国际学生入学条件
Master's Degree Completion.
Cumulative Grade Point Average from most recently conferred undergraduate, graduate, or professional degree: 3.5 or equivalent (A=4.0)
TOEFL iBT - 80 (Minimum Scores: Writing 18, Speaking 18, Listening 14 and Reading 19)
TOEFL PBT (overall score is no longer reported) - Reading 19, Listening 14 and Writing 18
IELTS - An overall band score of 6.5 is required for admission with the following minimum section requirements:
Reading 6.5, Listening 6.0, Speaking 6.0 and Writing 5.5
Expected GRE scores: 156 (verbal), 159 (quantitative), 4.0 (analytical)
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雅思考试总分
6.5
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- 雅思总分:6.5
- 托福网考总分:80
- 托福笔试总分:160
- 其他语言考试:NA
课程简介
The Purdue University School of Aeronautics and Astronautics is among the top aerospace engineering programs in the nation and is ranked 5th by the U.S. News and World Report in aerospace graduate programs. A transformational gift to AAE was made by alumnus Ernest Gambaro and his wife Monica to endow and name the school's graduate program. The name Gambaro Graduate Program of Aeronautics and Astronautics was approved by Purdue's Board of Trustees on Dec. 7, 2018.<br><br>Aerospace systems are complex and highly interdisciplinary. The Aerospace Systems area teaches and develops methods and techniques to help address the challenges of designing, managing, and operating these systems. Students in this area learn about different design methods and gain systems design experience through individual and team projects. The topics addressed in course and research work include requirements definition, functional decomposition, concept synthesis, application of design-oriented analysis methods, insight into external drivers and constraints, design for X, optimization, and robust design.<br><br>Aerospace systems are complex and highly interdisciplinary. The Aerospace Systems area teaches and develops methods and techniques to help address the challenges of designing, managing, and operating these systems. Students in this area learn about different design methods and gain systems design experience through individual and team projects. The topics addressed in course and research work include requirements definition, functional decomposition, concept synthesis, application of design-oriented analysis methods, insight into external drivers and constraints, design for X, optimization, and robust design.
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