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The problem is an over simplification of the flow of liquid. - A terrain is given as a grid of cells of random elevations. The

The problem is an over simplification of the flow of liquid. - A terrain is given as a grid of cells of random elevations. The grid is always odd sized and is always a square. - A liquid is poured at the central cell. Water can flow only north-south or east-west; not diagnonally. - At the first step, the water level is the same as the central cell. - Water from one cell flows to a neighbouring cell if the level of water is equal to greater than the elevation of the neighbouring cell. - When the water flows to the neighbouring cell, the level of water is maintained. - If the water cannot flow to any new cell, the water level rises. - The simulation stops when the water reaches the end of the domain. - The output consists of the domain represented by . and W representing dry and wet terrain.
Below is an example
Input Format
7494888977098472650734095922030163928029066690663282412750578767349984317219361315454421112460575572389635170174946593314300620167931780416954275
Water level and location of water:
----------
Current water level: 172
.......
.......
.......
...W...
...W...
.......
.......
----------
Current water level: 172
.......
.......
.......
...W...
..WW...
.......
.......
----------
Current water level: 172
.......
.......
.......
...W...
..WW...
.......
.......
Cannot flow, increasing water level to 173
----------
Current water level: 173
.......
.......
.......
...W...
..WW...
.......
.......
Cannot flow, increasing water level to 174
----------
Current water level: 174
.......
.......
.......
...W...
..WW...
..W....
.......
----------
Current water level: 174
.......
.......
.......
...W...
..WW...
.WW....
.......
----------
Current water level: 174
.......
.......
.......
...W...
..WW...
.WW....
.W.....
----------
Current water level: 174 Reached edge, exiting. Solution:
Output Format
.......
.......
.......
...W...
..WW...
.WW....
.W.....
Constraints: First line of the input has dimension n of (n X n) matrix. Followed by the matrix itself as shown below in the sample input.
Answer: we want exact output . ye.................W................
...............W.WWW...............
..............WWWWWWW..............
..............WWWWWW...............
.............WWW..WWWW.............
...........W.WWWWWWW.WWW...........
..........WWWWW.WWWWWWWWW..........
.........WWWWW.WWWWWWWWW.W.........
.........WWWWW.WWWWWWWW.WWW........
.......W..WWWWWWWWWWWWWWWWWW.......
......WWW.WWWWWWW.WWW..WWWWWW......
.....WWWW...WWWWWWW.WWW.WW.WWW.....
........WWWWW.W.WWWWWWWW.WWWWWW....
...W.WWWWWWWWWWWW.WWWWWWWWW.WW.....
..WWWWWWWWW.WWW.WWWWW.WWWW.WWWW....
.WWWWWWWWW.WW.WWWWWWWWW.WWWWW......
...WWW..WWWWWW..WWWWW..W.W..WWW....
..WWWWWWWWWWWWWWWWWWWW.WW..WWWWW...
..WWW.WWWWW.WWW.WWWWWW.WWWWW.WW....
.WWWW..WWWWWWWWWWWWWWWWWW.WWWWWW...
..WWWW.WWWW.WWW.WWWWWW..W.W.WWW....
...WWWWWWWWWWWWWWWWW.WWWWWWWWW.....
....WWWW..WWWWW.W.WWW.WWWWWW.WW....
.....WWWWWWWWWWW.WWWWWWWW.WWWW.....
......WWWWWWWWWWWWWWWWWWWWWWW......
.......WWWW.WW.WWW.WW..WWWWW.......
........WWWWWW.WW...WWWW.WW........
.........WW.WWWWWW

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