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% File src/library/stats/man/xtabs.Rd% Part of the R package, http://www.R-project.org% Copyright 1995-2007 R Core Development Team% Distributed under GPL 2 or later\name{xtabs}\alias{xtabs}\alias{print.xtabs}\title{Cross Tabulation}\description{Create a contingency table from cross-classifying factors, usuallycontained in a data frame, using a formula interface.}\usage{xtabs(formula = ~., data = parent.frame(), subset, na.action,exclude = c(NA, NaN), drop.unused.levels = FALSE)}\arguments{\item{formula}{a \link{formula} object with the cross-classifying variables(separated by \code{+}) on the right hand side (or an object whichcan be coerced to a formula). Interactions are not allowed. On theleft hand side, one may optionally give a vector or a matrix ofcounts; in the latter case, the columns are interpreted ascorresponding to the levels of a variable. This is useful if thedata have already been tabulated, see the examples below.}\item{data}{an optional matrix or data frame (or similar: see\code{\link{model.frame}}) containing the variables in theformula \code{formula}. By default the variables are taken from\code{environment(formula)}.}\item{subset}{an optional vector specifying a subset of observationsto be used.}\item{na.action}{a function which indicates what should happen whenthe data contain \code{NA}s.}\item{exclude}{a vector of values to be excluded when forming theset of levels of the classifying factors.}\item{drop.unused.levels}{a logical indicating whether to drop unusedlevels in the classifying factors. If this is \code{FALSE} andthere are unused levels, the table will contain zero marginals, anda subsequent chi-squared test for independence of the factors willnot work.}}\details{There is a \code{summary} method for contingency table objects createdby \code{table} or \code{xtabs}, which gives basic information andperforms a chi-squared test for independence of factors (note that thefunction \code{\link{chisq.test}} currently only handles 2-d tables).If a left hand side is given in \code{formula}, its entries are simplysummed over the cells corresponding to the right hand side; this alsoworks if the lhs does not give counts.}\value{A contingency table in array representation of class \code{c("xtabs","table")}, with a \code{"call"} attribute storing the matched call.}\seealso{\code{\link{table}} for traditional cross-tabulation, and\code{\link{as.data.frame.table}} which is the inverse operation of\code{xtabs} (see the \code{DF} example below).}\examples{## 'esoph' has the frequencies of cases and controls for all levels of## the variables 'agegp', 'alcgp', and 'tobgp'.xtabs(cbind(ncases, ncontrols) ~ ., data = esoph)## Output is not really helpful ... flat tables are better:ftable(xtabs(cbind(ncases, ncontrols) ~ ., data = esoph))## In particular if we have fewer factors ...ftable(xtabs(cbind(ncases, ncontrols) ~ agegp, data = esoph))## This is already a contingency table in array form.DF <- as.data.frame(UCBAdmissions)## Now 'DF' is a data frame with a grid of the factors and the counts## in variable 'Freq'.DF## Nice for taking margins ...xtabs(Freq ~ Gender + Admit, DF)## And for testing independence ...summary(xtabs(Freq ~ ., DF))## Create a nice display for the warp break data.warpbreaks$replicate <- rep(1:9, len = 54)ftable(xtabs(breaks ~ wool + tension + replicate, data = warpbreaks))}\keyword{category}