Ever wondered how materials change their structure and properties over time? Phase field modelling offers a powerful framework to simulate these complex processes, bridging the gap between microscopic phenomena and macroscopic material behavior. This course provides a solid foundation in phase field modelling, enabling you to comprehend the underlying principles and apply them to various materials science problems.
What you'll learn:
* Understand the foundational mathematical and physical principles behind phase field models.
* Learn how to formulate phase field equations for common materials phenomena, such as solidification and phase separation.
* Explore the connection between phase field models and classical thermodynamics.
* Apply basic numerical methods to discretize and solve phase field equations.
* Interpret simulation results to gain insights into microstructural evolution and material properties.
* Practice the process of validating and verifying computational material models.
The course begins with essential mathematical and materials science concepts, progressing through the derivation of phase field equations, their numerical solution, and practical interpretation. This text-only course allows you to read and practice at your own pace.
This course is designed for beginners with no prior experience in phase field modelling. No advanced mathematical or programming background is assumed.
Begin your journey into the fascinating world of computational materials science.
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