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The growth properties of the virus were characterised in cell culture and in an animal model.
The different sources of biomass were characterised in terms of productivity and radiocaesium content.
The peptides were characterised in solution using fluorescence and circular dichroism (CD) spectroscopies.
General properties of the particles and their dispersions were characterised in 1st part of the work.
In particular, the void space structures were characterised in terms of external accessibility using percolation theory.
Thermal properties were characterised in accordance with the International Standard for acrylic cements, ISO 5833:2002.
Coatings were characterised in terms of microstructure and mechanical properties (hardness and elastic modulus) by nanoindentation.
The corrosion products were characterised in a SEM with EDX and XRD.
The atoms themselves were characterised in terms of just a few basic properties, their shape, size and motion.
The H3PO4-doped membranes were characterised in terms of thermal and chemical stability, proton conductivity and fuel cell performances.
Both surfaces of films were characterised in terms of their morphology, micro- and nano-topography as well as wettability.
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