We have performed direct numerical calculations of the kinetics of relaxation in the system of surfac-
tant spherical micelles under joint action of the molecular mechanism with capture and emission of
individual surfactant molecules by molecular aggregates and the mechanism of fusion and fission of
the aggregates. As a basis, we have taken the difference equations of aggregation and fragmentation
in the form of the generalized kinetic Smoluchowski equations for aggregate concentrations. The
calculations have been made with using the droplet model of molecular surfactant aggregates and two
modified Smoluchowski models for the coefficients of aggregate-monomer and aggregate-aggregate
fusions which take into account the effects of the aggregate size and presence of hydrophobic spots
on the aggregate surface. A full set of relaxation times and corresponding relaxation modes for
nonequilibrium aggregate distribution in the aggregation number has been found. The dependencies
of these relaxation times and modes on