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\name{boxplot}
\title{Box Plots}
\usage{
boxplot(\dots, range = 1.5, width = NULL, varwidth = FALSE,
        notch = FALSE, names, data = sys.frame(sys.parent()),
        plot = TRUE, border = par("fg"), col = NULL, log = "",
        pars = NULL)
}
\alias{boxplot}
\arguments{
  \item{\dots}{the data from which the boxplots are to be produced.  The
    data can be specified as separate vectors, each corresponding to a
    component boxplot, or as a single list containing such vectors.
    Alternatively a symbolic specification of the form \code{x ~ g} can
    be given, indicating the the observations in the vector \code{x} are
    to be grouped according to the levels of the factor \code{g}.  In
    this case the argument \code{data} can be used to provide values for
    the variables in the specification.
    \code{NA}s are allowed in the data.}
  \item{range}{this determines how far the plot whiskers extend out from
    the box.  If \code{range} is positive, the whiskers extend to the
    most extreme data point which is no more than \code{range} times the
    interquartile range from the box.
    A value of zero causes the whiskers to extend to the data extremes.}
  \item{width}{a vector giving the relative widths of the boxes making
    up the plot.}
  \item{varwidth}{if \code{varwidth} is \code{TRUE}, the boxes are drawn
    with widths proportional to the square-roots of the number of
    observations in the groups.}
  \item{notch}{if \code{notch} is \code{TRUE}, a notch is drawn in each
    side of the boxes.  If the notches of two plots do not overlap then
    the medians are significantly different at the 5 percent level.}
  \item{names}{group labels which while be printed under each boxplot.}
  \item{data}{???}
  \item{plot}{if \code{TRUE} (the default) then a boxplot is produced.
    If not, the summaries which the boxplots are based on are returned.}
  \item{border}{an optional vector of colors for the outlines of the
    boxplots.  The values in \code{border} are recycled if the length of
    \code{border} is less than the number of plots.}
  \item{col}{if \code{col} is non-null it is assumed to contain colors
    to be used to col the bodies of the box plots.}
  \item{log}{???}
  \item{pars}{???}
  \item{\dots}{graphical parameters can also be passed as arguments to
    \code{boxplot}.}
}
\value{
  This function is usually invoked for its side effect which is to
  produce box-and-whisker plots of the given values.  However, it also
  returns a list with one component corresponding to each plot.  The
  components are themselves lists with named components as follows:
  \item{stats}{a vector containing the extreme of the lower whisker, the
    lower hinge, the median, the upper hinge and the extreme of the
    upper whisker.}
  \item{n}{the number of observations in the sample.}
  \item{conf}{the lower and upper extremes of the notch.}
  \item{out}{the values of any data points which lie beyond the extremes
    of the whiskers.}
}
\seealso{
  \code{\link{boxplot.stats}} which does the computation,
  \code{\link{bxp}} for the plotting.
}
\examples{
data(insects)
boxplot(count ~ spray, data = insects, col = "lightgray")
}
\keyword{hplot}