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\name{Comparison}\alias{<}\alias{<=}\alias{==}\alias{!=}\alias{>=}\alias{>}\alias{Comparison}\title{Relational Operators}\description{Binary operators which allow the comparison of values in atomic vectors.}\usage{x < yx > yx <= yx >= yx == yx != y}\arguments{\item{x, y}{atomic vectors, or other objects for which methods havebeen written.}}\details{The binary comparison operators are generic functions: methods can bewritten for them individually or via the \code{\link{Ops}}) group genericfunction.Comparison of strings in character vectors is lexicographic within thestrings using the collating sequence of the locale in use: see\code{\link{locales}}. The collating sequence of locales such as\samp{en\_US} is normally different from \samp{C} (which should useASCII) and can be surprising.At least one of \code{x} and \code{y} must be an atomic vector, but ifthe other is a list \R attempts to coerce it to the type of the atomicvector: this will succeed if the list is made up of elements of lengthone that canbe coerced to the correct type.If the two arguments are atomic vectors of different types, they areboth coerced to the first of character, complex, numeric, integer andlogical.}\value{A vector of logicals indicating the result of the element by elementcomparison. The elements of shorter vectors are recycled asnecessary.Objects such as arrays or time-series can be compared this wayprovided they are conformable.}\note{Don't use \code{==} and \code{!=} for tests, such as in \code{if}expressions, where you must get a single \code{TRUE} or\code{FALSE}. Unless you are absolutely sure that nothing unusualcan happen, you should use the \code{\link{identical}} functioninstead.For numerical values, remember \code{==} and \code{!=} do not allowfor the finite representation of fractions, nor for rounding error.Using \code{\link{all.equal}} with \code{identical} is almostalways preferable. See the examples.}\references{Becker, R. A., Chambers, J. M. and Wilks, A. R. (1988)\emph{The New S Language}.Wadsworth \& Brooks/Cole.}\seealso{\code{\link{Syntax}} for operator precedence.}\examples{x <- rnorm(20)x < 1x[x > 0]x1 <- 0.5 - 0.3x2 <- 0.3 - 0.1x1 == x2 # FALSE on most machinesidentical(all.equal(x1, x2), TRUE) # TRUE everywhere}\keyword{logic}