Difference between revisions of "1983 AHSME Problems/Problem 30"
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\circ - 10^\circ = 30^\circ</math>. | \circ - 10^\circ = 30^\circ</math>. | ||
− | Since <math>CA = CB</math>, triangle <math>ABC</math> is isosceles, with <math>\angle BAC = \angle ABC = 30^\circ</math>. Now, <math>\angle BAP = \angle BAC - \angle CAP = 30^\circ - 10^\circ = 20^\circ</math>, | + | Since <math>CA = CB</math>, triangle <math>ABC</math> is isosceles, with <math>\angle BAC = \angle ABC = 30^\circ</math>. Now, <math>\angle BAP = \angle BAC - \angle CAP = 30^\circ - 10^\circ = 20^\circ</math>. Finally, again using the fact that angles inscribed in the same arc are equal, we have <math>\angle BCP = \angle BAP = \boxed{\textbf{(C)}\ 20^{\circ}}</math>. |
Revision as of 18:08, 27 January 2019
Problem
Distinct points and
are on a semicircle with diameter
and center
.
The point
is on
and
. If
, then
equals
Solution
Since , quadrilateral
is cyclic (as shown below) by the converse of the theorem "angles inscribed in the same arc are equal".
Since ,
, so, using the fact that angles in a cyclic quadrilateral sum to
, we have
. Hence
.
Since , triangle
is isosceles, with
. Now,
. Finally, again using the fact that angles inscribed in the same arc are equal, we have
.