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dynamics, and other phenotypic characteristics, in single cells. Imaging modes that employ fluorescence, transmitted light, quantitative phase, and/or surface plasmon resonance microscopy may be used
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simulation, complementary biophysical techniques such as surface plasmon resonance, and advanced data analysis techniques, neutron reflectivity has proven to have unique advantages for studying the structural
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of the system. This model can be extended to include electromagnetic effects such as plasmon-phonon coupling that may be important for electronic nanomaterials. We propose to apply the CGF technique
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: modeling fracture in soft materials 100%, Zurich, fixed-term 07.04.2025 | Institute for Building Materials PhD position – Developing innovative plasmonic materials 100