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You are given the head of a linked list. The nodes in the linked list are sequentially assigned to non-empty groups whose lengths form the sequence of the natural numbers (1, 2, 3, 4, ...). The length of a group is the number of nodes assigned to it. In other words, Note that the length of the last group may be less than or equal to 1 + the length of the second to last group. Reverse the nodes in each group with an even length, and return the head of the modified linked list.
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You are given the head of a linked list. The nodes in the linked list are sequentially assigned to non-empty groups whose lengths form the sequence of the natural numbers (1, 2, 3, 4, ...). The length of a group is the number of nodes assigned to it. In other words, Note that the length of the last group may be less than or equal to 1 + the length of the second to last group. Reverse the nodes in each group with an even length, and return the head of the modified linked list.
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head = [5,2,6,3,9,1,7,3,8,4]
[5,6,2,3,9,1,4,8,3,7]
head = [1,1,0,6]
[1,0,1,6]
head = [1,1,0,6,5]
[1,0,1,5,6]
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Solve Reverse Nodes in Even Length Groups — You are given the head of a linked list. The nodes in the linked list are sequen...
Here's the optimal approach using Linked List:
Time: O(n) | Space: O(n)
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