Full text: Technical Commission IV (B4)

International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Volume XXXIX-B4, 2012 
XXII ISPRS Congress, 25 August — 01 September 2012, Melbourne, Australia 
King, R. W. et al, 1976. Lunar dynamics and selenodesy: 7. APPENDIX: LANDING SITE MAPS 
Results from analysis of VLBI and laser data. J. Geophys. Res., 
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Murphy, T. W. et al., 2011. Laser ranging to the lost Lunokhod 
1 reflector. /carus, 211, pp. 1103-1108. 
Mazarico, E. et al, 2012. Orbit determination of the Lunar 
Reconnaissance Orbiter. J Geod, 86, pp. 193-207. 
E. J. Speyerer, E. J. et al., 2012. In-flight geometric calibration 
of the Lunar Reconnaissance Orbiter Camera, XXII Congress of 
the International Society for Photogrammetry and Remote 
Sensing, WG IV/7. 
Tran, T. et al., 2012. Generating Digital Terrain Models Using 
LROC NAC Images, International Symposium IV/7 Planetary 
Mapping and Databases, Institute of Planetary Research, 
Orlando, FL. 
Williams, J. G., et al., 1996. Lunar moments, tides, orientation, 
and coordinate frames, Planet. Space Sci., 44(10), 1077-1080. 
Williams, J. G. et al, 2008. DE421 lunar orbit, physical 
librations, and surface coordinates, JPL Mem. IOM 335-JW, 
DB, WF-20080314-001, 14 March, Jet Propulsion Lab., Calif. 
Inst. of Technol, Pasadena, Calif. (Available at 
ftp://ssd.jpl.nasa.gov/pub/eph/planets/ioms/de421 moon coord 
_iom.pdf) 
  
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Figure 3: Apollo 12 landing site. 
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