Introduction to Chemical Engineering Thermodynamics
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Course content
1 modules • 218 lessons • 71.5 hours of video
Introduction to Chemical Engineering Thermodynamics
218 lessons
• 71.5 hours
Introduction to Chemical Engineering Thermodynamics
218 lessons
• 71.5 hours
- Chapter 1: Scope and Language of Thermodynamics, 1 of 2 19:36
- Chapter 1: Scope and Language of Thermodynamics, 2 of 2 21:41
- Chapter 1: Unit Conversion Example 1 22:07
- Chapter 1: Unit Conversion Example 2 25:10
- Chapter 1: Unit Conversion Example 2 (Update) 27:22
- Chapter 1: Maxwell-Boltzmann Example 10:37
- Chapter 1: Molecular Interaction Distance Example 09:17
- Chapter 2: Phase Diagrams of Pure Fluids, Part 1 23:39
- Chapter 2: Identifying Phases Example 1 14:09
- Chapter 2: Identifying Phases Example 2 21:30
- Chapter 2: Identifying Phases Example 3 14:27
- Chapter 2: Identifying Phases Example 4 13:59
- Chapter 2: Interpolation Example 04:01
- Chapter 2: Phase Diagrams of Pure Fluids, Part 2 19:06
- Chapter 2: Virial Equation of State Example 1 09:02
- Chapter 2: Virial Equation of State Example 2 11:44
- Chapter 2: Accentric Factor of Water Example 05:48
- Chapter 2: Lee/Kesler Example 1 16:22
- Chapter 2: Lee/Kesler Example 2 10:57
- Chapter 2: Phase Diagrams of Pure Fluids, Part 3 29:59
- Chapter 2: Using MATLAB for vdW, SRK, and PR cubic equation of state 07:31
- Chapter 2: Using MATLAB to perform shortcut vapor pressure calculations 04:21
- Chapter 2: SRK EoS Example 1 12:57
- Chapter 2: SRK EoS Example 2 08:01
- Chapter 5: Convenience Functions 22:51
- Chapter 5: Maxwell Relations 22:32
- Chapter 5: Enthalpy as a function of temperature and pressure 16:32
- Chapter 5: Entropy as a function of temperature and pressure 14:30
- Chapter 5: Internal energy as a function of temperature and volume 09:12
- Chapter 5: Entropy as a function of temperature and volume 15:45
- Chapter 5: How does the heat capacity change with respect to pressure? 13:27
- Chapter 5: Relating the constant volume and constant pressure heat capacity 07:27
- Chapter 5: Dimensionless molar Gibbs free energy 12:44
- Chapter 5: Property Relations Example 1 11:53
- Chapter 5: Property Relations Example 2 a 26:09
- Chapter 5: Property Relations Example 2 b 18:37
- Chapter 5: Property Relations Example 3 11:44
- Chapter 5: Property Relations Example 4 25:15
- Chapter 5: Calculation of Properties, Part 1 25:16
- Chapter 5: Updated MATLAB code to compute residual properties with SRK EoS 12:03
- Chapter 5: Isentropic Compression Temperature Change 27:06
- Chapter 5: Calculation of Properties, Part 2 10:59
- Chapter 5: Reference States 08:07
- Chapter 5: Computing Residual Properties using SRK EoS Example 1 15:44
- Chapter 5: Enthalpy of vaporization using our SRK equation of state MATLAB code 09:02
- Chapter 5: Reference States Example 1 25:46
- Chapter 5: Reference States Example 2 14:50
- Chapter 7: VLE of Pure Fluids, Part 1 18:55
- Chapter 7: VLE of Pure Fluids, Part 2 07:38
- Chapter 7: VLE of Pure Fluids, Part 3 21:24
- Chapter 7: Clapeyron Equation Derivation 21:30
- Chapter 7: Clausius/Clapeyron Example 1 15:18
- Chapter 7: Clausius/Clapeyron Example 2 17:33
- Chapter 7: VLE of Pure Fluids, Part 4 17:44
- Chapter 7: VLE of Pure Fluids, Part 5 18:48
- Chapter 7: Fugacity and Phase Equilibria 07:05
- Chapter 7: VLE of Pure Fluids, Part 6 16:02
