lc104. 二叉树最大深度(EZ)

给定一个二叉树 root ,返回其最大深度。

二叉树的 最大深度 是指从根节点到最远叶子节点的最长路径上的节点数。

示例 1:

img

输入:root = [3,9,20,null,null,15,7]
输出:3

示例 2:

输入:root = [1,null,2]
输出:2

提示:

  • 树中节点的数量在 [0, 10^4] 区间内。
  • -100 <= Node.val <= 100

左子树右子树分别递归

/**
* Definition for a binary tree node.
* public class TreeNode {
* int val;
* TreeNode left;
* TreeNode right;
* TreeNode() {}
* TreeNode(int val) { this.val = val; }
* TreeNode(int val, TreeNode left, TreeNode right) {
* this.val = val;
* this.left = left;
* this.right = right;
* }
* }
*/
class Solution {
public int maxDepth(TreeNode root) {
if (root == null) {
return 0;
}
int left = maxDepth(root.left);
int right = maxDepth(root.right);
return Math.max(left, right) + 1;
}
}

lc100. 相同的树(EZ)

给你两棵二叉树的根节点 pq ,编写一个函数来检验这两棵树是否相同。

如果两个树在结构上相同,并且节点具有相同的值,则认为它们是相同的。

示例 1:

img

输入:p = [1,2,3], q = [1,2,3]
输出:true

示例 2:

img

输入:p = [1,2], q = [1,null,2]
输出:false

示例 3:

img

输入:p = [1,2,1], q = [1,1,2]
输出:false

提示:

  • 两棵树上的节点数目都在范围 [0, 100]
  • -10^4 <= Node.val <= 10^4

左右两边递归地去查找

/**
* Definition for a binary tree node.
* public class TreeNode {
* int val;
* TreeNode left;
* TreeNode right;
* TreeNode() {}
* TreeNode(int val) { this.val = val; }
* TreeNode(int val, TreeNode left, TreeNode right) {
* this.val = val;
* this.left = left;
* this.right = right;
* }
* }
*/
class Solution {
public boolean isSameTree(TreeNode p, TreeNode q) {
if (p == null && q == null) {
return true;
} else if (p == null || q == null) {
return false;
} else if (p.val != q.val) {
return false;
} else {
return isSameTree(p.left, q.left) && isSameTree(p.right, q.right);
}
}
}

lc226. 翻转二叉树(EZ)

给你一棵二叉树的根节点 root ,翻转这棵二叉树,并返回其根节点。

示例 1:

img

输入:root = [4,2,7,1,3,6,9]
输出:[4,7,2,9,6,3,1]

示例 2:

img

输入:root = [2,1,3]
输出:[2,3,1]

示例 3:

输入:root = []
输出:[]

提示:

  • 树中节点数目范围在 [0, 100]
  • -100 <= Node.val <= 100

左右两边,递归地去交换节点

/**
* Definition for a binary tree node.
* public class TreeNode {
* int val;
* TreeNode left;
* TreeNode right;
* TreeNode() {}
* TreeNode(int val) { this.val = val; }
* TreeNode(int val, TreeNode left, TreeNode right) {
* this.val = val;
* this.left = left;
* this.right = right;
* }
* }
*/
class Solution {
public TreeNode invertTree(TreeNode root) {
if (root == null) {
return root;
}
TreeNode tmp = root.left;
root.left = root.right;
root.right = tmp;
invertTree(root.left);
invertTree(root.right);
return root;
}
}

lc101. 对称二叉树(EZ)

给你一个二叉树的根节点 root , 检查它是否轴对称。

示例 1:

img

输入:root = [1,2,2,3,4,4,3]
输出:true

示例 2:

img

输入:root = [1,2,2,null,3,null,3]
输出:false

提示:

  • 树中节点数目在范围 [1, 1000]
  • -100 <= Node.val <= 100

**进阶:**你可以运用递归和迭代两种方法解决这个问题吗?


递归地去判断(没错今天的题都是递归题)

/**
* Definition for a binary tree node.
* public class TreeNode {
* int val;
* TreeNode left;
* TreeNode right;
* TreeNode() {}
* TreeNode(int val) { this.val = val; }
* TreeNode(int val, TreeNode left, TreeNode right) {
* this.val = val;
* this.left = left;
* this.right = right;
* }
* }
*/
class Solution {
public boolean isSymmetric(TreeNode root) {
return isSymmetric(root.left, root.right);
}

private boolean isSymmetric(TreeNode left, TreeNode right) {
if (left == null && right == null) {
return true;
}
if (left == null || right == null || left.val != right.val) {
return false;
}
return isSymmetric(left.left, right.right) && isSymmetric(left.right, right.left);
}
}