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the orientation of various types of nanoparticles within both thermoset and thermoplastic polymer matrices. This position entails close collaboration with industrial partners to implement the alignment technique
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include surfactants, polymers and biomolecules. The current project focusses on Soft Matter, in particular on the study of the flow properties of compressible colloids, microgels, combining scattering
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Cementitious Matrices (FRCM), or similar techniques. A strong publication record in peer-reviewed journals and conferences in the field of structural strengthening, rehabilitation, or related areas. Demonstrated
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such as BLAS and LAPACK. The mapping is by no means unique, and different mappings differ in terms of time, space, and accuracy. When the sizes of the matrices are unknown at compile-time, as is often
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. This will include several non-colinear optical parametric amplifiers for pulse generation spanning the blue to near infrared spectral regions, with pulse compression optics, and a transient absorption-type
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thermal conductivity b) Development of hBN thermal interface material that combines a high degree of compressibility and recovery c) Modeling, simulation and characterization of phonon transfer across