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You are given a 0-indexed integer array nums and an integer k. You are initially standing at index 0. In one move, you can jump at most k steps forward without going outside the boundaries of the array. That is, you can jump from index i to any index in the range [i + 1, min(n - 1, i + k)] inclusive. You want to reach the last index of the array (index n - 1). Your score is the sum of all nums[j] for each index j you visited in the array. Return the maximum score you can get.
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You are given a 0-indexed integer array nums and an integer k. You are initially standing at index 0. In one move, you can jump at most k steps forward without going outside the boundaries of the array. That is, you can jump from index i to any index in the range [i + 1, min(n - 1, i + k)] inclusive. You want to reach the last index of the array (index n - 1). Your score is the sum of all nums[j] for each index j you visited in the array. Return the maximum score you can get.
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nums = [1,-1,-2,4,-7,3], k = 2
7
nums = [10,-5,-2,4,0,3], k = 3
17
nums = [1,-5,-20,4,-1,3,-6,-3], k = 2
0
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Solve Jump Game VI — You are given a 0-indexed integer array nums and an integer k. You are initially...
Here's the optimal approach using Array:
Time: O(n) | Space: O(n)
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