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\name{summary.manova}\alias{summary.manova}\alias{print.summary.manova}\title{Summary Method for Multivariate Analysis of Variance}\description{A \code{summary} method for class \code{"manova"}.}\usage{\method{summary}{manova}(object,test = c("Pillai", "Wilks", "Hotelling-Lawley", "Roy"),intercept = FALSE, \dots)}\arguments{\item{object}{An object of class \code{"manova"} or an \code{aov}object with multiple responses.}\item{test}{The name of the test statistic to be used. Partialmatching is used so the name can be abbreviated.}\item{intercept}{logical. If \code{TRUE}, the intercept term isincluded in the table.}\item{\dots}{further arguments passed to or from other methods.}}\details{The \code{summary.manova} method uses a multivariate test statisticfor the summary table. Wilks' statistic is most popular in theliterature, but the default Pillai-Bartlett statistic is recommendedby Hand and Taylor (1987).}\value{A list with components\item{SS}{A named list of sums of squares and product matrices.}\item{Eigenvalues}{A matrix of eigenvalues, }\item{stats}{A matrix of the statistics, approximate F value anddegrees of freedom.}}\references{Krzanowski, W. J. (1988) \emph{Principles of Multivariate Analysis. AUser's Perspective.} Oxford.Hand, D. J. and Taylor, C. C. (1987)\emph{Multivariate Analysis of Variance and Repeated Measures.}Chapman and Hall.}\seealso{\code{\link{manova}}, \code{\link{aov}}}\examples{## Example on producing plastic film from Krzanowski (1998, p. 381)tear <- c(6.5, 6.2, 5.8, 6.5, 6.5, 6.9, 7.2, 6.9, 6.1, 6.3,6.7, 6.6, 7.2, 7.1, 6.8, 7.1, 7.0, 7.2, 7.5, 7.6)gloss <- c(9.5, 9.9, 9.6, 9.6, 9.2, 9.1, 10.0, 9.9, 9.5, 9.4,9.1, 9.3, 8.3, 8.4, 8.5, 9.2, 8.8, 9.7, 10.1, 9.2)opacity <- c(4.4, 6.4, 3.0, 4.1, 0.8, 5.7, 2.0, 3.9, 1.9, 5.7,2.8, 4.1, 3.8, 1.6, 3.4, 8.4, 5.2, 6.9, 2.7, 1.9)Y <- cbind(tear, gloss, opacity)rate <- factor(gl(2,10), labels=c("Low", "High"))additive <- factor(gl(2, 5, len=20), labels=c("Low", "High"))fit <- manova(Y ~ rate * additive)summary.aov(fit) # univariate ANOVA tablessummary(fit, test="Wilks") # ANOVA table of Wilks' lambda}\keyword{models}