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REFERENCES

Albarède, F. (2009) Volatile history of the terrestrial and dynamic implications. Nature 461, pp. 1227-1233. Allton, J.H. (1989) Catalog of lunar surface geological sampling tools and containers. NASA/JSC Exploration Division, NAS 9-17900, Houston. Ahrens, T.J. and O’Keefe, J.D. (1972) Shock melting and vaporization of lunar rocks and minerals. The 4, pp. 59-94. , D.E. (1978) Geologic map of the central . Geologic of the Moon, 1:500,000 Geologic Series, no. I-1047. USGS. Andreas, E.L. and , J.R. (2007) New estimates for the sublimation rate for ice on the Moon. Icarus 186, pp. 24- 30. Antonenko, I., Head, J.W., Mustard, J.F. and Hawke, B.R. (1995) Criteria for the detection of lunar cryptomaria, , Moon and Planets 69, pp. 141-172. Antonenko, I. (1999) Volumes of cryptomafic deposits on the Western Limb of the Moon: Implications for lunar Volcanism. PhD Dissertation, University, Providence, RI. Antonenko, I. (1999) Global estimates of cryptomare deposits: Implications for lunar volcanism. Lunar . Sci. XXX, Abstract # 1703. Antonenko, I. and Head, J. (1997) Cryptomare delineations using craters as probes to lunar stratigraphy - Use of multispectral data as a tool. Lunar Planet. Sci. XXVIII, Abstract # 1670. Antonenko, I., Head, J.W., Mustard, J.F. and Hawke, B.R. (1995) Criteria for the detection of lunar cryptomaria, Earth, Moon, and Planets 69, no. 2, pp. 141–172. Antonenko, I. and Yingst, R.A. (2002) Mare and cryptomare deposits in the Schickard region of the Moon: New measurements using Clementine FeO data. Lunar Planet. Sci. XXXIII, Abstract # 1438. Arai, T., Takeda, H., Yamaguchi, A., and Ohtake, M. (2008) A new model of lunar crust: asymmetry in crustal composition and evolution. Earth Planets Space 60, pp. 433-444. Araki, H., et al. (2009) Lunar global shape and polar topography derived from Kaguya-LALT laser altimetry. Science 323, pp. 897-900. Arkani-Hamed, J., and Pentecost, A. (2001) On the source region of the . J. Geophys. Res. 106, pp. 14691-14700. , J. C. (2010) Distribution of impact locations and velocities of Earth on the Moon. Earth Moon Planets 107, pp. 43-54. Armstrong, J. C., Wells, L. E. and Gonzales, G. (2002) Rummaging through Earth's attic for the remains of ancient life. Icarus 160, pp. 183-196. Arnold, J. R. (1979) Ice in the lunar polar regions. J. Geophys. Res. 84, pp. 5659-5668. Arndt, J. and von Engelhardt, W. (1987) Formation of orange and glass beads, Proc. Lunar Planet. Sci. Conf. 17th, pp. E372-E376. Arndt, J, von Engelhardt, W., Gonzalez-Cabeza, I. and Meier, B. (1984) Formation of glass beads, Proc. Lunar Planet. Sci. Conf. 15th, pp. C225-C232. Arnold, J. R. (1975) A Monte Carlo model for the gardening of the lunar , Moon, 13, 159–172, doi:10.1007/BF00567513. Arnold, J. R. (1979) Ice in the lunar polar regions, J. Geophys. Res. 84, pp.J. Geophys. Res. 5659–5668, doi:10.1029/JB084iB10p05659. Arvidson, R., Drozd, R.J., Guinness, E., Hohenberg, C.M., Morgan, C.J., Morrison, R.H. and Oberbeck, V.R. (1976) Cosmic ray exposure ages of Apollo 17 samples and the age of , Proc. Lunar Science Conf. 7th, pp. 2817-2832. Bailey, N.G., and Ulrich, G.E. (1974) voice transcript pertaining to the geology of the landing site. Flagstaff, AZ: USGS Branch of Astrogeology. Baldwin, R.B. (1963) The measure of the Moon. University of Chicago Press, Chicago, p. 488.

566

Baldwin, R.B. (1972) The tsunami model for the origin of ring structures concentric with large , Phys. Earth Planet. Interiors 6, pp. 327-339. Baldwin, R.B. (1974) On the origin of the mare basins. Proc. Lunar Science Conf. 5th and Geochimica et Cosmochimica Acta 1, 1-10. Bandfield, J.L., Ghent, R.R., Vasavada, A.R. and Paige, D.A. (2010) Mapping lunar surface rock abundance and regolith thermophysical properties using LRO Diviner data. Proc. Lunar Planet. Sci. Conf. 41st. Bart, G.D., and Melosh, H.J. (2005) Ejected boulders: implications for secondary craters and the age dating of surfaces. Lunar Planet. Sci. XXXVI, Abstract # 2022. Bart, G.D., and Melosh, H.J. (2007) Using lunar boulders to distinguish primary from distant secondary impact craters. Geophysical Research Letters 34, p. L07203. Bart, G.D., and Melosh, H.J. (2010) Distributions of boulders ejected from lunar craters. Icarus 209, pp. 337-357. Bart, G.D., Nickerson, R.D., Lawder, M.T., and Melosh, H.J. (2011) Global survey of lunar regolith depths from LROC images. Icarus 215, pp. 485-490. Beaty, D.W. and Albee, A.L. (1978) Comparitive petrology and possible genetic relations among the Apollo 11 . Proc. Lunar Sci. Conf. 9th, pp. 359-463. , J.F. and Hawke, B.R. (1984) Lunar dark-haloed impact craters: Origin and implications or early mare volcanism. J. Geophys. Res. 89, pp. 6899–6910. Belton, M.J.S., Head, J.W., Pieters, C.M., Greeley, R., McEwen, A.S., Neukum, G., Klaasen, K.P., Anger, C.D., Carr, M.H., , C.R., Davies, M.E., Fanale, F.P., Gierasch, P.J., Greenberg, R., Ingersoll, A.P, Johnson, T., Paczkowski, B., Pilcher, C.B. and Veverka, J. (1992) Lunar Impact Basins and Crustal Heterogeneity: New Western Limb and Far Side Data from Galileo. Science 255, pp. 570-576. Berezhnoy, A.A., Hasebe, N., Hiramoto, T., and Klumov, B. A. (2003) Possibility of the presence of S, SO2, and CO2 at the Poles of the Moon. Publications of the Astronomical Society of Japan 55, pp. 859-870. Berezhnoy, A.A., Kozlova, E.A., and Shangaraev, A.A. (2011) Stability and origin of lunar polar . Lunar Planet. Sci. Conf. XLII, Abstract # 1185. Berg, O.E. (1978) A lunar configuration. Earth and Planetary Science Letters 39, pp. 377-381. Bhanoo, S. (2011) Rocky surprises on the far side of the Moon. New York Times, July 25, 2011. Binder, A.B. (1980) On the internal structure of a Moon of fission origin. J. Geophys. Res. 85, pp. 4872-4880. , E.C. (1916) An investigation of the laws of plastic flow, Bull. U.S. Bureau Standards 13, p. 309. Blewett, D.T., Coman, E.I., Hawke, B.R., Gillis-Davis, J.J., Purucker, M.E. and Hughes, C.G. (2011) : Examining crustal magnetic anomalies and ." J. Geophys. Res. 116, p. E02002. Blewett, D.T., Hawke, B.R., Lucey, P.G., Taylor, G.J., Jaumann, R., and Spudis, P.D., 1995. Remote sensing and geologic studies of the Schiller-Schickard region of the Moon. J. Geophys. Res. 100, pp. 16959–16977. Boardman, J.W., Pieters, C.M., Green, R.O., Lundeen, S.R., Varanasi, P., Nettles, J., Petro, N., Isaacson, P., Besse, S., and Taylor, L.A., 2011. Measuring : An overview of the spatial properties, lunar coverage, selenolocation, and related Level 1B products of the Moon Mineralogy Mapper. J. Geophys. Res. 116, pp. 1-15. Bogard, D.D. (1995) Impact ages of meteorites: A synthesis. 30, pp. 244-268. Bottke, W.F. Jr., Love, S.G., Tytell, D. and Glotch, T. (2000) Interpreting the Elliptical Crater Populations on , Venus, and the Moon. Icarus 145, pp. 108-121. Boyce, J.M., Dial, A.L., and Soderblom, L.A. (1974) Ages of lunar nearside light plains and maria. Proc. Lunar Science Conf. 5th and Geochimica et Cosmochimica Acta 1, pp. 11-23. Boyce, J.W., Liu, Y., Rossman, G.R., Guan, Y., Eiler, J.M., Stopler, E.M., and Taylor, L.A. (2010) Lunar apatite with terrestrial volatile abundances. Nature 466, pp. 466-470. Brett, R. (1975) Thickness of some lunar mare basalt flows and ejecta blankets based on chemical kinetic data. Geochimica et Cosmochimica Acta, 39, pp. 1135-1141. Brittan, J., Morgan, J., Warner, M., Marin, L. (1999) Near-surface seismic expression of the Chicxulub . In Dressler, B.O. and Sharpton, V.L. (eds) Large Impacts and Planetary Evolution II: Boulder, Colorado. Geological Society of America Special Paper 339, pp. 269-280.

567

Bryan, W.B. and , M.L. (1973) Some volcanic and structural features of Mare Serenitatis. NASA SP-330, Apollo 17 Prelim. Sci. Rept., pp. 3009-3012. Byrne, C.J. (2007) A Large Basin on the , Earth Moon Planet 101, pp. 153-188. Buck, W.R., and Toksöz, M.N. (1980) The bulk composition of the moon based on geophysical constraints. Proc. Lunar Planet. Sci. Conf. 11th, pp. 2043-2058. Budney, C. and Lucey, P. (1998) Basalt thickness in Mare Humorum: The crater excavation method, J. Geophys Res. 103(E7), pp. 16,855-16,870. Bulow, R.C., Johnson, C.L., Bills, B.G., and Shearer, P.M. (2007) Temporal and spatial properties of some deep moonquake clusters. J. Geophys. Res. 112, pp. 1-12. Bulow, R.C., Johnson, C.L. and Shearer, P.M. (2005) New events discovered in the Apollo lunar seismic data. J. Geophys. Res. 110, no. E10003, pp. 1–22. Bundy, C.J., Taylor G.J., Lucey P.G. (1996) Testing for differentiation of the Oriental impact melt sheet. Bulletin of the American Astronomical Society 28, p.1122. Burchell, M.J. (2004) today. Int. J. Astrobiology 3, pp. 73-80. Bussey, D.B.J., McGovern, J.A., Spudis, P.D., Neish, C.D., Noda, H., Ishihara, Y., and Sørensen, S.-A. (2010) Illumination conditions of the south pole of the Moon derived using Kaguya topography. Icarus 208, pp. 558-564. Bussey, D.B.J., Robinson, M.S., Fristad, K., and Spudis, P.D. (2004) Permanent sunlight at the . Lunar Planet. Sci. XXXV, Abstract # 1387. Bussey, D.B.J., and Spudis, P.D. (1997) Compositional analysis of the Orientale basin using full resolution Clementine data: Some preliminary results. Geophysical Research Letters 24, pp. 445-448. Bussey, D.B.J. and Spudis, P.D. (2000) Compositional studies of the Orientale, Humorum, Nectaris, and Crisium lunar basins, J. Geophys. Res.105, no. E2, pp. 4235–4243. Bussey, D.B.J. and Spudis, P.D. (2011) A review of lunar polar illumination studies using Clementine, SMART-1, Kaguya, and LRO data. Wet vs. Dry Moon 2011 Conference, Abstract # 6038. Butler, R.F. (1992) Paleomagnetism: Magnetic Domains to Geologic Terranes. Blackwell Science. BVSP (Basaltic Volcanism Study Project), 1981. Basaltic Volcanism on the Terrestrial Planets. Pergamon Press. Butler, B.J. (1997) The migration of volatiles on the surfaces of and the Moon. J. Geophys. Res. 102, pp. 19283-19291. Basaltic Volcanism Study Project (BVSP) (1981), Basaltic Volcanism on the Terrestrial Planets, p. 1286 Pergamon, New York, NY. Cahill, J.T.S., Lucey, P.G., and Wieczorek, M.A., (2009a) Compositional variations of the lunar crust: Results from radiative transfer modeling of central peak spectra. J. Geophys. Res. 114, pp. 1-17. Cahill, J.T.S., Lucey, P.G. and Wieczorek, M.A. (2009b), The composition of lunar central peaks relative to lunar samples. Lunar Planet. Sci. XL, Abstract # 1222. , A.G.W., and Ward, W.R. (1976) The . Lunar Science Conference VII, Abstract # 120. , B.A., and D.B. Campbell (2006) Regolith properties in the south polar region of the Moon from 70-cm radar polarimetry. Icarus 180, pp. 1–7, doi:10.1016/j.icarus.2005.08.018. Campbell, D.B., Campbell, B.A., Carter, L.M., Margot, J.L., and Stacy, N.J.S. (2006) No evidence for thick deposits of ice at the . Nature 443, pp. 835-837. Campbell, B.A., and Hawke, B.R. (2005) Radar mapping of lunar cryptomaria east of Orientale basin. J. Geophys. Res. 110, pp. 1–12. Campbell, B.A., B.R. Hawke, B.R. and D.B. Campbell (2009) Surface morphology of domes in the Hills and Mons Rümker regions of the Moon from Earth-based radar data. J. Geophys. Res. 114, p. E01001. Canup, R.M. (2004a) Simulations of a late lunar-forming impact. Icarus 168, pp. 433-456. Canup, R.M. (2004b) Dynamics of Lunar Formation. Annual Reviews of Astronomy and Astrophysics 42, pp. 441- 475. Canup, R.M. (2008) Lunar-forming collisions with pre-impact rotation. Icarus 196, pp. 518-538.

