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Statistical inferential methods are widely used in the study of
various physical, biological, social, and other phenomena.
Parametric estimation is one such method. Although there are many
books which consider problems of statistical point estimation, this
volume is the first to be devoted solely to the problem of unbiased
estimation. It contains three chapters dealing, respectively, with
the theory of point statistical estimation, techniques for
constructing unbiased estimators, and applications of unbiased
estimation theory. These chapters are followed by a comprehensive
appendix which classifies and lists, in the form of tables, all
known results relating to unbiased estimators of parameters for
univariate distributions. About one thousand minimum variance
unbiased estimators are listed. The volume also contains numerous
examples and exercises. This volume will serve as a handbook on
point unbiased estimation for researchers whose work involves
statistics. It can also be recommended as a supplementary text for
graduate students.
This volume is a continuation of Unbiased Estimators and Their
Applications, Vol. I: Univariate Case. It contains problems of
parametric point estimation for multivariate probability
distributions emphasizing problems of unbiased estimation. The
volume consists of four chapters dealing, respectively, with some
basic properties of multivariate continuous and discrete
distributions, the general theory of point estimation in
multivariate case, techniques for constructing unbiased estimators
and applications of unbiased estimation theory in the multivariate
case. These chapters contain numerous examples, many applications
and are followed by a comprehensive Appendix which classifies and
lists, in the form of tables, all known results relating to
unbiased estimators of parameter functions for multivariate
distributions. Audience: This volume will serve as a handbook on
point unbiased estimation for researchers whose work involves
statistics. It can also be recommended as a supplementary text for
undergraduate and graduate students.
Statistical inferential methods are widely used in the study of
various physical, biological, social, and other phenomena.
Parametric estimation is one such method. Although there are many
books which consider problems of statistical point estimation, this
volume is the first to be devoted solely to the problem of unbiased
estimation. It contains three chapters dealing, respectively, with
the theory of point statistical estimation, techniques for
constructing unbiased estimators, and applications of unbiased
estimation theory. These chapters are followed by a comprehensive
appendix which classifies and lists, in the form of tables, all
known results relating to unbiased estimators of parameters for
univariate distributions. About one thousand minimum variance
unbiased estimators are listed. The volume also contains numerous
examples and exercises. This volume will serve as a handbook on
point unbiased estimation for researchers whose work involves
statistics. It can also be recommended as a supplementary text for
graduate students.
This volume is a continuation of Unbiased Estimators and Their
Applications, Vol. I: Univariate Case. It contains problems of
parametric point estimation for multivariate probability
distributions emphasizing problems of unbiased estimation. The
volume consists of four chapters dealing, respectively, with some
basic properties of multivariate continuous and discrete
distributions, the general theory of point estimation in
multivariate case, techniques for constructing unbiased estimators
and applications of unbiased estimation theory in the multivariate
case. These chapters contain numerous examples, many applications
and are followed by a comprehensive Appendix which classifies and
lists, in the form of tables, all known results relating to
unbiased estimators of parameter functions for multivariate
distributions. Audience: This volume will serve as a handbook on
point unbiased estimation for researchers whose work involves
statistics. It can also be recommended as a supplementary text for
undergraduate and graduate students.
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