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⏱ 2h 42m📚 27 lessons
Diffusion in Solids: Principles and Materials Science Applications
Master the fundamental mechanisms of atomic transport in solid materials and learn to solve practical engineering and diffusion problems through clear, written explanations.
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About this course
Understanding how atoms move through solid matter is fundamental to materials science, metallurgy, and semiconductor manufacturing. This text-only course provides a clear, step-by-step pathway through the physics and mathematics of solid-state diffusion, making complex thermodynamic concepts highly accessible. You will gain the confidence to predict material behavior, analyze phase transformations, and solve practical engineering problems involving atomic transport.
By studying this comprehensive text, you will transition from a basic understanding of atomic structures to performing precise calculations of diffusion rates in real-world materials.
What you'll learn:
- Understand the core physical mechanisms of atomic diffusion in crystalline solids.
- Apply Fick's first and second laws to model steady-state and non-steady-state diffusion.
- Analyze the role of temperature, crystal defects, and activation energy on diffusion rates.
- Evaluate diffusion processes in multi-component systems and alloy design.
- Practice solving practical diffusion equations used in industrial heat treatment and semiconductor doping.
This course begins with essential terminology, crystal structures, and foundational thermodynamic concepts before introducing mathematical models and engineering applications. You will progress through structured chapters that combine theoretical principles with written step-by-step problem-solving guides.
This course is designed for undergraduate students in materials science, physics, chemistry, or engineering, as well as professionals seeking a solid refresher in material transport. No prior knowledge of diffusion theory is required, though a basic background in general chemistry and introductory calculus is helpful.
Start reading today to master the underlying science of atomic movement in solid-state materials.
What you'll get
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⚡Short & focused 2h 42m of practical content
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