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Contests
International Contests
CentroAmerican
2015 CentroAmerican
2015 CentroAmerican
Part of
CentroAmerican
Subcontests
(6)
Problem 6
1
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CentroAmerican 2015 #6
39
39
39
students participated in a math competition. The exam consisted of
6
6
6
problems and each problem was worth
1
1
1
point for a correct solution and
0
0
0
points for an incorrect solution. For any
3
3
3
students, there is at most
1
1
1
problem that was not solved by any of the three. Let
B
B
B
be the sum of all of the scores of the
39
39
39
students. Find the smallest possible value of
B
B
B
.
Problem 5
1
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CentroAmerican 2015 #5
Let
A
B
C
ABC
A
BC
be a triangle such that
A
C
=
2
A
B
AC=2AB
A
C
=
2
A
B
. Let
D
D
D
be the point of intersection of the angle bisector of the angle
C
A
B
CAB
C
A
B
with
B
C
BC
BC
. Let
F
F
F
be the point of intersection of the line parallel to
A
B
AB
A
B
passing through
C
C
C
with the perpendicular line to
A
D
AD
A
D
passing through
A
A
A
. Prove that
F
D
FD
F
D
passes through the midpoint of
A
C
AC
A
C
.
Problem 4
1
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CentroAmerican 2015 #4
Anselmo and Bonifacio start a game where they alternatively substitute a number written on a board. In each turn, a player can substitute the written number by either the number of divisors of the written number or by the difference between the written number and the number of divisors it has. Anselmo is the first player to play, and whichever player is the first player to write the number
0
0
0
is the winner. Given that the initial number is
1036
1036
1036
, determine which player has a winning strategy and describe that strategy.Note: For example, the number of divisors of
14
14
14
is
4
4
4
, since its divisors are
1
1
1
,
2
2
2
,
7
7
7
, and
14
14
14
.
Problem 3
1
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CentroAmerican 2015 #3
Let
A
B
C
D
ABCD
A
BC
D
be a cyclic quadrilateral with
A
B
<
C
D
AB<CD
A
B
<
C
D
, and let
P
P
P
be the point of intersection of the lines
A
D
AD
A
D
and
B
C
BC
BC
.The circumcircle of the triangle
P
C
D
PCD
PC
D
intersects the line
A
B
AB
A
B
at the points
Q
Q
Q
and
R
R
R
. Let
S
S
S
and
T
T
T
be the points where the tangents from
P
P
P
to the circumcircle of
A
B
C
D
ABCD
A
BC
D
touch that circle.(a) Prove that
P
Q
=
P
R
PQ=PR
PQ
=
PR
.(b) Prove that
Q
R
S
T
QRST
QRST
is a cyclic quadrilateral.
Problem 2
1
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CentroAmerican 2015 #2
A sequence
(
a
n
)
(a_n)
(
a
n
)
of real numbers is defined by
a
0
=
1
a_0=1
a
0
=
1
,
a
1
=
2015
a_1=2015
a
1
=
2015
and for all
n
≥
1
n\geq1
n
≥
1
, we have
a
n
+
1
=
n
−
1
n
+
1
a
n
−
n
−
2
n
2
+
n
a
n
−
1
.
a_{n+1}=\frac{n-1}{n+1}a_n-\frac{n-2}{n^2+n}a_{n-1}.
a
n
+
1
=
n
+
1
n
−
1
a
n
−
n
2
+
n
n
−
2
a
n
−
1
.
Calculate the value of
a
1
a
2
−
a
2
a
3
+
a
3
a
4
−
a
4
a
5
+
…
+
a
2013
a
2014
−
a
2014
a
2015
\frac{a_1}{a_2}-\frac{a_2}{a_3}+\frac{a_3}{a_4}-\frac{a_4}{a_5}+\ldots+\frac{a_{2013}}{a_{2014}}-\frac{a_{2014}}{a_{2015}}
a
2
a
1
−
a
3
a
2
+
a
4
a
3
−
a
5
a
4
+
…
+
a
2014
a
2013
−
a
2015
a
2014
.
Problem 1
1
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CentroAmerican 2015 #1
We wish to write
n
n
n
distinct real numbers
(
n
≥
3
)
(n\geq3)
(
n
≥
3
)
on the circumference of a circle in such a way that each number is equal to the product of its immediate neighbors to the left and right. Determine all of the values of
n
n
n
such that this is possible.