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Figure 5:
The binary heptagonal flexagon has twelve vertices.
![\begin{figure}
\centering
\begin{picture}
(320,300)
\put(0,0){\epsfxsize=320pt \epsffile{binheptmap.eps}}
\end{picture}
\end{figure}](img5.gif) |
Figure 6:
Permutation of the heptagons along the strip for a binary heptagonal flexagon.
![\begin{figure}
\centering
\begin{picture}
(200,200)
\put(0,0){\epsfxsize=200pt \epsffile{binheptper.eps}}
\end{picture}
\end{figure}](img6.gif) |
Figure 7:
Top side of a binary heptagonal flexagon. First of two sectors.
![\begin{figure}
\centering
\begin{picture}
(400,480)
\put(0,0){\epsfxsize=400pt \epsffile{binheptop.eps}}
\end{picture}
\end{figure}](img7.gif) |
Figure 8:
Bottom side of a binary heptagonal flexagon. First of two sectors.
![\begin{figure}
\centering
\begin{picture}
(400,480)
\put(0,0){\epsfxsize=400pt \epsffile{binhepbot.eps}}
\end{picture}
\end{figure}](img8.gif) |
Figure 9:
Top side of a binary heptagonal flexagon. Second sector.
![\begin{figure}
\centering
\begin{picture}
(400,480)
\put(0,0){\epsfxsize=400pt \epsffile{binheptop.eps}}
\end{picture}
\end{figure}](img7.gif) |
Figure 10:
Bottom side of a binary heptagonal flexagon. Second sector.
![\begin{figure}
\centering
\begin{picture}
(400,480)
\put(0,0){\epsfxsize=400pt \epsffile{binhepbot.eps}}
\end{picture}
\end{figure}](img8.gif) |
Microcomputadoras
2000-11-11