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. Our aim is to decipher the mechanism of intercellular information transfer on the nanoscale, via developing a novel method of imaging extracellular vesicles (EV). EVs are complex cell-derived nano
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consists of three pillars: material characterization (mineralogical and particle analyses), unit operations (such as comminution and separation processes), as well as system engineering approaches (modeling
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, our research in mineral processing consists of three pillars: material characterization (mineralogical and particle analyses), unit operations (such as comminution and separation processes), as
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, our research in mineral processing consists of three pillars: material characterization (mineralogical and particle analyses), unit operations (such as comminution and separation processes) as
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consists of three pillars: material characterization (mineralogical and particle analyses), unit operations (such as comminution and separation processes) as well as system engineering approaches (modeling
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approximation and finitie-element methods to simulate the optical response of assemblies of particles (field enhancement, scattering,...) - evaluate metrics of the devices (encoding capacity, Hamming distances
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for an ambitious PhD candidate to work in an ERC-funded project in the field of instrumental analytical chemistry. The main focus is on the development single particle techniques for the characterisation of nano
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Group , Elementary Particle Physics , Elementary Particle Theory , Engineering , Environment , Enzymology , evolution , Experimental Astroparticle Physics , Experimental Astrophysics , Experimental Atomic
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transfer processes in metal-semiconductor hybrid nanosystems by combining advanced electron microscopy and single particle optical and time-resolved spectroscopy. https://amolf.nl/research-groups/hybrid
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throughput metal nano particle material synthesis and characterization Comprehensive electrochemical test platforms & energy conversion systems Operando measurement using synchrotron X-ray & neutron Technical