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An experimental procedure for the characterisation of composite materials is documented by Riedel et al.
The first is related to methods for the characterisation of the dynamic moduli of porous materials.
Therefore, creep and creep-recovery tests were applied for the characterisation of the filled materials.
EIS is a very useful method for the characterisation of fuel cells.
Extensive experimental and numerical investigations were carried out for the characterisation of this still young group of semi-finished products.
They require a large number of data and the definition of a spatial distance for the characterisation of spatial correlations.
Techniques for the characterisation of reaction environment are summarised and a list of essential design and construction factors is provided.
Such a design is especially suited for the characterisation of liquids in situations where unilateral or portable access is required.
A discussion on the use of the geological strength index (GSI) for the characterisation of such rock masses is presented.
In conclusion, a microstructure based stretch-formability analysis for the characterisation of multiphase sheet steels is aimed.
After milling, powder size analyses and microscopic studies were carried out for the characterisation of as-received and milled powders.
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