Difference between revisions of "Steiner line"
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Similarly <math>\angle CH_BE = \angle CHE = \angle CH_A \implies CH_BH_AP</math> is cyclic <math>\implies P \in \Omega \implies</math> the crosspoint of <math>l_B</math> and <math>l_A</math> is point <math>P.</math> | Similarly <math>\angle CH_BE = \angle CHE = \angle CH_A \implies CH_BH_AP</math> is cyclic <math>\implies P \in \Omega \implies</math> the crosspoint of <math>l_B</math> and <math>l_A</math> is point <math>P.</math> | ||
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| + | Usually the point <math>P</math> is called the anti-Steiner point of the <math>H-line</math> with respect to <math>\triangle ABC.</math> | ||
'''vladimir.shelomovskii@gmail.com, vvsss''' | '''vladimir.shelomovskii@gmail.com, vvsss''' | ||
Revision as of 11:58, 7 December 2022
Steiner line
Let
be a triangle with orthocenter
is a point on the circumcircle
of
Then, the reflections of
in three edges
and point
lie on a line
which is known as the Steiner line of point
with respect to
Collings Clime
Let triangle
be the triangle with the orthocenter
and circumcircle
Denote
any line containing point
Let
and
be the reflections of
in the edges
and
respectively.
Prove that lines
and
are concurrent and the point of concurrence lies on
Proof
Let
and
be the crosspoints of
with
and
respectively.
WLOG
Let
and
be the points symmetric to
with respect
and
respectively.
Therefore
Let
be the crosspoint of
and
is cyclic
Similarly
is cyclic
the crosspoint of
and
is point
Usually the point
is called the anti-Steiner point of the
with respect to
vladimir.shelomovskii@gmail.com, vvsss