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Design, Set-Up, and First Ignition of the RF Helicon-based Plasma Thruster, , , , , , , , , and 19 other author(s). Space Propulsion 2021, Online, (March 2021)Intake design for an Atmosphere-Breathing Electric Propulsion system (ABEP), , , , , , , , , and 22 other author(s). Acta Astronautica, (2021)Inductive Plasma Thruster (IPT) for an Atmosphere- Breathing Electric Propulsion System: Design and Set in Operation, , , , , , , , , and 27 other author(s). 36th International Electric Propulsion Conference, Vienna, Austria, (September 2019)Inductive Plasma Thruster (IPT) design for an Atmosphere-Breathing Electric Propulsion System (ABEP), , , , , , , , , and 27 other author(s). 70th International Astronautical Congress, Washington D.C., USA, (October 2019)System Analysis and Test-Bed for an Atmosphere-Breathing Electric Propulsion System using an Inductive Plasma Thruster, , , , , , , , , and 21 other author(s). 68th International Astronautical Congress, Adelaide, Australia, (September 2017)The benefits of very low earth orbit for earth observation missions, , , , , , , , , and 23 other author(s). Progress in Aerospace Sciences, (2020)System modelling of very low Earth orbit satellites for Earth observation, , , , , , , , , and 1 other author(s). Acta astronautica, 187 (October): 475-491 (2021)Development and analysis of novel mission scenarios based on Atmosphere-Breathing Electric Propulsion (ABEP), , , , , , , , , and 21 other author(s). CEAS space journal, 14 (4): 689-706 (2022)Design of an intake and a thruster for an atmosphere breathing electric propulsion system, , , , , , , , , and 19 other author(s). CEAS space journal, (2022)Effects of applied magnetic field on IPG6-S, test-bed for an ABEP-based inductive plasma thruster (IPT), , , , , , , , , and 24 other author(s). Space Propulsion 2018, Seville, Spain, (May 2018)