def find_path(start, target, edges): ''' return a path of edges connecting the start to the end start: staring node of path target: ending node for path edges: list of directional edges ''' return("No Path Found") edges = [('a', 'b'), ('b', 'c')] print(find_path('a', 'c', edges)) """ edges = [('a', 'b'), ('c', 'd')] print(find_path('a', 'd', edges)) """ """ edges = [('a', 'b'), ('b', 'c'), ('a', 'd'), ('d', 'c')] print(find_path('a', 'c', edges)) """ """ #shortest path edges = [('a', 'b'), ('b', 'c'), ('c', 'd'), ('b', 'd')] print(find_path('a', 'd', edges)) """ """ #bidirection edges = [('a', 'b'), ('b', 'c'), ('d', 'c')] print(find_path('a', 'd', edges)) """
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