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Lunar architecture and technology analysis driven by lunar science scenarios

Systems Engineering, 2010
Abstract NASA's Vision for Space Exploration and the missions it comprises pose large‐scale systems‐engineering problems with concomitant large‐budget investment decisions involving multiple disciplines (e.g., science, engineering, information technology), multiple constraints (e.g., time, mass, energy consumption), myriad ...
Charles R. Weisbin   +8 more
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Fourth Lunar Science Conference

Science, 1973
On 30 January 1973, the last sample containment bag from the last Apollo mission to the moon was logged into the processing cabinets of the Lunar Receiving Laboratory in Houston, Texas. The Apollo program, an undertaking that began as a demonstration of technological prowess and evolved into one of the greatest voyages of scientific exploration in our ...
Burnett, Donald   +2 more
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Lunar orbital science

Space Science Reviews, 1970
Orbital science has, to the present, concentrated on studies of force fields, particles, and visible photography. Cameras have been the major scientific instrument (it could be debated that for geodesy and gravity the entire spacecraft represents an instrument), and geology has been the principle benefactor.
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Third Lunar Science Conference

Science, 1972
© 1972 American Association for the Advancement of Science. This article was prepared by the Lunar Sample Analysis Planning Team. Participating were A. Burlingame. University of California, Berkeley; D. Burnett, California Institute of Technology, Pasadena; B. Doe, U.S. Geological Survey, Denver; D.
Burlingame, A.   +2 more
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The Apollo Program and Lunar Science

Bulletin of the Atomic Scientists, 1973
“The great thrust of the Apollo program was… the manned operation and the new categories of experiments this opened up…. The geochemical isotope-dating and magnetic results from the returned samples alone would have justified the manned Apollo missions.” Gerard Kuiper, astronomer, who was the principal investigator of the U.S. Ranger program, 1960–1966,
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Innovative developments in lunar and planetary science promoted by China’s lunar exploration

Science China Earth Sciences, 2023
Chunlai Li, Ouyang Ziyuan, Li Chunlai
exaly  

Advances in Lunar Science with Apollo

2013
In this chapter we review the results from the Apollo missions. With the availability of the samples, we immediately saw that they consisted of basalts, similar to those on earth, and breccias, which were the result of impacts. We also came face to face with the puzzle of lunar magnetism. Not only did the samples carry remanent magnetization (NRM), but
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