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Fit for students just starting to build a background in
mathematics, this textbook provides an introduction to numerical
methods for linear algebra problems. Introduction to Numerical
Linear Algebra is ideal for a flipped classroom, as it provides
detailed explanations that allow students to read on their own and
instructors to go beyond lecturing, assumes that the reader has
taken a course on linear algebra, but reviews background as needed,
and covers several topics not commonly addressed in related
introductory books, including diffusion, a toy model of computed
tomography, global positioning systems, the use of eigenvalues in
analyzing stability of equilibria, a detailed derivation and
careful motivation of the QR method for eigenvalues starting from
power iteration, a discussion of the use of the SVD for assigning
grades, and multigrid methods. This textbook is appropriate for
undergraduate and beginning graduate students in mathematics and
related fields. It can be used in the following courses: Advanced
Numerical Analysis, Special Topics on Numerical Analysis, Topics on
Data Science, Topics on Numerical Optimization, and Topics on
Approximation Theory
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