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Thermodynamics Review

Offered By: YouTube

Tags

Thermodynamics Courses Gibbs Free Energy Courses Phase Equilibrium Courses Carnot Cycle Courses

Course Description

Overview

Dive into a comprehensive 2.5-hour video review covering essential thermodynamics concepts for exam preparation. Explore topics such as the Carnot cycle, entropy changes, exact differential expansion, internal energy diagrams, vapor-liquid equilibrium, Gibbs free energy, compressor efficiency, steam tables, phase equilibrium, fugacity, chemical potential, and more. Gain a deeper understanding of fundamental principles and their applications through detailed explanations and examples. Access additional resources, including organized playlists and textbook-aligned content, to further enhance your thermodynamics knowledge and problem-solving skills.

Syllabus

Carnot Cycle: Reversible and Irreversible (Review).
Entropy Change/Multiple Steps (Review).
Exact Differential Expansion Rule (Review).
Internal Energy/Volume Diagram (Review).
Entropy Change for Irreversible Pathway (Review).
Single-Component VLE A (Review).
Heating a Non-Ideal Gas in Two Different Systems (Review).
Gibbs Free Energy Pressure Dependence (Review).
Reversible vs. Irreversible Compression (Review).
Work and Efficiency in Turbines (Review).
Adiabatic Compressor (Review).
First Law Applied to Gas Expansion (Review).
Irreversible Carnot Engine (Review).
Irreversible Process Entropy Change (Review).
Refrigeration Compressor Efficiency (Review).
Steam Tables: Compressed Liquid (Review).
Bubble Pressure Plot for Binary Mixture (Review).
Fugacities from Peng-Robinson EOS Spreadsheet (Review).
Isotherms on PV Diagram (Review).
Partial Pressure above Immiscible Liquids (Review).
Phase Equilibrium for Binary Mixture (Review).
Three-Phase Equilibrium/Binary Mixture (Review).
Compression of a VLE System (Review).
Chemical Potential of an Evaporating Solution (Review).
Chemical Potential from VLE (Review).
Flash Calculation: Binary Mixture (Review).
Fugacity of High-Pressure Liquid (Review).
VLE using Fugacity Coefficients (Review).
Fugacity: Two Component System (Review).
Helmholtz Free Energy: Ideal Liquid Solution (Review).
Phase Change: Critical Temperature (Review).
Two Component System at VLE (Review).
Fugacity of an Ideal Gas (Review).
Txy Diagram: Lever Rule (Review).
Binary VLE Change: Decrease Volume (Review).
Enthalpy Pressure Dependence for a Non-Ideal Gas (Review).
First Law and State Function (Review).
First Law/Irreversible Expansion (Review).
Fugacity for Non-Ideal Solutions (Review).
Fugacity from Pxy Diagram (Review).
Intermolecular Interactions Energy Diagram (Review).
Reaction in an Adiabatic Throttle (Review).
Single-Component VLE B (Review).
Solid/Liquid Phase Equilibrium (Review).
Chemical Equilibrium: Standard State Gibbs Free Energy (Review).
Calculate Entropy Departure Function.
Determine Fugacity from EOS (Review).
Equilibrium Constant from Free Energy and Heats of Formation (Review).
Equilibrium Constant from VLE Data (Review).
Minimum Work for an Adiabatic Compressor (Review).
VLE/Margules Equation for Non-Ideal Liquids (Review).
VLE for Partially Immiscible Liquids (Review).
Enthalpy Change with Pressure for an Ideal Gas at Constant Entropy (Review).
Entropy Change with Temperature (Review).
Azeotrope in Binary Mixture (Review).


Taught by

LearnChemE

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