- Chapter 7: Equation of State and VLE Example 1 05:30
- Chapter 7: Equation of State and Fugacity Example 1 06:53
- Chapter 7: Pure Component VLE using SRK Example 1 08:47
- Chapter 7: VLE of Pure Fluids, Part 7 23:52
- Chapter 7: Poynting Correction 11:13
- Chapter 7: Computing Fugacity Using Lee/Kesler Example 1. 17:11
- Project 1, Part 1: Predicting VLE Using Cubic Equations of State 23:36
- Project 1, Part 2: Predicting VLE Using Cubic Equations of State 08:24
- Chapter 8: Phase Behavior of Mixtures, Part 1 07:51
- Chapter 8: Phase Behavior of Mixtures, Part 2 13:12
- Chapter 8: Phase Behavior of Mixtures, Part 3 12:19
- Chapter 8: Phase Behavior of Mixtures, Part 4 12:28
- Chapter 8: Binary Txy Flash Example 1 16:13
- Example problem using tabulated Txy data (Chapter 8, Problem 1) 24:52
- Chapter 8: Binary Txy Flash Example 2 22:09
- Example problem using tabulated Pxy data (Chapter 8, Problem 2) 19:59
- Chapter 8: Phase Behavior of Mixtures, Part 5 20:39
- Chapter 8: Phase Behavior of Mixtures, Part 6 14:51
- Chapter 8: Phase Behavior of Mixtures, Part 7 11:17
- Chapter 8: Phase Behavior of Mixtures, Part 8 19:31
- Chapter 8: Phase Behavior of Mixtures, Part 8b 13:03
- Chapter 8: Binary VLLE Example 1 26:59
- Chapter 8: Binary VLLE Example 2 19:41
- Chapter 8: Phase Behavior of Mixtures, Part 9 22:23
- Chapter 9: Partial Molar Properties 1 08:20
- Chapter 9: Partial Molar Properties 2 12:38
- Chapter 9: Partial Molar Properties 3 18:18
- Chapter 9: Using Partial Molar Volume Problem 07:46
- Example Problem Determining Volume of Pure Components to Mix 16:08
- Chapter 9: Partial Molar Properties 4 - Gibbs/Duhem Equation 14:59
- Chapter 9: Example Application of Gibbs/Duhem Equation 1 17:00
- Chapter 9: Computing Partial Molar Properties for Binary Mixtures 16:34
- Expressions for Partial Molar Properties in Binary Mixtures 20:04
- Chapter 9: Computing Partial Molar Properties of a Binary System Example 17:20
- Example Calculating Partial Molar Properties in Binary Mixture 32:32
- Chapter 9: Properties of Mixing 26:40
- Chapter 9: Properties of Mixing of Ideal Gases Part 1 10:29
- Chapter 9: Properties of Mixing of Ideal Gases Part 2 15:11
- Chapter 9: Properties of Mixing of Ideal Gases Part 3 17:59
- Chapter 9: Property Changes of Ideal Gas Mixtures Example 10:13
- Example Calculating Change in Entropy for a Binary Mixture 27:37
- Chapter 10: Theory of Vapor/Liquid Equilibrium, Part 1: Chemical Equilibrium in Mixtures 08:11
- Chapter 10: Theory of Vapor/Liquid Equilibrium, Part 2: Gibbs Phase Rule 08:35
- Chapter 10: Gibbs Phase Rule 08:01
- Chapter 10: Theory of Vapor/Liquid Equilibrium, Part 3: Notes on Chemical Potential 06:38
- Chapter 10: Fugacity in Mixtures 1 23:52
- Chapter 10: Example Computing Fugacity of Pure Substance 20:14
- Chapter 10: Theory of Vapor/Liquid Equilibrium, Part 4: Cubic Equations of State for Mixtures 09:28
- Chapter 10: Fugacity in Mixtures 2 25:06
- Chapter 10: Example on Fugacity and Phase Equilibrium in a Binary System 1 18:22
- Chapter 10: Example on Fugacity and Phase Equilibrium in a Binary System 2 28:15
- Chapter 10: Example on Fugacity and Phase Equilibrium in a Binary System 3 14:02
- Project 2: Predicting Enthalpy of Mixing using the SRK and PR EoS 42:13
- Chapter 11: Where we've been and where we are going 39:28
- Chapter 11: Ideality in Solution 31:36
- Chapter 11: Fugacity in Ideal Solutions 19:04
- Chapter 11: Raoult's Law 11:48
