Chemical Engineering Syllabus: Mass TransferIntroduction to Chemical Engineering- Overview of chemical engineering principles and concepts
- Introduction to mass transfer in chemical engineering processes
Diffusion in Chemical Engineering- Definition and principles of diffusion
- Fick's laws of diffusion
- Diffusion in gases, liquids, and solids
- Calculation of diffusion coefficients
Mass Transfer Coefficients- Definition and significance of mass transfer coefficients
- Calculation methods for mass transfer coefficients
- Correlation and determination of mass transfer coefficients
- Importance of mass transfer coefficients in engineering design
Absorption in Chemical Engineering- Principles and applications of absorption processes
- Types of absorption equipment and systems
- Calculation of absorption efficiency
- Factors affecting absorption performance
Distillation in Chemical Engineering- Introduction to distillation processes
- Distillation column design and operation
- Multicomponent distillation
- Energy efficiency in distillation
Humidification and Air Conditioning in Chemical Engineering- Principles of humidification and dehumidification
- Psychrometric chart and calculations
- Design and operation of air conditioning systems
- Energy conservation in air conditioning processes
Chemical Engineering Practice Quiz- Assessment of knowledge and understanding in chemical engineering mass transfer
- Multiple-choice questions covering various topics in the syllabus
- Practice quizzes to enhance understanding and retention of concepts
By following this syllabus, students will gain a comprehensive understanding of mass transfer in chemical engineering processes. The syllabus covers important topics such as diffusion, mass transfer coefficients, absorption, distillation, humidification, and air conditioning. The inclusion of a practice quiz will help students assess their knowledge and prepare for exams.
This course is helpful for the following exams: Chemical Engineering