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Name of Course
Code of Course
Credit Hours
Lecturer
No.
1.

Week
1 - 3 hrs

: HEAT AND MASS TRANSFER
: FE-509
: 3 (2-1)
: DR. KHAIRUL FAEZAH MD YUNOS
Date (TUESDAY 2-5 pm)
8 October

Content
Introduction to course layout
Syllibus and reference
Test and Exams
Attendance
Grading
Heat Transfer-Thermodynamics and
Mechanism of heat transfer

2.

2 - 3 hrs

15 October

Principles of convective, conductive and
radioactive heat transfer

3.

3 - 3 hrs

22 October

Transient heat transfer
Boiling and condensation

4.

4 - 3 hrs

29 October

Thermal design of heat exchangers

5.

5 - 3 hrs

5 November

Equations of change for isothermal systems
Empirical model of heat transfer coefficients.

6.

6 - 3 hrs

12 November

Test

7.

7 - 3 hrs

19 November

Mass Transfer - Introduction,
analogy between heat and mass transfer,

8.

8 - 3 hrs

26 November

Steady mass diffusion through a wall,
Transient mass diffusion,
Diffusion in moving medium,

9.

9 - 3 hrs

10.

10 - 3 hrs

10 December

4

11 – 2 hrs
Total = 32
hrs

17 December
Main Exam
The course conduct is through online lecture.
There is one test in the middle of course – Week 4
There is one main exam at the final of course – Week 10

3

December

Principles of diffusion, mass transfer in
turbulent flow, mass transfer theories,
General principles of stage wise and
continuous contacting operations,
Applications to absorption and distillation.

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Faiza edited schedule of fe509 heat & mass transfer

  • 1. Name of Course Code of Course Credit Hours Lecturer No. 1. Week 1 - 3 hrs : HEAT AND MASS TRANSFER : FE-509 : 3 (2-1) : DR. KHAIRUL FAEZAH MD YUNOS Date (TUESDAY 2-5 pm) 8 October Content Introduction to course layout Syllibus and reference Test and Exams Attendance Grading Heat Transfer-Thermodynamics and Mechanism of heat transfer 2. 2 - 3 hrs 15 October Principles of convective, conductive and radioactive heat transfer 3. 3 - 3 hrs 22 October Transient heat transfer Boiling and condensation 4. 4 - 3 hrs 29 October Thermal design of heat exchangers 5. 5 - 3 hrs 5 November Equations of change for isothermal systems Empirical model of heat transfer coefficients. 6. 6 - 3 hrs 12 November Test 7. 7 - 3 hrs 19 November Mass Transfer - Introduction, analogy between heat and mass transfer, 8. 8 - 3 hrs 26 November Steady mass diffusion through a wall, Transient mass diffusion, Diffusion in moving medium, 9. 9 - 3 hrs 10. 10 - 3 hrs 10 December 4 11 – 2 hrs Total = 32 hrs 17 December Main Exam The course conduct is through online lecture. There is one test in the middle of course – Week 4 There is one main exam at the final of course – Week 10 3 December Principles of diffusion, mass transfer in turbulent flow, mass transfer theories, General principles of stage wise and continuous contacting operations, Applications to absorption and distillation.