IN python Given a list and an integer, determine if that integer is "everywhere" in the list. We define a value as being "everywhere" if, for every pair of adjacent elements in the list, at least one element in the pair is that value. Return true if the given value is "everywhere" in the list. Otherwise, return false. The first input is the comma delimited string (use .split() to turn it into a list). The next input is the integer that we are trying to determine is "everywhere". Sample Input 1 1,2,1,3 1 Sample Output 1 True There are three pairs in this list: (1,2), (2,1), and (1,3). Since 1 is in three of these pairs, it is "everywhere". Thus, we return true. Sample Input 2 1,2,1,3 2 Sample Output 2 False There are three pairs of adjacents in this list: (1,2), (2,1) and (1,3). Since 2 is NOT in all pairs, it is not "everywhere". Thus, we return false. Sample Input 3 1,2,1,3,4 1 Sample Output 3 False The input is not in all "pairs", e.g., not in (3, 4). Thus, we return false.
IN python
Given a list and an integer, determine if that integer is "everywhere" in the list. We define a value as being "everywhere" if, for every pair of adjacent elements in the list, at least one element in the pair is that value. Return true if the given value is "everywhere" in the list. Otherwise, return false.
The first input is the comma delimited string (use .split() to turn it into a list). The next input is the integer that we are trying to determine is "everywhere".
Sample Input 1
1,2,1,3 1
Sample Output 1
True
There are three pairs in this list: (1,2), (2,1), and (1,3). Since 1 is in three of these pairs, it is "everywhere". Thus, we return true.
Sample Input 2
1,2,1,3 2
Sample Output 2
False
There are three pairs of adjacents in this list: (1,2), (2,1) and (1,3). Since 2 is NOT in all pairs, it is not "everywhere". Thus, we return false.
Sample Input 3
1,2,1,3,4 1
Sample Output 3
False
The input is not in all "pairs", e.g., not in (3, 4). Thus, we return false.
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