Rocket Engines Rocket Propulsion Rocket Technology Spacecraft Design Electric Propulsion Liquid Propulsion Rocket Engineering 3D Printing Liquid Propellants Testing Procedures Rocket Design Methane Engines Hybrid Propulsion Thruster Technology Materials Science Reentry Technologies Air-Breathing Engines Fuel Technology BE-7 Engine Satellite Technology Bipropellants Solid-Fuel Motors Hydrogen Storage Safety Standards Hydrogen Fuel Technology Air-Breathing Propulsion Reusability Methane Fuel Technology Technical Disagreements Air Breathing Engines Solid Rocket Motors Storable Propellants Nuclear Thermal Propulsion Advanced Technologies Engine Technology Hydrogen-Electric Systems Translunar Injection Technical Analysis Hypersonic Technology Jet Engines Cooling Technology Experimental Technologies Testing and Certification Fluid Dynamics Technical Failures Kick Stages Detonation Technology Rocket Recovery Techniques Distributed Electric Propulsion Rocket Stages Combustion Technology High-speed Flight Scramjet Technology Solid-Fuel Rockets Spacecraft Operations Solid-Propellant Rockets Reentry Vehicles Jet Technology Spacecraft Engineering Hypersonic Flight Adaptive Cycle Engines Reusable Launch Vehicles Air-breathing Engines Testing Turbomachinery Testing Facilities Hypersonic Propulsion Thrusters Rocket Motors High-Thrust Propulsion
The funding aims to scale the team to about 200 engineers to speed vehicle testing to win commercial customers, including the U.S. Space Force.