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24589 Material Balance (Undergraduate, Spring Semester)

 

Textbook:

1. Basic Principles and Calculations in Chemical Engineering by Himmelblau and Riggs

 

Schedule:

1. Dimension and Units

2. Moles, Density and Concentration

3. Temperature

4. Pressure

5. Material Balance without Chemical Reaction

6. Material Balance without Chemical Reaction, continued

7. Material Balance without Chemical Reaction, continued

8. Midterm Exam

9. Chemical Reaction Equation and Stoichiometryr

10. Material Balance with Chemical Reaction

11. Material Balance with Multiple Units

12. Recyle, Bypass and Purge Processes

13. Industrial Processes

14. Equation of States

15. Equation of States for Material Balance Calculation

16. Final Exam

 

Grade: Midterm Exam (closed book) - 47.5%, Final Exam (closed book) - 47.5%, Attendance 5%

 

 

 

32011 Heat and Mass Transfer (Undergraduate, Fall Semester)

 

Textbook:

1. Fundamentals of Momentum, Heat and Mass Transfer by J. R. Welty, R. E. Wilson, C. E. Wicks, G. L. Rorrer, John Wiley and Sons.

2. Fundamentals of Heat and Mass Transfer by F. P. Incropera and D. P. DeWitt, Wiley.

3. Kinetics of Materials by Balluffi, Allen, and Carter, John Wiley and Sons.

 

Schedule:

1. Thermodynamics vs Kinetics

2. Constitutive, Continuity and Diffusion Equations, Problem Set #1

3. Steady State Heat Conduction, Problem Set #2

4. Unsteady State Heat Conduction, Problem Set #3, Quiz 1

5. Convective Heat Transfer

6. Heat Exchanger

7. Radiation, Problem Set #4

8. Midterm Exam

9. Fundamentals of Mass Transfer

10. Differential Equations of Mass Transfer

11. Steady State Molecular Diffusion, Problem Set #5

12. Unsteady State Molecular Diffusion, Problem Set #6, Quiz 2

13. Convective Mass Transfer

14. Dimensional Analysis

15. Complex Fluid Systems, Problem Set #7

16. Final Exam

 

Grade: Quiz 1 & 2 (closed book) - 30%, Midterm Exam (open book) - 32%, Final Exam (open book) - 32%, Attendance 6%

 

47595 Polymer Synthesis (Graduate, Biannual, Spring Semester)

 

Textbook:

1. Principles of Polymerization by Georgy Odian

 

Schedule:

1. Architecture, Molecular Weights, Polymerization Mechanisms and Nomenclature

2. Step Growth Polymerization: Functional Groups and Kinetics

3. Step Growth Polymerization: Processes and Commercial Polymers

4. Network Polymers

5. High Performance Polymers

6. Dendrimers, Quiz 1

7. Chain Growth Polymerization: Free Radical Polymerization

8. Free Radical Polymerization Kinetics

9. Processes: Emulsion and Suspension Polymerization

10. Stereoregular Polymers

11. Polymer Functionalization and Modification, Quiz 2

12. Anionic Polymerization

13. Cationic Polymerization

14. Living Radical Polymerizations

15. Electrochemical Polymerization

16. Quiz 3

 

Grade: Quiz 1, 2, 3 (open book) - 90 %, Attendance 10%

 

02002 Polymer Materials (Graduate, Biannual, Spring Semester)

 

Textbook:

1. Principles of Polymer Chemistry by Paul J Flory

 

Schedule:

1. Conformation of Macromolecules- Overview

2. Conformation of Macromolecules: End-to-End Distance

3. Conformation of Macromolecules: Radius of Zyration

4. Conformation of Macromolecules: Effects of Chemical Structures

5. Conformation of Macromolecules: Effects of Intermolecular Interactions, Quiz 1

6. Statistical Thermodynamics of Polymer Solutions

7. Flory-Huggins Theory

8. Osmotic Pressure and Solubility Parameter

9. Dilute Polymer Solutions

10. Light Scattering, Quiz 2

11. Phase Equilibria in Binary Polymer Systems

12. Phase Equilibria in Binary Polymer Systems

13. Polymer-Polymer Phase Behaviros

14. Viscometry and Gel Permeation Chromatography

15. Rubber Elasticity

16. Quiz 3

 

Grade: Quiz 1, 2, 3 (open book) - 90 %, Attendance 10%

 

 Polymer Nanomaterials Laboratory, School of Chemical Engineering and Materials Science, Chung-Ang University

 Room 529, Building 207, 84 Heokseok-ro, Dongjak-gu, Seoul 06974, Republic of Korea, Phone +82-2-822-7772