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Uedu Open / Thermodynamics of Materials
3.020

Thermodynamics of Materials

Prof. Rafael Jaramillo | Spring 2021
Science & Math Physics Engineering Materials Science and Engineering Science Thermodynamics
前往原始課程
CC BY-NC-SA 4.0
課程簡介
This course introduces the competition between energetics and disorder that underpins materials thermodynamics. Classical thermodynamic concepts are presented in the context of phase equilibria including phase transformations, phase diagrams, and chemical reactions. The course also covers computerized thermodynamics and provides an introduction to statistical thermodynamics.
Course Information
SourceMIT 開放式課程
科系Materials Science and Engineering
LanguageEnglish
影片數38
課程影片 (38)
1
Lecture 1: Introduction to Thermodynamics
Lecture 1: Introduction to Thermodynamics
2
Supplemental Video: Sodium Acetate Demo
Supplemental Video: Sodium Acetate Demo
3
Lecture 2: Scope and Use of Thermodynamics
Lecture 2: Scope and Use of Thermodynamics
4
Lecture 3: Process Variables and the First Law
Lecture 3: Process Variables and the First Law
5
Lecture 4: Heat Engines and Energy Conversion Efficiency
Lecture 4: Heat Engines and Energy Conversion Efficiency
6
Lecture 5: Second Law and Entropy Maximization
Lecture 5: Second Law and Entropy Maximization
7
Lecture 6: Thermodynamic Potentials
Lecture 6: Thermodynamic Potentials
8
Lecture 7: Ideal Gas Processes
Lecture 7: Ideal Gas Processes
9
Lecture 8: Mathematical Implications of Equilibrium and Spontaneous Processes
Lecture 8: Mathematical Implications of Equilibrium and Spontaneous Processes
10
Lecture 9: Case Studies - Specific Heats and Phase Transformations
Lecture 9: Case Studies - Specific Heats and Phase Transformations
11
Lecture 10: Introduction to Unary Phase Transformations
Lecture 10: Introduction to Unary Phase Transformations
12
Lecture 11: Phase Coexistence in Unary Systems
Lecture 11: Phase Coexistence in Unary Systems
13
Supplemental Video: The Three Dees of Thermodynamics
Supplemental Video: The Three Dees of Thermodynamics
14
Lecture 12: Case Studies - Saturation Vapor Pressure
Lecture 12: Case Studies - Saturation Vapor Pressure
15
Lecture 13: Introduction to Ideal (Gas) Mixtures
Lecture 13: Introduction to Ideal (Gas) Mixtures
16
Lecture 14: Reacting Gas Mixtures at Equilibrium
Lecture 14: Reacting Gas Mixtures at Equilibrium
17
Lecture 15: Introduction to Solutions, General Case
Lecture 15: Introduction to Solutions, General Case
18
Supplemental Video: The Lever Rule
Supplemental Video: The Lever Rule
19
Lecture 16: Partial Molar Properties
Lecture 16: Partial Molar Properties
20
Lecture 17: Solution Models - Ideal, Dilute, and Regular
Lecture 17: Solution Models - Ideal, Dilute, and Regular
21
Lecture 18: Case Study in Reacting Gas Mixtures - Introducing the Nernst Equation
Lecture 18: Case Study in Reacting Gas Mixtures - Introducing the Nernst Equation
22
Lecture 19: Regular Solution Models and Stability
Lecture 19: Regular Solution Models and Stability
23
Lecture 20: Introduction to Binary Phase Diagrams
Lecture 20: Introduction to Binary Phase Diagrams
24
Lecture 21: Phase Coexistence and Separation
Lecture 21: Phase Coexistence and Separation
25
Lecture 22: Free Energy-Composition Diagrams, General Case
Lecture 22: Free Energy-Composition Diagrams, General Case
26
Lecture 23: Building Binary Phase Diagrams, Part I
Lecture 23: Building Binary Phase Diagrams, Part I
27
Supplemental Video: Gallium-Indium Eutectic Demo
Supplemental Video: Gallium-Indium Eutectic Demo
28
Lecture 24: Building Binary Phase Diagrams, Part II
Lecture 24: Building Binary Phase Diagrams, Part II
29
Lecture 25: Building Binary Phase Diagrams, Part III
Lecture 25: Building Binary Phase Diagrams, Part III
30
Lecture 26: CALPHAD - Case Studies and Guest Lecture
Lecture 26: CALPHAD - Case Studies and Guest Lecture
31
Lecture 27: Introduction to Statistical Thermodynamics
Lecture 27: Introduction to Statistical Thermodynamics
32
Lecture 28: Boltzmann Hypothesis
Lecture 28: Boltzmann Hypothesis
33
Lecture 29: Boltzmann Distribution
Lecture 29: Boltzmann Distribution
34
Lecture 30: Intermediate Phases and Reactions
Lecture 30: Intermediate Phases and Reactions
35
Lecture 31: Reacting Multi-phase Systems
Lecture 31: Reacting Multi-phase Systems
36
Lecture 32: Case Study - Reacting, Multi-component, Multi-phase Systems
Lecture 32: Case Study - Reacting, Multi-component, Multi-phase Systems
37
Supplemental Video: Ternary Phase Diagram and Ouzo Demo
Supplemental Video: Ternary Phase Diagram and Ouzo Demo
38
Supplemental Video: Ouzo Demo
Supplemental Video: Ouzo Demo