Backtracking Algorithm Last Updated : 23 Jul, 2025 Comments Improve Suggest changes Like Article Like Report Backtracking algorithms are like problem-solving strategies that help explore different options to find the best solution. They work by trying out different paths and if one doesn't work, they backtrack and try another until they find the right one. It's like solving a puzzle by testing different pieces until they fit together perfectly.BacktrackingBasic of Backtracking Algorithm:Introduction to Backtracking Backtracking vs Branch and BoundStandard ProblemsPermutations of a StringThe Knightâs tour problemRat in a MazeN Queen Problem Word Addition Cryptographic PuzzleSubset Sum problem m Coloring Problem Hamiltonian CycleSudoku Magnet PuzzleRemove Invalid Parentheses Easy Problem:Find all subsetsCheck for sum-stringAll paths between two verticesAll distinct subsetsPath of more than k length from a sourceAll paths from a given source to a destination Medium Problems:Tug of War8 queen problemCombinational SumWarnsdorffâs algorithm for Knightâs tour problemPaths from corner cell to middle cell in mazeMaximum number possible by doing at-most K swapsRat in a Maze with multiple jump allowedN Queen in O(n) spaceHard Problems:Power Set in Lexicographic orderWord Break Problem using BacktrackingPartition of a set into K subsets with equal sumLongest Possible Route in a Matrix with HurdlesShortest safe route in a path with landminesAll palindromic partitions of a stringPrinting all solutions in N-Queen ProblemAll longest common sub-sequences in lexicographical orderQuick Links :Learn Data Structure and Algorithms | DSA TutorialTop 20 Backtracking Algorithm Interview QuestionsâPractice Problemsâ on BacktrackingâQuizâ on BacktrackingâVideosâ on BacktrackingWhat is Backtracking Algorithm?Backtracking is a problem-solving algorithmic technique that involves finding a solution incrementally by trying different options and undoing them if they lead to a dead end. It is commonly used in situations where you need to explore multiple possibilities to solve a problem, like searching for a path in a maze or solving puzzles like Sudoku. When a dead end is reached, the algorithm backtracks to the previous decision point and explores a different path until a solution is found or all possibilities have been exhausted.How Does a Backtracking Algorithm Work?A backtracking algorithm works by recursively exploring all possible solutions to a problem. It starts by choosing an initial solution, and then it explores all possible extensions of that solution. If an extension leads to a solution, the algorithm returns that solution. If an extension does not lead to a solution, the algorithm backtracks to the previous solution and tries a different extension.The following is a general outline of how a backtracking algorithm works:Choose an initial solution.Explore all possible extensions of the current solution.If an extension leads to a solution, return that solution.If an extension does not lead to a solution, backtrack to the previous solution and try a different extension.Repeat steps 2-4 until all possible solutions have been explored.Example of Backtracking AlgorithmExample: Finding the shortest path through a mazeInput: A maze represented as a 2D array, where 0 represents an open space and 1 represents a wall.Algorithm:Start at the starting point.For each of the four possible directions (up, down, left, right), try moving in that direction.If moving in that direction leads to the ending point, return the path taken.If moving in that direction does not lead to the ending point, backtrack to the previous position and try a different direction.Repeat steps 2-4 until the ending point is reached or all possible paths have been explored.When to Use a Backtracking Algorithm?Backtracking algorithms are best used to solve problems that have the following characteristics:There are multiple possible solutions to the problem.The problem can be broken down into smaller subproblems.The subproblems can be solved independently.Applications of Backtracking AlgorithmBacktracking algorithms are used in a wide variety of applications, including:Solving puzzles (e.g., Sudoku, crossword puzzles)Finding the shortest path through a mazeScheduling problemsResource allocation problemsNetwork optimization problemsCombinatorial problems, such as generating permutations, combinations, or subsets. 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