568

Canup, R.M., and Asphaug, E. (2001) Origin of the Moon in a giant impact near the end of the Earth’s formation. Nature 412, pp. 708-712. Carr, M.H. (1965) Map and section of the region of the Moon, USGS- I-462 Geologic Atlas of the Moon. Carrier, W.D. (2005) The four things you need to know about the geotechnical properties of . Lunar Geotechnical Institute, Lakeland, FL. Carrier, W.D., Olhoeft, G.R., and Mendell, W. (1991) Physical properties of the lunar surface. In: Heiken, G., Vaniman, D., and French, B. M. Eds.), The Lunar Sourcebook: A user's guide to the Moon. Cambridge University Press, New York. Case, A.W., Spence, H.E., Golightly, M.J., Kasper, J.C., Blake, J.B., Mazur, J.E., Townsend, L.W., and Zeitlin, C.J. (2010) GCR access to the Moon as measured by the CRaTER instrument on LRO. Geophysical Research Letters 37, p. L19101. Chaisson, E. and McMillan, S. (2008) Astronomy Today, 6th Ed. Pearson Addison-Wesley, San Francisco. Chao, E.C.T., Hutner, R. and Schmidt-Kaler, H. (1977) Vertical section of Ries sedimentary ejecta blanket as revealed by 1976 drill cores from Otting and Itzing. Lunar Planet. Sci. VIII; pp. 163-165. Cheek, L.C., Pieters, C.M., Boardman, J.W., , R.N., Combe, J.P., Head, J.W., Isaacson, P.J., McCord, T.B., Moriarty, D., Nettles, J.W., Petro, N.E., Sunshine, J.M., and Taylor, L.A. (2011) Goldschmidt crater and the Moon’s north polar region: Results from the Moon Mineralogy Mapper (M3). J. Geophys. Res. 116, p. 15. Chen, L. and Bleacher, J. (2008) The sinuosity of lunar in the plateau, Lunar Planet. Sci. XXXIX, Abstract # 1713. Chen, L.J., Bleacher, J.E. and Lowman, P.D. (2008) The sinuosity of lunar rilles in the Aristharcus plateau, Lunar Planet. Sci. XXXIX, Abstract # 1713. Chenet, H., Lognonné, P., Wieczorek, M., and Mizutani, H. (2006) Lateral variations of lunar crustal thickness from the Apollo seismic data set. Earth and Planetary Science Letters 243, pp. 1-14. Chevrel, S.D., Pinet, P.C., Daydou, Y., Maurice, S., Lawrence, D.J., Feldman, W.C., and Lucey, P.G. (2002) Integration of the Clementine UV-VIS spectral reflectance data and the Lunar gamma-ray spectrometer data: A global-scale multielement analysis of the lunar surface using iron, titanium, and thorium abundances. J. Geophys. Res. 107, no. E12, pp. 1–14. Chevrel, S.D., Pinet, P.C., and Head, J.W. (1999) Gruithuisen domes region: A candidate for an extended nonmare volcanism unit on the Moon. J. Geophys. Res. 104, no. E7, pp. 16515–16529. Chevrel, S.D., Pinet, P.C., and Head, J.W. (1999) The Aristarchus Plateau on the Moon: Mineralogical and structural study from integrated Clementine UV-Vis-NIR spectral data. Icarus 199, pp. 9–24. Chin, G., Brylow, S., Foote, M., Garvin, J., Kasper, J., Keller, J., Litvak, M., Mitrofanov, I., Paige, D., Raney, K., Robinson, M., Sanin, A., Smith, D., Spence, H., Spudis, P., Stern, S.A., and Zuber, M. (2007) Lunar Reconnaissance Orbiter Overview: The Instrument Suite and Mission. Space Science Reviews 129, pp. 391-419. Chou, C.-L., Boynton, W.V. Sundberg, L.L. and Wasson, J.T. (1975) Volatiles on the surface of Apollo 15 green glass and trace-element distributions among Apollo 15 soils." Proc. Lunar Planet. Sci. Conf. 6th, pp. 1701-1727. Christeson, G.L., Nakamura, Y., and Buffler, R.T. (2001) Deep crustal structure of the Chicxulub impact crater, J. Geophys. Res. 106, pp. 21751-21769. Christie, R.J., Plachta, D.W., and Hasan, M.M. (2008) Transient thermal model and analysis of the lunar surface and regolith for cryogenic fluid storage. NASA/TM, 2008-215300, p. 20. Chyba, C.F., Owen, T., and Ip, W.-H. (1994) Impact Delivery of Volatiles and Organic Molecules to Earth, In: Hazards Due to and , Gehrels, T. (ed), University of Tucson Press, pp 9-58. Clark, R.N. (2009) Detection of Adsorbed Water and Hydroxyl on the Moon. Science 326, pp. 562-564. Cintala, M.J. (1992) Impact-induced thermal effects in the lunar and Mercurian . J. Geophys. Res. 97, no. E1, pp. 947-973. Cintala, M.J. and Grieve, R.A.F. (1994) The effects of differential scaling of impact melt and crater dimensions on lunar and terrestrial craters: Some brief examples, In Large Meteorite Impacts and Planetary Evolution, pp. 51-59. Cintala, M.J. and Grieve, R.A. (1998) Scaling impact melting and crater dimensions: Implications for the lunar cratering record, Meteoritics and Planetary Science, 33, pp. 889-912.

569

Cintala, M.J., and R.A.F. Grieve (1998) Erratum: Scaling impact melting and crater dimensions: Implications for the lunar cratering record. Meteoritics and Planetary Science, 33, p. 1343. Cintala, M.J., , C. and Head, J. (1977) The effects of target characteristics on fresh crater morphology: Preliminary results for the Moon and Mercury. Proc. Lunar Science Conf. 8th, pp. 3409-3425. Cisowski, S.M. (1983) A Review of Lunar Paleointensity Data. Advances in Space Research 2, pp. 31-34. Cisowski, S.M., Collinson, D.W., Runcorn, S.K., Stephenson, A., and , M. (1983), A review of lunar paleointensity data and implications for the origin of lunar magnetism., J. Geophys. Res. 88, p. 691. Clark, B.E., Hapke, B. , Pieters, C. and Britt, D. (2002) space weathering and regolith evolution. In Asteroids III, edited by W. F. Jr. Bottke, A. Cellino, P. Paolicchi and R. P. Binzel. University of Arizona Press. Clube, S.V.M., and Napier, W.M. (1986) Giant comets and the Galaxy: implications of the terrestrial record. In The Galaxy and the Solar System, edited by Smoluchowski, R., Bahcall, J.N. and Matthews, M.S., pp. 260-285. Tucson: University of Arizona Press. Cocks, F.H., Klenk, P.A., Watkins, S.A., Simmons, W.N., Cocks, J.C., Cocks, E.E., and Sussingham, J.C. (2002) Lunar ice: Adsorbed water on subsurface polar dust. Icarus 160, pp. 386-397. Coffin, M.F., and Eldholm, O. (1992) Volcanism and continental break-up: a global compilation of large igneous provinces, in Magmatism and the Causes of Continental Break-Up, Spec. Publ. 68, edited by Storey, B.C., Alabaster, T., and R.J Pankhurst, pp. 21-34, The Geological Society, London. Cohen, B.A., Swindle T.D., and Kring D.A. (2000) Support for the lunar cataclysm hypothesis from impact melt ages. Science 290, pp. 1754-1756. Cohen, B., Veverka, J., Banerdt, B., Dombard, A., Elkins-Tanton, L., Grimm, R., Nakamura, Y., Neal, C., Plexcia, J., Smrekar, S., , B., Morgan, T., and McDougal, J., 2009. ILN Final Report: Science Definition Team for the ILN Anchor Nodes. National Aeronautics and Space Administration. Colaprete, A., et al. (2010) Detections of water in the LCROSS ejecta plume. Science 330, no. 6003, pp. 463-468. Colaprete, A., Schultz, P., Heldmann, J., Wooden, D., Shirley, M., Ennico, K., Hermalyn, B., Marshall, W., Ricco, A., Elphic, R.C., Goldstein, D., Summy, D., Bart, G.D., Asphaug, E., Korycansky, D., Landis, D., and Sollitt, L. (2010) Detection of Water in the LCROSS Ejecta Plume. Science 330, pp. 463-468. , G.S., Melosh, H.J., Ivanov, B.A. (2004) Modeling damage and deformation in impact simulations, Meteoritics & Planetary Science 39, pp. 217–231. Collinson, D.W., Stephenson, A., and Runcorn, S.K. (1977) Intensity and origin of the ancient lunar magnetic field. Philosophical Transactions of the Royal Society 285, pp. 241-247. Colwell, J.E., Gulbis, A.A.S., Horanyi, M., and , S. (2005) Dust transport in photoelectron layers and the formation of dust ponds on Eros. Icarus 175, pp. 159-169. , A., Robinson, M., and Semenov, B. (2002) Preliminary analysis of the absolute cartographic accuracy of the Clementine UVVIS mosaics. AGU Fall Meeting. Cook, A.C., Robinson, M.S., Watters, T.R. (2000) Planet-wide lunar digital elevation model, Lunar Planet. Sci. XXXI, Abstract # 1978. Cook, A.C., Spudis, P.D., Robinson, M.S., Watters, T.R. (2002) Lunar topography and basins mapped using a Clementine stereo digital elevation model, Lunar Planet. Sci. XXXIII, Abstract # 1281. Cook, A.C., Watters, T.R., Robinson, M.S., Spudis, P.D., Bussey, D.B.J., Crider, D.H., and Vondrak, R.R. (2000) Lunar polar topography derived from Clementine stereoimages. J. Geophys. Res. 105, pp. 12023-12033. Coombs, C.R., and Hawke, B.R. (1992) Pyroclastic deposits on the Western Limb of the Moon, Proc. Lunar Planet. Sci. Conf. 22nd, pp. 303-312. Coombs, C.R., Hawke, B.R., Lucey, P.G., Owensby, P.D., and Zisk, S.H. (1990) The region: A geologic and remote sensing perspective. Proc. Lunar Planet. Sci. Conf. 20th, pp. 339-353. Cournède, C., Gattacceca, J., and Rochette, P. (2012) Magnetic study of large Apollo samples: Possible evidence for an ancient centered dipolar field on the Moon. Earth and Planetary Science Letters 331-332, 31-42. Craddock, R.A., Robinson, M.S., Hawke, B.R., and McEwen, A.S. (1997) Clementine-based geology of the Moscoviense basin, lunar farside. Proc. Lunar Planet. Sci. Conf. 28th, pp. 265-266. Crawford, I.A. (2004) The scientific case for renewed human activities on the Moon. Space Policy 20, pp. 91-97.

570

Crawford, I.A., Baldwin, E.C, Taylor, E.A., Bailey, J.A., and Tsembelis, K. (2008) On the survivability and detectability of terrestrial meteorites on the Moon. Astrobiology 8, pp. 242-252. Crawford, I.A., Fagents, S.A., Joy, K.H., and Rumpf, M.E. (2010) Lunar palaeoregolith deposits as recorders of the galactic environment of the Solar System and implications for astrobiology. Earth Moon Planets 107, pp. 75-85. Crider, D.H. and Vondrak, R.R. (2000) The solar wind as a possible source of lunar polar hydrogen deposits. J. Geophys. Res. 105, pp. 26,773-26,782. Crider, D.H. and Vondrak, R.R. (2002) Hydrogen migration to the lunar poles by solar wind bombardment of the Moon. Advances in Space Research 30, pp. 1869-1874. Crider, D.H. and Vondrak, R.R. (2003a) Space weathering effects on lunar cold trap deposits. J. Geophys. Res. 108, p. 11. Crider, D.H., and Vondrak, R.R. (2003b) Space weathering of ice layers in lunar cold traps. Advances in Space Research 31, pp. 2293–2298, doi:10.1016/S0273-1177(03)00530-1. Criswell, D.R. (1972) Lunar dust motion. Proc. Lunar Science Conf. 3rd. MIT Press, pp. 2671-2680. Croft, S.K. (1980) Cratering flow fields: Implications for the excavation and transient expansion stages of crater formation. Proc. Lunar Planet. Sci. Conf. 11th, pp. 2347-2378. Croft, S.K. (1985) Scaling the complex craters. Proc. Lunar Planet. Sci. Conf. 15th and J. Geophys. Res. 90, pp. C828- 842. Cushing, J.A., Taylor, G.J. Norman, M.D. and Keil, K. (1999) The granulitic suite: Impact melts and metamorphic of the early lunar crust. Meteoritics & Planetary Science 34, no. 2, pp. 185–195. Dasch, E.J., Shih, C.-Y., Bansal, B.M., Wiesmann, H. and Nyquist, L.E. (1987) Isotopic analysis of basaltic fragments from lunar 14321 – Chronology and petrogenesis of pre-Imbrium mare volcanism, Geochemica et Cosmochimica Acta 51, pp. 3241-3254. Daubar, I.J., McEwen, A.S., Byrne, S. Dundas, C.M., Keske, A.L., Amaya, G.L., Kennedy, M., and Obinson, M.S. (2011) New craters on Mars and the Moon. Lunar Planet. Sci. XLII, Abstract # 2232. De Hon, R.A. (1974) Thickness of mare material in the Tranquillitatis and Nectaris basins. Proc. Lunar Science Conf. 5th, pp. 53-59. De Hon, R.A. (1979) Thickness of the western mare basalts. Proc. Lunar Planet. Sci. Conf. 10th, pp. 2915-2955. De Hon, R.A., and Waskom, J.D. (1976) Geologic structure of the eastern mare basins. Proc. Lunar Science Conf. 7th, pp. 2729-2746. Delano, J. (1986) Pristine lunar glasses: Criteria, data, and implications. J. Geophys. Res. 91, pp. D201-D213. Delano, J.W. and Livi, K., (1981) Lunar volcanic glasses and their constraints on mare petrogenesis. Geochemica et Cosmochimica Acta 45, no. 11, pp. 2137-2149. De Pater, I. and Lissauer, J.L. (2010) Planetary Sciences, 2nd edition. Cambridge University Press, Cambridge. , J., van den Berg, A., and van Westrenen, W. (2010) Formation and evolution of a lunar core from ilmenite- rich magma ocean cumulates. Earth and Planetary Science Letters 292, pp. 139-147. Delano, J.W. (1986) Pristine Lunar Glasses: Criteria, Data, and Implications. Proc. Lunar Planet. Sci. Conf. 16th and J. Geophys. Res. 91, pp. D201-D213. Delano, J.W. (1990) Pristine mare glasses and mare basalts: Evidence for a general dichotomy of source regions, LPI Technical Report 90-02, p30, Lunar and Planetary Institute, Houston, Texas. Dominov, E. and Mest, S. (2009) Geology of Crater, South Pole-Aiken Basin, Moon, Lunar Planet. Sci. XL, Abstract # 1460. Donaldson, Hanna, K.L., Wyatt, M.B., Thomas, I.R., Bowles, N.E., Greenhagen, B.T., Maturilli, A., Helbert, J., and Paige, D.A. (2012) Thermal infrared emissivity measurements under a simulated lunar environment: Application to the Diviner Lunar Radiometer Experiment. J. Geophys. Res. 117, pp. 1-15. Dorman, J., , S., Nakamura Y., and Latham, G. (1978) On the time-varying properties of the lunar seismic population, Proc. Lunar Planet. Sci. Conf. 9th, pp. 3615-3626. Dran, J.C., Durrieu, L., Jouret, C. and Maurette, M. (1970) Habit and texture studies of lunar and meteoritic materials with 1 MeV electron microscope. Earth Planet. Sci. Lett. 9, pp. 391-400.

