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README.md

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| # | Title | Solutions | Video | Difficulty | Tag
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|-----|----------------|---------------|--------|-------------|-------------
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|1302|[Deepest Leaves Sum](https://leetcode.com/problems/deepest-leaves-sum/)|[Solution](../master/src/main/java/com/fishercoder/solutions/_1302.java) | |Medium||
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|1297|[Maximum Number of Occurrences of a Substring](https://leetcode.com/problems/maximum-number-of-occurrences-of-a-substring/)|[Solution](../master/src/main/java/com/fishercoder/solutions/_1297.java) | |Medium||
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|1296|[Divide Array in Sets of K Consecutive Numbers](https://leetcode.com/problems/divide-array-in-sets-of-k-consecutive-numbers/)|[Solution](../master/src/main/java/com/fishercoder/solutions/_1296.java) | |Medium||
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|1295|[Find Numbers with Even Number of Digits](https://leetcode.com/problems/find-numbers-with-even-number-of-digits/)|[Solution](../master/src/main/java/com/fishercoder/solutions/_1295.java) | |Easy||
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package com.fishercoder.solutions;
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import com.fishercoder.common.classes.TreeNode;
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import java.util.LinkedList;
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import java.util.Queue;
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/**
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* 1302. Deepest Leaves Sum
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*
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* Given a binary tree, return the sum of values of its deepest leaves.
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*
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* Example 1:
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* 1
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* / \
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* 2 3
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* / \ \
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* 4 5 6
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* / \
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* 7 8
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*
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* Input: root = [1,2,3,4,5,null,6,7,null,null,null,null,8]
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* Output: 15
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*
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* Constraints:
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* The number of nodes in the tree is between 1 and 10^4.
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* The value of nodes is between 1 and 100.
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* */
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public class _1302 {
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public static class Solution1 {
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public int deepestLeavesSum(TreeNode root) {
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int depth = maxDepth(root);
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return bfs(root, depth);
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}
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private int bfs(TreeNode root, int depth) {
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Queue<TreeNode> queue = new LinkedList<>();
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queue.offer(root);
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int currentLevel = 0;
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int sum = 0;
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while (!queue.isEmpty()) {
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int size = queue.size();
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currentLevel++;
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for (int i = 0; i < size; i++) {
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TreeNode currNode = queue.poll();
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if (currentLevel == depth) {
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sum += currNode.val;
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}
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if (currNode.left != null) {
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queue.offer(currNode.left);
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}
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if (currNode.right != null) {
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queue.offer(currNode.right);
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}
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}
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}
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return sum;
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}
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private int maxDepth(TreeNode root) {
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if (root == null) {
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return 0;
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}
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return Math.max(maxDepth(root.left), maxDepth(root.right)) + 1;
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}
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}
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}
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package com.fishercoder;
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import com.fishercoder.common.utils.TreeUtils;
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import com.fishercoder.solutions._1302;
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import org.junit.BeforeClass;
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import org.junit.Test;
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import java.util.Arrays;
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import static org.junit.Assert.assertEquals;
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public class _1302Test {
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private static _1302.Solution1 solution1;
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@BeforeClass
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public static void setup() {
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solution1 = new _1302.Solution1();
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}
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@Test
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public void test1() {
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assertEquals(15, solution1.deepestLeavesSum(TreeUtils.constructBinaryTree(Arrays.asList(1, 2, 3, 4, 5, null, 6, 7, null, null, null, null, 8))));
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}
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}

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