Micro- and nanofabrication (6105BPS)
Teacher, In Person, Nathan Campus
Micro- and nanofabrication (6105BPS)
Teacher, In Person, Nathan Campus
MP2003 Thermodynamics (coordinator, 19 hours lectures, 24 hours tutorials, class size ~400)
P3.22 (30 hours lab project)
P3.28 (30 hours lab project)
MP2003 Thermodynamics (36 hours tutorials)
P3.29 (30 hours lab project)
P3.30 (30 hours lab project)
MP2003 Thermodynamics (coordinator, 26 hours lectures, class size ~400)
E3.6 (30 hours lab project)
P2.16 (30 hours lab project)
P3.28 (30 hours lab project)
P3.29 (30 hours lab project)
P3.30 (30 hours lab project)
M6505 Clinical Engineering (coordinator, 12 hours lecture)
MP2003 Thermodynamics(26 hours lecture, class size ~400)
MP2008P Electrics and Electronics: Circuits and Devices (12 hours tutorial)
P2.16 (30 hours lab project)
P3.22 (30 hours lab project)
P3.30 (30 hours lab project)
MP2008 Electrics and Electronics: Circuits and Devices (23 hours lecture, class size ~400)
P2.16 (30 hours lab project)
P3.22 (30 hours lab project)
P3.29 (30 hours lab project)
Semester 2 2008/2009, Teaching index: 87.31 (lecture), 90.00 (tutorial)
M6505 Clinical Engineering (coordinator, 12 hours lecture)
MP2008/MP2008P Electrics and Electronics: Circuits and Devices (24 hours tutorial)
MP3003/MP3003P Heat Transfer (26 hours lecture, 36 hours tutorial, class size ~400)
MP2003 Thermodynamics(24 hours tutorial)
MP3003 Heat Transfer (12 hours tutorial)
MP2008/MP2008P Electrics and Electronics: Circuits and Devices (26 hours lecture, 24 hours tutorial, class size ~400)
P3.28 Heat Transfer Experiment (30 hours)
P3.29 Heat Transfer Experiment (30 hours)
M6505 Clinical Engineering (coordinator, 12 hours lecture)
MP2008/MP2008P Electrics and Electronics: Circuits and Devices (36 hours tutorial)
P.329 Experiments (30 hours)
MP2003/MP2003P Thermodynamics(38 hours lecture, 60 hours tutorial, class size ~400)
MP3003 Heat Transfer (36 hours tutorial)
P3.29 Heat Transfer Experiment (30 hours)
M6505 Clinical Engineering (coordinator, 12 hours lecture)
MP2008/MP2008P Electrics and Electronics: Circuits and Devices (36 hours tutorial, class size ~400)
P2.16 Experiments (30 hours)
P3.22 Experiments (30 hours)
P.329 Experiments (30 hours)
M6702 Microfluidics and Heat Transfer(13 hours lecture)
MP2003/MP2003P Thermodynamics(38 hours lecture, 60 hours tutorial, class size ~400)
MP3003 Heat Transfer (36 hours tutorial)
P3.29 Heat Transfer Experiment (30 hours)
M361P Thermodynamics(13 hours lecture, 12 hours tutorial)
M461 Heat Transfer (coordinator, 13 hours lecture, 12 hours tutorial)
M6505 Clinical Engineering (coordinator, 6 hours lecture)
MP2008 Electrics and Electronics: Circuits and Devices (24 hours tutorial)
MP2008P Electrics and Electronics: Circuits and Devices (13 hours lecture, 24 hours tutorial)
MP3003 Heat Transfer (13 hours lecture, 12 hours tutorial, class size ~400)
MP3003P Heat Transfer (13 hours lecture, 12 hours tutorial)
M6702 Microfluidics and Heat Transfer(13 hours lecture)
M361P Thermodynamics(13 hours lecture, 12 hours tutorial)
M461 Heat Transfer (36 hours tutorial)
MP2008 Electrics and Electronics: Circuits and Devices (13 hours lecture, 24 hours tutorials)
MP2003 Thermodynamics(24 hours tutorial)
M361 Engineering Thermodynamics (13 hours lecture, 12 hours tutorial, class size ~400)
M6702 Microfluidics and Heat Transfer(21 hours lecture)
MP2008 Electrics and Electronics: Circuits and Devices (13 hours lecture, 12 hours tutorials, class size ~400)
M6505 Clinical Engineering (6 hours lecture)
G261 Thermodynamics(36 hours tutorial)
M361 Engineering Thermodynamics (26 hours lecture, 48 hours tutorial, class size ~400)
M6702 Microfluidics (21 hours lecture)
P3.29 Convective Heat Transfer
P3.30 Refrigeration cycle analysis
G261 Engineering Thermodynamics(26 hours tutorial)
M405 Electronics Engineering (26 hours tutorial)
M6505 Clinical Engineering (6 hours lecture)
M361 Engineering Thermodynamics(24 hours lecture, 39 hours tutorial, class size ~400)
M405 Electronics Engineering (26 hours tutorial)
P3.20 Project “Open Channel Flow”
P3.26 Project “Convective Heat Transfer”
M405 Electronics Engineering (26 hours tutorial)
M261 Thermodynamics (36 hours tutorial)
P205 Thermodynamics (subject coordinator, restricted repeat)
M405 Electronics Engineering ( 36 hours): tutorial
M212/213 Lab project P2.29 (Analysis of Thermodynamic Cycle in an IC Engine)
Introduction to Microfluidics(6. and 7. May 2002): a short course for Centre For Continuing Education
M205 Thermodynamics : Full-time course (13 hours lecture, 24 hours tutorial), part-time course (13 hours lecture, 12 hours tutorial, class size ~400)
M405 Electronics Engineering : (24 hours tutorial)
M312 Lab project P3.25 (Thermal Radiation Unit)
M212/213 Lab project P2.29 (Analysis of Thermodynamic Cycle in an IC Engine)
M205 Thermodynamics Tutorials ( T6, T21)
M211 Machine Elements Tutorials and Lab Sessions (D25)
M212/213 Lab Experiments and Projects (E 2.11, Pressure Loss in Pipes, Lecturer in Charge)