In geometry, the twin circles are two special circles associated with an arbelos.An arbelos is determined by three collinear points,, and, and is the curvilinear triangular region between the three semicircles that have,, and as their diameters. If the arbelos is partitioned into two smaller regions by a line segment through the middle point of,, and, perpendicular to line, then each of the two twin circles lies within one of these two regions, tangent to its two semicircular sides and to the splitting segment.
These circles first appeared in the Book of Lemmas, which showed (Proposition V) that the two circles are congruent.Thābit ibn Qurra, who translated this book into Arabic, attributed it to Greek mathematician Archimedes. Based on this claim the twin circles, and several other circles in the Arbelos congruent to them, have also been called Archimedes's circles. However, this attribution has been questioned by later scholarship.[1]
Specifically, let
A
B
C
B
A
C
D
AC
B
BD
BD
Each of the two circles is uniquely determined by its three tangencies. Constructing it is a special case of the Problem of Apollonius.
Alternative approaches to constructing two circles congruent to the twin circles have also been found. These circles have also been called Archimedean circles. They include the Bankoff circle, Schoch circles, and Woo circles.
Let a and b be the diameters of two inner semicircles, so that the outer semicircle has diameter a + b. The diameter of each twin circle is then
d= | ab |
a+b |
.
Alternatively, if the outer semicircle has unit diameter, and the inner circles have diameters
s
1-s
d=s(1-s).
The smallest circle that encloses both twin circles has the same area as the arbelos.