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-gradient centrifugation, NTA, immunoblotting, or nanoflow cytometry). Practical expertise in advanced imaging or single-particle analysis (e.g., cryo-EM/TEM, TIRF microscopy, single-vesicle tracking
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-4DµXRD experiments to follow the microstructural evolution during tensile loading of aluminum samples containing second-phase intermetallic particles. Performing synchrotron experiments to validate Lab
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instruments, with data obtained with DNA methods and data obtained with a Hirst trap. • Numerical models used by the group covers the particle dispersion model HYSPLIT in combination and the numerical models
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We are looking to explore the evolution of the carbon cycle over geologic time using Raman Spectroscopy as the primary tool. Work will entail detailed Raman analysis of carbon particles in ancient
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the Niels Bohr Institute. It functions as a primary center for fundamental research including theoretical and computational astrophysics, particle astrophysics, gravitational physics, high energy particle
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circuit models and algorithms for estimating the charge, health, and power based on direct methods (e.g. open circuit voltage), model-based methods (e.g. Kalman filtering), data driven methods (e.g. machine
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models for all core unit operations in biomass pyrolysis plants (e.g. dryer, reactor, filters, scrubbers, electrostatic precipitators, tanks, gas dehumidification, engines) based on mass and energy
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computed tomography for proton therapy, as per October 1, 2026, or as soon as possible thereafter (after agreement). The working place for the postdoc will be the Danish Centre for Particle Therapy (DCPT
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particles with pos-sible biochar-degrading/modifying microorganisms and the functional and genetic activity of the microorgan-isms. The selected candidate will take on several duties, including collecting
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the contributions microbial and abiotic factors to darkening dynamics — in space and time and 2) disentangle the spectral properties of the various constituents (e.g., mineral particles, algae, cryoconite) and their