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Aerospace engineering is the primary field of engineering concerned with the development of aircraft and spacecraft. [3] It has two major and overlapping branches: aeronautical engineering and astronautical engineering. Avionics engineering is similar, but deals with the electronics side of aerospace engineering.
Boeing's Starliner spacecraft, in development under a $4.5 billion NASA contract to ferry astronauts to the ISS, has faced an array of engineering challenges since 2019.
Propulsion engineering for the design of the propulsion subsystem, which provides a means of transporting the spacecraft from one orbit to another, Mechanical engineering for the design of the spacecraft structures and mechanisms, as well as the selection of materials for use in vacuum .
In most industrial countries, the aerospace industry is a co-operation of the public and private sectors. For example, several states have a civilian space program funded by the government, such as National Aeronautics and Space Administration in the United States, European Space Agency in Europe, the Canadian Space Agency in Canada, Indian Space Research Organisation in India, Japan Aerospace ...
Adam Steltzner (born 1963) – JPL engineer for Mars rovers' entry, descent, and landing; Alan Stern (born 1957) – engineer and planetary scientist, principal investigator of the New Horizons mission to Pluto; Homer Joseph Stewart (1915–2007) – helped develop Explorer 1, Pioneer 4, and several rockets
Guidance, navigation and control (abbreviated GNC, GN&C, or G&C) is a branch of engineering dealing with the design of systems to control the movement of vehicles, especially, automobiles, ships, aircraft, and spacecraft. In many cases these functions can be performed by trained humans.
Verification or qualification, is one main reason that costs for space systems are high. All data are to be documented and to stay accessible for potential, later failure analyses. In previous times that approach was executed down to piece-parts level (resistors, switches etc.) whereas nowadays it is tried to reduce cost by usage of "CAM ...
The spacecraft would approach Mars on a hyperbolic orbit, and a final retrograde burn would slow the spacecraft enough to be captured by Mars. Friedrich Zander was one of the first to apply the patched-conics approach for astrodynamics purposes, when proposing the use of intermediary bodies' gravity for interplanetary travels, in what is known ...