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{
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"title": "Rotated Digits",
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"content": "<p>An integer <code>x</code> is a <strong>good</strong> if after rotating each digit individually by 180 degrees, we get a valid number that is different from <code>x</code>. Each digit must be rotated - we cannot choose to leave it alone.</p>\n\n<p>A number is valid if each digit remains a digit after rotation. For example:</p>\n\n<ul>\n\t<li><code>0</code>, <code>1</code>, and <code>8</code> rotate to themselves,</li>\n\t<li><code>2</code> and <code>5</code> rotate to each other (in this case they are rotated in a different direction, in other words, <code>2</code> or <code>5</code> gets mirrored),</li>\n\t<li><code>6</code> and <code>9</code> rotate to each other, and</li>\n\t<li>the rest of the numbers do not rotate to any other number and become invalid.</li>\n</ul>\n\n<p>Given an integer <code>n</code>, return <em>the number of <strong>good</strong> integers in the range </em><code>[1, n]</code>.</p>\n\n<p>&nbsp;</p>\n<p><strong>Example 1:</strong></p>\n\n<pre>\n<strong>Input:</strong> n = 10\n<strong>Output:</strong> 4\n<strong>Explanation:</strong> There are four good numbers in the range [1, 10] : 2, 5, 6, 9.\nNote that 1 and 10 are not good numbers, since they remain unchanged after rotating.\n</pre>\n\n<p><strong>Example 2:</strong></p>\n\n<pre>\n<strong>Input:</strong> n = 1\n<strong>Output:</strong> 0\n</pre>\n\n<p><strong>Example 3:</strong></p>\n\n<pre>\n<strong>Input:</strong> n = 2\n<strong>Output:</strong> 1\n</pre>\n\n<p>&nbsp;</p>\n<p><strong>Constraints:</strong></p>\n\n<ul>\n\t<li><code>1 &lt;= n &lt;= 10<sup>4</sup></code></li>\n</ul>\n",
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"code": "class Solution {\npublic:\n int rotatedDigits(int n) {\n \n }\n};",
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"code": "class Solution(object):\n def rotatedDigits(self, n):\n \"\"\"\n :type n: int\n :rtype: int\n \"\"\"\n ",
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"code": "/**\n * @param {number} n\n * @return {number}\n */\nvar rotatedDigits = function(n) {\n \n};",
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"code": "# @param {Integer} n\n# @return {Integer}\ndef rotated_digits(n)\n \nend",
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"code": "(define/contract (rotated-digits n)\n (-> exact-integer? exact-integer?)\n\n )",
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"code": "-spec rotated_digits(N :: integer()) -> integer().\nrotated_digits(N) ->\n .",
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"code": "defmodule Solution do\n @spec rotated_digits(n :: integer) :: integer\n def rotated_digits(n) do\n\n end\nend",
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