Konami SCC

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File:Orthoptic locus of a circle, ellipses and hyperbolas.gif
Orthoptics of a circle, of some ellipses and hyperbolas

In the geometry of curves, an isoptic is the set of points for which two tangents of a given curve meet at a given angle. The orthoptic is the isoptic whose given angle is a right angle.

Without an invertible Gauss map, an explicit general form is impossible because of the difficulty knowing which points on the given curve pair up.

Example

File:Isoptic.png
Orthoptic of a parabola

Take as given the parabola (t,t²) and angle 90°. Find, first, τ such that the tangents at t and τ are orthogonal:

(1,2t)⋅(1,2τ)=0
τ=−1/4t

Then find (x,y) such that

(x−t)2t=(y−t2) and (x−τ)2τ=(y−τ2)
2tx−y=t2 and 8tx+16t2y=−1
x=(4t2−1)/8t and y=−1/4

so the orthoptic of a parabola is its directrix.

The orthoptic of an ellipse is the director circle.

References

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