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Apprentice Mode
10 Modules / ~100 pages
Wizard Mode
~25 Modules / ~400 pages

Thermodynamics of Metallurgical Processes
( 24 Modules )

Module #1
Introduction to Metallurgical Thermodynamics
Overview of thermodynamics, its importance in metallurgical processes, and course objectives
Module #2
Basic Concepts of Thermodynamics
Review of thermodynamic principles, laws, and definitions (e.g. systems, processes, equilibrium)
Module #3
Thermodynamic Properties of Substances
Introduction to thermodynamic properties (e.g. internal energy, enthalpy, entropy, free energy)
Module #4
Thermodynamic Diagrams
Introduction to thermodynamic diagrams (e.g. T-S, H-S, P-V) and their applications
Module #5
Phase Equilibria
Thermodynamic principles of phase equilibria, phase diagrams, and their importance in metallurgy
Module #6
Thermodynamics of Pure Metals
Thermodynamic properties and phase equilibria of pure metals
Module #7
Thermodynamics of Binary Alloys
Thermodynamic properties and phase equilibria of binary alloys
Module #8
Thermodynamics of Ternary Alloys
Thermodynamic properties and phase equilibria of ternary alloys
Module #9
Thermodynamic Modeling of Alloys
Introduction to CALPHAD method and its applications in metallurgy
Module #10
Thermodynamics of Oxidation and Reduction
Thermodynamic principles of oxidation and reduction reactions in metallurgical processes
Module #11
Thermodynamics of Slags and Fluxes
Thermodynamic properties and phase equilibria of slags and fluxes
Module #12
Thermodynamics of Matte and Speiss
Thermodynamic properties and phase equilibria of matte and speiss in pyrometallurgical processes
Module #13
Thermodynamics of Gas-Metal Reactions
Thermodynamic principles of gas-metal reactions in metallurgical processes
Module #14
Thermodynamics of Roasting and Calcination
Thermodynamic principles of roasting and calcination processes in metallurgy
Module #15
Thermodynamics of Smelting and Refining
Thermodynamic principles of smelting and refining processes in metallurgy
Module #16
Thermodynamics of Electrochemical Processes
Thermodynamic principles of electrochemical processes in metallurgy (e.g. electrolysis, electrowinning)
Module #17
Thermodynamic Analysis of Metallurgical Processes
Applications of thermodynamics in the analysis and optimization of metallurgical processes
Module #18
Case Studies in Thermodynamics of Metallurgical Processes
Real-world examples and case studies of thermodynamic applications in metallurgical processes
Module #19
Thermodynamic Data for Metallurgical Systems
Sources and reliability of thermodynamic data for metallurgical systems
Module #20
Thermodynamic Modeling Software
Overview of software tools for thermodynamic modeling and their applications in metallurgy
Module #21
Advanced Topics in Metallurgical Thermodynamics
Recent developments and advanced topics in metallurgical thermodynamics (e.g. computational thermodynamics)
Module #22
Thermodynamic Challenges in Sustainable Metallurgy
Thermodynamic aspects of sustainable metallurgy and opportunities for improvement
Module #23
Group Project:Thermodynamic Analysis of a Metallurgical Process
Group project to apply thermodynamic principles to a real-world metallurgical process
Module #24
Course Wrap-Up & Conclusion
Planning next steps in Thermodynamics of Metallurgical Processes career


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