{ "data": { "question": { "questionId": "942", "questionFrontendId": "906", "categoryTitle": "Algorithms", "boundTopicId": 1276, "title": "Super Palindromes", "titleSlug": "super-palindromes", "content": "

Let's say a positive integer is a super-palindrome if it is a palindrome, and it is also the square of a palindrome.

\n\n

Given two positive integers left and right represented as strings, return the number of super-palindromes integers in the inclusive range [left, right].

\n\n

 

\n

Example 1:

\n\n
\nInput: left = "4", right = "1000"\nOutput: 4\nExplanation: 4, 9, 121, and 484 are superpalindromes.\nNote that 676 is not a superpalindrome: 26 * 26 = 676, but 26 is not a palindrome.\n
\n\n

Example 2:

\n\n
\nInput: left = "1", right = "2"\nOutput: 1\n
\n\n

 

\n

Constraints:

\n\n\n", "translatedTitle": "超级回文数", "translatedContent": "

如果一个正整数自身是回文数,而且它也是一个回文数的平方,那么我们称这个数为超级回文数。

\n\n

现在,给定两个正整数 L 和 R (以字符串形式表示),返回包含在范围 [L, R] 中的超级回文数的数目。

\n\n

 

\n\n

示例:

\n\n
输入:L = "4", R = "1000"\n输出:4\n解释:\n4,9,121,以及 484 是超级回文数。\n注意 676 不是一个超级回文数: 26 * 26 = 676,但是 26 不是回文数。
\n\n

 

\n\n

提示:

\n\n
    \n\t
  1. 1 <= len(L) <= 18
  2. \n\t
  3. 1 <= len(R) <= 18
  4. \n\t
  5. L 和 R 是表示 [1, 10^18) 范围的整数的字符串。
  6. \n\t
  7. int(L) <= int(R)
  8. \n
\n\n

 

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