% File src/library/stats/man/power.prop.test.Rd % Part of the R package, http://www.R-project.org % Copyright 1995-2007 R Core Team % Distributed under GPL 2 or later \name{power.prop.test} \alias{power.prop.test} \encoding{UTF-8} \title{Power Calculations for Two-Sample Test for Proportions} \description{ Compute power of test, or determine parameters to obtain target power. } \usage{ power.prop.test(n = NULL, p1 = NULL, p2 = NULL, sig.level = 0.05, power = NULL, alternative = c("two.sided", "one.sided"), strict = FALSE) } \arguments{ \item{n}{Number of observations (per group)} \item{p1}{probability in one group} \item{p2}{probability in other group} \item{sig.level}{Significance level (Type I error probability)} \item{power}{Power of test (1 minus Type II error probability)} \item{alternative}{One- or two-sided test} \item{strict}{Use strict interpretation in two-sided case} } \details{ Exactly one of the parameters \code{n}, \code{p1}, \code{p2}, \code{power}, and \code{sig.level} must be passed as NULL, and that parameter is determined from the others. Notice that \code{sig.level} has a non-NULL default so NULL must be explicitly passed if you want it computed. If \code{strict = TRUE} is used, the power will include the probability of rejection in the opposite direction of the true effect, in the two-sided case. Without this the power will be half the significance level if the true difference is zero. } \value{ Object of class \code{"power.htest"}, a list of the arguments (including the computed one) augmented with \code{method} and \code{note} elements. } \author{Peter Dalgaard. Based on previous work by Claus \enc{Ekstrøm}{Ekstroem}} \note{ \code{uniroot} is used to solve power equation for unknowns, so you may see errors from it, notably about inability to bracket the root when invalid arguments are given. If one of them is computed \code{p1 < p2} will hold, although this is not enforced when both are specified. } \seealso{\code{\link{prop.test}}, \code{\link{uniroot}}} \examples{ power.prop.test(n = 50, p1 = .50, p2 = .75) power.prop.test(p1 = .50, p2 = .75, power = .90) power.prop.test(n = 50, p1 = .5, power = .90) } \keyword{ htest }