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Given an n x n grid containing only values 0 and 1, where 0 represents water and 1 represents land, find a water cell such that its distance to the nearest land cell is maximized, and return the distance. If no land or water exists in the grid, return -1. The distance used in this problem is the Manhattan distance: the distance between two cells (x0, y0) and (x1, y1) is |x0 - x1| + |y0 - y1|.
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Given an n x n grid containing only values 0 and 1, where 0 represents water and 1 represents land, find a water cell such that its distance to the nearest land cell is maximized, and return the distance. If no land or water exists in the grid, return -1. The distance used in this problem is the Manhattan distance: the distance between two cells (x0, y0) and (x1, y1) is |x0 - x1| + |y0 - y1|.
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grid = [[1,0,1],[0,0,0],[1,0,1]]
2
grid = [[1,0,0],[0,0,0],[0,0,0]]
4
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Solve As Far from Land as Possible — Given an n x n grid containing only values 0 and 1, where 0 represents water and...
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Time: O(n) | Space: O(n)
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