Perpendicular Chords and Opposite Areas, a Hidden Linear Invariant


Share your proof or solution in the comments below.
Target Audience: K-12, Honors Geometry, and College Mathematics Education.

Uncover the mathematical elegance hidden within a circle. In Problem 1620, we explore how two perpendicular chords partition a circle into four curvilinear regions to reveal a remarkable hidden area difference invariant.
Explore the full theorem and illustrated diagrams by clicking the image below.


Illustration of Geometry Problem 1620: Perpendicular Chords and Opposite Areas Invariant


Click for additional details and full diagram.

Proposed Solution
We invite students, teachers, and math enthusiasts to share their insights. This challenge involves perpendicular chords, Archimedes’ Theorem, and curvilinear areas that can be unlocked using geometry.

How to contribute:
Post your step-by-step proof in the comments below. Feel free to:

  • Describe the theorems applied (e.g., Intersecting Chords, Archimedes).
  • Share a link to your dynamic construction (GeoGebra, Desmos).

Be the first to submit a formal solution for this area invariant problem!

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