- Chapter 11: Raoult's Law for a Binary System Example 1 17:18
- Chapter 11: Raoult's Law for a Binary System Example 2 13:14
- Chapter 11: Raoult's Law for a Binary System Example 3 35:18
- Chapter 11: Raoult's Law for a Binary System Example 4 11:09
- Chapter 11: Raoult's Law for a Ternary System Example 22:14
- Chapter 11: Binary Vapor/Liquid Equilibrium Using Fugacity Coefficients Example 06:45
- Chapter 11: Txy for a Binary System using Raoult's Law Example 10:02
- Chapter 11: Ideal Solubility 23:09
- Chapter 11: Non-condenseable Component 25:39
- Chapter 11: Non-condenseable Component Example 1 18:14
- Chapter 11: Non-condenseable Component Example 2 18:41
- CPB 412 Raoults Law (Pxy) 30:02
- CPB 412 Raoults Law (Txy) 22:19
- Chapter 12: Ideal Solution Review 21:19
- Chapter 12: Excess Properties 1 14:19
- Chapter 12: Excess Properties 2 24:52
- Chapter 12: Heat Effects of Mixing 10:57
- Chapter 12: Activity Coefficients- Where We've Been and Where We're Going 23:06
- Chapter 12: Activity coefficient and Activity 22:11
- Chapter 12: Activity coefficients and VLE Part 1 11:17
- Chapter 12: Activity coefficients and VLE Part 2 11:48
- Chapter 12: Activity coefficients and VLE Part 3 21:28
- Chapter 12: Introduction to Excess Gibbs Free Energy Models 01:15:42
- Chapter 12: Analytic Expressions for Activity Coefficients from Excess Gibbs Free Energy 17:47
- Chapter 12: Modified Raoult's Law Pxy Example 1 14:32
- Chapter 12: Modified Raoult's Law Pxy Example 2 14:29
- Chapter 12: Modified Raoult's Law Pxy Example 3 10:38
- Chapter 12: Modified Raoult's Law Pxy Example 4 17:56
- Chapter 12: Excess Enthalpy Example 1 28:55
- Example Applying Fugacity Expressions in Binary Mixture 26:40
- Example Applying Fugacity Expressions in Binary Vapor/Liquid Equilibrium 21:45
- Ideal Solutions- Property changes upon mixing and partial molar properties 24:42
- Ideal Solutions- Fugacity 16:38
- Ideal Solutions- Raoult's Law 15:00
- Example Using Raoult's Law to Compute Bubble and Dew Point 23:20
- Example Using Raoult's Law to Model Ternary VLE 40:17
- Example Computing Fugacity of Components in Binary Mixture at VLE 15:15
- Relating fugacity and its many forms 50:03
- Introduction to Engineering Thermodynamics, 1 of 2 (Chapter 1: Scope and Language of Thermodynamics) 26:28
- Introduction to Engineering Thermodynamics, 2 of 2 (Chapter 1: Scope and Language of Thermodynamics) 20:00
- Unit Conversion Example (Chapter 1, Problem 1) 33:06
- Maxwell-Boltzmann Example (Chapter 1, Problem 2) 34:38
- Molecular Interaction Distance Example (Chapter 1, Problem 3) 18:31
- Pressure Example (Chapter 1, Problem 4) 12:21
- PVT Phase Diagrams, 1 of 3 (Chapter 2: Phase Diagrams of Pure Fluids) 37:11
- ZP Diagrams and Corresponding States, 2 of 3 (Chapter 2: Phase Diagrams of Pure Fluids) 25:27
- Cubic Equations of State, 3 of 3 (Chapter 2: Phase Diagrams of Pure Fluids) 27:12
- Identifying Phases Example (Chapter 2, Problem 1) 11:45
- Identifying Phases of Water Example (Chapter 2, Problem 2) 28:57
- Calculation Using Steam Tables Example (Chapter 2, Problem 3) 14:40
- Calculation Using Steam Tables Example 2 (Chapter 2, Problem 4) 17:18
- Interpolation Example (Chapter 2, Problem 5) 03:51
- Truncated Virial Equation Example (Chapter 2, Problem 6) 24:59
- Truncated Virial Equation Example 2 (Chapter 2, Problem 6) 26:46
- Lee/Kesler Example (Chapter 2, Problem 7) 39:45
