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

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

5. The Benefits of Very Low Earth Orbit for Earth Observation Missions

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

7. Chapter Earth Observation Technologies: Low-End-Market Disruptive Innovation

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

9. Chapter Optimization of an Earth Observation Data Processing and Distribution System

10. On the exploitation of differential aerodynamic lift and drag as a means to control satellite formation flight

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

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

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

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

17. The benefits of very low earth orbit for earth observation missions

18. Inductive plasma thruster (IPT) for an atmosphere breathing electric propulsion system: Design and set in operation

19. Modelling and Simulation of Very Low Earth Orbits

20. On the exploitation of differential aerodynamic lift and drag as a means to control satellite formation flight

34. Algebraic Observers to Estimate Unmeasured State Variables of DC Motors.

35. KeyNote: Discoverer - Making commercial satellite operations in very low earth orbit a reality

36. Attitude control for satellites flying in VLEO using aerodynamic surfaces

37. SOAR - Satellite for Orbital Aerodynamics Research

38. RF helicon-based plasma thruster (IPT): Design, set-up, and first ignition

39. Demonstration of aerodynamic control manoeuvres in very low earth orbit using SOAR (Satellite for Orbital Aerodynamics Research)

40. Discoverer - Radical redesign of earth observation satellites for sustained operation at significantly lower altitudes

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

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

43. Concepts and applications of aerodynamic attitude and orbital control for spacecraft in very low earth orbit

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

45. Inductive plasma thruster (IPT) design for an atmosphere-breathing electric propulsion system (ABEP)

46. Early Results from the DISCOVERER Project

47. ROAR -- A Ground-Based Experimental Facility for Orbital Aerodynamics Research

48. System analysis and test-bed for an atmosphere-breathing electric propulsion system using an inductive plasma thruster

49. Micro-vibration-based slip detection in tactile force sensors.

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