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1. Design of an Intake and a Thruster for an Atmosphere-Breathing Electric Propulsion System

2. Development and analysis of novel mission scenarios based on Atmosphere-Breathing Electric Propulsion (ABEP)

3. System Modelling of Very Low Earth Orbit Satellites for Earth Observation

4. Intake Design for an Atmosphere-Breathing Electric Propulsion System (ABEP)

5. In-Orbit Aerodynamic Coefficient Measurements using SOAR (Satellite for Orbital Aerodynamics Research)

6. RF Helicon-based Inductive Plasma Thruster (IPT) Design for an Atmosphere-Breathing Electric Propulsion system (ABEP)

7. In-orbit aerodynamic coefficient measurements using SOAR (Satellite for Orbital Aerodynamics Research)

8. Design of an intake and a thruster for an atmosphere-breathing electric propulsion system

9. Development and analysis of novel mission scenarios based on Atmosphere-Breathing Electric Propulsion (ABEP)

10. Intake design for an Atmosphere-Breathing Electric Propulsion System (ABEP)

12. RF Helicon-based Inductive Plasma Thruster (IPT) Design for an Atmosphere-Breathing Electric Propulsion system (ABEP)

13. Discoverer: Developing technologies to enable commercial satellite operations in very low earth orbit

14. Ground-based experimental facility for orbital aerodynamics research: Design, construction and characterisation

15. Investigation of novel drag-reducing and atomic oxygen resistant materials in very low earth orbit using SOAR (Satellite for orbital aerodynamics research)

16. Early Results from the DISCOVERER Project

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