- SRK Cubic Equation of State Example 1 (Chapter 2, Problem 8) 22:06
- SRK Cubic Equation of State Example 2 (Chapter 2, Problem 9) 12:49
- Energy and the First Law, 1 of 3 (Chapter 3) 13:39
- Energy and the First Law, 2 of 3 (Chapter 3) 15:23
- Energy and the First Law, 3 of 3 (Chapter 3) 04:13
- Help Setting Up First Law Balances (Chapter 3: Energy and First Law) 43:40
- Isobaric expansion work example (Chapter 3, Problem 1) 19:49
- Isothermal expansion work example (Chapter 3, Problem 2) 05:33
- Isothermal expansion of steam example (Chapter 3, Problem 3) 18:47
- Isochoric first law example (Chapter 3, Problem 4) 13:31
- Isochoric first law example 2 (Chapter 3, Problem 5) 26:30
- Isochoric first law example 3 (Chapter 3, Problem 6) 25:11
- Properties of water in tank example (Chapter 3, Problem 7) 19:26
- Isobaric first law example (Chapter 3, Problem 8) 19:09
- Isobaric first law example 2 (Chapter 3, Problem 9) 11:12
- Isobaric first law example 3 (Chapter 3, Problem 10) 19:48
- Isobaric first law example 4 (Chapter 3, Problem 11) 20:43
- Adiabatic expansion of an ideal gas example (Chapter 3, Problem 12) 29:54
- Adiabatic compression and isobaric cooling of an ideal gas example (Chapter 3, Problem 13) 37:04
- Brief Introduction to Entropy and the Second Law (Chapter 4) 13:16
- Carnot cycle and efficiency equations (Chapter 4) 27:12
- Calculating Entropy Change Example (Chapter 4, Problem 1) 23:50
- Calculating Entropy Generation Example (Chapter 4, Problem 2) 18:12
- Calculating Entropy of Bath Example (Chapter 4, Problem 3) 20:52
- Calculating Entropy Example (Chapter 4, Problem 4) 21:44
- Reversible Isothermal Heat and Work Calculation Example (Chapter 4, Problem 5) 14:58
- Irreversible and Reversible Adiabatic Compression of Gas Example (Chapter 4, Problem 6) 38:36
- Reversible Isothermal Heat and Work Calculation Example 2 (Chapter 4, Problem 7) 12:51
- Entropy Generation Calculation for the Mixing of Steam Example (Chapter 4, Problem 8) 33:47
- Work from Cooling Brick Example (Chapter 4, Problem 9) 12:36
- Carnot Cycle Calculation Example 1 (Chapter 4, Problem 10) 29:11
- Carnot Cycle Calculation Example 2 (Chapter 4, Problem 11) 01:06:06
- Brief Introduction to Residual Properties (Chapter 5) 17:37
- Brief Introduction to Reference States, 1 of 2 (Chapter 5) 08:40
- Brief Introduction to Reference States, 2 of 2 (Chapter 5) 08:07
- First Law Balances in Open Systems (Chapter 6) 07:37
- Energy and Entropy Balance in Open System Example 1 (Chapter 6, Problem 1) 34:44
- Energy and Entropy Balance in Open System Example 2 (Chapter 6, Problem 2) 31:41
- Energy and Entropy Balance in Open System Example 3 (Chapter 6, Problem 3) 17:52
- Energy and Entropy Balance in Open System Example 4 (Chapter 6, Problem 4) 49:00
- Energy and Entropy Balance in Open System Example 5 (Chapter 6, Problem 5) 29:07
- Energy and Entropy Balance in Open System Example 6 (Chapter 6, Problem 6) 24:10
- Energy and Entropy Balance in Open System Example 7 (Chapter 6, Problem 7) 47:32
- Rankine Cycle Example 1 (Chapter 6, Problem 8) 28:00
- Refrigeration Cycle Example 1 (Chapter 6, Problem 9) 59:03
- Using Reference States Example 1 (Chapter 5, Problem 1) 16:30
- Computing Residual Enthalpy and Entropy using SRK EoS with MATLAB Example (Chapter 5) 12:03
- Using Residual Properties Example 1 (Chapter 5, Problem 2) 36:31
- Using Residual Properties and Reference States Example 1 (Chapter 5, Problem 3) 41:55
