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You are given an integer array nums of length n and an integer array queries. Let gcdPairs denote an array obtained by calculating the GCD of all possible pairs (nums[i], nums[j]), where 0 <= i < j < n, and then sorting these values in ascending order. For each query queries[i], you need to find the element at index queries[i] in gcdPairs. Return an integer array answer, where answer[i] is the value at gcdPairs[queries[i]] for each query. The term gcd(a, b) denotes the greatest common divisor of a and b.
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You are given an integer array nums of length n and an integer array queries. Let gcdPairs denote an array obtained by calculating the GCD of all possible pairs (nums[i], nums[j]), where 0 <= i < j < n, and then sorting these values in ascending order. For each query queries[i], you need to find the element at index queries[i] in gcdPairs. Return an integer array answer, where answer[i] is the value at gcdPairs[queries[i]] for each query. The term gcd(a, b) denotes the greatest common divisor of a and b.
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nums = [2,3,4], queries = [0,2,2]
[1,2,2]
nums = [4,4,2,1], queries = [5,3,1,0]
[4,2,1,1]
nums = [2,2], queries = [0,0]
[2,2]
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Solve Sorted GCD Pair Queries — You are given an integer array nums of length n and an integer array queries. Le...
Here's the optimal approach using Array:
Time: O(n) | Space: O(n)
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