There two undergraduate programs: Engineering Mechanics and Flight Vehicle Design and Engineering.
Engineering Mechanics (Bachelor)
YEAR 1
TYPE | COURSE | |
COMPULSORY | Fundamentals of Computer Science (A) | Calculus(A)Ⅰ |
Linear Algebra(A) | General Chemistry (B) | |
University Physics (A) Ⅰ | General Chemistry Experiment(B) | |
Calculus(A)Ⅱ | Engineering Graphics | |
Engineering Training | Ordinary Differential Equations | |
ELECTIVE | Python Programming | JAVA Programming |
Fundamentals of C Programming |
|
YEAR 2
TYPE | COURSE | |
COMPULSORY | University Physics (A) Ⅱ | College Physics Experiment |
Methods of Mathematical Physics (A)I | Probability and Mathematical Statistics | |
Theoretical Mechanics | Methods of Mathematical Physics | |
Computational Methods | Fundamentals of Mechanical Design (A) | |
Electrical & Electronic Eng. and Its Experiment | Material Mechanics(A) | |
Lab. of Material Mechanics | Engineering Thermodynamics | |
ELECTIVE | Introduction to Scientific Computation | Fundamentals of Data Structures |
Engineering Materials | Introduction to Aerospace Technology | |
Experiments for Engineering Materials |
|
YEAR 3
TYPE | COURSE | |
COMPULSORY | Elastic Mechanics | Vibration Mechanics |
Fluid Mechanics | Computational Fluid Mechanics | |
Experimental techniques in fluid Engineering | Finite Element Method | |
Advanced Experimental Solid Mechanics |
| |
ELECTIVE | The History of Mechanics | Plasticity Mechanics |
Mechanics of Composite Materials | Fundamentals of Biomechanics | |
Fundamentals of Fracture Mechanics | Introduction to Artificial Intelligence | |
Principle of Automatic Control | Robotics | |
Assembly and test of micro aerial vehicles | flight dynamics |
Year 4
TYPE | COURSE | |
ELECTIVE | SMART MATERIALS AND STRUCTURES | Foundation of Aerodynamics |
Innovative Experiment of Mechanics | Theory and application of CFD Software | |
The theory and design of fluid machinery |
|
Flight Vehicle Design and Engineering (Bachelor)
YEAR 1
TYPE | COURSE | |
COMPULSORY | Fundamentals of Computer Science (A) | Calculus(A)Ⅰ |
Linear Algebra(A) | University Physics (A) Ⅰ | |
Calculus(A)Ⅱ | Engineering Graphics | |
Engineering Training | Ordinary Differential Equations | |
ELECTIVE | Python Programming | JAVA Programming |
Fundamentals of C Programming |
|
YEAR 2
TYPE | COURSE | |
COMPULSORY | University Physics (A) Ⅱ | College Physics Experiment |
Probability and Mathematical Statistics | Theoretical Mechanics (A) | |
Partial Differential Equations | Computational Methods | |
Fundamentals of Mechanical Design (A) | Material Mechanics (B) | |
Lab. of Material Mechanics | Introduction to Aerospace Technology | |
Lab Work for Electronics and Circuits | Fundamentals of Thermodynamics | |
ELECTIVE | Foundations for Analytics with Python | Fuzzy Control and Artificial Neural Networks |
Theoretical Mechanics (A) | Introduction to Aerospace Technology | |
Lab Work for Electronics and Circuits | Material Mechanics (B) | |
Fundamentals of Thermodynamics | Lab. of Material Mechanics |
YEAR 3
TYPE | COURSE | |
COMPULSORY | Principle of Automatic Control | Aerodynamics |
Flight dynamics | Aircraft Structural Mechanics | |
Space Vehicle Orbital and Attitude Dynamics | Heat Transfer | |
Computational Aerodynamics | Mechanics of Composite Materials | |
Principles of Propulsion Systems | Embedded Computing Technology | |
Signals & Systems | Fundamentals of Aerospace Information Technology | |
Sensor Technology |
| |
ELECTIVE | Introduction to Artificial Intelligence | Digital Circuit |
Fundamentals of Satellite Tracking, Telemetry and Command | Introduction to Hypersonic Vehicles | |
Fundamentals of Modern Signal | Finite Element Method | |
Fundamentals of High Performance Computing | Fundamentals of combustion | |
Modern Electronic System Design | Experimental aerodynamics | |
Principle of Automatic Control | Aerodynamics | |
Flight dynamics |
|
Year 4
TYPE | COURSE | |
COMPULSORY | Aircraft Configuration Design | Aircraft Comprehensive Control Technique |
Principle and Technology of Navigation |
| |
ELECTIVE | Environmental Perception Technology for Robots | Diagnostic Techniques for Propulsion Systems: Theory and Practice |
Infrared Image Processing | Theory and application of CFD Software | |
Introduction to Mesh Generation | Aircraft Configuration Design |