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The IBM System/4 Pi is a family of avionics computers used, in various versions, on the F-15 Eagle fighter, E-3 Sentry AWACS, Harpoon Missile, NASA's Skylab, MOL, and the Space Shuttle, as well as other aircraft. Development began in 1965, deliveries in 1967. [1]
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.
In 1998 he founded Star Technology and Research, Inc., a small business in Mount Pleasant, SC, for aerospace research and development, and currently serves as its president. Pearson is an Associate Fellow of the AIAA, a Fellow of the British Interplanetary Society, and a Tau Beta Pi "Eminent Engineer".
Army Research, Development and Engineering Command (RDECOM) Army Research Laboratory (ARL) Army Armament Research, Development and Engineering Center (ARDEC) Engineer Research and Development Center (ERDC) U.S. Army Test and Evaluation Command (ATEC) Army Medical Research and Material Command (USAMRMC)
At Department of Defense, Rechtin became the Director of the Advanced Research Projects Agency, (later known as the Defense Advanced Research Projects Agency (DARPA). In 1970 he became the principal deputy in the office of the director of Defense Research and Engineering, and then the Assistant Secretary of Defense for Telecommunications.
The research and development activities of CSIR include aerospace engineering, structural engineering, ocean sciences, life sciences and healthcare including diagnostics, metallurgy, chemicals, mining, food, petroleum, leather, and environmental science. [5]
The AARL houses numerous other research facilities, including the Mechanical Engineering Department's Gas Dynamics and Turbulence Laboratory(GDTL) and Gas Turbine Lab. GDTL works cooperatively with NASA Glenn Research Center and Wright-Patterson Air Force Base researching aeroacoustics and high reynolds number flow related to propulsion. [8]
The lab also performs applied research and development of radar-related technologies in support of national defense preparedness. The lab’s prototype development capabilities span the spectrum from mechanical and electronics design and fabrication to full system integration including embedded computing and control systems.