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You are given a 0-indexed 2D matrix grid of size m x n, where (r, c) represents: A fisher can start at any water cell (r, c) and can do the following operations any number of times: Return the maximum number of fish the fisher can catch if he chooses his starting cell optimally, or 0 if no water cell exists. An adjacent cell of the cell (r, c), is one of the cells (r, c + 1), (r, c - 1), (r + 1, c) or (r - 1, c) if it exists.
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You are given a 0-indexed 2D matrix grid of size m x n, where (r, c) represents: A fisher can start at any water cell (r, c) and can do the following operations any number of times: Return the maximum number of fish the fisher can catch if he chooses his starting cell optimally, or 0 if no water cell exists. An adjacent cell of the cell (r, c), is one of the cells (r, c + 1), (r, c - 1), (r + 1, c) or (r - 1, c) if it exists.
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grid = [[0,2,1,0],[4,0,0,3],[1,0,0,4],[0,3,2,0]]
7
grid = [[1,0,0,0],[0,0,0,0],[0,0,0,0],[0,0,0,1]]
1
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Solve Maximum Number of Fish in a Grid — You are given a 0-indexed 2D matrix grid of size m x n, where (r, c) represents:...
Here's the optimal approach using Array:
Time: O(n) | Space: O(n)
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