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10.5 Segment Lengths in Circles

10.5 Segment Lengths in Circles. Theorem. When chords intersect, the chords break into segments that are equal when multiplied. Theorem. When chords intersect, the chords break into segments that are equal when multiplied. Theorem.

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10.5 Segment Lengths in Circles

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  1. 10.5 Segment Lengths in Circles

  2. Theorem When chords intersect, the chords break into segments that are equal when multiplied.

  3. Theorem When chords intersect, the chords break into segments that are equal when multiplied.

  4. Theorem When chords intersect, the chords break into segments that are equal when multiplied.

  5. Theorem When chords intersect, the chords break into segments that are equal when multiplied.

  6. Theorem When two secants intersect a circle, the segments of the secants (the chord and the whole secant ) are equal when multiplied together.

  7. Theorem When two secants intersect a circle, the segments of the secants (the chord and the whole secant ) are equal when multiplied together.

  8. Theorem When two secants intersect a circle, the segments of the secants (the chord and the whole secant ) are equal when multiplied together.

  9. Theorem A tangent and a secant

  10. Theorem A tangent and a secant

  11. Theorem A tangent and a secant

  12. Theorem A tangent and a secant

  13. Theorem A tangent and a secant

  14. Theorem A tangent and a secant

  15. Theorem A tangent and a secant

  16. Theorem A tangent and a secant

  17. Theorem A tangent and a secant

  18. Homework Page 632 – 633 # 10 - 27

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