mirror of https://github.com/CGAL/cgal
mv captions below fig
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@ -354,13 +354,13 @@ provide illustrations of principal directions of curvature.
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\centerline{
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\includegraphics[width=.5\linewidth]{Jet_fitting_3/ppal_curv_poly2x2+y2}}
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\end{ccTexOnly}
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\caption{Principal directions of curvature and normals at vertices of a mesh of the
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graph of the function $f(x,y)=2x^2+y^2$.}
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\begin{ccHtmlOnly}
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<CENTER> <img border=0 src="./ppal_curv_poly2x2+y2.jpg" width=600>
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</CENTER>
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\end{ccHtmlOnly}
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\caption{Principal directions of curvature and normals at vertices of a mesh of the
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graph of the function $f(x,y)=2x^2+y^2$.}
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\label{fig:jet3:fig-elliptic-paraboloid}
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\end{figure}
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@ -382,13 +382,13 @@ fitting-basis $(f_x,f_y,f_z)$, the Monge basis $(d_1,d_2,n)$.
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\end{ccTexOnly}
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\label{fig:jet_fitting_basis}
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\caption{The three bases involved in the estimation.}
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\begin{ccHtmlOnly}
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<CENTER>
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<img border=0 src="./jet_fitting_basis.gif" width=600>
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</CENTER>
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\end{ccHtmlOnly}
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\caption{The three bases involved in the estimation.}
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\end{figure}
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\subsection{Computing a Basis for the Fitting}
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