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{
"data": {
"question": {
"questionId": "515",
"questionFrontendId": "515",
"categoryTitle": "Algorithms",
"boundTopicId": 1739,
"title": "Find Largest Value in Each Tree Row",
"titleSlug": "find-largest-value-in-each-tree-row",
"content": "<p>Given the <code>root</code> of a binary tree, return <em>an array of the largest value in each row</em> of the tree <strong>(0-indexed)</strong>.</p>\n\n<p>&nbsp;</p>\n<p><strong class=\"example\">Example 1:</strong></p>\n<img alt=\"\" src=\"https://assets.leetcode.com/uploads/2020/08/21/largest_e1.jpg\" style=\"width: 300px; height: 172px;\" />\n<pre>\n<strong>Input:</strong> root = [1,3,2,5,3,null,9]\n<strong>Output:</strong> [1,3,9]\n</pre>\n\n<p><strong class=\"example\">Example 2:</strong></p>\n\n<pre>\n<strong>Input:</strong> root = [1,2,3]\n<strong>Output:</strong> [1,3]\n</pre>\n\n<p>&nbsp;</p>\n<p><strong>Constraints:</strong></p>\n\n<ul>\n\t<li>The number of nodes in the tree will be in the range <code>[0, 10<sup>4</sup>]</code>.</li>\n\t<li><code>-2<sup>31</sup> &lt;= Node.val &lt;= 2<sup>31</sup> - 1</code></li>\n</ul>\n",
"translatedTitle": "在每个树行中找最大值",
"translatedContent": "<p>给定一棵二叉树的根节点&nbsp;<code>root</code> ,请找出该二叉树中每一层的最大值。</p>\n\n<p>&nbsp;</p>\n\n<p><strong>示例1</strong></p>\n\n<p><img alt=\"\" src=\"https://assets.leetcode.com/uploads/2020/08/21/largest_e1.jpg\" style=\"height: 172px; width: 300px;\" /></p>\n\n<pre>\n<strong>输入: </strong>root = [1,3,2,5,3,null,9]\n<strong>输出: </strong>[1,3,9]\n</pre>\n\n<p><strong>示例2</strong></p>\n\n<pre>\n<strong>输入: </strong>root = [1,2,3]\n<strong>输出: </strong>[1,3]\n</pre>\n\n<p>&nbsp;</p>\n\n<p><strong>提示:</strong></p>\n\n<ul>\n\t<li>二叉树的节点个数的范围是 <code>[0,10<sup>4</sup>]</code></li>\n\t<li><meta charset=\"UTF-8\" /><code>-2<sup>31</sup>&nbsp;&lt;= Node.val &lt;= 2<sup>31</sup>&nbsp;- 1</code></li>\n</ul>\n\n<p>&nbsp;</p>\n",
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"code": "/**\n * Definition for a binary tree node.\n * function TreeNode(val, left, right) {\n * this.val = (val===undefined ? 0 : val)\n * this.left = (left===undefined ? null : left)\n * this.right = (right===undefined ? null : right)\n * }\n */\n/**\n * @param {TreeNode} root\n * @return {number[]}\n */\nvar largestValues = function(root) {\n\n};",
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"code": "/**\n * Definition for a binary tree node.\n * class TreeNode {\n * val: number\n * left: TreeNode | null\n * right: TreeNode | null\n * constructor(val?: number, left?: TreeNode | null, right?: TreeNode | null) {\n * this.val = (val===undefined ? 0 : val)\n * this.left = (left===undefined ? null : left)\n * this.right = (right===undefined ? null : right)\n * }\n * }\n */\n\nfunction largestValues(root: TreeNode | null): number[] {\n \n};",
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"code": "/**\n * Definition for a binary tree node.\n * public class TreeNode {\n * public var val: Int\n * public var left: TreeNode?\n * public var right: TreeNode?\n * public init() { self.val = 0; self.left = nil; self.right = nil; }\n * public init(_ val: Int) { self.val = val; self.left = nil; self.right = nil; }\n * public init(_ val: Int, _ left: TreeNode?, _ right: TreeNode?) {\n * self.val = val\n * self.left = left\n * self.right = right\n * }\n * }\n */\nclass Solution {\n func largestValues(_ root: TreeNode?) -> [Int] {\n\n }\n}",
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"code": "/**\n * Example:\n * var ti = TreeNode(5)\n * var v = ti.`val`\n * Definition for a binary tree node.\n * class TreeNode(var `val`: Int) {\n * var left: TreeNode? = null\n * var right: TreeNode? = null\n * }\n */\nclass Solution {\n fun largestValues(root: TreeNode?): List<Int> {\n\n }\n}",
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"code": "/**\n * Definition for a binary tree node.\n * type TreeNode struct {\n * Val int\n * Left *TreeNode\n * Right *TreeNode\n * }\n */\nfunc largestValues(root *TreeNode) []int {\n\n}",
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