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<title>Lines of Symmetry of Plane Shapes</title>
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<h1 align="center">Lines of Symmetry of Plane Shapes</h1>
<h2>Line of Symmetry</h2>
<table border="0" align="center">
<tr>
<td><img src="images/flame-mirror.jpg" width="156" height="214" alt="dog mirror" /></td>
<td valign="top">&nbsp;</td>
<td valign="top"><p align="center">&nbsp;</p>
<p align="center">Here my dog &quot;Flame&quot; has her face <br>
made perfectly symmetrical with a bit<br>
of photo magic.</p>
<p align="center">The white line down the center is the<br>
<b>Line of Symmetry</b></p></td>
</tr>
</table>
<div align="center">Read more at <a href="symmetry-reflection.html">Reflection Symmetry</a>. </div>
<h2>Folding Test</h2>
<p>You can find if a shape has a Line of Symmetry by<b> folding it</b>. </p>
<div class="def">
<p>When the folded part sits perfectly on top (all edges matching), then the fold line is a Line of Symmetry.</p>
</div>
<p>Here I have folded a rectangle one way, and <b>it didn't work</b>.</p>
<p align="center"><img src="images/symmetry-folding-no.svg" alt="symmetry folding no" style="max-width:100%" /><br />
<span class="larger">So this is <b>not</b> a Line of Symmetry</span></p>
<p>But when I try it this way, it <b>does work</b> (the folded part sits perfectly on top, all edges matching):</p>
<p align="center"><img src="images/symmetry-folding-yes.svg" alt="symmetry folding yes" style="max-width:100%" /><br />
<span class="larger">So this <b>is</b> a Line of Symmetry</span></p>
<h2>Triangles</h2>
<p>A <a href="../triangle.html">Triangle</a> can have <b>3</b>, or <b>1</b> or <b>no</b> lines of symmetry:
</p>
<table border="0" align="center">
<tr align="center">
<td><img src="images/symmetry-equilateral-triangle.gif" width="130" height="130" alt="symmetry equilateral triangle" /></td>
<td>&nbsp;</td>
<td><img src="images/symmetry-isosceles-triangle.gif" width="131" height="130" alt="symmetry isosceles triangle" /></td>
<td>&nbsp;</td>
<td><img src="images/symmetry-scalene-triangle.gif" width="130" height="130" alt="no symmetry scalene triangle" /></td>
</tr>
<tr align="center">
<td><b>Equilateral Triangle</b><br />
(all sides equal, <br />
all angles equal) </td>
<td>&nbsp;</td>
<td><b>Isosceles Triangle</b><br />
(two sides equal, <br />
two angles equal) </td>
<td>&nbsp;</td>
<td><b>Scalene Triangle</b><br />
(no sides equal, <br />
no angles equal) </td>
</tr>
<tr align="center">
<td class="larger"><b>3</b> Lines of Symmetry</td>
<td>&nbsp;</td>
<td class="larger"><b>1</b> Line of Symmetry</td>
<td>&nbsp;</td>
<td class="larger"><b>No</b> Lines of Symmetry</td>
</tr>
</table>
<h2>Quadrilaterals </h2>
<p>Different types of <a href="../quadrilaterals.html">Quadrilaterals</a> (a 4-sided plane shape): </p>
<table border="0" align="center">
<tr align="center">
<td><img src="images/symmetry-square.gif" width="130" height="130" alt="symmetry square" /></td>
<td>&nbsp;</td>
<td><img src="images/symmetry-rectangle.gif" width="130" height="130" alt="symmetry rectangle" /></td>
<td>&nbsp;</td>
<td><img src="images/symmetry-irregular-quad.gif" width="130" height="130" alt="symmetry irregular quad" /></td>
</tr>
<tr align="center">
<td><b>Square</b><br />
