南洋理工大学,新加坡国立大学

 
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新加坡南洋理工大学
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中国沈阳招生说明会
东北大学 大学活动中心201室 10月16日晚18:30

中国珠海招生说明会
中山大学珠海分校 教学楼C301:10月10号,7pm-9pm
北京理工大学珠海分校 综合楼A108: 10月11号,3pm-5pm
北师大珠海分校 丽泽楼C108:10月11号,7pm-9pm

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首页->新加坡留学->新加坡国立大学,南洋理工大学研究生申请

MASTER OF SCIENCE (MECHANICAL ENGINEERING)


来源:NUS

A candidate may read an M.Sc. in Mechanical Engineering with or without a major or area of
specialisation.
The majors available are as follows:
1. Computation & Modelling
2. Manufacturing Technology and Automation
To graduate, a student needs to accumulate a total of no less than 40 Modular Credits (MCs) and obtain
a minimum Cumulative Average Point (CAP) of 3.0 (equivalent to the Grade of B-) for the best modules
equivalent of 40 MCs (inclusive of foundation/core modules, where required). Each graduate module of
39 lecture hours is usually assigned 4 MCs. Hence, in general, a student needs to complete 10 modules
chosen from the list of modules given below. (A maximum of 2 approved external modules are usually
allowed.)

All module list:

Applied Mechanics

ME5101 Applied Stress Analysis
ME5102 Applied Plasticity
ME5103 Plates and Shells
ME5104 Vibration Analysis
ME5105 Shock and Vibration Control
ME5106 Engineering Acoustics
ME5107 Advanced Dynamics
ME5161 Optical Techniques in Experimental Stress Analysis
ME6101 Research Topics in Applied Mechanics
ME6102 Topics in Applied Mechanics
ME6103 Optical Measurement and Quality Inspection
ME6104 Fracture Mechanics and Applications
ME6105 Continuum Mechanics

Thermodynamics

ME5201 Thermal Systems Design
ME5202 Industrial Transfer Processes
ME5204 Air Conditioning and Building Automation
ME5205 Energy Engineering
ME5206 Cooling of Electronic Systems
ME5207 Solar Energy Systems
ME6201 Research Topics in Thermodynamics and Heat Transfer
ME6202 Topics in Thermodynamics and Heat Transfer
ME6203 Mass Transport
ME6204 Convective Heat Transfer

Fluid Mechanics

ME5301 Flow Systems Analysis
ME5302 Computational Fluid Mechanics
ME5303 Industrial Aerodynamics
ME5307 Computational Aerodynamics
ME5361 Advanced Computational Fluid Dynamics
ME5362 Advanced Fluid Transients Computation and Modelling
ME6301 Research Topics in Fluid Dynamics
ME6302 Topics in Fluid Dynamics
ME6303 Advanced Fluid Dynamics
ME6304 Turbulence in Fluid Flows

Control

ME5401/EE5101 Linear Systems
ME5402/EE5106 Advanced Robotics
ME5403/EE5103 Computer Control Systems
ME5404/EE5904 Neural Networks
ME5405 Machine Vision
ME6401 Topics in Mechatronics 1
ME6402 Topics in Mechatronics 2

Materials

ME5502 Engineering Plastics and Composite Materials
ME5506 Corrosion of Materials
ME5513 Fracture and Fatigue of Materials
ME5515 Friction and Wear of Materials
ME6501 Research Topics in Materials Science
ME6502 Topics in Materials Science
ME6503 Theory of Transformations in Metals
ME6504 Defects and Dislocations in Solids

Manufacturing

ME5602 Manufacturing Systems Engineering
ME5603 Metal Forming Technology
ME5605 Computational Techniques for Numerical Control
ME5606 Intelligent Systems in Manufacturing
ME5608 Abrasive and Non-Conventional Processes
ME5609 Rapid Response Manufacturing
ME5610 Product Development
ME5611 Sustainable Product Design & Manufacturing
ME6601 Research Topics in Manufacturing
ME6602 Topics in Manufacturing
ME6603 Analysis of Manufacturing Enterprises
ME6604 Modelling of Machining Processes

Others

ME5701 Mathematics for Engineering Research
ME5702 Topics in Mechanical Engineering 1
ME5703 Topics in Mechanical Engineering 2
ME5704 Topics in Mechanical Engineering 3
ME5705 Topics in Mechanical Engineering 4
ME5706 Mechanical Engineering Oil & Gas Technology
ME6701 Topics in Mechanical Engineering Research 1
ME6702 Topics in Mechanical Engineering Research 2
ME6703 Topics in Mechanical Engineering Research 3
ME6704 Topics in Mechanical Engineering Research 4
ME6705 Topics in Mechanical Engineering Research 5

For advanced courses in Mechanical Engineering on Topics of current research interest, lectures will be given by both specialists and department staff.

(Not all modules listed above are necessary available in any one year.)



MAJOR IN COMPUTATION & MODELLING
In general, a student needs to complete 10 modules with at least six (6) selected from the core list.
Core modules*
ME5201 Thermal Systems Design
ME5301 Flow Systems Analysis
ME5302 Computational Fluid Mechanics
ME5307 Computational Aerodynamics
ME5361 Advanced Computational Fluid Dynamics
ME5362 Advanced Fluid Transients Computation and Modelling
ME5403/EE5103 Computer Control Systems
ME5404/EE5904 Neural Networks
ME5605 Computational Techniques for Numerical Control
ME5701 Mathematics for Engineering Research
ME6301 Research Topics in Fluid Dynamics
ME6302 Topics in Fluid Dynamics
ME6303 Advanced Fluid Dynamics
ME6304 Turbulence in Fluid Flows


MAJOR IN MANUFACTURING TECHNOLOGY & AUTOMATION
In general, a student needs to complete 10 modules with at least six (6) selected from the core list.
Core Modules*
ME5402/EE5106 Advanced Robotics
ME5403/EE5103 Computer Control Systems
ME5405 Machine Vision
ME5602 Manufacturing Systems Engineering
ME5603 Metal Forming Technology
ME5605 Computational Techniques for Numerical Control
ME5606 Intelligent Systems in Manufacturing
ME5608 Abrasive and Non-Conventional Processes
ME5609 Rapid Response Manufacturing
ME5610 Product Development
ME5611 Sustainable Product Design & Manufacturing
ME6603 Analysis of Manufacturing Enterprises
ME6604 Modelling of Machining Processes
(*Not all modules listed are necessarily available in any one year.)

 
 
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