571

Drozd, R.J., Hohenberg, C.M., Morgan, C.J., Podosek, F.A., and Wroge, M.L. (1977) Cosmic-ray exposure history at Taurus-Littrow. Proc. Lunar Science Conf. 8th, pp. 3027-3043. Duennebier, F.K., Nakamura, Y., Latham, G.V., and Dorman, N.J. (1976) Meteoroid storms detected on the Moon, Science 192, pp. 1000-1002. Duke, M.B. et al. (2006) Development of the moon, in New Views of the Moon, Reviews in Mineralogy & Geochemistry 60, edited by Jolliff, B.L., Wieczorek, M.A., Shearer, C.K., Neal, C.R. pp. 597-656, The Mineralogical Society of America, Chantilly, Virginia. Dukes, C.A., Chang, W.-Y., Famá, M., and Baragiola, R. (2011) Laboratory studies on the sputtering contribution to the sodium of Mercury and the Moon. Icarus 212, pp. 463-469. Dundas, C.M., and McEwen, A.S. (2007) Rays and secondary craters of Tycho. Icarus 186, pp. 31-40. Duxbury, N.S., Nealson, K.H., and Romanovsky, V.E. (2001) On the possibility of clathrate hydrates on the Moon. J. Geophys. Res. 106, pp. 27,811-27,813. Dwyer, C.A., Stevenson, D.J., and Nimmo, F. (2011) A long-lived lunar dynamo driven by continuous mechanical stirring. Nature 479, pp. 212-214. Dyal, P., Parkin, C.W., and Daily, W.D. (1976) Structure of the lunar interior from magnetic field measurements. Proc. Lunar Science Conf. 7th, pp. 3077-3095. Dyar, M.D., Hibbitts, C.A., and Orlando, T.M. (2010) Mechanisms for incorporation of hydrogen in and on terrestrial planetary surfaces. Icarus 208, pp. 425-437. , J.J. (1979) Analysis of small scale lunar gravity anomalies: Implications for crater formation and crustal history. Ph.D. Thesis, California Inst. of Tech., Pasadena. Dziewonski, A.M., and , D.L. (1981) Preliminary reference Earth model. Physics of the Earth and Planetary Interiors 25, pp. 297-356. Ekart, P. (1999) The Lunar Base Handbook: an introduction to lunar base design, development, and operations. 1st Edition. New York: McGraw-Hill. Eke, V.R., Teodoro, L.F.A., and Elphic, R.C. (2009) The spatial distribution of polar hydrogen deposits on the Moon. Icarus 200, pp. 12-18. El-Baz, F. (1972) Crater and its environs. In Preliminary Science Report, NASA SP-315, pp. 29-62-70. NASA, Washington, D.C. Elardo, S.M., , D.S., and Shearer, C.K., Jr. (2011) crystallization revisited: Bulk composition, early cumulate mineralogy, and the source regions of the highlands Mg-suite. Geochimica et Cosmochimica Acta 75, pp. 3024-3045. Elkins-Tanton, L.T., Burgess, S., and Yin, Q.-Z. (2011) The lunar magma ocean: Reconciling the solidification process with lunar petrology and geochronology. Earth and Planetary Science Letters 304, pp. 326-336. Elkins-Tanton, L.T., Chatterjee, N., and Grove, T.L. (2003) Magmatic processes that produced lunar fire fountains. Geophysical Research Letters 30, pp. 1-4. Elkins-Tanton, L.T., Hager, B.H., and Grove, T.L. (2004) Magmatic effects of the lunar . Earth and Planetary Science Letters 222, pp. 17-27. Elkins-Tanton, L.T., Van Orman, J.A., Hager, B.H., and Grove, T.L. (2002) Re-examination of the lunar magma ocean cumulate overturn hypothesis: melting or mixing is required. Earth and Planetary Science Letters 196, pp. 239-249. Elphic, R.C., Eke, V.R., Teodoro, L.F.A., Lawrence, D.J., and Bussey, D.B.J. (2007) Models of the distribution and abundance of hydrogen at the lunar south pole. Geophysical Research Letters 34, p. 5. Elphic, R.C., Lawrence, D.J., Feldman, W.C., Barraclough, B.L., Maurice, S., Binder, A.B., and Lucey, P.G. (2000) Lunar rare earth element distribution and ramifications for FeO and TiO2: Lunar Prospector neutron spectrometer observations, J. Geophys. Res. 105, no. E8, pp. 20333–20345. Eugster, O. (1983) The Composition of Lunar Noble Gases Trapped 2.5 AE and 3.6 AE Ago. Proceedings from the Workshop on Past and Present Solar Radiation: The Record in Meteoritic and Lunar Regolith Material, pp. 20-21. Fa, W. and Jin, Y.-Q. (2007) Quantitative estimation of helium-3 spatial distribution in the lunar regolith layer. Icarus 190, pp. 15-23.

572

Fa, W. and Jin, Y. (2010) A primary analysis of microwave brightness temperature of lunar surface from Chang-E 1 multi-channel radiometer observation and inversion of regolith layer thickness. Icarus 207, pp. 605-615. Fa, W., and Wieczorek, M.A. (2012) Regolith thickness over the lunar nearside: Results from Earth-based 70-cm Arecibo radar observations. Icarus 218, pp. 771-787. Fagan, T.J., Taylor, G.J., Keil, K., Bunch, T.E., Wittke, J.H., Korotev, R.L., Jolliff, B.L., Gillis, J.J., Haskin, L.A., Jarosewich, E., Clayton, R.N., Mayeda, T.K., Fernandes, V.A., Burgess, R., Turner, G., Eugster, O., and Lorenzetti, S. (2002) Northwest Africa 032: Product of lunar volcanism, Meteoritcs and Planetary Science 37, pp. 371-394. Fagents, S.A., Rumpf, M.E., Crawford, I.A., and Joy, K.H. (2010) Preservation potential of implanted solar wind volatiles in lunar paleoregolith deposits buried by flows. Icarus 207, pp. 595-604. Farrell, W.M. and DREAM (2011) The character of the solar wind, surface interactions, and water. Wet vs. Dry Moon 2011 Conference, Abstract # 6016. Fegley, B. (1991) Thermodynamic models of the chemistry of lunar volcanic glass. Geophysical Research Letters 18, pp. 2073-2076. Feldman, P.D., and Morrison, D. (1991) The Apollo 17 Ultraviolet Spectrometer - Lunar measurements revisited. Geophys. Res. Lett. 18, pp. 2105– 2108, doi:10.1029/91GL01998. Feldman, W.C., Barraclough, B.L., Fuller, K.R., Lawrence, D.J., Maurice, S., Miller, M.C., Prettyman, T.H., and Binder, A.B. (1999) The Lunar Prospector gamma-ray and neutron spectrometers, Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 422, no. 1-3, pp. 562–566. Feldman, W.C., Barraclough, B.L., Maurice, S., Elphic, R.C., Lawrence, D.J., Thomsen, D.R., and Binder, A.B. (1998) Major compositional units of the Moon: Lunar Prospector thermal and fast neutrons. Science 281, no. 5382, pp. 1489– 1493. Feldman, W.C., Lawrence, D.J., Elphic, R.C., Barraclough, B.L., Maurice, S., Genetay, I. and Binder, A.B. (2000) Polar hydrogen deposits on the Moon. J. Geophys. Res. 105, pp. 4175–4196, doi:10.1029/1999JE001129. Feldman, W.C., Maurice, S., Binder, A.B., Barraclough, B.L., Elphic, R.C., and Lawrence, D.J. (1998) Fluxes of Fast and Epithermal Neutrons from Lunar Prospector: Evidence for Water Ice at the LunarPoles. Science 281, pp. 1496- 1500. Feldman, W.C., Maurice, S., Lawrence, D.J., Little, R.C., Lawson, S.L., Gasnault, O., Wiens, R.C., Barraclough, B.L., Elphic, R.C., Prettyman, T.H., Steinberg, J.T., and Binder, A.B. (2001) Evidence for water ice near the lunar poles. J. Geophys. Res. 106, pp. 23231-23251. Flahaut, J., Blanchette-Guertin, J.-F., Jilly, C.E., Sharma, P., Souchon, A.L., van Westrenen, W. and Kring, D.A. (2012) Identification and characterization of science-rich landing sites for lunar lander missions using integrated remote sensing observations. Advances in Space Science Research, in press. Floran, R.J., Grieve, R.A.F., Phinney, W.C., Warner, J.L., Simonds, C.H., , D.P., Dence M.R. (1978) Manicouagan impact melt, Quebec, 1, stratigraphy, petrology, and chemistry, J. Geophys. Res. 83, no. B6, pp. 2737- 2759. Fielder, G., and Marcus, A. (1967) Further Tests for Randomness of Lunar Craters. Monthly Notices of the Royal Astronomical Society 136, pp. 1-10. Fillingim, M.O., Delory, G.T., Halekas, J.S., and Grimm, R.E. (2010) Signal strength and bandwidth for magnetotelluric sounding of the interior of the Moon. American Geophysical Union Fall Meeting, Abstract # DI43A- 1944. Fillingim, M.O., Delory, G.T., Halekas, J.S., and Grimm, R.E. (2011) Signal strength and bandwidth for magnetotelluric sounding of the Moon. Lunar Planet. Sci. XLII, Abstract # 2475. Francis, P. and , C. (2004) Volcanoes. Oxford University Press, NY, p. 521. Frankel, C. (1996) Volcanoes of the Solar System. Cambridge: Cambridge University Press. Fristad, K., Bussey, D.B.J., Robinson, M.S., and Spudis, P.D. (2004) Ideal landing sites near the lunar poles. Lunar Planet. Sci. XXXV, Abstract # 1387. Frohlich, C., and Nakamura, Y. (2006) Possible extra-Solar-System cause for certain lunar seismic events. Icarus 185, pp. 21-28. Frohlich, C. and Nakamura, Y. (2009) The physical mechanisms of deep moonquakes and intermediate-depth earthquakes: How similar and how different? Physics of the Earth and Planetary Interiors 173, pp. 365-374.

573

Fuller, M. (1974) Lunar Magnetism. Reviews of Geophysics and Space Physics 12, pp. 23-70. Gaddis, L.R. et al. (2003) Compositional analyses of lunar pyroclastic deposits. Icarus 161, pp. 262-280. Gaddis, L.R. (2008) Volcanism in Alphonsus Crater: Evidence for compositional variation within lunar pyroclastic deposits. Proc. Lunar Planet. Sci. Conf. 39th, p. 2249. Gaddis, L.R., Hawke, B.R., Robinson, M.S. and Coombs, C. (2001) Compositional analyses of small lunar pyroclastic deposits using Clementine multispectral data. J. Geosphys. Res. 105, no. E2, pp. 4245-4262. Gaddis, L.R., McEwen, A.S. and Becker, T.L. (1995) Compositional variations on the Moon: Recalibration of Galileo solid-state imaging data for the Orientale region and farside. J. Geophys. Res.100, no. E12, pp. 26,345-26,356. Gaddis, L.R., Pieters, C.M., and Hawke, B.R. (1985) Remote Sensing of Lunar Pyroclastic Mantling Deposits. Icarus 61, pp. 461-489. Gaddis, L., Rosanova, C., Hare, T., Hawke, B.R., Coombs, C. and Robinson, M.S. (1998) Small lunar pyroclastic deposits: A new global perspective. Proc. Lunar. Planet. Sci. Conf. 29th, no. 1807, pp.1710-1711. Gaddis, L.R., Staid, M.I., Tyburczy, J.A., Hawke, B.R. and Petro, N.E. (2003) Compositional analyses of lunar pyroclastic deposits. Icarus 161, pp. 262-280. Gaddis, L.R., Tyburczy, J. and Hawke, B.R. (2000) Mafic characteristics of lunar pyroclastic deposits, Proc. Lunar Planet. Sci. Conf. 31st, p. 1700. Garrick-Bethell, I., Head, J.W., and Pieters, C.M. (2011) Spectral properties, magnetic fields, and dust transport at lunar swirls. Icarus 212, pp. 480-492. Garrick-Bethell, I., Nimmo, F., and Wieczorek, M.A. (2010) Structure and Formation of the Lunar Farside Highlands. Science 300, pp. 949-951. Garrick-Bethell, I. and Weiss, B.P. (2007a) Early Lunar Magnetism. Lunar Planet. Sci. XXXVIII, Abstract # 2405. Garrick-Bethell, I., and Weiss, B.P. (2007b) Lunar magnetism studies by crewed missions to the Moon. NASA Advisory Council Workshop on Science Associated with the Lunar Exploration Architecture, unnumbered white paper. Garrick-Bethell, I. and Weiss, B.P. (2008) Early lunar magnetic fields recorded by a pristine troctolite. Lunar Planet. Sci. XXXIX Abstract # 2521. Garrick-Bethell, I., Weiss, B.P., Shuster, D.L., and Buz, J. (2009) Early Lunar Magnetism. Science 323, pp. 356-359. Garrick-Bethell, I. and Zuber, M.T. (2005) An indigenous origin for the south pole basin thorium anomaly. Geophysical Research Letters 32, p. 13, 203. Gault, D. E. (1978) Experimental impact “craters” formed in water: gravity scaling realized. Eos Trans. American Geophysical Union LIX, p. 1121. Gault, D.E., Hörtz, F., Brownlee, D.E. and Hartung, J.B. (1974) Mixing of the lunar regolith. Proc. Lunar Science Conf. 5th, pp. 2365-2386. Gies, D. R. and Helsel, J.W. (2005) Ice age epochs and the Sun's path through the Galaxy. Astrophys. J. 626, pp. 844- 848. Geiss, J. (1973) Solar wind composition and implications about the history of the Solar System. Papers Presented to the 13th Int. Cosmic Ray Conf., pp. 3375-3398. Gertsch, L., Gustafson, R., and Gertsch, R. (2006) Effect of water ice content on excavatability of lunar regolith. American Institute of Physics Conference Proceedings 813, pp. 1093-1100. Ghent, R.R., Campbell, B.A., Hawke, B.R. and Campbell, D.B. (2008) Earth-based radar data reveal extended deposits of the Moon’s Orientale basin. Geology 36, pp. 343-346. Gibson, E.K. and Moore, G.W. (1973) Volatile-rich lunar soil: Evidence of possible cometary impact. Science 179, pp. 69-71. Gifford, A.W. and El-Baz, F. (1981) Thickness of lunar mare flow fronts. Moon and Planets 24, pp. 382-384. Giguere, T., Hawke, B., and Blewett, D. (2007) Cryptomare and pyroclastic deposits in the region of the Moon. Lunar Planet. Sci. XXXVIII, Abstract # 1132. Giguere, T., Hawke, B., and Blewett, D. (2007) Cryptomare and pyroclastic deposits in the Gassendi region of the Moon. Proc. Lunar Planet. Sci. Conf. 38th, p. 1132.

