A Comparison of Minimum Time Profiles for the F-104 Using Balakrishnan's Epsilon Technique and the Energy Method
Minimum time profiles for F-104 aircraft by Balakrishnan epsilon technique, comparing solutions with energy method
Engineering topics
Publications and source records attributed to Smith, H. J..
Minimum time profiles for F-104 aircraft by Balakrishnan epsilon technique, comparing solutions with energy method
Space research in past and expected scientific knowledge from manned and automated earth orbital science missions
Human transfer characteristics in flight and ground simulation for roll tracking task
Computing optimum flight profiles by Balakrishnan epsilon method, including equations of motion constraint in cost function to be minimized
Human describing functions measured in flight and on simulators, noting difference in variances
Upper limit of carbon dioxide abundance in Mercury atmosphere
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L-pulses of Jupiter radiation, attributing 1-sec component of time structure on decametric emission to diffraction by solar wind inhomogeneities
High dispersion spectrograms of Mars examined for water vapor presence, results indicate amount depends on size of polar cap
Solar physics involving electromagnetic radiation and solar spectrum at all wavelengths
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Human describing functions measured in flight by T-33 variable-stability airplane, and by ground simulation of instrument flight of same aircraft and on analog computer with contact display
Interplanetary scintillation in Jupiter decametric radiation
Lateral directional stability and control characteristics of lightweight M2-F1 lifting body at low speeds
Space environment solar perturbations - solar activity effects on upper atmosphere, magnetosphere, and interplanetary medium
Solar flare structure, development, and motion
Decametric radiation from jupiter - synoptic observations 1957 to 1961 - radiation storm measurements