(all sides equal, <br />
all angles 90&deg;) </td>
<td>&nbsp;</td>
<td><b>Rectangle</b><br />
(opposite sides equal, <br />
all angles 90&deg;)</td>
<td>&nbsp;</td>
<td><b>Irregular <br />
Quadrilateral</b><br /></td>
</tr>
<tr align="center">
<td class="larger"><b>4</b> Lines of Symmetry</td>
<td>&nbsp;</td>
<td class="larger"><b>2</b> Lines of Symmetry</td>
<td>&nbsp;</td>
<td class="larger"><b>No</b> Lines of Symmetry</td>
</tr>
</table>
<p>&nbsp;</p>
<table border="0" align="center">
<tr align="center">
<td><img src="images/symmetry-kite.gif" width="130" height="130" alt="symmetry kite" /></td>
<td>&nbsp;</td>
<td><img src="images/symmetry-rhombus.gif" width="130" height="130" alt="symmetry rhombus" /></td>
</tr>
<tr align="center">
<td><b>Kite</b><br /></td>
<td>&nbsp;</td>
<td><b>Rhombus</b><br />
(all sides equal length) </td>
</tr>
<tr align="center">
<td class="larger"><b>1</b> Line of Symmetry</td>
<td class="larger">&nbsp;</td>
<td class="larger"><b>2</b> Lines of Symmetry</td>
</tr>
</table>
<h2>Regular Polygons</h2>
<p>A regular <a href="polygons.html">polygon</a> has all sides equal, and all angles equal:</p>
<table border="0" align="center">
<tr>
<td><img src="images/symmetry-equilateral-triangle.gif" width="130" height="130" alt="symmetry equilateral triangle" /></td>
<td>An <b>Equilateral Triangle</b> (3 sides) <br />
has <b> 3</b> Lines of Symmetry</td>
<td>&nbsp;</td>
</tr>
<tr>
<td>&nbsp;</td>
<td align="right"><img src="images/symmetry-square.gif" width="130" height="130" alt="symmetry square" /></td>
<td>A <b>Square</b> (4 sides) <br />
has <b> 4</b> Lines of Symmetry</td>
</tr>
<tr>
<td><img src="images/symmetry-regular-pentagon.gif" width="130" height="130" alt="symmetry regular pentagon" /></td>
<td>A <b>Regular Pentagon</b> (5 sides) <br />
has <b> 5</b> Lines of Symmetry</td>
<td>&nbsp;</td>
</tr>
<tr>
<td>&nbsp;</td>
<td align="right"><img src="images/symmetry-regular-hexagon.gif" width="130" height="130" alt="symmetry regular hexagon" /></td>
<td>A <b>Regular Hexagon</b> (6 sides) <br />
has <b>6</b> Lines of Symmetry</td>
</tr>
<tr>
<td><img src="images/symmetry-regular-septagon.gif" width="130" height="130" alt="symmetry regular septagon" /></td>
<td>A <b>Regular Heptagon</b> (7 sides) <br />
has <b> 7</b> Lines of Symmetry</td>
<td>&nbsp;</td>
</tr>
<tr>
<td>&nbsp;</td>
<td align="right"><img src="images/symmetry-regular-octagon.gif" width="130" height="130" alt="symmetry regular octagon" /></td>
<td>A <b>Regular Octagon</b> (8 sides) <br />
has <b> 8</b> Lines of Symmetry</td>
</tr>
</table>
<p>And the pattern continues: </p>
<ul>
<li>A regular polygon of <b>9</b> sides has <b>9</b> Lines of Symmetry</li>
<li>A regular polygon of <b>10</b> sides has <b>10</b> Lines of Symmetry</li>
<li>...</li>
<li>A regular polygon of <b>&quot;n&quot;</b> sides has <b>&quot;n&quot;</b> Lines of Symmetry </li>
</ul>
<table border="0">
<tr>
<td><h2>Circle</h2>
<div>
<div></div>
</div>
<p>A line (drawn at any angle) that goes through its center is a Line of Symmetry. </p>
<p>So a Circle has<b> infinite</b> Lines of Symmetry. </p></td>
<td>&nbsp;</td>
<td><img src="images/circle-symmetry.gif" width="132" height="114" alt="circle symmetry" /></td>
</tr>
</table>
<p>&nbsp;</p>
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