574

Giguere, T.A., Hawke, B.R., Blewett, D.T., Bussey, D.B.J., Lucey, P.G., Smith, G.A., Spudis, P.D., and Taylor, G.J. (2003) Remote sensing studies of the Lomonosov- region of the Moon. J. Geophys. Res. 108, pp. 1-14. Giguere, T.A., Hawke, B.R., Blewett, D.T., Campbell, B.A., Gillis-Davis, J.J., Lucey, P.G., Peterson, C.A., Runyon, C., and Taylor, G.J. (2007) Cryptomare and pyroclastic deposits in the Gassendi region of the Moon. Lunar Planet. Sci. XXXVIII, Abstract # 1132. Gilbert, G.K. (1893) The moon’s face, a study of the origin of its features, Bull. Philos. Cos. Wash. (D.C), 12, pp. 241- 292. Gillis, J.J. (1998) The composition and geologic setting of mare deposits on the far side of the Moon. PhD thesis, Rice University. Gillis, J.J. and Jolliff, B.L. (1999) Lateral and vertical heterogeneity of thorium in the Procellarum KREEP terrane: As reflected in the ejecta deposits of post-imbrium craters. New Views of the Moon 2: Understanding the Moon Through the Integration of Diverse Datasets, p. 18. Gillis, J.J., Jolliff, B.L. and Elphic, R.C. (2003) A revised algorithm for calculating TiO2 from Clementine UVVIS data: A synthesis of rock, soil, and remotely sensed TiO2 concentrations. J. Geophys. Res. 108, no. E2, p. 5009. Gillis, J.J., Jolliff, B.L., and Korotev, R.L. (2004) Lunar surface geochemistry: Global concentrations of Th, K, and FeO as derived from Lunar Prospector and Clementine data. Geochimica et Cosmochimica Acta 68, no. 18, pp. 3791– 3805. Gillis, J.J. and Spudis, P.D. (1998) Inventory of FeO and TiO2 compositions for mare deposits on the far side of the moon. Lunar Planet. Sci. XXIX, Abstract # 1521. Gillis, J. and Spudis, P. (2000) Geology of the Smythii and Marginis region of the Moon: Using integrated remotely sensed data. J. Geophys. Res. 195, no. E2, pp. 4217-4233. Gillis-Davis, J.J., Lucey, P.G., and Hawke, B.R. (2006) Mare Moscoviense a window into the interior of the Moon. Proc. Lunar Planet. Sci. Conf. 37th, p. 2454. Gladstone, G.R., Hurley, D.M., Retherford, K.D., Feldman, P.D., Pryor, W.R., Chaufray, J.-Y., Versteeg, M., Greathouse, T.K., Steffl, A.J., Throop, H., Parker, J.W., Kaufmann, D.E., Egan, A.F., Davis, M.W., Slater, D.C., Mukherjee, J., Miles, P.F., Hendrix, A.R., Colaprete, A., and Stern, S.A. (2010) LRO-LAMP observations of the LCROSS impact plume. Science 330, pp. 472-476. Goins, N.R., Dainty, A.M., and Toksöz, M.N. (1981a) Structure of the lunar crust at highland site Apollo station 16. Geophysical Research Letters 8, pp. 29-32. Goins, N.R., Dainty, A.M., and Toksöz, M.N. (1981b) Lunar : The Internal Structure of the Moon. J. Geophys. Res. 86, pp. 5061-5074. Gooley, R., Brett, R., and Warner, J. (1974) A lunar rock of deep crustal origin: sample 76535. Geochimica et Cosmochimica Acta 38, pp. 1329-1339. Goldstein, B.E., Phillips, R.J., and Russell, C.T. (1976) Magnetic evidence concerning a lunar core. Proc. Lunar Science Conf. 7th, pp. 3321-3341. Gough, D.I., and Ingham, M.R. (1983) Interpretation methods for magnetometer arrays. Reviews in Geophysics 21, pp. 805–827.

Graham, D. G., Muenow, D. W., and Gibson, E. K. (1979) Adsorption of CO and N2 by samples with large surface area. Lunar Planet. Sci. X, Abstract # 455-457. Grayzeck, E. (20011) National Space Science Data Center Catalog. July 08, 2011. http://nssdc.gsfc.nasa.gov/nmc/ GRL (2005) Revised GLR Catalogue of Lunar Domes, revision June 2005, compiled by Kapral, C.A. and Garinkle, R.A., http://digilander.libero.it/glrgroup/kapralcatalog.pdf, checked Aug. 6th, 2009. GRL (2009) Consolidated Catalogue, revision April 27, 2009, administrators Lena R. and C. Wöhler, http://digilander.libero.it/glrgroup/cldc.htm, checked August 6th, 2009. Greeley, R. (1971) Lava tubes and channels in the lunar Marius Hills. Moon 3, pp. 289-314. Greeley, R. (1971) Lunar Hadley : Considerations of Its Origin. Science 172, pp. 722-725. Greeley, R., Kadel, S.D., Williams, D.A., Gaddis, L.R., Head, J.W., McEwen, A.S., Murchie, S.L., Nagel, E., Neukum, G. and Pieters, C.M. (1993) Galileo imaging observations of lunar maria and related deposits. J. Geophys. Res. 98, no. E9, pp. 17183–17205.

575

Greenhagen, B.T., Thomas, I.R., Bowles, N.E., Allen, C.C., Donaldson Hanna, K.L., Foote, E.J., and Paige, D.A. (2012) Compositional ground truth of Diviner lunar radiometer observations. Lunar Planet. Sci.XLIII, Abstract # 2092. Grier, J.A., McEwan, A.S., Lucey, P.G., Milazzo, M., and Strom, R.G. (2001) Optical maturity of ejecta from large rayed lunar craters. J. Geophys. Res. 106, no. E12, pp. 32, 847-32, 862. Grier, J.A., McEwen, A. and Strom, R.. (1998) Use of a GIS database of bright lunar craters in determining crater chronologies. Workshop on new views of the Moon, p. 6015. Grier, J.A., McEwen, A., Aragon, C., Strom, B. and Ingram, J. (1998) A preliminary look at bright lunar craters using the Clementine global mosaic. Proc. Lunar Planet. Sci. Conf. 29th, p. 1905. Grier, J.A., McEwen, A.S., Milazzo, M., Hester, J.A. and Lucey, P.G. (2000) The optical maturity of the ejecta of small bright rayed lunar craters. Proc. Lunar Planet. Sci. 31st, p. 1950. Grier, J.A., McEwen, A.S., Lucey, P.G., Strom, R.G. and Milazzo, M. (2000) Relative ages of large rayed lunar craters- implications. Proc. Lunar Planet. Sci. Conf. 30th, p. 1910. Grier, J.A., et al. (2000) A Survey of bright lunar craters- Developing a relative crater chronology. Proc. Lunar Planet. Sci. 30th, p. 1935. Grieve, R.A.F. (1987) Terrestrial impact structures, Annual Review of Earth and Planetary Sciences 15, pp. 245-270. Grieve, R.A.F., Dence M.R., and Robertson P.B. (1977) Cratering process: As interpreted from the occurrence of impact melts. In Impact and Explosion Cratering: Planetary and Terrestrial Implications (Roddy, D.J., Pepin, R.O., and Merrill, R.B. eds.), pp. 791–814. Grieve, R.A.F., Robertson, P.B. and Dence, M.R. (1981) Constraints on the formation of ring impact structures, based on terrestrial data. In Multiring Basins (eds. Shultz, P.H. and Merrill, R.B.). Proc. Lunar Planet. Sci. Conf. 12th, pp. 37- 57. Grieve, R.A.F., Stöffler D., and A. (1991) The Sudbury structure: Controversial or Misunderstood? J. Geophys. Res. 96, pp. 22, 753-22, 764. Grimm, R.E. and Delory, G.T. (2010) Next-generation electromagnetic sounding. Ground-based Geophysics on the Moon Conference, Abstract # 3018. Grimm, R.E. and Delory, G.T. (2012) Next-generation electromagnetic sounding of the Moon. Advances in Space Research, in press. Grimm, R.E. and Solomon, S.C. (1986) Tectonic tests of proposed polar wander paths for Mars and the Moon. Icarus 65, pp. 110-121. Grott, M., Knollenberg, J., and Krause, C. (2010) Apollo lunar heat flow experiment revisited: A critical reassessment of the in situ thermal conductivity determination. J. Geophys. Res. 115, pp. 1-11. Grove, T.L. and Krawczynski, M.J. (2009) Lunar Mare Volcanism: Where Did the Magmas Come From? Elements 5, pp. 29-34. Guest, J.E. (1971) Centers of igneous activity in the maria. In Fielder, G. (editor), Geology and Geophysics of the Moon, p. 41-53, Elsevier, New York, NY, USA. Gulick, S.P.S., Barton, P.J., Christeson, G.L., Morgan, J.V., McDonald, M., Mendoza-, K., Pearson, Z.F., Surendra, A., Urrutia-Fucugauchi, J., Vermeesch, P.M., and Warner (2008) Importance of pre-impact crustal structure for the asymmetry of the Chicxulub impact crater. Nature Geoscience 1, pp. 131-136 Hale, W.S., and Grieve, R. (1982) Volumetric analysis of complex lunar craters: Implications for basin ring formation. Proc. Lunar Planet. Sci. Conf. 13th, Part 1, J. Geophys. Res. 87, supplement, pp. A65-A76. Gustafson, J.O., Bell, J.F. III., Gaddis, L.R., Hawke, B.R., and Giguere, T.A. (2012) Characterization of Previously Unidentified Lunar Pyroclastic Deposits using Lunar Reconnaissance Orbiter Camera (LROC) Data. J. Geophys. Res. 117, pp. 1-21. Gutschewski, G.L., Kinsler, D.C., and Whitaker, E. (1971) Atlas and Gazeteer of the Near Side of the Moon. NASA, Washington, D.C. Hackman, R.J. (1966) Geologic map of the Montes Apennines region of the Moon USGS I-463 Geologic Atlas of the Moon.

