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<a accesskey="1" href="page.php?w=finite_geometry&amp;p=2">1.Previous</a><br />
<a accesskey="3" href="page.php?w=finite_geometry&amp;p=4">3.Next</a>
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<p>and their higher-dimensional analogs such as higher finite <a href="page.php?w=inversive_geometry">inversive geometries</a>.</p>

<p>Finite geometries may be constructed via <a href="page.php?w=linear_algebra">linear algebra</a>, starting from <a href="page.php?w=vector_space">vector space</a>s over a <a href="page.php?w=finite_field">finite field</a>; the affine and <a href="page.php?w=projective_plane">projective plane</a>s so constructed are called <a href="page.php?w=Galois_geometry">Galois geometries</a>.  Finite geometries can also be defined</p><p>
<a accesskey="1" href="page.php?w=finite_geometry&amp;p=2">1.Previous</a><br />
<a accesskey="3" href="page.php?w=finite_geometry&amp;p=4">3.Next</a>
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