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<hr><h1>sc::RedundantCartesianIter  Class Reference</h1><a class="el" href="class_sc__RedundantCartesianIter.html">RedundantCartesianIter</a> objects loop through all possible combinations of a given number of axes. 
<a href="#_details">More...</a>
<p>
<code>#include &lt;<a class="el" href="cartiter_h-source.html">cartiter.h</a>&gt;</code>
<p>
Inheritance diagram for sc::RedundantCartesianIter<p><center><img src="class_sc__RedundantCartesianIter_inherit_graph.gif" border="0" usemap="#sc::RedundantCartesianIter_inherit_map" alt="Inheritance graph"></center>
<map name="sc::RedundantCartesianIter_inherit_map">
</map>
<center><font size="2">[<a href="graph_legend.html">legend</a>]</font></center><a href="class_sc__RedundantCartesianIter-members.html">List of all members.</a><table border=0 cellpadding=0 cellspacing=0>
<tr><td colspan=2><br><h2>Public Methods</h2></td></tr>
<tr><td nowrap align=right valign=top><a name="a0" doxytag="sc::RedundantCartesianIter::RedundantCartesianIter"></a>
&nbsp;</td><td valign=bottom><a class="el" href="class_sc__RedundantCartesianIter.html#a0">RedundantCartesianIter</a> (int l)</td></tr>
<tr><td>&nbsp;</td><td><font size=-1><em>Create a object for the given angular momentum.</em></font><br><br></td></tr>
<tr><td nowrap align=right valign=top><a name="a1" doxytag="sc::RedundantCartesianIter::~RedundantCartesianIter"></a>
virtual&nbsp;</td><td valign=bottom><b>~RedundantCartesianIter</b> ()</td></tr>
<tr><td nowrap align=right valign=top><a name="a2" doxytag="sc::RedundantCartesianIter::bfn"></a>
virtual int&nbsp;</td><td valign=bottom><a class="el" href="class_sc__RedundantCartesianIter.html#a2">bfn</a> ()=0</td></tr>
<tr><td>&nbsp;</td><td><font size=-1><em>Return the current Cartesian basis function number.</em></font><br><br></td></tr>
<tr><td nowrap align=right valign=top><a name="a3" doxytag="sc::RedundantCartesianIter::start"></a>
void&nbsp;</td><td valign=bottom><a class="el" href="class_sc__RedundantCartesianIter.html#a3">start</a> ()</td></tr>
<tr><td>&nbsp;</td><td><font size=-1><em>Initialize the iterator.</em></font><br><br></td></tr>
<tr><td nowrap align=right valign=top><a name="a4" doxytag="sc::RedundantCartesianIter::next"></a>
void&nbsp;</td><td valign=bottom><a class="el" href="class_sc__RedundantCartesianIter.html#a4">next</a> ()</td></tr>
<tr><td>&nbsp;</td><td><font size=-1><em>Move to the next combination of axes.</em></font><br><br></td></tr>
<tr><td nowrap align=right valign=top><a name="a5" doxytag="sc::RedundantCartesianIter::operator int"></a>
&nbsp;</td><td valign=bottom><a class="el" href="class_sc__RedundantCartesianIter.html#a5">operator int</a> ()</td></tr>
<tr><td>&nbsp;</td><td><font size=-1><em>Returns nonzero if the iterator currently hold valid data.</em></font><br><br></td></tr>
<tr><td nowrap align=right valign=top><a name="a6" doxytag="sc::RedundantCartesianIter::a"></a>
int&nbsp;</td><td valign=bottom><a class="el" href="class_sc__RedundantCartesianIter.html#a6">a</a> ()</td></tr>
<tr><td>&nbsp;</td><td><font size=-1><em>The current exponent of x.</em></font><br><br></td></tr>
<tr><td nowrap align=right valign=top><a name="a7" doxytag="sc::RedundantCartesianIter::b"></a>
int&nbsp;</td><td valign=bottom><a class="el" href="class_sc__RedundantCartesianIter.html#a7">b</a> ()</td></tr>
<tr><td>&nbsp;</td><td><font size=-1><em>The current exponent of y.</em></font><br><br></td></tr>
<tr><td nowrap align=right valign=top><a name="a8" doxytag="sc::RedundantCartesianIter::c"></a>
int&nbsp;</td><td valign=bottom><a class="el" href="class_sc__RedundantCartesianIter.html#a8">c</a> ()</td></tr>
<tr><td>&nbsp;</td><td><font size=-1><em>The current exponent of z.</em></font><br><br></td></tr>
<tr><td nowrap align=right valign=top><a name="a9" doxytag="sc::RedundantCartesianIter::l"></a>
int&nbsp;</td><td valign=bottom><a class="el" href="class_sc__RedundantCartesianIter.html#a9">l</a> ()</td></tr>
<tr><td>&nbsp;</td><td><font size=-1><em>The angular momentum.</em></font><br><br></td></tr>
<tr><td nowrap align=right valign=top><a name="a10" doxytag="sc::RedundantCartesianIter::l"></a>
int&nbsp;</td><td valign=bottom><a class="el" href="class_sc__RedundantCartesianIter.html#a10">l</a> (int i)</td></tr>
<tr><td>&nbsp;</td><td><font size=-1><em>Returns <a class="el" href="class_sc__RedundantCartesianIter.html#a6">a</a>() if i==0, <a class="el" href="class_sc__RedundantCartesianIter.html#a7">b</a>() if i==1, and <a class="el" href="class_sc__RedundantCartesianIter.html#a8">c</a>() if i==2.</em></font><br><br></td></tr>
<tr><td nowrap align=right valign=top><a name="a11" doxytag="sc::RedundantCartesianIter::axis"></a>
int&nbsp;</td><td valign=bottom><a class="el" href="class_sc__RedundantCartesianIter.html#a11">axis</a> (int i)</td></tr>
<tr><td>&nbsp;</td><td><font size=-1><em>Return the i'th axis.</em></font><br><br></td></tr>
</table>
<hr><a name="_details"></a><h2>Detailed Description</h2>
<a class="el" href="class_sc__RedundantCartesianIter.html">RedundantCartesianIter</a> objects loop through all possible combinations of a given number of axes.
<p>
This is used to compute the transformation matrices that maps a set of Cartesian functions into to another set of Cartesian functions in a rotated coordinate system. 
<p>
<hr>The documentation for this class was generated from the following file:<ul>
<li><a class="el" href="cartiter_h-source.html">cartiter.h</a></ul>
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