576

Hagerty, J.J., Lawrence, D.J., Hawke, B.R., Vaniman, D.T., Elphic, R.C., and Feldman, W.C. (2006) Refined thorium abundances for lunar red spots: Implications for evolved, nonmare . J. Geophys. Res. 111, no. E06002, pp. 1–20. Hagerty, J.J., Shearer, C.K., and Vaniman, D.T. (2006) Heat producing elements in the lunar mantle: Insights from the ion microprobe analyses of lunar pyroclastic glasses. Geochimica et Cosmochimica Acta 70, no.13, pp. 3457-3476. Halekas, J.S., Lin, R.P., and Mitchell, D.L. (2003) Magnetic fields of lunar multi-ring basins. Meteoritics and Planetary Science 38, pp. 565-578. Hammond, N.P., Nimmo, F., Korykansky, D. (2009) Hydrocode modeling of the South Pole-Aitken Basin-forming impact. Lunar Planet. Sci. XL, Abstract # 1455. Harland, D. (2008) Exploring the Moon: The Apollo Expedition, 2nd edition, Springer-Praxis Publishing Ltd, 400 pages. Harris, D.K. (accessed 2011) Thermal considerations of lunar based systems. Beale. n.d. http://education.ksc.nasa.gov/esmdspacegrant/LunarRegolithExcavatorCourse/Chapter7.htm. Hartmann, W.K. (1981) Discovery of multi-ring basins: Gestalt perception in planetary science. In: Mulri-ring Basins, Proceedings. Lunar and Planetary Science Conference XII, part A, Schultz, P.H. and Merrill, R.B. (eds), pp. 79-90. Hartmann, W.K. (1973) Ancient lunar mega-regolith and subsurface structure. Icarus 18, no. 4, pp. 634–636. Hartmann, W.K. (2003) Megaregolith evolution and cratering cataclysm models--lunar cataclysm as a misconception (28 years later). Meteoritics and Planetary Science 38, pp. 579-593. Hartmann, W.K. and Davis, D.R. (1975) Satellite-sized planetesimals and lunar origin. Icarus 24, pp. 504-515. Hartmann, W.K. and Kuiper, G.P. (1962) Concentric structures surrounding lunar basins. Communications of the Lunar and Planetary Laboratory 1, pp. 51-66. Hartmann, W.K. and Wood, C.A. (1971) Moon: Origin and evolution of multiring basins. The Moon 3, pp. 3-78. Hartmann, W.K. and Yale, F.G. (1968) Mare Orientale and its basin system. Communications of the Lunar and Planetary Laboratory 7, pp. 131-137. Hartung, J.B., Hörz, F., McKay, D.S., and Baiamonte, F.L. (1972) Moon 5, p. 36. Haruyama, J., Ohtake, M. . Matsunaga, T., Morota, T., Honda, C., Yokota, Y., Pieters, C.M., Hara, S., Hioki, K., Saiki, K., Miyamoto, H., Iwasaki, A., Abe, M., Ogawa, Y., Takeda, H., Shirao, M., Yamaji, A. and Josset, J.-L. (2008) Lack of Exposed Ice Inside Lunar South Pole Crater. Science 322, p. 938, doi:10.1126/science.1164020. Haruyama, J., Ohtake, M., Matsunaga, T., Morota, T., Honda, C., Yokota, Y., Abe, M., Ogawa, Y, Miyamoto, H., Iwasaki, A., Pieters, C.M., , N., Demura, H., Hirata, N., Terazono, J., Sasaki, S., Saiki, K., Yamaji, A., Torii, M. and Josset, J.L. (2009) Long-lived volcanism on the lunar farside revealed by Selene terrain camera, Science 323, no. 5916, pp. 905–908. Hashizume, K. and Chaussidon, M. (2008) Evidence of at Least Two Extra-Selenial Components Accreting on the Moon - In Search for the Oxygen Isotopic Composition of the Solar Component Trapped in Lunar Metallic Grains. Lunar Planet. Sci. XXXIX, Abstract # 1531. Haskin, I.A. (1992) Water and cheese from the lunar desert: Abundances and accessibility of H, C, and N on the Moon. Proceedings from The Second Conference on Lunar Bases and Space Activities of the 21st Century, pp. 393-396. Haskin, L.A., Gillis, J.J., Jolliff, B.L., and Korotev, R.L. (2003) Regolith in the south pole-aitken basin is mainly indigenous material. Lunar Planet. Sci. XXXIV, Abstract # 1434. Haskin, L.A., Korotev, R.L., Rockow, K.M., and Jolliff, B.L. (1998) The case for an imbrium origin of the apollo th- rich impact-melt breccias. Meteoritics and Planetary Science 33, pp. 959–975. Haskin, L., and Warren, P. H. (1991) Lunar chemistry. In The Lunar Sourcebook: A User's Guide to the Moon, edited by G. H. Heiken, D. T. Vaniman and B. M. French, pp. 357-474. Cambridge: Cambridge University Press. Haskin, L.A. (1998) The Imbrium and the thorium distribution at the lunar highlands surface, J. Geophys. Res. 103, pp. 1679-1689. Haskin, L.A., Colson, R.O., Vaniman, D.T., and Gillett, S.L. (1991) A geochemical assessment of possible lunar ore formation. In Arizona University, Resources of Near-Earth Space, Abstract # 9.

577

Haskin, L.A., Gillis, J.J., Korotev, R.L., and Jolliff, B.L. (2000) The materials of the lunar Procellarum KREEP terrane: A synthesis of data from geomorphological mapping, remote sensing, and sample analyses. J. Geophys. Res. 105, no. E8, pp. 20403–20415. Haskin L.A., Korotev R.L., Rockow K.M. and Jollif, B.L. (1998) The case for an Imbrium origin of the Apollo thorium-rich impact-melt breccias. Meteoritics and Planetary Science 33, 959-975. Hauri, E.H., Weinreich, T., Saal, A.E., Rutherford, M.C., and Van Orman, J.A. (2011) High Pre-Eruptive Water Contents Preserved in Lunar Melt Inclusions. Science 333, pp. 213-215. Hawke, B.R., and Bell, J.F. (1981) Spectral studies of lunar dark-halo craters: preliminary results. Proc. Lunar Planet. Sci. Conf. 12th, no. B, pp. 412-414. Hawke, B.R., Blewett, D.T., Bussey, D.B.J., Giguere, T.A., Lawrence, D.J., Lucey, P.G., Smith, G.A., Spudis, P.D., and Taylor, G.J. (2003) Geochemical anomalies in the lunar highlands. Lunar Planet. Sci. XXXIV, Abstract # 1198. Hawke, B.R., Blewett, D.T., Lucey, P.G., Smith, G.A., Bell, J.F. III, Campbell, R.M.S. (2004) The origin of lunar crater rays. Icarus 170, pp. 1-16. Hawke, B.R., Coombs, C.R., Campbell, B.A., Lucey, P.G., Peterson, C.A., and Zisk, S.H. (1991) Remote sensing of regional pyroclastic deposits on the North Central portion of the lunar nearside. Proc. Lunar Planet. Sci. Conf. 21st, pp. 377-389. Hawke, B.R., Coombs, C.R. and Clark, B. (1990) Ilmenite-rich pyroclastic deposits: An ideal lunar resource. Proc. Lunar Planet. Sci. Conf. 20th, pp. 249-258. Hawke, B.R., Coombs, C.R., Gaddis, L.R., Lucey, P.G., and Owensby, P.D. (1989) Remote sensing and geologic studies of localized dark mantle deposits on the Moon. Proc. Lunar Planet. Sci. Conf. 19th, pp. 255-268. Hawke, B.R., Coombs, C.R., Gaddis, L.R., Lucey, P.G., Peterson, C.A., Robinson, M.S., Smith, G.A., and Spudis, P.D. (1997) Remote sensing studies of geologic units in the eastern Nectaris region of the Moon. Proc. Lunar Planet. Sci. Conf. 28th, pp. 432-433. Hawke, B.R., Gillis, J.J., Giguere, T.A., Blewett, D.T., Lawrence, D.J., Lucey, P.G., Peterson, C.A., Smith, G.A., Spudis, P.D., and Taylor, G.J. (2005a) The earliest mare basalts. Lunar Planet. Sci. XXXVI, Abstract # 1642. Hawke, B.R., Gillis, J.J., Giguere, T.A., Blewett, D.T., Lawrence, D.J., Lucey, P.G., Smith, G.A., Spudis, P.D., and Taylor, G.J. (2005b) Remote sensing and geologic studies of the -Kapteyn region of the Moon. J. Geophys. Res. 110, pp. 1–16. Hawke, B.R. and Head J.W. (1977) Impact melt on lunar crater rims. In Impact and Explosion Cratering, p 815-841. Hawke, B.R., Lawrence, D.J., Blewett, D.T., Lucey, P.G., Smith, G.A., Spudis, P.D., and Taylor, G.J. (2003) Hansteen Alpha: A volcanic construct in the lunar highlands. J. Geophys. Res. 108, no. E7, pp. 5-1 – 5-8. Hawke, B.R., Lucey, P.G., Bell, J.F., and Spudis, P.D. (1990) Ancient mare volcanism. Workshop on Mare Volcanism and Basalt Petrogenesis: “Astounding Fundamental Concepts (AFC)” Developed Over the Last Fifteen Years. Lunar and Planetary Institute, pp. 13-14. Hawke, B.R., Peterson, C.A., Blewett, D.T., Bussey, D.B.J., Lucey, P.G., Taylor, G.J. and Spudis, P.D. (2003) Distribution and modes of occurrence of lunar anorthosites. J. Geophys. Res. 108, pp. 1-16. Hawke, B.R., and Spudis, P.D. (1980) Geochemical anomalies on the eastern limb and farside of the moon. In Lunar Highlands Crust, pp. 467–481. Hayne, P.O., Greenhagen, B.T., Foote, M.C., Siegler, M.A., Vasavada, A.R., and Paige, D.A. (2010) Diviner lunar radiometer observations of the LCROSS Impact. Science 330, pp. 477-479. Head, J.W., III (1974) Lunar dark-mantle deposits: Possible clues to the distribution of early mare deposits. Proc. Lunar Science Conf. 5th and Geochimica et Cosmochimica Acta 1, pp. 207-222. Head, J.W. (1974) Orientale multi-ringed basin interior and implications for the petrogenesis of lunar highland samples. The Moon, 11, pp. 327-356. Head, J.W., III (1975a) Lunar mare deposits: Areas, volumes, sequence, and implication for melting in source areas. Origins of Mare Basalts 234, pp. 66-69. Head, J.W. (1975b) Mode of occurrence and style of emplacement of lunar mare basalts, Origins of Mare Basalts. Proc. Lunar Science Conf. 6th, pp. 61-65.

578

Head, J.W. (1975c) Morphology of pyroclastic lunar volcanic deposits: implications for eruption condiions and localized sources of volcatiles. Proc. Lunar Science Conf. 6th, pp. 349-351. Head, J.W., III (1976) Lunar Volcanism in Space and Time. Reviews of Geophysics and Space Physics 14, pp. 265- 300. Head, J.W., III (1976) The significance of substrate characteristics in determining morphology and morphometry of lunar craters. Proc. Lunar Science Conf. 3rd, pp. 2913–2929. Head, J.W., III (1977) Origin of outer rings in lunar multi-ringed basins: Evidence from morphology and ring spacing. In: Roddy, D.J., Pepin, R.O., and Merrill, R.B. (Eds.), Impact and Explosion Cratering, Planetary and Terrestrial Implications. Pergamon Press, New York, pp. 563-573. Head, J.W., III (1982) Lava flooding of ancient planetary crusts: Geometry, thickness, and volumes of flooded lunar impact basins. The Moon and the planets 26, pp. 61-88. Head, J.W. (2010) Transition from complex craters to multi-ringed basins on terrestrial planetary bodies: scale- dependent role of the expanding melt cavity and progressive interaction with the displaced zone. Geophysical Research Letters 37, p. L02203. Head, J.W., Bryan, W.B., Greeley, R., Guest, J.E., Schultz, P.H., Sparks, R.S.J., Walker, G.P.L., Whitford-Stark, J.L., Wood, C.A. and Carr, M.H. (1981) Distribution and morphology of basalt deposits on planets, Basaltic volcanism on the terrestrial planets, Pergamon Press Inc., New York, N. Y., USA, pp. 701-802. Head, J.W., Chapman, C.R., Dominigue, D.L., Hawkins, S.E., McClintock, W.E., Murchie, S.L., Prockter, L.M., Robinson, M.S., Strom, R.G., and Watters, T.R. (2007) The : The view prior to the MESSENGER mission. Space Science Review 131, pp. 41-84. Head, J.W., III, and Coffin, M. (1997) Large igneous provinces: a planetary perspective, in Large Igneous Provinces; Continental, Oceanic, and Planetary Flood Volcanism, edited by Mahoney, J.J., and Coffin, M. American Geophysical Union, Washington, D.C., pp. 411-438. Head, J.W. and Gifford, A. (1980) Lunar mare domes: classification and mode of origin. The Moon and Planets 22, pp. 235-258. Head, J.W., Hess, P.C., and McCord, T.B. (1978) Geologic characteristics of lunar highland volcanic domes (Gruithuisen and Mairan region) and possible eruption conditions. Proc. Lunar Planet. Sci. Conf. 9th, pp.488–490. Head, J.W. and McCord, T.B. (1978) Imbrian-age highland volcanism on the Moon: the Gruithuisen and Mairan domes. Science 199, pp. 1433-1436. Head J.W., Murchie, S., Mustard, J.F., Pieters, C.E., Neukum, G., McEwen, A., Greeley, R., Nagel, E. and Belton, M.J.S. (1993) Lunar Impact Basins: New data for the western limb and far side (Orientale and South Pole-Aitken Basins) from the first Galileo flyby. J. Geophys. Res. 98, pp. 17149-17181. Head, J.W., III and Wilson, L. (1979) Alphonsus-type dark-halo craters: Morphology, morphometry and eruption conditions. Proc. Lunar Science Conf. 10th, pp. 2861-2897. Head, J.W., III. and Wilson, L. (1992) Lunar mare volcanism: Stratigraphy, eruption conditions and the evolution of secondary crust. Geochimica et Cosmochimica Acta 56, pp. 2155-2175. Head, J.W., III and Wilson, L. (1993) Lunar graben formation due to near-surface deformation accompanying dike emplacement. Planetary and Space Science 41, pp. 719-727. Head, J.W., Wilson, L. and Pieters, C.M. (2000) Pyroclastic eruptions associated with the floor-fractured lunar farside crater Oppenheimer in the South Pole Aitken basin. Proc. Lunar Planet. Sci. Conf. 31st, p. 1280. Heather, D.J. and Dunkin, S.K. (2002) A stratigraphic study of southern Oceanus Procellarum using Clementine multispectral data. Planetary and Space Science 50, no. 14-15, pp. 1299–1309. Heather, D.J. and Dunkin, S.K. (2003) Geology and stratigraphy of King crater, lunar farside. Icarus 163, pp. 307-329. Heather, D.J., Dunkin, S.K. and Wilson, L. (2003) Volcanism on the Marius Hills plateau: Observational analyses using Clementine multispectral data. J. Geophys. Res. 108, no. E3, p. 5017, doi:10.1029/2002JE001938. Heber, V.S., Baur, H. and Wieler, R. (2003) Helium in Lunar Samples Analyzed by High-Resolution Stepwise Etching: Implications for the Temporal Constancy of Solar Wind Isotopic Composition. Astrophysical J. 597, pp. 602–614, doi: 10.1086/378402.

