QS Rank:

218

University of Maryland, College Park

Maryland
,United States

Program Rank

218

Program Name
PhD in Aerospace Engineering
Overview

PhD in Aerospace Engineering at the University of Maryland, College Park
The PhD in Aerospace Engineering program at the University of Maryland, College Park is a prestigious and comprehensive pathway designed for aspiring scholars and professionals eager to make significant contributions to the field of aerospace systems. As one of the leading research institutions in the nation, the university offers an environment rich in academic rigor and innovative exploration in aerospace technology. The program is meticulously structured over a duration of 60 credit hours, emphasizing both theoretical foundations and practical applications within the aerospace domain. Students will engage deeply with advanced topics such as fluid dynamics, propulsion systems, aerodynamics, and spacecraft design, preparing them for impactful careers in research, industry, and academia.
The curriculum is comprehensive and includes core courses such as Advanced Aerodynamics, Propulsion Systems, and Dynamics of Aerospace Systems. Each course is designed to challenge students and stimulate critical thinking, ensuring they develop robust analytical skills. Additionally, students have the flexibility to choose electives that align with their research interests, be it in robotics, materials science, or systems engineering. A key component of the program is the dissertation research, where students must identify a unique problem in aerospace engineering, conduct thorough research, and present their findings, contributing new knowledge to the field.
Faculty expertise is a cornerstone of this program, with professors who are leaders in their respective fields. The faculty’s vast experience in both academia and industry allows them to provide real-world insights and mentorship to students. They employ innovative teaching methodologies that include hands-on projects, collaborative research initiatives, and interdisciplinary learning. Furthermore, students benefit from the university's extensive network of partnerships with leading aerospace firms and government agencies, fostering a rich learning atmosphere that culminates in practical experiences.
Research opportunities abound within the program, supported by state-of-the-art facilities and resources. The University of Maryland is known for its substantial investment in research, receiving over $1 billion annually in combined research funding. This financial backing fuels groundbreaking projects that students can participate in, ranging from the development of advanced propulsion systems to innovations in unmanned aerial vehicle technologies. Students are encouraged to engage in collaborations that may lead to publications in reputable journals, elevating their academic profiles.
The career pathways for graduates of the PhD in Aerospace Engineering are diverse and promising. Alumni have successfully secured positions as Aerospace Engineers, Robotics Engineers, and Aviation Managers, among others. The median base salary for graduates is approximately $66,000, reflecting the high demand for skilled professionals in the aerospace sector. The program’s commitment to career development is further enhanced through a robust internship program that connects students with industry leaders and provides invaluable work experience.
In addition to the academic and research components, the program also focuses on building a dynamic community among its students. With a class size of approximately 21, students benefit from personalized attention from faculty, fostering a collaborative learning environment. The University of Maryland campus is vibrant, with a diverse student body that includes 16.3% international students, enriching the overall educational experience. Alumni testimonials highlight the profound impact of the program on their careers, often citing the strong mentorship received and the importance of practical experience gained during their studies.
Why Study PhD in Aerospace Engineering at the University of Maryland?
- Access to world-renowned faculty with extensive industry experience and research achievements.
- State-of-the-art research facilities and resources supporting cutting-edge aerospace research.
- Strong focus on hands-on learning through collaborative projects and real-world applications.
- Diverse student body that enhances cultural perspectives and networking opportunities.
- Robust career support, including internships and connections to leading aerospace companies.
- A vibrant campus life in close proximity to Washington, D.C., providing access to numerous professional opportunities.
To apply for the PhD in Aerospace Engineering, candidates must meet specific eligibility requirements including a relevant master’s degree and a strong academic background in engineering or a related field. Required application materials include a statement of purpose, resume, transcripts, and letters of recommendation. International applicants must also provide proof of English proficiency through standardized tests such as IELTS (minimum overall score of 6.5) or TOEFL (minimum score of 80). The application deadline for the upcoming Fall intake is January 20, 2025, and applicants are encouraged to submit their applications well in advance to ensure successful enrollment.
In conclusion, the PhD in Aerospace Engineering at the University of Maryland, College Park, is a premier choice for those looking to advance their careers in aerospace research and technology. With a rigorous curriculum, expert faculty, and abundant research opportunities, this program is designed to cultivate the next generation of leaders in aerospace engineering. Embrace the challenge, seize the opportunity, and contribute to the future of aerospace innovation.

Total Tuition Fees
$96,408

Duration
36 Months

Median Salary
$1,10,000
Ranking
#55
US World and News Report
#104
The World University Rankings
#218
QS World University Rankings

Intake
Fall ( Sept - Nov )

Intake
Spring ( Apr - June )
Class Profile

Class Size
25

Average Age
27

Average Work Experience
2 Years
Diversity
Others:
1%Hispanic or Latino:
13%Black or African American:
11%Two or more races:
2%Asian:
27%White:
47%Career Outcomes

Median Earnings After Graduation
$1,10,000 / year

Job Placement
85%
Prospective Job Roles
Aviation Manager
Aerospace Engineer
Design Engineer
Robotics Engineer
Materials Engineer
Aircraft Maintenance Engineer
Structural Engineer
Propulsion Engineer
Top recruiters









Eligibility Criteria

Accepted fields include Bachelor of Engineering - BE, Bachelor of Technology - BTech, Aeronautical engineering, Aerospace Engineering, Aerospace and Mechanical Engineering, Aeronautics & Astronautics.

At least 3.2 / 4 undergraduate GPA is expected.

At least 16 years of bachelor degree.

At least 24 months of full-time professional experience after graduation.
English Proficiency Tests
TOEFL
88
IELTS
6.5
PTE
68
Application Requirements
Here's everything you need to know to ensure a complete and competitive application—covering the key documents and criteria for a successful submission.

Application Fee: 75
Transcript
Statement of Purpose
Resume
Passport
IELTS
Academic LOR
Professional LOR
Application Deadlines
Standard Deadline | |
---|---|
Fall | Mar 14, 2025 |
Spring | Sep 26, 2025 |
Fees and Funding

Tuition Fees
$32,136 / year

Overall Cost
$47,136 / year
Funding Options
Department Funding
FAQs
- Students must pass a written qualifying exam and an oral comprehensive examination to advance to candidacy.
- Applicants should have a B.S. degree in Aerospace Engineering or a closely related field, with a recommended minimum GPA of 3.2/4.0. Application materials include a statement of purpose, transcripts, three letters of recommendation, and proof of English proficiency (TOEFL/IELTS/PTE) for international students. GRE scores are optional.
- Yes, after advancing to candidacy, students must complete at least 12 credits of ENAE899 Doctoral Dissertation Research, culminating in an original dissertation that must be successfully defended.
- PhD candidates must complete at least 36 semester hours of coursework beyond the bachelor’s degree. This includes a minimum of 18 credits in a major area of specialization, at least 6 credits in a minor area, and at least 9 credits emphasizing mathematics, physical sciences, life sciences, or computer sciences.
- Students can specialize in areas such as Aerodynamics and Propulsion, Flight Dynamics and Control, Rotorcraft, Space Systems, and Structural Mechanics and Composites.
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