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AB project

n this project, the robot is equipped with sensors that allow it to detect the path and make real-time decisions. When it reaches a junction, the robot must apply specific algorithms to choose the correct path, avoid mistakes, and continue toward the finish line. Every new obstacle requires adjustments in programming, including the implementation of new codes and strategies. This ensures that the robot is not only following lines but also “thinking” logically to solve the maze.

The activity emphasizes important concepts in robotics and programming such as algorithm development, sensor integration, problem solving, and logical thinking. Students learn how to break down complex problems into smaller tasks and apply coding solutions to guide the robot effectively. It also nurtures patience, creativity, and teamwork as learners test and refine their robots repeatedly until successful completion of the maze.

Ultimately, the Maze Solving project is more than just a fun challenge; it is a stepping stone toward deeper understanding of autonomous systems and artificial intelligence. By completing this project, students gain practical experience that connects theory with real-world applications in robotics and technology.

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