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<a accesskey="1" href="page.php?w=change_of_basis&amp;p=9">1.Previous</a><br />
<a accesskey="3" href="page.php?w=change_of_basis&amp;p=11">3.Next</a>
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<p>represents a <a href="page.php?w=linear_map">linear map</a>, and the product of a matrix and a column vector represents the <a href="page.php?w=function_application">function application</a> of the corresponding linear map to the vector whose coordinates form the column vector. The change-of-basis formula is a specific case of this general principle, although this is not immediately clear from its definition and proof.</p>

<p>When one says that a matrix represents a linear map, one refers implicitly to <a href="page.php?w=basis_%28linear_algebra%29">bases</a></p><p>
<a accesskey="1" href="page.php?w=change_of_basis&amp;p=9">1.Previous</a><br />
<a accesskey="3" href="page.php?w=change_of_basis&amp;p=11">3.Next</a>
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