Bridge the gap between microscopic particle behavior and macroscopic thermodynamic properties to solve real-world engineering and materials science problems.
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このコースについて
Traditional thermodynamics tells us what happens, but understanding why requires looking at the molecular level. This text-based course introduces you to the powerful framework of statistical thermodynamics, connecting microscopic quantum states to observable macroscopic properties.
You will transition from simply using empirical tables and equations of state to understanding their physical origins. By mastering partition functions and statistical ensembles, you will gain the foundational skills to predict thermodynamic behavior and analyze modern engineering systems, from gas mixtures to basic nanostructured materials.
What you'll learn:
- Understand the fundamental concepts of microstates, macrostates, and thermodynamic probability.
- Calculate partition functions for translational, rotational, vibrational, and electronic degrees of freedom.
- Apply statistical ensembles—including microcanonical, canonical, and grand canonical—to physical systems.
- Derive macroscopic properties like entropy, internal energy, and free energy from molecular properties.
- Analyze ideal and real gas behaviors using modern molecular-level perspectives.
- Explore computational concepts and molecular modeling principles used in modern thermodynamic simulations.
The course begins with core definitions of probability and quantum states before walking you through the formulation of partition functions, culminating in practical engineering applications and basic molecular modeling concepts.
This course is designed for engineering students, chemical engineers, and materials scientists seeking a solid foundational understanding of statistical mechanics, with no prior advanced background in statistical physics required.
Start reading today to unlock a deeper, molecular understanding of thermodynamic systems.
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レビュー (6)
Maria Silva
KE
★ 4 · 24.07.2026
This course exceeded my expectations! The instructor's energy kept me hooked, and the material was top-notch. Highly recommend!