Rice University

USA
1 Scholarships 121 Programs 3 Degree levels
Masters

Master's in Aerospace, Aeronautical, and Astronautical

Offered at Rice University, USA
DegreeMasters
FieldAerospace, Aeronautical, and Astronautical/Space Engineering.
A

Cost & earnings at Rice University What students borrow here, and what they go on to earn

You borrow $11,000 median federal debt
You repay $125/mo over 10 years
Graduates earn $89,718 10 yrs after entry
Debt clears in 0.2 yrs of the salary premium
US Department of Education figures See the full breakdown →
B

Engineering graduates earn a median $88,982 Across 136 US programmes, two years after finishing

See the degree grade →

This master's programme in Aerospace, Aeronautical and Astronautical engineering at Rice University provides advanced technical training in aircraft and spacecraft systems, combining rigorous coursework with research or project options. It suits graduates with a strong foundation in engineering, physics or mathematics who want to advance into aerospace design, analysis, research or related industry roles.

What you'll study

The programme covers the core scientific and engineering principles that underpin aircraft and spacecraft design, performance and operations. Students typically study advanced aerodynamics, compressible flow and propulsion; flight dynamics and control; structural analysis and materials for aerospace applications; and orbital mechanics and spacecraft systems. Computational methods and numerical simulation are emphasised, with modules on finite element analysis, computational fluid dynamics and multidisciplinary design optimisation.

Study pathways commonly include a combination of coursework and a research thesis or an integrated design project. Typical module topics include:

  • Aerodynamics and Compressible Flow — viscous and inviscid flow theory, boundary layers, transonic and supersonic regimes.
  • Propulsion Systems — gas-turbine and rocket propulsion fundamentals, performance and design considerations.
  • Flight Dynamics and Control — aircraft and spacecraft stability, guidance, navigation and control systems.
  • Structures and Materials — composite materials, structural analysis, fatigue and failure modes.
  • Orbital Mechanics and Space Systems — orbital dynamics, mission design, satellite subsystems.
  • Computational Methods — CFD, FEA, simulation tools and high-performance computing applications.
  • Advanced Topics and Electives — hypersonics, aeroelasticity, autonomous systems, space mission architecture, and advanced propulsion concepts.

Hands-on elements include laboratory work, wind-tunnel testing, hardware-in-the-loop simulation and team design projects. Students may also have the opportunity to participate in faculty-led research groups or collaborate with Rice’s interdisciplinary centres on space-related projects.

Entry requirements

Applicants are normally expected to hold a bachelor’s degree in aerospace, aeronautical, astronautical, mechanical engineering, physics or a closely related quantitative discipline. A strong record in mathematics, fluid mechanics and mechanics of materials is important. Admissions typically consider undergraduate transcripts, a statement of purpose, and letters of recommendation.

International applicants must demonstrate English language proficiency through recognised tests unless exempt. The programme may request standardised test scores in some cases, though many departments accept applications without GRE scores or treat them as optional; check the department guidance for current practice. Relevant industry experience, research projects or demonstrated programming and computational skills are advantageous.

Career prospects

Graduates move into a wide range of roles across the aerospace sector and adjacent industries. Typical career paths include:

  • Aerospace engineer focusing on airframe, propulsion or avionics design.
  • Flight dynamics and control engineer working on guidance, navigation and control systems.
  • Systems engineer managing integration of complex airborne or spaceborne systems.
  • Structures and materials engineer specialising in composite design and testing.
  • Propulsion or propulsion testing engineer in industry or government laboratories.
  • Space mission analyst, satellite systems engineer or operations engineer for commercial space companies, national space agencies or research organisations.
  • Further research or academic careers via progression to a PhD in aerospace-related fields.

Graduates find employment with aircraft and spacecraft manufacturers, defence contractors, space agencies, research laboratories, technology startups, and companies in sectors such as autonomous systems, renewable energy and advanced manufacturing.

Why study at Rice University

Rice offers a supportive, research-intensive environment with small class sizes and close faculty mentorship. The university is home to interdisciplinary initiatives and research groups that focus on space science and engineering, enabling students to work on cutting-edge problems and access specialised facilities.

Students benefit from Rice’s connections to the wider Houston technology and space ecosystem, including opportunities for collaboration with local industry, research centres and nearby federal facilities. The university also emphasises entrepreneurship and technology translation, providing pathways for students who seek to commercialise aerospace innovations or join technology startups.

Overall, the programme combines rigorous technical training, practical project experience and research exposure within a compact, collaborative academic community, preparing graduates for technical and leadership roles in aerospace and related fields.

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Programme details are indicative and may change — always verify current information with the official university website before applying.