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![VHA’s NASA-derived 206 tail rotor is made of composite material with additional features like a titanium root fitting, swept tip, nickel abrasion strip, and new pitch bearing design. Tail rotor](/sites/default/files/styles/search_/public/2020-09/035_web_1.jpg?itok=XxZzdqI3)
![VHA’s NASA-derived 206 tail rotor is made of composite material with additional features like a titanium root fitting, swept tip, nickel abrasion strip, and new pitch bearing design. Tail rotor](/sites/default/files/styles/pdf/public/2020-09/035_web_1.jpg?itok=DBfn-aBZ)
http://hdl.handle.net/hdl:2060/20110000756
2010
![Originally built to allow Apollo astronauts to practice landing on the Moon, this 240-foot-high gantry is now Langley Research Center’s Landing and Impact Research Facility. Langley Research Center’s Landing and Impact Research Facility](/sites/default/files/styles/search_/public/2020-09/037_web.jpg?itok=PgL6Bo-a)
![Originally built to allow Apollo astronauts to practice landing on the Moon, this 240-foot-high gantry is now Langley Research Center’s Landing and Impact Research Facility. Langley Research Center’s Landing and Impact Research Facility](/sites/default/files/styles/pdf/public/2020-09/037_web.jpg?itok=825h1BQg)
http://hdl.handle.net/hdl:2060/20110000757
2010
![SEAKR’s SSRs have become mission-enabling technologies, playing a vital role in many NASA missions and onboard multiple commercial satellites. Solid-state recorder technology for spacecraft](/sites/default/files/styles/search_/public/2020-09/130_web.jpg?itok=eC2E6_o4)
![SEAKR’s SSRs have become mission-enabling technologies, playing a vital role in many NASA missions and onboard multiple commercial satellites. Solid-state recorder technology for spacecraft](/sites/default/files/styles/pdf/public/2020-09/130_web.jpg?itok=jOB7UO1R)
http://hdl.handle.net/hdl:2060/20110000754
2010