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Linear Algebra and Matrix Theory
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Linear Algebra and Matrix Theory

Linear Algebra and Matrix Theory

$6.28

Original: $17.95

-65%
Linear Algebra and Matrix Theory

$17.95

$6.28

The Story

Advanced undergraduate and first-year graduate students have long regarded this text as one of the best available works on matrix theory in the context of modern algebra. Teachers and students will find it particularly suited to bridging the gap between ordinary undergraduate mathematics and completely abstract mathematics.
The first five chapters treat topics important to economics, psychology, statistics, physics, and mathematics. Subjects include equivalence relations for matrixes, postulational approaches to determinants, and bilinear, quadratic, and Hermitian forms in their natural settings. The final chapters apply chiefly to students of engineering, physics, and advanced mathematics. They explore groups and rings, canonical forms for matrixes with respect to similarity via representations of linear transformations, and unitary and Euclidean vector spaces. Numerous examples appear throughout the text.

Reprint of the McGraw-Hill Book Company, 1952 edition.
linear equations; mathematics; modern algebra; matrix algebra; books on math; abstract mathematics; physics; quantum mechanical model; hermitian forms; canonical forms; euclidean vector; bilinear and quadratic forms; theoretical physics; bfss matrix model; advanced mathematics; m theory; linear algebra; theory of matrices; abstract mathematics; linear equations; modern algebra

Description

Advanced undergraduate and first-year graduate students have long regarded this text as one of the best available works on matrix theory in the context of modern algebra. Teachers and students will find it particularly suited to bridging the gap between ordinary undergraduate mathematics and completely abstract mathematics.
The first five chapters treat topics important to economics, psychology, statistics, physics, and mathematics. Subjects include equivalence relations for matrixes, postulational approaches to determinants, and bilinear, quadratic, and Hermitian forms in their natural settings. The final chapters apply chiefly to students of engineering, physics, and advanced mathematics. They explore groups and rings, canonical forms for matrixes with respect to similarity via representations of linear transformations, and unitary and Euclidean vector spaces. Numerous examples appear throughout the text.

Reprint of the McGraw-Hill Book Company, 1952 edition.
linear equations; mathematics; modern algebra; matrix algebra; books on math; abstract mathematics; physics; quantum mechanical model; hermitian forms; canonical forms; euclidean vector; bilinear and quadratic forms; theoretical physics; bfss matrix model; advanced mathematics; m theory; linear algebra; theory of matrices; abstract mathematics; linear equations; modern algebra

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