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Nonmotion Flight Simulation Development of Slow Flight and Stall Tasks for Use in Ab Initio Flight Training

Richard P. Anderson, Nickolas D. Macchiarella

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Abstract

"The ever-increasing computational power used to drive ground-based flight simulations and flight training devices (FTDs) is enabling higher levels of fidelity at lower costs while accurately modeling specific aspects of flight."--abstract from the chapter at

About this research paper

What this paper is about

"The ever-increasing computational power used to drive ground-based flight simulations and flight training devices (FTDs) is enabling higher levels of fidelity at lower costs while accurately modeling specific aspects of flight."--abstract from the chapter at

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

"The ever-increasing computational power used to drive ground-based flight simulations and flight training devices (FTDs) is enabling higher levels of fidelity at lower costs while accurately modeling specific aspects of flight."--abstract from the chapter at

Key concepts: Flight simulator, Flight training, Computer science, Ab initio, Aeronautics, Simulation, Engineering, Physics

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Nonmotion Flight Simulation Development of Slow Flight and Stall Tasks for Use in Ab Initio Flight Training — Research Paper | ScholarLens