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authorJohannes Ranke <jranke@uni-bremen.de>2022-11-08 07:26:57 +0100
committerJohannes Ranke <jranke@uni-bremen.de>2022-11-08 07:33:39 +0100
commitf9343a9f401dce52188fceec456865ba4f2eb95f (patch)
tree9a7b1a020560358c45e8c1b86412414e19a47018 /man
parentb9b3c72cf076ce0393aa53a4d723a195b856c99c (diff)
Simplify SFORB analytical solution, whitespace
I do not know why the formulae for b1 and b2 on page 64 of FOCUS kinetics (2014) were not simplified. Clearly, the term k12 * k21 - (k12 + k1output) * k21) can be simplified to - k1output * k21 The test for equivalence of DFOP and SFORB fits verifies that the change is OK. I also removed trailing whitespaces, substituted tab characters by two whitespaces and removed indenting of text in paragraphs describing parameters in roxygen comments to unify formatting.
Diffstat (limited to 'man')
-rw-r--r--man/FOMC.solution.Rd4
-rw-r--r--man/IORE.solution.Rd4
2 files changed, 4 insertions, 4 deletions
diff --git a/man/FOMC.solution.Rd b/man/FOMC.solution.Rd
index eeee85f9..d645113c 100644
--- a/man/FOMC.solution.Rd
+++ b/man/FOMC.solution.Rd
@@ -30,8 +30,8 @@ in the original equation.
}
\note{
The solution of the FOMC kinetic model reduces to the
-\code{\link{SFO.solution}} for large values of \code{alpha} and
-\code{beta} with \eqn{k = \frac{\beta}{\alpha}}{k = beta/alpha}.
+\code{\link{SFO.solution}} for large values of \code{alpha} and \code{beta}
+with \eqn{k = \frac{\beta}{\alpha}}{k = beta/alpha}.
}
\examples{
diff --git a/man/IORE.solution.Rd b/man/IORE.solution.Rd
index 1150f023..5d0126a7 100644
--- a/man/IORE.solution.Rd
+++ b/man/IORE.solution.Rd
@@ -37,9 +37,9 @@ guidance for details.
fit.iore <- mkinfit("IORE", FOCUS_2006_C, quiet = TRUE)
fit.iore.deS <- mkinfit("IORE", FOCUS_2006_C, solution_type = "deSolve", quiet = TRUE)
- print(data.frame(fit.fomc$par, fit.iore$par, fit.iore.deS$par,
+ print(data.frame(fit.fomc$par, fit.iore$par, fit.iore.deS$par,
row.names = paste("model par", 1:4)))
- print(rbind(fomc = endpoints(fit.fomc)$distimes, iore = endpoints(fit.iore)$distimes,
+ print(rbind(fomc = endpoints(fit.fomc)$distimes, iore = endpoints(fit.iore)$distimes,
iore.deS = endpoints(fit.iore)$distimes))
}

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