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"categoryTitle": "Algorithms",
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"title": "Maximum Number of Coins You Can Get",
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"content": "<p>There are <code>3n</code> piles of coins of varying size, you and your friends will take piles of coins as follows:</p>\n\n<ul>\n\t<li>In each step, you will choose <strong>any </strong><code>3</code> piles of coins (not necessarily consecutive).</li>\n\t<li>Of your choice, Alice will pick the pile with the maximum number of coins.</li>\n\t<li>You will pick the next pile with the maximum number of coins.</li>\n\t<li>Your friend Bob will pick the last pile.</li>\n\t<li>Repeat until there are no more piles of coins.</li>\n</ul>\n\n<p>Given an array of integers <code>piles</code> where <code>piles[i]</code> is the number of coins in the <code>i<sup>th</sup></code> pile.</p>\n\n<p>Return the maximum number of coins that you can have.</p>\n\n<p>&nbsp;</p>\n<p><strong class=\"example\">Example 1:</strong></p>\n\n<pre>\n<strong>Input:</strong> piles = [2,4,1,2,7,8]\n<strong>Output:</strong> 9\n<strong>Explanation: </strong>Choose the triplet (2, 7, 8), Alice Pick the pile with 8 coins, you the pile with <strong>7</strong> coins and Bob the last one.\nChoose the triplet (1, 2, 4), Alice Pick the pile with 4 coins, you the pile with <strong>2</strong> coins and Bob the last one.\nThe maximum number of coins which you can have are: 7 + 2 = 9.\nOn the other hand if we choose this arrangement (1, <strong>2</strong>, 8), (2, <strong>4</strong>, 7) you only get 2 + 4 = 6 coins which is not optimal.\n</pre>\n\n<p><strong class=\"example\">Example 2:</strong></p>\n\n<pre>\n<strong>Input:</strong> piles = [2,4,5]\n<strong>Output:</strong> 4\n</pre>\n\n<p><strong class=\"example\">Example 3:</strong></p>\n\n<pre>\n<strong>Input:</strong> piles = [9,8,7,6,5,1,2,3,4]\n<strong>Output:</strong> 18\n</pre>\n\n<p>&nbsp;</p>\n<p><strong>Constraints:</strong></p>\n\n<ul>\n\t<li><code>3 &lt;= piles.length &lt;= 10<sup>5</sup></code></li>\n\t<li><code>piles.length % 3 == 0</code></li>\n\t<li><code>1 &lt;= piles[i] &lt;= 10<sup>4</sup></code></li>\n</ul>\n",
"translatedTitle": "你可以获得的最大硬币数目",
"translatedContent": "<p>有 3n 堆数目不一的硬币,你和你的朋友们打算按以下方式分硬币:</p>\n\n<ul>\n\t<li>每一轮中,你将会选出 <strong>任意</strong> 3 堆硬币(不一定连续)。</li>\n\t<li>Alice 将会取走硬币数量最多的那一堆。</li>\n\t<li>你将会取走硬币数量第二多的那一堆。</li>\n\t<li>Bob 将会取走最后一堆。</li>\n\t<li>重复这个过程,直到没有更多硬币。</li>\n</ul>\n\n<p>给你一个整数数组 <code>piles</code> ,其中 <code>piles[i]</code> 是第 <code>i</code> 堆中硬币的数目。</p>\n\n<p>返回你可以获得的最大硬币数目。</p>\n\n<p>&nbsp;</p>\n\n<p><strong>示例 1</strong></p>\n\n<pre><strong>输入:</strong>piles = [2,4,1,2,7,8]\n<strong>输出:</strong>9\n<strong>解释:</strong>选出 (2, 7, 8) Alice 取走 8 枚硬币的那堆,你取走 <strong>7</strong> 枚硬币的那堆Bob 取走最后一堆。\n选出 (1, 2, 4) , Alice 取走 4 枚硬币的那堆,你取走 <strong>2</strong> 枚硬币的那堆Bob 取走最后一堆。\n你可以获得的最大硬币数目7 + 2 = 9.\n考虑另外一种情况如果选出的是 (1, <strong>2</strong>, 8) 和 (2, <strong>4</strong>, 7) ,你就只能得到 2 + 4 = 6 枚硬币,这不是最优解。\n</pre>\n\n<p><strong>示例 2</strong></p>\n\n<pre><strong>输入:</strong>piles = [2,4,5]\n<strong>输出:</strong>4\n</pre>\n\n<p><strong>示例 3</strong></p>\n\n<pre><strong>输入:</strong>piles = [9,8,7,6,5,1,2,3,4]\n<strong>输出:</strong>18\n</pre>\n\n<p>&nbsp;</p>\n\n<p><strong>提示:</strong></p>\n\n<ul>\n\t<li><code>3 &lt;= piles.length &lt;= 10^5</code></li>\n\t<li><code>piles.length % 3 == 0</code></li>\n\t<li><code>1 &lt;= piles[i] &lt;= 10^4</code></li>\n</ul>\n",
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