Images of the experiments are stored and then, image analysis
(see Section 4) allows to obtain the geometrical properties of the
objects contained in those images. Through object’s geometrical
magnitudes, it is possible to study evolution and change of relevant
physical variables. For example, the distribution of cluster sizes,
ns(t), consists on the number of clusters of size s present in the
system at the time t. For characterizing the kinetics of an aggregation
process, we use magnitudes such as the mass average cluster
size S(t) defined as
Images of the experiments are stored and then, image analysis(see Section 4) allows to obtain the geometrical properties of theobjects contained in those images. Through object’s geometricalmagnitudes, it is possible to study evolution and change of relevantphysical variables. For example, the distribution of cluster sizes,ns(t), consists on the number of clusters of size s present in thesystem at the time t. For characterizing the kinetics of an aggregationprocess, we use magnitudes such as the mass average clustersize S(t) defined as
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