579

Heggy, E., Fong, T., Kring, D.A., Deans, M., Anglade, A., Mahiouz, K., Bualat, M., Lee, P., Horz, F., and Bluethmann, W. (2009) Potential of probing the lunar regolith using rover-mounted ground penetrating radar: Moses lake dune field analog study. Lunar Planet. Sci. XL, Abstract # 2183. Heiken, G. and McEwen, M.C. (1972) The geologic setting of the Luna 20 site. Earth and Planetary Science Letters 17, pp. 3-6. Heiken, G.H., Vaniman, D.T., and French, B.M. (1991) Lunar Sourcebook: A User’s Guide to the Moon. Cambridge University Press, New York. Hempel, S., Knapmeyer, M., Jonkers, A.R.T., and Oberst, J. (2012) Uncertainty of Apollo deep moonquake locations and implications for future network designs. Icarus 220, pp. 971-980. Hess, P.C. and Parmentier, E.M. (1995) A model for the thermal and chemical evolution of the Moon’s interior: implications for the onset of mare volcanism. Earth and Planetary Science Letters 134, pp. 501-514. Hibbits, C.A., Grieves, G.A., Poston, M.J., Dyar, M.D., Alexandrov, A.B., Johnson, M.A., and Orlando, T.M. (2011) Thermal stability of water and hydroxyl on the surface of the Moon from temperature-programmed desorption measurements of lunar analog materials. Icarus 213, pp. 64-72. Hiesinger, H. and Head, J.W. (2003) Lunar South-Pole Aitken impact basin: Clementine topography and implications for the interpretation of basin structure and stratigraphy. Microsymposium 38, p. MS101. Hiesinger, H. and Head, J.W. (2004) Lunar South Pole-Aitken impact basin: topography and mineralogy. Lunar Planet. Sci. XXXV, Abstract # 1164. Hiesinger, H. and Head, J.W., III (2006) New views of lunar geoscience: An introduction and overview. Reviews in Mineralogy and Geochemistry 60, no. 1, pp. 1–81. Hiesinger, H., Head, J.W., III, Wolf, U., Jaumann, R., and Neukum, G. (2002) Lunar mare basalt flow units: Thicknesses determined from crater size-frequency distributions. Geophysical Research Letters 29, pp. 1-4. Hiesinger, H., Head, J.W., III, Wolf, U., Jaumann, R., and Neukum, G. (2003) Ages and stratigraphy of mare basalts in Oceanus Procellarum, mare Nubium, Mare Cognitum, and mare Insularum. J. Geophys. Res. 108, pp. 1-27. Hiesinger, H., Head, J., III, Wolf, U. and Jaumann, R. (2006) New ages for basalts in based on crater size-frequency measurements. Lunar Planet. Sci. XXXVII, Abstract # 1151. Hiesinger, H., Head, J.W., III, Wolf, U., Neukum, G., and Jaumann, R. (2008) Ages of mare basalts on the lunar nearside: A synthesis. Lunar Planet. Sci. XXXIX, Abstract # 1269. Hiesinger, H., Head, J.W., III, Wolf, U., Jaumann, R., and Neukum, G. (2010) Ages and stratigraphy of lunar mare basalts in Mare Frigoris and other nearside maria based on crater size-frequency distribution measurements. J. Geophys. Res. 115, pp. 1-22. Hiesinger, H., Head, J.W., III, Wolf, U., Jaumann, R., and Neukum, G. (2011) Ages and stratigraphy of lunar mare basalts: A synthesis, in Ambrose, W.A., and Williams, D.A. (Eds.), Recent Advances and Current Research Issues in Lunar Stratigraphy: Geological Society of America Special Paper 477, pp. 1-51. Hiesinger, H., Jaumann, R., Neukum, G., and Head, J.W., III (1998) On the relation of age and titanium content of lunar mare basalts. Lunar Planet. Sci. XXIX, Abstract # 1243. Hiesinger, H., Jaumann, R., Neukum, G. and Head, J.W., III (2000) Ages of mare basalts on the lunar nearside, J. Geophys. Res. 105, no. E12, pp. 29239-29276, doi:10.1029/2000JE001244. Hiesinger, H., Jaumann, R., Neukum, G., Head, J.W. and Wolf, U. (2000) Ages of mare basalts on the lunar nearside. J. Geophys. Res. 105, pp. 29259-29275. Hiesinger, H., van der Bogert, C.H., Pasckert, J.H., Funcke, L., Giacomini, L., Ostrach, L.R., and Robinson, M.S. (2012) How old are young craters? J. Geophys. Res. 117, pp. 1-15. Hikida, H., and Wieczorek, M.A. (2007) Crustal thickness of the Moon: New constraints from gravity inversions using polyhedral shape models. Icarus 192, pp. 150-166. Hintze, P.E., Curran, J.P. and , T.A. (2008) The use of solar heating and heat cured polymers for lunar surface stabilization. Joint Annual meeting of LEAG-ICEUM-SRR. Hirata, N., Haruyama, J., Ohtake, M., Matsunaga, T., Yokota, Y., Morata, T., Honda, C., Ogawa, Y., Torii, M., Demura, H. and Asada, N. (2008) Morphology of large lunar craters: views from LISM/KAGUYA. Lunar Planet. Sci. XXXIX, Abstract # 1588.

580

Hirata, N., Otake, H., Otake, M. and Haruyama, J. (2000) Analysis of ejecta of Tycho using high-resolution photographs and multi-spectral band images. Lunar Planet. Sci. XXXI, Abstract # 1615. Hirt, C. and Featherstone, W.E. (2012) A 1.5km-resolution gravity field model of the Moon. Earth and Planetary Science Letters 329-330, pp. 22-30. Hobbs, B.A., Hood, L.L., Herbert, F., and Sonett, C.P. (1983) An upper bound on the radius of a highly electrically conducting lunar core. J. Geophys. Res. 88, no. S1, pp. B97–B102. Hodges, R. R. (1991) Exospheric transport restrictions on water ice in lunar polar traps. Geophysical Research Letters 18, pp. 2113-2116. Hodges, C.A. and Wilhelms, D.E. (1978) Formation of lunar basin rings, Icarus, 34, pp. 294-323. Hodges, R.R. (2002) Ice in the lunar polar regions revisited. J. Geophys. Res. (Planets) 107, pp. 5011–+, doi:10.1029/2000JE001491. Hodych, J.P. and Dunning, G.R. (1992) Did the Manicouagan impact even trigger end Triassic extinction?. Geology 20, pp. 51-54. Holsapple, K.A. and Schmidt R.M. (1982) On the scaling of crater dimensions-2.Impact processes. J. Geophys. Res. 87, pp. 1849-70. Honda, C. and Fujimura, A. (2005) Formation process of lunar sinuous rilles by thermal erosion of basaltic lava flow. Lunar Planet. Sci. XXVI, Abstract # 1562. Hood, L.L. (2011) Central magnetic anomalies of Nectarian-aged lunar impact basins: Probable evidence for an early core dynamo. Icarus 211, pp. 1109-1128. Hood, L.L., and Halekas, J.S. (2010) Lunar Surface Magnetometer Measurements for Crustal Paleomagnetism and Deep Electromagnetic Sounding Applications. Ground-Based Geophysics on the Moon, Abstract # 1530. Hood, L.L., Herbert, F., and Sonett, C.P. (1982) The Deep Lunar Electrical Conductivity Profile: Structural and Thermal Inferences. J. Geophys. Res. 87, pp. 5311-5326. Hood, L.L. and Jones, J.H. (1987) Geophysical Constraints on Lunar Bulk Composition and Structure: A Reassessment. Proc. Lunar Planet. Sci. Conf. and J. Geophys. Res. 92, pp. E396-E410. Hood, L.L., Mitchell, D.L., Lin, R.P., Acuna, M.H., and Binder, A.B. (1999) Initial Measurements of the Lunar Induced Magnetic Dipole Moment Using Lunar Prospector Magnetometer Data. Geophysical Research Letters 26, pp. 2327-2330. Hood, L.L., Righter, K., Neal, C.R., Shearer, C.K., McCallum, I.S., Tompkins, S., Hawke, B.R., Peterson, C., Gillis, J.J., and Bussey, B. (2006) Thermal and magmatic evolution of the Moon, in New Views of the Moon, Rev. in Min. and Geochem. 60, edited by Jollif, B.L., Wieczorek, M.A., Shearer, C.K., and Neal, C.R., pp. 221-364. Hood, L.L., Zakharian, A., Halekas, J., Mitchell, D.L., Lin, R.P., Acua, M.H. and Binder, A.B. (2001) Initial mapping and interpretation of lunar crustal magnetic anomalies using lunar prospector magnetometer data. J. Geophys. Res. 106, pp. 27,825–27,840. Hörz, F. (1978) How thick are lunar mare basalts? Proc. Lunar Science Conf. 9th, pp. 3311-3331. Hörz, F (1985) Lava tubes: Potential shelters for habitats. In Mendell W. W. (editor), Lunar bases and space activities of the 21st century, pp. 405-412, Lunar and Planetary Institute, Houston, TX, USA. Hörz F (1991) The Lunar Sourcebook, chapter Lunar Surface Processes, pp. 62–120, Cambridge University Press. Hörz, F., Grieve, R., Heiken, G., Spudis, P. and Binder, A. (1991) Lunar surface processes. In: Lunar Sourcebook, A User’s Guide to the Moon, G.H. Heiken, D.T. Vaniman and B.M. French (eds), Cambridge University Press, Cambridge, New York. Hörz, F., Ostertag, R., and Rainey, D.A. (1983) Bunte Breccia of the Ries: Continuous Deposits of Large Impact Craters. Reviews of Geophysics and Space Physics 21, pp. 1667-1725. Hörz, R., Horst, G., Huttner, R., and Oberbeck, V.R. (1977) Shallow drilling in the "Bunte Breccia" impact deposits, Ries Crater, Germany. In: Roddy, D.J., R.O. Pepin, and R.B. Merrill (Eds.), Impact and Explosion Cratering. Pergamon Press, New York, pp. 425-448. Housen, K.R., Schmidt, R.M. and Holsapple, K.A. (1983) Crater ejecta scaling laws: fundamental forms based on dimensional analysis. J. Geophys. Res. 88, pp. 2485-2499.

581

Howard, K.A. (1972) Ejecta blankets of large craters exemplified by King Crater. In: Apollo 16 Preliminary Science Report, NASA SP-315, 29-62-70, NASA, Washington DC. Howard, K.A. and Wilhelms, D.E. (1974) Lunar basin formation and highland stratigraphy, Reviews of Geophysics and Space Physics 12, pp. 309-327. Howard, K.A. and Wilshire, H.G. (1975) Flows of impact melt at lunar craters. Journal of Research U.S. Geological Survey 3, no.2, pp. 237-251. Hughes, S.S., Delano, D.W., and Schmitt, R.A. (1988) Apollo 15 yellow-brown volcanic glass: Chemistry and petrogenetic relations to green volcanic class and -normative mare basalts. Geochimica et Cosmochimica Acta 52, pp. 2379-2391. Hulme, G. (1973) Turbulent lava flow and the formation of lunar sinuous rilles. Modern Geology 4, pp. 107-117. Hulme, G. (1982) A review of lava flow processes related to the formation of lunar sinuous rilles. Surveys in Geophysics 5, pp. 245-279. Hurwitz, D.M., Head, J.W., III, and Hiesinger, H. (2012) Lunar sinuous rilles: Distribution, characteristics, and implications for their origin. Planetary and Space Science, submitted. Ireland, T.R., Holden, P., Norman, M.D. and Clarke, J. (2006) Isotopic enhancements of 17O and 18O from solar wind particles in the lunar regolith. Nature 440, pp. 776–778, doi:10.1038/nature04611. Ishihara, Y., Goossens, S., Matsumoto, K., Noda, H., Araki, H., Namiki, N., Hanada, H., Iwata, T., Tazawa, S., and Sasaki, S. (2009) Crustal thickness of the Moon: Implications for farside basin structures. Geophysical Research Letters 36, pp. 1-4. Ivanov, B.A. (2005) Numerical modeling of the largest terrestrial meteorite craters. Solar System Research 39, pp. 381–409. Translated from Astronomicheskii Vestnik, 39, pp. 426–456. Jensen, E.A. and Vilas, F. (2011) Lunar hydration and the plasma environment: what can we learn from lunar transits through the Earth's magnetotail? Lunar Planet. Sci. XLII, Abstract # 1185. Johnson, R.E. and Baragiola, R.A. (1991) Lunar Surface: Sputtering and Secondary Ion Mass Spectrometry. Geophysical Research Letters 18, p. 2169. Johnson, J.R., Swindle, T.D., and Lucey, P.G. (1999) Estimated solar wind-implanted Helium-3 distribution on the Moon. Geophysical Research Letters 26, no. 3, pp. 385-388. Jolliff, B.L. (2012) FAN, PAN, and MAN. LROC Team Meeting (presentation), May 2012. Jolliff, B.L., Floss, C., McCallum, I.S. and Schwartz, J.M. (1999) Geochemistry, petrology, and cooling history of 14161, 7373; a plutonic lunar sample with textural evidence of granitic-fraction separation by silicate-liquid immiscibility. American Mineralogist 84, pp. 821–837. Jolliff, B.L., Gillis, J.J., Haskin, L.A., Korotev, R.L. and Wieczorek, M.A. (2000) Major lunar crustal terranes: Surface expressions and crust-mantle origins. J. Geophys. Res. 105, pp. 4197-4216. Jolliff, B.L., Haskin, L.A., Gillis, J.J., Korotev, R.L., and Zeigler, R.A. (2002) Lithologic diversity in lunar regolith: Lessons for future lunar exploration strategies with application to south pole-aitken basin. Lunar Planet. Sci. XXXIII, Abstract # 1156. Jolliff, B.L., Haskin, L.A., Korotev, R.L., Papike, J.J., Shearer, C.K., Pieters, C.M. and Cohen, B.A. (2003) Scientific expectations from a sample of regolith and rock fragments from the interior of the lunar south pole-aitken basin. , Lunar Planet. Sci. XXXIV, Abstract # 1989. Jolliff, Brad L. and Ryder, Graham (2006) New views of the Moon. Reviews in mineralogy and geochemistry 60. Jones, E.M. (1995) Apollo 17 lunar surface journal. http://www.hq.nasa.gov/alsj/a17/a17.html (accessed 2011). Jutzi, M. and Asphaug, E. (2011) Forming the lunar farside highlands by accretion of a companion moon. Nature 476, pp. 69-72. Kaula, W.M., Schubert, G., Lingenfelter, R.E., Sjogren, W.L., and Wollenhaupt, W.R. (1974) Apollo laser altimetry and inferences as to lunar structure. Proc. Lunar Science Conf. 5th and Geochimica et Cosmochimica Acta 3, pp. 3049- 3058. Karlstrom, T.N.V., McCauley, J.F. and Swann, G.A. (1968) Preliminary lunar exploration plan of the Marius Hills region of the Moon. U.S. Geol. Surv. Interagency Report: Astrogeology 5, p. 42.

