1983 IMO Problems/Problem 6: Difference between revisions
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Let <math>a</math>, <math>b</math> and <math>c</math> be the lengths of the sides of a triangle. Prove that | Let <math>a</math>, <math>b</math> and <math>c</math> be the lengths of the sides of a triangle. Prove that | ||
<math>a^2 b(a-b) + b^2 c(b-c) + c^2 (c-a) \geq 0</math>. | <math>a^2 b(a-b) + b^2 c(b-c) + c^2 a(c-a) \geq 0</math>. | ||
Determine when equality occurs. | Determine when equality occurs. | ||
Revision as of 21:42, 15 July 2021
Problem 6
Let
,
and
be the lengths of the sides of a triangle. Prove that
.
Determine when equality occurs.
Solution 1
By Ravi substitution, let
,
,
. Then, the triangle condition becomes
. After some manipulation, the inequality becomes:
.
By Cauchy, we have:
with equality if and only if
. So the inequality holds with equality if and only if x = y = z. Thus the original inequality has equality if and only if the triangle is equilateral.
Solution 2
Without loss of generality, let
. By Muirhead or by AM-GM, we see that
.
If we can show that
, we are done, since then
, and we can divide by
.
We first see that,
, so
.
Factoring, this becomes
. This is the same as:
.
Expanding and refactoring, this is equal to
. (This step makes more sense going backwards.)
Expanding this out, we have
,
which is the desired result.
See Also
| 1983 IMO (Problems) • Resources | ||
| Preceded by Problem 5 |
1 • 2 • 3 • 4 • 5 • 6 | Followed by Last Problem |
| All IMO Problems and Solutions | ||