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27<a name="inverse_complex"></a>Chapter&#160;8.&#160;Complex Number Functions</h1></div></div></div>
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29<p><b>Table of Contents</b></p>
30<dl>
31<dt><span class="section"><a href="math_toolkit/complex_implementation.html">Implementation and
32 Accuracy</a></span></dt>
33<dt><span class="section"><a href="math_toolkit/asin.html">asin</a></span></dt>
34<dt><span class="section"><a href="math_toolkit/acos.html">acos</a></span></dt>
35<dt><span class="section"><a href="math_toolkit/atan.html">atan</a></span></dt>
36<dt><span class="section"><a href="math_toolkit/asinh.html">asinh</a></span></dt>
37<dt><span class="section"><a href="math_toolkit/acosh.html">acosh</a></span></dt>
38<dt><span class="section"><a href="math_toolkit/atanh.html">atanh</a></span></dt>
39<dt><span class="section"><a href="math_toolkit/complex_history.html">History</a></span></dt>
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42<p>
43 The following complex number algorithms are the inverses of trigonometric functions
44 currently present in the C++ standard. Equivalents to these functions are part
45 of the C99 standard, and are part of the <a href="http://www.open-std.org/jtc1/sc22/wg21/docs/papers/2005/n1836.pdf" target="_top">Technical
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