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September 1, 1978Biometrics218 citations

Probabilities of Non-Positive Definite between-Group or Genetic Covariance Matrices

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WHW. G. HillRTR. Thompson

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Abstract

The probability (Q) that the estimated between-group covariance matrix is not positive deJinite is computed for the balanced single classlfication multivariate analysis of variance with random effects. It is shown that Q depends only on the roots of the matrix product of the inverse of the true within-group and the true between-group covariance matrices which, for independent variables, reduces to expressions in intra-class correlations. Values of Q are computedfor ranges of size of experiment, intra-class correlation and number of variables. Even for large experiments, Q can approach 100% if there are many variables, for example with 160 groups of size 10 and either 8 independent variables each with intra-class 0.025 or 14 variables each with intra-class correlation 0.0625. Some rationalization of the results is given in terms of the bias in the roots of the sample between-group covariance matrix. In genetic applications, the between-group covariance matrix is proportional to the genetic covariance matrix, if non-positive definite, heritabilities and ordinary or partial genetic correlations are outside their valid limits, and the effiect on selection index construction is discussed.

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Cite This Study

Hill et al. (1978) studied this question.

synapsesocial.com/papers/6a6b6b8c01245da06ecb77c3https://doi.org/10.2307/2530605
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