Abstract

We argue that to best comprehend many data sets, plotting judiciously selected sample statistics with associated confidence intervals can usefully supplement, or even replace, standard hypothesis-testing procedures. We note that most social science statistics textbooks limit discussion of confidence intervals to their use in between-subject designs. Our central purpose in this article is to describe how to compute an analogous confidence interval that can be used in within-subject designs. This confidence interval rests on the reasoning that because between-subject variance typically plays no role in statistical analyses of within-subject designs, it can legitimately be ignored; hence, an appropriate confidence interval can be based on the standard within-subject error term-that is, on the variability due to the subject × condition interaction. Computation of such a confidence interval is simple and is embodied in Equation 2 on p. 482 of this article. This confidence interval has two useful properties. First, it is based on the same error term as is the corresponding analysis of variance, and hence leads to comparable conclusions. Second, it is related by a known factor (√2) to a confidence interval of the difference between sample means; accordingly, it can be used to infer the faith one can put in some pattern of sample means as a reflection of the underlying pattern of population means. These two properties correspond to analogous properties of the more widely used between-subject confidence interval.

Keywords

Confidence intervalSubject (documents)StatisticsRobust confidence intervalsVariance (accounting)Confidence distributionTolerance intervalPopulationPsychologyMathematicsComputer scienceDemography

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Publication Info

Year
1994
Type
article
Volume
1
Issue
4
Pages
476-490
Citations
2467
Access
Closed

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Cite This

Geoffrey R. Loftus, Michael E. J. Masson (1994). Using confidence intervals in within-subject designs. Psychonomic Bulletin & Review , 1 (4) , 476-490. https://doi.org/10.3758/bf03210951

Identifiers

DOI
10.3758/bf03210951
PMID
24203555

Data Quality

Data completeness: 81%