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minor doc fix
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@@ -2037,7 +2037,7 @@ module spiral_sweep(poly, h, r, turns=1, taper, r1, r2, d, d1, d2, internal=fals
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// knot_path = [ for (i=[0:k-1]) knot(360*i/k/gcd(p,q),R,r,p,q) ];
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// normals = [ for (i=[0:k-1]) knot_normal(360*i/k/gcd(p,q),R,r,p,q) ];
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// path_sweep(ushape,knot_path,normal=normals, method="manual", closed=true);
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// Example(Med,NoScales,VPR=[0,0.00,0],VPD=28.82,VPT=[5.26,1.53,0.20]): VPR=[0.0,0.00,0.00],VPD=28.82,VPT=[0.00,0.00,0.00],): The left hand example uses the automatically computed derivatives. The example on the right uses a user-supplied tangent to ensure that the ends are aligned with the coordinate system. Even with a simple circular arc you may find that the ends are not aligned as expedted by the automatically computed approximate tangent vectors.
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// Example(Med,NoScales,VPR=[0,0.00,0],VPD=28.82,VPT=[5.26,1.53,0.20]): The left hand example uses the automatically computed derivatives. The example on the right uses a user-supplied tangent to ensure that the ends are aligned with the coordinate system. Even with a simple circular arc you may find that the ends are not aligned as expedted by the automatically computed approximate tangent vectors.
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// $fa=1; $fs=0.5;
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// theta_range=[180:2:450];
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// path = [for (theta = theta_range)
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