A model for isothermal homogeneous nucleation is proposed that improves the
classical model. A quasiequilibrium distribution of clusters was calculate
d on a basis of the Frenkel'-Lothe-Pound theory. The dependence of the free
energy of clusters on their size was represented by an interpolation formu
la relating the free energy of dimers and large clusters to which a notion
of macroscopic surface tension is applicable. The nucleation rate and the d
ependence of the cluster temperature on their size were calculated by balan
ce equations describing the heating of from a cluster due to the condensati
on of monomers and its cooling due to collisions with an ambient gas. It is
shown that the nucleation rate in excess buffer gas is higher than for the
pure condensing gas by approximately two orders of magnitude. The model ad
equately describes the experimental data for the nucleation of methanol sup
ersaturated vapor.