Difference between revisions of "2019 USAMO Problems/Problem 2"
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Note that only one point <math>P</math> satisfies the given angle condition. With this in mind, construct <math>P'</math> with the following properties: | Note that only one point <math>P</math> satisfies the given angle condition. With this in mind, construct <math>P'</math> with the following properties: | ||
− | + | (1) <math>AP' \cdot AB = AD^2</math> | |
− | + | (2) <math>BP' \cdot AB = CD^2</math> | |
Claim: <math>P = P'</math> | Claim: <math>P = P'</math> | ||
Line 19: | Line 19: | ||
We have | We have | ||
+ | |||
\begin{align*} | \begin{align*} | ||
AP \cdot AB = AD^2 \iff AB^2 \cdot AP &= AD^2 \cdot AB \\ | AP \cdot AB = AD^2 \iff AB^2 \cdot AP &= AD^2 \cdot AB \\ | ||
Line 27: | Line 28: | ||
\end{align*} | \end{align*} | ||
as desired. <math>\square</math> | as desired. <math>\square</math> | ||
+ | |||
Since <math>P</math> is the isogonal conjugate of <math>N</math>, <math>\measuredangle PEA = \measuredangle MEC = \measuredangle BEN</math>. However <math>\measuredangle MEC = \measuredangle BEN</math> implies that <math>M</math> is the midpoint of <math>CD</math> from similar triangles, so we are done. <math>\square</math> | Since <math>P</math> is the isogonal conjugate of <math>N</math>, <math>\measuredangle PEA = \measuredangle MEC = \measuredangle BEN</math>. However <math>\measuredangle MEC = \measuredangle BEN</math> implies that <math>M</math> is the midpoint of <math>CD</math> from similar triangles, so we are done. <math>\square</math> | ||
Revision as of 02:37, 2 March 2020
Problem
Let be a cyclic quadrilateral satisfying
. The diagonals of
intersect at
. Let
be a point on side
satisfying
. Show that line
bisects
.
Solution
Let . Also, let
be the midpoint of
.
Note that only one point
satisfies the given angle condition. With this in mind, construct
with the following properties:
(1)
(2)
Claim:
Proof:
The conditions imply the similarities
and
whence
as desired.
Claim: is a symmedian in
Proof:
We have
\begin{align*}
AP \cdot AB = AD^2 \iff AB^2 \cdot AP &= AD^2 \cdot AB \\
\iff \left( \frac{AB}{AD} \right)^2 &= \frac{AB}{AP} \\
\iff \left( \frac{AB}{AD} \right)^2 - 1 &= \frac{AB}{AP} - 1 \\
\iff \frac{AB^2 - AD^2}{AD^2} &= \frac{BP}{AP} \\
\iff \left(\frac{BC}{AD} \right)^2 &= \left(\frac{BE}{AE} \right)^2 = \frac{BP}{AP}
\end{align*}
as desired.
Since is the isogonal conjugate of
,
. However
implies that
is the midpoint of
from similar triangles, so we are done.
These problems are copyrighted © by the Mathematical Association of America, as part of the American Mathematics Competitions.
See also
2019 USAMO (Problems • Resources) | ||
Preceded by Problem 1 |
Followed by Problem 3 | |
1 • 2 • 3 • 4 • 5 • 6 | ||
All USAMO Problems and Solutions |