University of Dayton United States

Aerospace Engineering

Integrated Masters with deeper specialization and research focus
Taught in English
Duration 2 Years
Mode On Campus
Level Postgraduate
Degree Masters Degree
Closing soon January 2027

Course Overview

Embark on a journey of advanced study with the Master of Science in Aerospace Engineering at Shorelight University of Dayton. This postgraduate program is crafted for individuals driven to push the boundaries of aeronautical innovation, focusing on critical areas such as fluid mechanics, continuum mechanics, and advanced aerodynamic principles. You will delve into complex systems, exploring the intricate dynamics of flight vehicles and the fundamental science behind propulsion, preparing you to tackle the most pressing challenges in aerospace design and research. This degree is ideal for aspiring engineers seeking to deepen their expertise and contribute to the future of flight.

This full-time, on-campus Master of Science degree is designed to be completed over two years, offering a comprehensive curriculum that balances theoretical knowledge with practical application. You will engage in rigorous coursework, with options to pursue either a thesis or non-thesis track, allowing for tailored specialization. The syllabus includes core aerospace engineering courses, mathematics, and elective options, enabling you to focus on areas like orbital dynamics, heat transfer, or computational fluid dynamics. You will graduate with advanced analytical skills and a strong foundation for careers in aerospace research, development, and engineering.

Course Curriculum & Details

Detailed information for serious evaluators

Program Overview

This Aerospace Engineering program offers a comprehensive curriculum covering core graduate-level courses in the field. Students will select from a range of specialized topics including aerodynamics, fluid mechanics, propulsion, orbital dynamics, and advanced design. The program also requires the completion of two additional graduate-level courses from Aerospace, Mechanical, or Reliability Engineering, along with an approved mathematics course, to provide a well-rounded engineering education.

1 Core Courses: Choose graduate-level Aerospace Engineering Courses:

2 Choose any two graduate-level AEE/MEE/RCL Courses:

3 Choose one approved Mathematics course

4 Additional Coursework

5 Courses

Introduction to Numerical Methods
Fundamental Aerodynamics
Advanced Aerodynamics
Introduction to Continuum Mechanics
Fundamentals of Fluid Mechanics
Advanced Aerospace Systems Design & Integration
Mechanical Behavior of Materials
Orbital Dynamics
Aircraft Performance & Control
Introduction to the Finite Element Method
Principles of Corrosion
Propulsion
Physical Gas Dynamics with Aerospace Applications
Conduction Heat Transfer
Convection Heat & Mass Transfer
Radiation Heat Transfer
Analytical Dynamics
Theoretical Kinematics
Flight Vehicle Dynamics
Geometric Methods in Kinematics
Engineering Design Optimization
Electrochemical Power
Aerospace Fuels Science
Automatic Control Theory
Mechanical Vibrations
Introduction to Aeroelasticity
Flight Dynamics
Experimental Mechanics of Composite Materials
Analytical Mechanics of Composite Materials
Mechanics of Composite Structures
Computational Methods for Design
Finite Element Analysis I
Finite Element Analysis II
Noise & Vibration Control
Boundry Layers Theory
Compressible Flow
Turbulence
Hypersonic Aerodynamics
Computational Fluid Dynamics
Propulsion Systems
Fundamentals of Fuels & Combustion
Fracture Mechanics
Problems in Aerospace Engineering
Aerospace Engineering Project
Aerospace Engineering Thesis
Selected Readings in Aerospace Engineering
DE Dissertation
PHD Dissertation

Cost & Affordability

A clear picture of what this course will cost you

Program Costs

First Year Fee Tuition fee
USD 23,300.00
Second Year Fee Tuition fee
USD 23,300.00
Total Program Cost Estimated total tuition
USD 46,600.00

Currency note: Program costs shown in USD based on the available tuition breakdown.

Living Costs

Accommodation
USD 340.00 - USD 1,938.00
Food & Groceries USD 4,200.00 - USD 6,000.00
Transport USD 1,200.00 - USD 1,800.00
Utilities & Bills USD 1,440.00 - USD 2,400.00
Estimated Total USD 6,840.00 - USD 10,200.00

Living cost estimates are based on Dayton Campus.

Outcomes & Employability

What happens after you graduate

97%
Graduate Employment Rate Within 6 to 12 months of graduation

Common Graduate Roles

Aerospace Engineering & DesignAerospace ManufacturingAerospace Research & AcademiaAerospace Supply Chain & LogisticsAlternative Aviation Fuel & SustainabilityAviation Safety & RegulationCommercial AviationDefense & Military AviationSpace Exploration & Satellite TechnologyUnmanned Aerial Vehicles (Drones)

Top Employers Hiring for this course

GE Aerospace

Why Study Aerospace Engineering at University of Dayton

What makes this program stand out

January 2027 Closing soon

Next intake is in January 2027

Very Fast Application response time

University of Dayton typically responds to applications within 1 - 2 days, giving you clarity on your options quickly.

Life at University of Dayton in United States

What daily life looks like for international students

Language

English

Primary language everywhere

Climate

Mild & Rainy

10-20°C average, pack layers

Safety (Numbeo Safety Index)

Very Safe

Exeter is one of UK's safest cities

Frequently Asked Questions

Common questions about Aerospace Engineering at University of Dayton

Can I work while studying?

International students can work up to 20 hours per week during term time and full-time during breaks. On-campus work does not require a separate permit.

What English language score do I need for this course?

To meet the English requirements, acceptable scores include Duolingo overall score of 120, TOEFL overall score of 80, or IELTS overall score of 6.5. Make sure to check the specific score requirements for each section.

What jobs can I get after studying this course?

Graduates can pursue careers as Aerospace Engineers, Research Scientists, or Fuel System Engineers, among others.

What will I actually study in this course?

Take your next step toward a new frontier of professional or scholarly success.

Our research, particularly in the areas of nanomaterials, energy systems, and fuels and combustion — as led by the von Ohain Fuels and Combustion Center — is enhanced by our relationship with the Air Force Research Laboratories. 

You can choose from numerous research opportunities: aircraft fuels and combustion, alternative fuels for future use in homes, transportation, and

When can I start — what are the intake months?

The intake month for the Aerospace Engineering program is January. Ensure you apply ahead of the deadline to secure your spot.
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