Analysis of Covariance For Repeated Measures Design with Missing Observations

analysis of covariance might be one of the most miS4nderstood and inadequately taught of all applied statistical methods. Many methods books do not deQl with it at all (Cullman et. aI., 1982), or sparingly (Brownlee, J965), and most of those that treat it substantially, such as Federer (1955), Sn...

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Bibliographic Details
Main Authors: Alwi, Ahmad, Monlezun, C. J.
Format: Article
Language:English
English
Published: 1986
Online Access:http://psasir.upm.edu.my/id/eprint/2328/1/Analysis_of_Covariance_For_Repeated_Measures_Design.pdf
http://psasir.upm.edu.my/id/eprint/2328/
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Summary:analysis of covariance might be one of the most miS4nderstood and inadequately taught of all applied statistical methods. Many methods books do not deQl with it at all (Cullman et. aI., 1982), or sparingly (Brownlee, J965), and most of those that treat it substantially, such as Federer (1955), Snedecor and Cochran (J 980), Steel and Torrie (1980), and Winer (1971), concentrate on balanced data, namely those which have equal numbers of observations in the subclasses. What happens if the data are not balanced and moreover if some of the observations are missing? The missing observations complicate computations and affect what is estimable. The analysis of covariance would become more complex. The application of geometry in the analysis of covariance may of fer an understanding of the analysis as well as broaden the variety of methods that can be considered. When there are no missing observations on the repeated measures Factor(s) , computational algorithms can be used (see Henderson and Henderson, 1979).