SKRATK SKRATK SKRATK SKRATK SKRATK SKRATK SKRATK
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******
SUBROUTINE SKRATK (P, T, ACT, SDEN, RKFT, RKRT, ISKWRK, RSKWRK,
SDOT, SITDOT)
Returns production rates for the species and sites, using the
pre-calculated temperature-dependent rate coefficients RKFT, RKRT.
INPUT
P - Real scalar, pressure.
cgs units, dynes/cm**2
T(*) - Real array, temperature(s); dimension is determined by
the application program to be the total number of
species temperatures, nominally 1.
cgs units, K
ACT(*) - Real array, activities of the species;
dimension at least KKTOT, the total species count.
The first KKGAS activities are mole fractions,
the next KKSURF activities are site fractions
(species density normalized by the site density;
surface concentration in moles/cm**2 is
ACT(K)*SITE_DENSITY / # sites per species), and
the next KKBULK activities for bulk phase species
should be from 0 to 1, and should sum to 1 for each
phase.
SDEN(*) - Real array, site densities for the site types;
dimension at least NPHASE, the total phase count,
but the subroutine only uses site phase entries,
NFSURF <= N <= NLSURF.
cgs units, moles/cm**2.
RKFT(*) - Real array, forward reaction rates for reactions;
dimension at least IISUR, the total reaction count.
cgs units, depends on the reaction
RKRT(*) - Real array, reverse reaction rates for reactions;
dimension at least IISUR, the total reaction count.
cgs units, depends on the reaction
ISKWRK(*) - Integer workspace array; dimension at least LENISK.
RSKWRK(*) - Real workspace array; dimension at least LENRSK.
OUTPUT
SDOT(*) - Real array, production rates of the species;
dimension at least KKTOT, the total species count.
cgs units, moles/(cm**2*sec)
for 1,KKGAS, the production rate of gas-phase species,
for KKGAS+1,KKGAS+KKSUR, the production rate of surface
species,
for KKGAS+KKSUR+1,KKTOT, the production rate of bulk
species.
SITDOT(*) - Real array, production rates of the surface phases;
dimension at least NPHASE, the total phase count, but
subroutine only calculates entries for site phases.
cgs units, moles/(cm**2*sec)