Difference between revisions of "2010 AIME II Problems/Problem 7"
Sinkokuyou (talk | contribs) |
Sinkokuyou (talk | contribs) (→Solution) |
||
Line 3: | Line 3: | ||
== Solution == | == Solution == | ||
set <math>w=x+yi</math>, so <math>x_1 = x+(y+3)i</math>, <math>x_2 = x+(y+9)i</math>, <math>x_3 = 2x-4+2yi</math>. | set <math>w=x+yi</math>, so <math>x_1 = x+(y+3)i</math>, <math>x_2 = x+(y+9)i</math>, <math>x_3 = 2x-4+2yi</math>. | ||
+ | |||
Since <math>a,b,c\in{R}</math>, the imaginary part of a,b,c must be 0. | Since <math>a,b,c\in{R}</math>, the imaginary part of a,b,c must be 0. | ||
+ | |||
Start with a, since it's the easiest one to do: | Start with a, since it's the easiest one to do: | ||
+ | |||
<math>y+3+y+9+2y=0, y=-3</math> | <math>y+3+y+9+2y=0, y=-3</math> | ||
+ | |||
and therefore: | and therefore: | ||
+ | |||
<math>x_1 = x</math>, <math>x_2 = x+6i</math>, <math>x_3 = 2x-4-6i</math> | <math>x_1 = x</math>, <math>x_2 = x+6i</math>, <math>x_3 = 2x-4-6i</math> | ||
+ | |||
now, do the part where the imaginery part of c is 0, since it's the second easiest one to do: | now, do the part where the imaginery part of c is 0, since it's the second easiest one to do: | ||
<math>x(x+6i)(2x-4-6i)</math>, the imaginery part is: <math>6x^2-24x</math>, which is 0, and therefore x=4, since x=0 don't work, | <math>x(x+6i)(2x-4-6i)</math>, the imaginery part is: <math>6x^2-24x</math>, which is 0, and therefore x=4, since x=0 don't work, | ||
+ | |||
so now, <math>x_1 = 4, x_2 = 4+6i, x_3 = 4-6i</math> | so now, <math>x_1 = 4, x_2 = 4+6i, x_3 = 4-6i</math> | ||
+ | |||
and therefore: | and therefore: | ||
+ | |||
<math>a=-12, b=84, c=-208</math>, and finally, we have <math>|a+b+c|=|-12+84-208|=136</math>. | <math>a=-12, b=84, c=-208</math>, and finally, we have <math>|a+b+c|=|-12+84-208|=136</math>. |
Revision as of 11:06, 3 April 2010
Problem 7
Let , where a, b, and c are real. There exists a complex number such that the three roots of are , , and , where . Find .
Solution
set , so , , .
Since , the imaginary part of a,b,c must be 0.
Start with a, since it's the easiest one to do:
and therefore:
, ,
now, do the part where the imaginery part of c is 0, since it's the second easiest one to do: , the imaginery part is: , which is 0, and therefore x=4, since x=0 don't work,
so now,
and therefore:
, and finally, we have .