2011 AMC 12B Problems/Problem 24: Difference between revisions
Pandabear10 (talk | contribs) m Replaced an 'or' with an implies sign to make the cases more clear. |
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<math>P(z) = \left(z^4 - 1\right)\left(z^4 + \left(4\sqrt{3} + 7\right)\right)</math> | <math>P(z) = \left(z^4 - 1\right)\left(z^4 + \left(4\sqrt{3} + 7\right)\right)</math> | ||
So <math>z^4 = 1 | So <math>z^4 = 1 \implies z = e^{i\frac{n\pi}{2}}</math> | ||
or <math>z^4 = - \left(4\sqrt{3} + 7\right)</math> | or <math>z^4 = - \left(4\sqrt{3} + 7\right)</math> | ||
Revision as of 19:36, 27 December 2019
Problem
Let
. What is the minimum perimeter among all the
-sided polygons in the complex plane whose vertices are precisely the zeros of
?
Solution
Answer: (B)
First of all, we need to find all
such that
So
or
Now we have a solution at
if we look at them in polar coordinate, further more, the 8-gon is symmetric (it is an regular octagon) . So we only need to find the side length of one and multiply by
.
So answer
distance from
to
Side length
Hence, answer is
.
Easier method: Use the law of cosines.
We make
the distance.
Now, since the angle does not change the distance from the origin, we can just use the distance.
, which simplifies to
, or
, or
.
Multiply the answer by 8 to get
See also
| 2011 AMC 12B (Problems • Answer Key • Resources) | |
| Preceded by Problem 23 |
Followed by Problem 25 |
| 1 • 2 • 3 • 4 • 5 • 6 • 7 • 8 • 9 • 10 • 11 • 12 • 13 • 14 • 15 • 16 • 17 • 18 • 19 • 20 • 21 • 22 • 23 • 24 • 25 | |
| All AMC 12 Problems and Solutions | |
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