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1 files changed, 8 insertions, 1 deletions
diff --git a/R/parent_solutions.R b/R/parent_solutions.R
index f3d3e963..c33d6d13 100644
--- a/R/parent_solutions.R
+++ b/R/parent_solutions.R
@@ -45,12 +45,19 @@ SFO.solution <- function(t, parent_0, k)
#' @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}.
-#' @references FOCUS (2006) \dQuote{Guidance Document on Estimating Persistence
+#' @references
+#' FOCUS (2006) \dQuote{Guidance Document on Estimating Persistence
#' and Degradation Kinetics from Environmental Fate Studies on Pesticides in
#' EU Registration} Report of the FOCUS Work Group on Degradation Kinetics,
#' EC Document Reference Sanco/10058/2005 version 2.0, 434 pp,
#' \url{http://esdac.jrc.ec.europa.eu/projects/degradation-kinetics}
#'
+#' FOCUS (2014) \dQuote{Generic guidance for Estimating Persistence
+#' and Degradation Kinetics from Environmental Fate Studies on Pesticides in
+#' EU Registration} Report of the FOCUS Work Group on Degradation Kinetics,
+#' Version 1.1, 18 December 2014
+#' \url{http://esdac.jrc.ec.europa.eu/projects/degradation-kinetics}
+#'
#' Gustafson DI and Holden LR (1990) Nonlinear pesticide dissipation in soil:
#' A new model based on spatial variability. \emph{Environmental Science and
#' Technology} \bold{24}, 1032-1038

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