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Next: <a href="Vectorization-and-Faster-Code-Execution.html#Vectorization-and-Faster-Code-Execution" accesskey="n" rel="next">Vectorization and Faster Code Execution</a>, Previous: <a href="Arithmetic.html#Arithmetic" accesskey="p" rel="prev">Arithmetic</a>, Up: <a href="index.html#Top" accesskey="u" rel="up">Top</a> [<a href="index.html#SEC_Contents" title="Table of contents" rel="contents">Contents</a>][<a href="Concept-Index.html#Concept-Index" title="Index" rel="index">Index</a>]</p>
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<a name="Linear-Algebra-1"></a>
<h2 class="chapter">18 Linear Algebra</h2>
<a name="index-linear-algebra"></a>
<p>This chapter documents the linear algebra functions provided in Octave.
Reference material for many of these functions may be found in
Golub and Van Loan, <cite>Matrix Computations, 2nd Ed.</cite>,
Johns Hopkins, 1989, and in the <cite><small>LAPACK</small> Users’ Guide</cite>, SIAM, 1992.
The <cite><small>LAPACK</small> Users’ Guide</cite> is available at:
<cite>http://www.netlib.org/lapack/lug/</cite>
</p>
<p>A common text for engineering courses is G. Strang,
<cite>Linear Algebra and Its Applications, 4th Edition</cite>. It has become a
widespread reference for linear algebra. An alternative is P. Lax
<cite>Linear Algebra and Its Applications</cite>, and also is a good choice. It
claims to be suitable for high school students with substantial mathematical
interests as well as first-year undergraduates.
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<tr><td align="left" valign="top">• <a href="Techniques-Used-for-Linear-Algebra.html#Techniques-Used-for-Linear-Algebra" accesskey="1">Techniques Used for Linear Algebra</a>:</td><td> </td><td align="left" valign="top">
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<tr><td align="left" valign="top">• <a href="Functions-of-a-Matrix.html#Functions-of-a-Matrix" accesskey="4">Functions of a Matrix</a>:</td><td> </td><td align="left" valign="top">
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