The Manhattan distance between two points (x1,y1) and (x2, y2) is given as |x1-x2| + ly1-y2|, where |x| denotes the absolute value of x. Write a function named manhattan(), that takes a list of points where each point is represented by a tuple containing x and y coordinates, and returns a tuple containing indices of the two points whose manhattan distance is the largest among the provided points. For example, manhattan([(0,0), (1,1), (2,-2)]) returns (0,2) because the manhattan distance between the points (0,0) and (2,-2) is 4, and that is the maximum in the set. manhattan([(0,0),(1,0),(0,2),(-3,0)]) returns (2,3) because the greatest distance occurs hetween the noints at nositions 2 and 3. (A 2)-(-3 A)

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The Manhattan distance between two points (x1,y1) and (x2,y2) is given as
|x1-x2| + ly1-y2|, where |x| denotes the absolute value of x.
Write a function named manhattan (), that takes a list of points where each
point is represented by a tuple containing x and y coordinates, and
returns a tuple containing indices of the two points whose manhattan
distance is the largest among the provided points. For example,
manhattan([(e,0), (1,1), (2, -2)]) returns (0,2) because the manhattan
distance between the points (0,0) and (2,-2) is 4, and that is the maximum
in the set.
manhattan([(0,0), (1,0), (0,2), (-3,0)]) returns (2,3) because the greatest
distance occurs between the points at positions 2 and 3: (0,2)-(-3,0)
Transcribed Image Text:The Manhattan distance between two points (x1,y1) and (x2,y2) is given as |x1-x2| + ly1-y2|, where |x| denotes the absolute value of x. Write a function named manhattan (), that takes a list of points where each point is represented by a tuple containing x and y coordinates, and returns a tuple containing indices of the two points whose manhattan distance is the largest among the provided points. For example, manhattan([(e,0), (1,1), (2, -2)]) returns (0,2) because the manhattan distance between the points (0,0) and (2,-2) is 4, and that is the maximum in the set. manhattan([(0,0), (1,0), (0,2), (-3,0)]) returns (2,3) because the greatest distance occurs between the points at positions 2 and 3: (0,2)-(-3,0)
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