Dijkstra's and Bellman-Ford: Shortest Path Algorithms Explained — PickAClass
⏱ 2h 36m 📚 26 lessons 🎧 Audio version

Dijkstra's and Bellman-Ford: Shortest Path Algorithms Explained

Master foundational graph algorithms, solve single-source shortest path problems, and understand network routing logic through clear, step-by-step written explanations.

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About this course

Finding the most efficient path through a network is a fundamental challenge in computer science, powering everything from map navigation to internet routing. This course demystifies Dijkstra's and Bellman-Ford algorithms, breaking down complex graph theory into easy-to-digest written explanations and logical steps. You will transition from a beginner to confidently analyzing and implementing single-source shortest path algorithms, understanding how to represent graphs in code, trace algorithm execution, and choose the right approach based on graph constraints like negative edge weights. What you'll learn: - Understand core graph theory concepts, including vertices, edges, weights, and directed versus undirected graphs. - Implement Dijkstra's algorithm using priority queues to find the shortest path in non-negative weighted graphs. - Apply the Bellman-Ford algorithm to handle graphs with negative edge weights and successfully detect negative cycles. - Analyze the time and space complexity of both algorithms to make optimal design choices for real-world scenarios. - Practice tracing algorithms manually with clear written walkthroughs and writing structured code representations. The course begins with foundational graph terminology and basic representations before guiding you through the step-by-step logic, pseudocode, and code implementation of both Dijkstra's and Bellman-Ford algorithms. It is designed for beginner programmers, computer science students, and self-taught developers looking to strengthen their algorithmic problem-solving skills with no advanced prerequisites required. Start reading today to master the core algorithms that power modern routing and navigation systems.

Course contents

What you'll get

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  • ⚡ Short & focused
    2h 36m of practical content

Certificate of completion

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Dijkstra's and Bellman-Ford: Shortest Path Algorithms Explained
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Dijkstra's and Bellman-Ford: Shortest Path Algorithms Explained
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Performance detail
Coursework summary
Lessons completed 14 / 14
Practice questions 26 / 28
Assignments submitted 4 (avg 4.5 / 5)
Capstone project Reviewed — 4.6 / 5
Total practice 6.2 hrs
Performance benchmark
Cohort rank Top 12% of 1,625
Time to completion 11 days (median: 22)
Mastery score 91 / 100
Practice-question score 94%
Skill verification Verified Skill Path
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Issued under the academic standards of PickAClass. Skill levels reflect assessed performance against the course's competency rubric. This is an original credential of this platform.

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