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<head><title>affineHull -- computes the affine hull of a polyhedron</title>
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<div><h1>affineHull -- computes the affine hull of a polyhedron</h1>
<div class="single"><h2>Synopsis</h2>
<ul><li><div class="list"><dl class="element"><dt class="heading">Usage: </dt><dd class="value"><div><tt> Q = affineHull P</tt></div>
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<li><div class="single">Inputs:<ul><li><span><tt>P</tt>, <span>a <a href="___Polyhedron.html">convex polyhedron</a></span></span></li>
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<li><div class="single">Outputs:<ul><li><span><tt>Q</tt>, <span>a <a href="___Polyhedron.html">convex polyhedron</a></span></span></li>
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<div class="single"><h2>Description</h2>
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Computes the affine hull of a polyhedron. This is the affine subspace with the same 
 dimension as the polyhedron, containing the polyhedron.<table class="examples"><tr><td><pre>i1 : P = stdSimplex 3

o1 = {ambient dimension => 4           }
      dimension of lineality space => 0
      dimension of polyhedron => 3
      number of facets => 4
      number of rays => 0
      number of vertices => 4

o1 : Polyhedron</pre>
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<tr><td><pre>i2 : Q = affineHull P

o2 = {ambient dimension => 4           }
      dimension of lineality space => 3
      dimension of polyhedron => 3
      number of facets => 1
      number of rays => 0
      number of vertices => 1

o2 : Polyhedron</pre>
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<tr><td><pre>i3 : linSpace Q

o3 = | 1  0  0  |
     | 0  1  0  |
     | 0  0  1  |
     | -1 -1 -1 |

              4        3
o3 : Matrix QQ  &lt;--- QQ</pre>
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<div class="waystouse"><h2>Ways to use <tt>affineHull</tt> :</h2>
<ul><li>affineHull(Polyhedron)</li>
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