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We have 181 Aerospace Engineering PhD Projects, Programmes & Scholarships

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Aerospace Engineering PhD Projects, Programmes & Scholarships

We have 181 Aerospace Engineering PhD Projects, Programmes & Scholarships

If you have a passion for flight and a desire to push the boundaries of aerospace technology, then pursuing a PhD in Aerospace Engineering could be the perfect path for you.

What's it like to study a PhD in Aerospace Engineering?

Studying a PhD in Aerospace Engineering is an exciting and challenging journey. As a doctoral student, you will have the opportunity to delve deep into the world of aerospace technology and contribute to cutting-edge research in the field. You will work closely with experienced faculty members and industry experts, collaborating on projects that aim to advance aircraft design, propulsion systems, aerodynamics, and space exploration.

During your PhD, you will be expected to conduct extensive research, analyze data, and develop innovative solutions to complex engineering problems. You will also have the chance to present your findings at conferences and publish your work in reputable journals, contributing to the overall knowledge and advancement of aerospace engineering.

Entry requirements for a PhD in Aerospace Engineering

To pursue a PhD in Aerospace Engineering, you will typically need a strong academic background in engineering or a related field. Most universities require applicants to hold a Master's degree in Aerospace Engineering or a closely related discipline. Additionally, you will need to demonstrate excellent research skills, a strong aptitude for problem-solving, and a passion for aerospace technology.

PhD in Aerospace Engineering funding options

Funding for PhDs in Aerospace Engineering may be available from various sources, including governments, universities and charities, business or industry. See our full guides to PhD funding for more information.

PhD in Aerospace Engineering careers

A PhD in Aerospace Engineering opens up a world of exciting career opportunities. Graduates can find employment in various sectors, including aerospace companies, research institutions, government agencies, and academia. With your advanced knowledge and expertise, you could work on designing and developing aircraft, spacecraft, or even unmanned aerial vehicles. You may also contribute to the development of new propulsion systems, improve aerodynamic performance, or conduct research on space exploration and satellite technology.

Furthermore, a PhD in Aerospace Engineering can lead to leadership positions within the industry, where you can oversee engineering projects, manage teams, and contribute to the strategic direction of aerospace companies. The demand for aerospace engineers is expected to grow in the coming years, making it an excellent time to pursue a PhD in this field.

In conclusion, studying a PhD in Aerospace Engineering offers a unique opportunity to contribute to the advancement of aerospace technology and shape the future of flight. With a strong academic foundation and a passion for engineering, you can embark on a rewarding career in this dynamic and ever-evolving field.

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PhD Engineering Scholarship: Advanced Composites Materials in non-ambient environmental conditions

The tremendous potential of composite materials in achieving a low-carbon and sustainable future, especially in renewable energy production, sustainable energy storage, and lightweight solutions for sustainable transportation, has been well established. Read more

Investigation of green bipropellant chemical propulsion systems

Supervisory Team: Dr Charlie Ryan, Dr Ralf Deiterding. PhD Supervisor: Charlie Ryan. Project description. For the past 50 years the dominant rockets used in space have been hydrazine based chemical thrusters. Read more

Model-based Approach for Prognostics Health Management (PHM) for Fusion Reactors

  Research Group: Plasma and fusion science and technologies
The University of York is at the forefront of transformative research in data-centric engineering, digital twins, and AI, bringing about a revolution in the design and operation of systems. Read more

Human Interaction with Low-Speed Autonomous Vehicles

  Research Group: Intelligent Systems and Robotics
The University of York is embarking on ground-breaking research that focuses on data-centric engineering, digital twins, and AI, revolutionizing the way systems are designed and optimized through data. Read more

Explainable AI for Safety Critical Engineering Systems

  Research Group: Intelligent Systems and Robotics
The University of York is at the forefront of transformative research in data-centric engineering, digital twins, and AI. Our pioneering work is revolutionizing the design of complex systems by harnessing the power of data. Read more

Autonomous Reconfiguration, Deployment, and Management of Self-Aware Modular Space Robots

  Research Group: Intelligent Systems and Robotics
Modular and dynamically reconfigurable space hardware systems are a high priority for research and development as they can significantly decrease development costs, facilitate multiple payloads, and enable indefinite lifetime extension for space missions. Read more

Multi-Fidelity Modelling of Rechargeable Battery Degradation

  Research Group: Intelligent Systems and Robotics
Rechargeable batteries play a key role in electric vehicles and transition to net zero. One of the current challenges in batteries is degradation, which causes capacity retention and resistance increase as the battery cycles. Read more

A Superconducting Brushless Exciter for High-power Density Electrical Machines

Background. The ability of high-temperature superconducting (HTS) materials to carry large current densities with little or no resistance makes them attractive for providing large rotor magnetic fields in high-power density superconducting electrical machines. Read more

Mechatronics system for hybrid manufacturing processing - (ENG 1316X2)

Rolls-Royce University Technology Centre (UTC) in Manufacturing and On-Wing Technology, The University of Nottingham. Applicants are invited to undertake a 3 year PhD program in partnership with industry to address key challenges in on-platform manufacturing engineering. Read more

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