36 monthsProgramme duration
SepStarting Month
Programme overview
Degree
Other
Study Level
Undergraduate
Study Mode
On Campus
The Department of Future Mobility, newly established in 2022 under the direct support of the university president, aims to cultivate creative and interdisciplinary talents capable of leading next-generation mobility markets. The department addresses emerging transportation paradigms such as AAM/UAM, autonomous vehicles, robotics mobility, electric mobility platforms, drones, and AI-based smart transportation systems through a future-driven educational strategy.
Educational Objectives
- The department strives to develop core talent who can explore, design, and lead new forms of mobility in the era of the Fourth Industrial Revolution. By fostering creativity, interdisciplinary expertise, and hands-on engineering competency, the program produces specialists capable of solving industrial and societal problems with a focus on Urban Air Mobility (UAM) and smart mobility systems.
Educational System
- Students build broad engineering knowledge across mobility, mechanical and design, computer and AI, as well as electrical, electronics, and control engineering. The program offers forward-looking courses such as mobility planning and policy, experimental mobility practice, UAM operations, and intelligent transportation systems. A future-oriented Project-Based Learning structure—supported by experts from advanced mobility industries—promotes practical problem solving through interdisciplinary capstone design and undergraduate research programs (UROP I/II), ensuring close alignment with real industrial needs.
Programme overview
Degree
Other
Study Level
Undergraduate
Study Mode
On Campus
The Department of Future Mobility, newly established in 2022 under the direct support of the university president, aims to cultivate creative and interdisciplinary talents capable of leading next-generation mobility markets. The department addresses emerging transportation paradigms such as AAM/UAM, autonomous vehicles, robotics mobility, electric mobility platforms, drones, and AI-based smart transportation systems through a future-driven educational strategy.
Educational Objectives
- The department strives to develop core talent who can explore, design, and lead new forms of mobility in the era of the Fourth Industrial Revolution. By fostering creativity, interdisciplinary expertise, and hands-on engineering competency, the program produces specialists capable of solving industrial and societal problems with a focus on Urban Air Mobility (UAM) and smart mobility systems.
Educational System
- Students build broad engineering knowledge across mobility, mechanical and design, computer and AI, as well as electrical, electronics, and control engineering. The program offers forward-looking courses such as mobility planning and policy, experimental mobility practice, UAM operations, and intelligent transportation systems. A future-oriented Project-Based Learning structure—supported by experts from advanced mobility industries—promotes practical problem solving through interdisciplinary capstone design and undergraduate research programs (UROP I/II), ensuring close alignment with real industrial needs.
Admission Requirements
Scholarships
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