement distress definitions, severity thresholds, distress weight factors, and composite pavement condition indices; assessing pavement deterioration models and network-level condition projection
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A three-year postdoc position is available in modelling of solid-state NMR experiments from 1 October 2026 (or soon thereafter) in the Danish Center for Ultrahigh-Field NMR Spectroscopy
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-BiFC knockin mouse models to 1) determine how PDGF ligand identity and concentration affect receptor dimerization and internalization using flow cytometry and CITE-seq in combination with spatial
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of different P-based materials via the sol-gel and solvothermal methods with control over morphology, particle size, and composition. Material characterization using XRD, SEM, EDS, ICP, BET, TGA, FTIR, RAMAN
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with control over morphology, particle size, and composition. Material characterization using XRD, SEM, EDS, ICP, BET, TGA, FTIR, RAMAN spectroscopy, etc. Electrode preparation, battery assembly, and
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the molecular composition of a single cell in space and time. These models will describe high-dimensional systems with many interacting components and may use multiscale and coarse-grained representations
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textiles. The projects are carried out in close collaboration with industrial and societal partners and aim to develop, test, and implement innovative circular concepts and business models that reduce
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. The postdoctoral researcher will have the opportunity to: Build a mechanistic model coupling wall chemistry, wall stiffness, and turgor pressure to receptor activation, using existing transcriptomic, compositional
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cutting-edge research on structural vibrations, contact mechanics, wave propagation, and robot mechanics, from advanced modelling and simulation to large-scale experiments. In close collaboration with