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"title": "Jump Game II",
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"content": "<p>You are given a <strong>0-indexed</strong> array of integers <code>nums</code> of length <code>n</code>. You are initially positioned at <code>nums[0]</code>.</p>\n\n<p>Each element <code>nums[i]</code> represents the maximum length of a forward jump from index <code>i</code>. In other words, if you are at <code>nums[i]</code>, you can jump to any <code>nums[i + j]</code> where:</p>\n\n<ul>\n\t<li><code>0 &lt;= j &lt;= nums[i]</code> and</li>\n\t<li><code>i + j &lt; n</code></li>\n</ul>\n\n<p>Return <em>the minimum number of jumps to reach </em><code>nums[n - 1]</code>. The test cases are generated such that you can reach <code>nums[n - 1]</code>.</p>\n\n<p>&nbsp;</p>\n<p><strong class=\"example\">Example 1:</strong></p>\n\n<pre>\n<strong>Input:</strong> nums = [2,3,1,1,4]\n<strong>Output:</strong> 2\n<strong>Explanation:</strong> The minimum number of jumps to reach the last index is 2. Jump 1 step from index 0 to 1, then 3 steps to the last index.\n</pre>\n\n<p><strong class=\"example\">Example 2:</strong></p>\n\n<pre>\n<strong>Input:</strong> nums = [2,3,0,1,4]\n<strong>Output:</strong> 2\n</pre>\n\n<p>&nbsp;</p>\n<p><strong>Constraints:</strong></p>\n\n<ul>\n\t<li><code>1 &lt;= nums.length &lt;= 10<sup>4</sup></code></li>\n\t<li><code>0 &lt;= nums[i] &lt;= 1000</code></li>\n\t<li>It&#39;s guaranteed that you can reach <code>nums[n - 1]</code>.</li>\n</ul>\n",
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"code": "defmodule Solution do\n @spec jump(nums :: [integer]) :: integer\n def jump(nums) do\n \n end\nend",
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