582

Kawamura, T., Saito, Y., Tanaka, S., Horai, K., and Hagermann, A. (2008) Re-analysis of HFT data using the Apollo Lunar Surface Gravimeter data. Lunar Planet. Sci. XXXIX, Abstract # 2069. Kerridge, J.F. (1975) Solar nitrogen: Evidence for a secular change in the ratio of nitrogen-15 to nitrogen-14. Science 188, pp. 162-164. Kerridge, J.F. (1979) Evidence for secular variations in solar wind composition. Proceedings from The Ancient Sun: Fossil Record in the Earth, Moon, and Meteorites, pp. 58-60. Kerridge, J.F. (1989) What has caused the secular increase in solar nitrogen-15? Science 245, pp. 480-486. Kerridge, J.F., Signer, P., Wieler, R., Becker, R.H., and Pepin, R.O. (1991) Long-term changes in composition of solar particles implanted in extraterrestrial materials. In The Sun in Time, edited by C. P. Sonett, M. S. Giampapa and M. S. Matthews, pp. 98-117. Tucson: University of Arizona Press. Kiefer, W. (2009) Gravity observations of the Aristarchus plateau on the Moon: Implications for the volcanic and impact histories of the plateau. Lunar Planet. Sci. XL, Abstract # 1106. Kiely, C., Greenberg, G., and Kiely, C.J. (2011) A new look at lunar soil collected from the Sea of Tranquility during the Apollo 11 mission. Microscopy and Microanalysis 17, pp. 34-48. Kiko, J. and Kirsten, T. (1983) Distribution of Solar Wind Implanted Noble Gases in Lunar Samples. Proceedings from the Workshop on Past and Present Solar Radiation: The Record in Meteoritic and Lunar Regolith Material, pp. 26-28. Khan, A., Connolly, J.A.D., Maclennan, J., and Mosegaard, K. (2007) Joint inversion of seismic and gravity data for lunar composition and thermal state. Geophysical Journal International 168, pp. 243-258. Khan, A., and Mosegaard, K. (2001) New Information on the Deep Lunar Interior from an Inversion of Lunar Free Oscillation Periods. Geophysical Research Letters 28, pp. 1791-1794. Khan, A. and Mosegaard, K. (2002) An inquiry into the lunar interior: A nonlinear inversion of the Apollo lunar seismic data. J. Geophys. Res. 107, pp. 1-26. Khan, A., Mosegaard, K., and Rasmussen, K.L. (2000) A New Seismic Velocity Model for the Moon from a Monte Carlo Inversion of the Apollo Lunar Seismic Data. Geophysical Research Letters 27, pp. 1591-1594. Khan, A., Mosegaard, K., Williams, J.G., and Lognonné, P. (2004) Does the Moon possess a molten core? Probing the deep lunar interior using results from LLR and Lunar Prospector. J. Geophys. Res. 109, pp. 1-25. Kiefer, W.S. (2012) Lunar heat flow experiments: Science objectives and a strategy for minimizing the effects of lander-induced perturbations. Planetary and Space Science 60, pp. 155-165. Kilauea: volcanic eruption. (Accessed 25 July 2009) Britannica Encyclopedia. http://www.britannica.com. 25 July 2009. Kirk, R.L., and Stevenson, D.J. (1989), The competition between thermal contraction and differentiation in the stress history of the Moon. J. Geophys. Res. 94, no. B9, pp. 12,133-12,144. Kleine, T., Münker, C., Mezger, K., and Palme, H. (2002) Rapid accretion and early core formation on asteroids and the terrestrial planets from Hf-W chronometry. Nature 418, pp. 952-955. Klumov, B.A. and Berezhnoi, A.A. (2002) Possible origin of lunar ice, Advances in Space Research 30, pp. 1875– 1881, doi:10.1016/S0273-1177(02)00489-1. Kohout, T., O’Sullivan, K., Losiak, A., Thaisen, K.G., Weider, S. and Kring, D.A. (2009) Scientific opportunities for human ’s schrödinger basin. Lunar Planet. Sci. XL, Abstract # 1572. Konopliv, A.S., Asmer, S.W., Carranza, E., Sjogren, W.L., and Yuan, D.N. (2001) Recent Gravity Models as a Result of the Lunar Prospector Mission. Icarus 150, pp. 1-18. Konopliv, A.S., Binder, A.B., Hood, L.L., Kucinskas, A.B., Sjogren, W.L., and Williams, J.G. (1998) Improved Gravity Field of the Moon from Lunar Prospector. Science 281, pp. 1476-1480. Konrad, W. and Spohn, T. (1997) Thermal history of the Moon: Implications for an early core dynamo and post- accretional magmatism. Advances in Space Research 19, pp. 1511-1521. Korotev, R.L. (accessed August 3, 2011) Lunar Regolith Breccias and Fragmental Breccias. Washington University in St. Louis Department of Earth and Planetary Sciences. 12 14, 2010. http://meteorites.wustl.edu/lunar/regolith_breccia.htm Korotev, R.L., Gillis, J.J., Haskin, L.A. and Jolliff, B.L. (2002) On the age of Nectaris basin. Workshop on Moon Beyond 2002, p. 3029.

583

Korotev, R.L. and Jolliff, B.L. (2001) The curious case of the lunar magnesian granulitic breccias, Lunar Planet. Sci. XXXII, Abstract # 1455. Kosofsky, L.J. and El-Baz, F. (1970) The Moon as viewed by Lunar Orbiter. NASA SP-200. Kramer, G.Y., Kring, D.A., A.L. Nahm, and Pieters, C.M. (2012) Spectral and photogeologic mapping of Schrodinger basin and implications for post-South Pole-Aitken impact deep subsurface stratigraphy. Icarus, submitted. Kramer, G.Y., Jolliff, B.L., and Neal, C.R. (2008) Distinguishing high-alumina mare basalts using Clementine UVVIS and Lunar Prospector GRS data: Mare Moscoviense and Mare Nectaris. J. Geophys. Res. 113, p. E01002. Kramer, G.Y., et al. (2011) Characterization of lunar swirls at Mare Ingenii: A model for space weathering at magnetic anomalies. J. Geophys. Res. 116, p. E04008. Kramer, G.Y., Kring, D.A., and Pieters, C.M. (2012) Deep crust/mantle mineraology exposed in the uplifted peak ring and basin walls of Schrödinger. Second Conference on the Lunar Highlands Crust, Abstract # 9013. Kring, D.A. (1995) The dimensions of the Chicxulub impact crater and impact melt sheet, J. Geophys. Res. 100, no. E8, pp. 16,979-16,989. Kring, D. (2000) Impact events and their effect on the origin evolution and distribution of life. GSA Today 10, no. 8. pp. 1-7. Kring, D.A. (2005) Hypervelocity collisions into continental crust composed of sediments and an underlying crystalline basement: comparing the Ries (~24 km) and Chicxulub (~180 km) impact craters. Chemie der Erde 65, pp. 1-46. Kring, D.A. (2005) Radar and hydrogen measurements and inferred water abundances at the lunar south pole. Kring D.A. (2007a) Guidebook to the Geology of Meteorite Crater, Arizona. 70th Annual Meeting of the , August 2007, LPI contributions 1355. Kring, D.A. (2007b), Reducing the Risk, Requirements, and Cost of the Human Exploration Phase of the Constellation Program with Robotic Landers and Rovers, LPI Contributions 1371, pp. 3037–+. Kring, D.A. (2009), Targeting complex craters and multi-ring basins to determine the tempo of impact bombardment while simultaneously probing the lunar interior, LPI Contributions 1483, pp. 71–72. Kring, D.A. (2011) Lunar Electric Rover (LER) and crew activities, Black Point Lava Flow. Personal Communication, PowerPoint presentation, 20 slides. Kring, D.A., et al. (2011) Lunar Analogue Training at Meteor Crater. Arizona & the San Francisco Volcanic Field. Arizona Lunar and Planetary Institute. Kring, D.A. (2011) Personal Communication. Kring, D.A. and McKay, G.A. (1984) Chemical gradients in glass adjacent to olivine in experimental charges and Apollo 15 green glass vitropheres. Lunar Planet. Sci. Conf. 15th, pp. 461-462. Kring, D.A. and Rademacher, J. (2007) Initiating the Surface Ops Phase of the Lunar Exploration Architecture with Robotic Landers and Rovers. Lunar Planet. Sci. XXXVIII, Abstract # 1595–+. Kuskov, O.L., Kronrod, V.A., and Hood, L.L. (2002) Geochemical constraints on the seismic properties of the lunar mantle. Physics of the Earth and Planetary Interiors 134, pp. 175-189. Lal, D. and Lingenfelter, R.E. (1991) History of the Sun During the Past 4.5 Gyr as Revealed by Studies of Energetic Solar Particles Recorded in Extraterrestrial and Terrestrial Samples. University of Arizona Press. Langseth, M.B. and Keihm, S.J. (1977) In-situ measurements of lunar heat flow. The Soviet-American Conference on of the Moon and Planets (SEE N78-12925 03-90), pp. 283-293. Langseth, M.G., Keihm, S.J., and Peters, K. (1976) Revised lunar heat-flow values. Proc. Lunar Science Conf. 7th, pp. 3143-3171. Langseth, M.G., Jr., Clark, S.P., Jr., Chute, J.L., Jr., Keihm, S., and Wechsler, A.E. (1972) Heat-flow experiment. In: Apollo 15 Preliminary Science Report. NASA SP-370, Washington DC. Langseth, M.G., Jr., Keihm, S.J., and Chute, J.L., Jr. (1973) Heat-flow experiment. In: Apollo 17 Preliminary Science Report. NASA SP-330, Washington DC. Langseth, M.G., Keihm, S.J., and Peters, K. (1976) Revised lunar heat-flow values. Proc. Lunar Science Conf. 7th, pp. 3143-3171.

584

LAPST (Lunar and Planetary Sample Team) (1985) Horizons and opportunities in lunar sample science, LPI Tech. Rpt. 85-04, p. 44, Lunar and Planetary Institute, Houston, Texas. Latham, G., Ewing, M., Dorman, J., Lammlein, D., Press, F., Toksöz, M.N., Sutton, G.H., Duennebier, F., and Nakamura, Y. (1972) Moonquakes and lunar tectonism results from the Apollo passive seismic experiment, Proc. Lunar Science Conf. 3rd, pp. 2519–2526. Latham, G.V., Ewing, M., Press, F., Sutton, G., Dorman, J., Nakamura, Y., Toksoz, N., Lammlein, D. and Duennebier, F. (1972) Passive seismic experiment, Apollo 16 Prelimary Science Report, NASA publication SP-315, pp. 9-1 – 9-29. Lawrence, D.J., Feldman, W.C., Barraclough, B.L., Binder, A.B., Elphic, R.C., Maurice, S., Miller, M.C. and Prettyman, T.H. (1999) High resolution measurements of absolute thorium abundances on the lunar surface. Geophysical Research Letters 26, no. 17, pp. 2681–2684. Lawrence, D.J., Feldman, W.C., Barraclough, B.L., Binder, A.B., Elphic, R.C., Maurice, S., Miller, M.C., and Prettyman, T.H. (2000) Thorium abundances on the lunar surface. J. Geophys. Res. 105, no. E8, pp. 20307–20331. Lawrence, D.J., et al. (2002) Iron abundances on the lunar surface as measured by the Lunar Prospecter gamma-ray and neutron spectrometers. J. Geophys. Res. 107, p. E12. Lawrence, D.J., Feldman, W.C., Barraclough, B.L., Binder, A.B., Elphic, R.C., Maurice, S., Miller, M.C., and Prettyman, T.H. (1999) High resolution measurements of absolute thorium abundances on the lunar surface, Geophysical Research Letters 26, pp. 2681–2684. Lawrence, D.J., Feldman, W.C., Barraclough, B.L., Binder, A.B., Elphic, R.C., Maurice, S. and Thomsen, D.R. (1998) Global elemental maps of the Moon: The Lunar Prospector gamma-ray spectrometer, Science 281, no. 5382, pp. 1484– 1489. Lawrence, S.J. and Hawke, B.R. (2008) Lunar pyroclastic deposits: An accessible and quantifiable lunar resource, Proc. Lunar Planet. Sci. Conf. 39th, p. 1804. Lawrence, D.J., Hawke, B.R., Hagerty, J.J., Elphic, R.C., Feldman, W.C., Prettyman, T.H. and Vaniman, D.T. (2005) Evidence for a high-Th, evolved lithology on the Moon at Hansteen Alpha. Geophysical Research Letters 32, p. L07201. Lawrence, K., Johnson, C., Tauxe, L., and Gee, J. (2008) Lunar paleointensity measurements: Implications for lunar magnetic evolution. Physics of the Earth and Planetary Interiors 168, pp. 71-87. Lawson, S.L., Feldman, W.C., Lawrence, D.J., Moore, K.R., Elphic, R.C., Belian, R.D., and Maurice, S. (2005) Recent outgassing from the lunar surface: The Lunar Prospector Alpha Particle Spectrometer. J. Geophys. Res. 110, p. 8. Lay, T. and , T.C. (1995) Modern Global Seismology. Academic Press, San Diego. LEIP, Lunar Exploration Intern Program (2009b) Feasibility Assessment of All Science Concepts within South Pole- Aitken Basin. Lunar and Planetary Institute, Houston, Texas. LEIP, Lunar Exploration Intern Program (2010) The Moon as an Accessible Laboratory for Studying the Impact Process on Planetary Scales: Assessing Concept 6 of the NRC Report on the Scientific Context for the Exploration of the Moon. Lunar and Planetary Institute, Houston, Texas. Leitch, E.M., and Vasisht, G. (1998) Mass extinctions and the Sun's encounters with spiral arms. New Astron. 3, pp. 51-56. Lunar Exploration Science Working Group (1995) Lunar Surface Exploration Strategy, Final Report. Le Mouélic, S., , Y., Erard, S., Pinet, P., Chevrel, S. and Daydou, Y. (2000) Discrimination between maturity and composition of lunar soils from integrated Clementine uv-visible/near-infrared data: Application to the Aristarchus plateau, J. Geophys. Res. 105, no. E4, pp. 9445–9455. Levine, J., Renne, P.R. and Muller, R.A. (2007) Solar and comogenic argon in dated lunar impace spherules. Geochimica et Cosmochimica Acta 71, pp. 1624-1635. Li, L. and Mustard, J.F. (2000) Compositional gradients across mare-highland contacts: The importance of lateral mixing and geological implications. J. Geophys. Res. 105, no. E8, pp. 20,431-20,450. Li, L. and Mustard, J.F. (2003) Highland contamination in lunar mare soils: Improved mapping with multiple end- member spectral mixture analysis (MESMA). Journal of Geophysics Research 108, doi 10.1029/2002JE001917. Li, L. and Mustard, J.H. (2000) The compositional gradients and lateral transport by dark-halo and dark-ray craters. Lunar Planet. Sci. XXXI, Abstract # 2007.

585

Lloyd, D.D. and Head, J.W. (1972) Lunar surface properties as determined from earthshine and near-terminator photography. Proc. Lunar Science Conf. 3rd, pp. 3127-3142. Longhi, J. (1987) On the connection between mare basalts and picritic volcanic glasses. Proc. Lunar Planet. Sci. Conf. 17th, Part 2, Journal of Geophys. Res. 92, pp. E349-E360. Longhi, J. (1992) Experimental petrology and petrogenesis of mare volcanics. Geochimica et Cosmochimica Acta 56, pp. 2235-2251. Longhi, J. (1992) Origin of picritic green glass magmas by ploybaric fractional fusion. Proc. Lunar Planet. Sci. Conf. 22, pp. 343-353. Longhi, J. (1995) Liquidus equilibria of some primary lunar and terrestrial melts in the garnet stability field. Geochimica et Cosmochimica Acta 59, pp. 2375-2386. Longhi, J. (2003) A new view of lunar ferroan anothosites: Postmagma ocean petrogenesis. J. Geophys. Res. 108, pp. 1-16. Longhi, J. (2006) Petrogenesis of picritic mare magmas: Constraints on the extent of early lunar differentiation. Geochimica et Cosmochimica Acta 70, pp. 5919-5934. Lognonné, P., Gagnepain-Beynaix, J., and Chenet, H. (2003) A new seismic model of the Moon: implications for structure, thermal evolution and formation of the Moon. Earth and Planetary Science Letters 211, pp. 27-44. Loper, D.E., and Werner, C.L. (2002) On lunar asymmetries, 1. Tilted convection and crustal asymmetry. J. Geophys. Res. 107, pp. 1-8. Losiak, A., Wilhelms, D.E., Byrne, C.J., Thaisen, K., Weider, S.Z., Kohout, T., O’Sullivan, K. and Kring, D.A. (2009) A new lunar impact crater database. Lunar Planet. Sci. XL, Abstract # 1532. Losiak, A., Wilhelms, D.E., Byrne, C.J., Thaisen, K., Weider, S.Z., Kohout, T., O’Sullivan, K., and Kring, D.A. (2009) revised by Ohman, 2011. Lunar impact crater database. Available at http://www.lpi.usra.edu/lunar/surface/Lunar_Impact_Crater_Database_v24May2011.xls. LROC (2011) Lunar Reconnaissance Orbiter Camera Web Page. July 20, 2011, http://lroc.sese.asu.edu/data/LRO-L- LROC-5-RDR-V1.0/LROLRC_1001/DATA/BDR/WAC_GLOBAL. Lucchitta, B.K. (1977) Crater clusters and light mantle at the Apollo 17 site: A result of secondary impact from Tycho. Icarus, 30, pp. 80-96. Lucchitta, B.K. (1978) Geologic map of the north side of the Moon. United States Geological Survey Miscellaneous Investigations Series Map I-1062, 1:5,000,000 scale. Lucey, P.G. (2000) Potential for pre-biotic chemistry at the poles of the Moon. SPIE: Instruments, Methods, and Missions for Astrobiology 4137, pp. 84-88. Lucey, P.G. (2004) Mineral maps of the Moon, Geophysical Research Letters 31, no. L08701, pp. 1–4. Lucey, P.G. (2009) The Poles of the Moon. Elements 5, pp. 41-46.

Lucey, P.G., Blewett, D.T., and Hawke, B.R. (1998) Mapping the FeO and TiO2 content of the lunar surface with multispectral imagery. J. Geophys. Res. 103, pp. 3679-3699. Lucey, P.G., Blewett, D.T., Taylor, G.J., and Hawke, B.R. (2000b) Imaging of lunar surface maturity. J. Geophys. Res. 105, no. E8, pp. 20,377-20,386. Lucey, P.G., Blewett, D.T., and Jolliff, B.L. (2000) Lunar iron and titanium abundance algorithms based on final processing of Clementine ultraviolet-visible images. J. Geophys. Res. 105, pp. 20297-20305. Lucey, P.G., Gillis, J.J. and Cahill, J.T. (2005) Quantitative mineralogy of south pole-aitken basin. Lunar Planet. Sci. XXXVI, Abstract # 1520. Lucey, P.G., Hawke, B.R., Pieters, C.M., Head, J.W., III, and McCord, T.B. (1986) A compositional study of the Aristarchus region of the Moon using near-infrared reflectance spectroscopy. J. Geophys. Res. 91, pp. D344-D354. Lucey, P., Korotev, R.L., Gillis, J.J., Taylor, L.A., Lawrence, D., Campbell, B.A., Elphic, R., Feldmann, B., Hood, L.L., Hunten, D., Mendillo, M., Noble, S., Papike, J.J., Reedy, R.C., Lawson, S., Prettyman, T., Gasnault, O., and Maurice, S. (2006) Understanding the Lunar Surface and Space-Moon Interactions. In: Jolliff, B.L., Wieczorek, M.A., Shearer, C.K., and Neal, C.R. (Eds.), New Views of the Moon. Reviews in Mineralogy and Geochemistry 60, pp. 83- 219.

586

Lucey, P.G., Spudis, P.D., Zuber, M., Smith, D., and Malaret, E. (1994) Topographic-compositional units on the Moon and the early evolution of the lunar crust. Science 266, pp. 1855-1858. Lucey, P.G., Taylor, G.J., Hawke, B.R. and Spudis, P.D. (1998) FeO and TiO2 concentrations in the South Pole-Aitken basin: Implications for mantle composition and basin formation, J. Geophys. Res. 103, no. E2, pp. 3701–3708. Lucey, P.G., Taylor, G.J. and Malaret, E. (1995) Abundance and Distribution of Iron on the Moon. Science 268. Pp. 1150-1153. Lue, C., et al. (2011) Strong influence of lunar crustal fields on the solar wind flow. Geophys. Res. Lett. 38. Lunar Sample Preliminary Examination Team (1972) Preliminary Examination of Lunar Samples. In: Apollo 16 Preliminary Science Report. NASA SP-315, Washington DC. Malin, M. C. (1974) Lunar red spots; possible pre-mare materials. Earth Planet. Sci. Lett. 21, pp. 331-341. Malin, M.C., Edgett, K.S., Carr, M.H., Danielson, G.E., Davies, M.E., Hartmann, W.K., Ingersoll, A.P., James, H., Masursky, P.B., McEwen, A.S., Soderblom, L.A., Thomas, P., Veverka, J., Caplinger, M.A., Ravine, M.A., Soulanille, T.A., and Warren, J.L. (2005) 8 Years at Mars #2: New Crater Might Have Formed During The 1980s, NASA's Planetary Photojournal (http://photojournal.jpl.nasa.gov/), 20 September 2005. Malin Space Science Systems (2010) http://www.msss.com/all_projects/lro-camera.php. Mandel, Steve (2011) Astronomy Picture of the Day. August 9, 2001. http://apod.nasa.gov/apod/ap010809.html (accessed August 3, 2011). Margot, J.L., Campbell, D.B., Jurgens, R.F., and Slade, M.A. (1999) Topography of the lunar poles from radar interferometry: A survey of cold trap locations. Science 284, pp. 1658-1660. Margot, J.L., Campbell, D., Jurgens, R., Slade, M. (1999) The topography of Tycho Crater. J. Geophys. Res. 104, pp. 11,875-11,882. Marty, B., Hashizume, K., Chaussidon, M. and Wieler, R. (2003) Nitrogen Isotopes on the Moon: Archives of the Solar and Planetary Contributions to the Inner Solar System. Space Science Reviews 106, pp. 175–196, doi: 10.1023/A:1024689721371. Mason, B.H. and Melson, W.G. (1970) The lunar rocks, Wiley-Interscience, 352 pages. Matese, J.J., Whitman, P.G., Innanen, K.A., and Valtonen, M.J. (1995) Periodic modulation of the Oort cloud flux by the adiabatically changing galactic . Icarus 116, pp. 255-268. Matson, D.L., Johnson, T.V. and Veeder, G.J. (1977) Soil maturity and planetary regoliths: The Moon, mercury, and the asteroids. Proc. Lunar Sci. Conf. 8th, pp. 1002-1011. Mattingly, T.F., El-Baz, F. and Laidley, R.A. (1972) Observations and impressions from lunar orbit, NASA SP-315, Apollo 16 Prelim. Sci. Rept. p. 28.1-28.16. Matsumoto, K., Goossens, S., Ishihara, Y., Liu, Q., Kikuchi, F., Iwata, T., Namiki, N., Noda, H., Hanada, H., Kawano, N., Lemoine, F.G., and Rowlands, D.D. (2010) An improved lunar gravity field model from SELENE and historical tracking data: Revealing the farside gravity features. J. Geophys. Res. 115, pp. 1-20. , D.E. (1977) Simple Z-model of cratering, ejection and overturned flap, In: Impact and Explosion Cratering, Roddy, D.J, Pepin, R.O., Merrill, R.B. (eds), Pergamon, New York, pp. 1003-1008. Maxwell, D.E. and Seifert, K. (1974) Modeling of cratering, close-in displacement, and ejecta, Report DNA 3628F Defense Nuclear Agency, Washington, D.C., pp. 110. Mazarico, E., , G.A., Smith, D.E., Zuber, M.T., and Torrence, M.H. (2010) Illumination conditions of the lunar polar regions using LOLA topography. Icarus 211, pp. 1066-1081. McCallum, I.S. (1999) A new view of the Moon in light of data from Clementine and Prospector missions, Earth, Moon, and Planets 85-86, no. 0, pp. 253–269. McCauley, J.F. (1967) Geologic map of the Hevelius region of the Moon. U.S. Geol. Surv. Misc. Inv., Map-491. McCauley, J.F., and Scott, D.H. (1972) The geologic setting of the Luna 16 landing site. Earth and Planetary Science Letters 13, pp. 225-232. McClanahan, T.P., Mitrofanov, I.G., Boynton, W.V., Chin, G., Droege, G., Evans, L.G., Garvin, J., Harshman, K., Litvak, M.L., Malakhov, A., Milikh, G.M., Namkung, M., Nandikotkur, G., Neumann, G., Smith, D., Sagdeev, R., Sanin, A.G., Starr, R.D., Trombka, J.I., and Zuber, M.T. (2011) Insolation effects on lunar hydrogen: Observations from the LRO LEND and LOLA instruments. Wet vs. Dry Moon 2011 Conference, Abstract # 6022.

587

McCord, T.B., Clark, R.M., Hawke, B.R., McFadden, L.A., Owensby, P.D., Pieters, C.M., and Adams, J.B. (1981) Moon: Near-Infrared Spectral Reflectance, A First Good Look. J. Geophys. Res. 86, pp. 10883-10892. McCubbin, F.M., Jolliff, B.L., Nekvasil, H., , P.K., Zeigler, R.A., Steele, A., Elardo, S.M., and Lindsley, D.H. (2011) Fluorine and chlorine abundances in lunar apatite: Implications for heterogeneous distributions of magmatic volatiles in the lunar interior. Geochimica et Cosmochimica Acta In Press. McCubbin, F.M., Steele, A., Hauri, E.H., Nekvasil, H., Tamashita, S., and Hemley, R. (2010) Nominally hydrous magmatism on the Moon. Proceedings of the National Academy of Sciences 107, pp. 11223-11228. McEwen, A.S., Robinson, M.S., Eliason, E.M., Lucey, P.G., Duxbury, T.C. and Spudis, P.D. (1994) Clementine observations of the Aristarchus region of the Moon. Science 266, no. 5192, pp. 1858–1862. McGetchin, T.R., Settle, M., Chouet, B.A. (1974) Cinder cone growth modeled after Northeast crater, Mount Etna, Sicily. J. Geophys. Res. 79, pp. 23, 3257-3272. McGetchin, T.R., Settle, M. and Head, J.W. (1973) Radial thickness variation in crater ejecta: Implications for lunar basin models. Earth and Planetary Science Letters 20, pp. 226–236. McKay, D.S., Heiken, G., Basu, A., Blanford, G., Simon, S., Reedy, R.C., French, B.M., and Papike, J.J. (1991) The Lunar Regolith, The Lunar Source Book: A User's Guide to the Moon. Cambridge University Press, Cambridge. McKay, D.S., Riofrio, L., and Copper, B.L. (2009) Does the lunar regolith contain secrets of the Solar System? Using the Moon as a cosmic witness plate. Solar and Stellar Variability: Impact on Earth and Planets Proceedings IAU Symposium 264. Edited by A. A. H. Kosovichev and J. P. Rozelot. McKay, G.A., Wiesmann, H., Bansal, B.M., and Shih, C.-Y. (1979) Petrology, chemistry, and chronology of KREEP basalts. Proc. Lunar Science Conf. 10th, pp. 181-205. McKeegan, K.D., Kallio, A.P.A., Heber, V.S., Jarzebinski, G., Mao, P.H., Coath, C.D., Kunihiro, T., Wiens, R.C., Nordholt, J.E., Jr., Moses, R.W., Reisenfeld, D.B., Jurewicz, A.J.G., and Burnett, D.S. (2011) The oxygen isotopic composition of the Sun inferred from captured solar wind. Science 332, pp. 1528-1532. McKinnon, W.B. (1978) An investigation into the role of plastic failure in crater modification. Proc. Lunar Sci. Conf. 9th, pp.3965–3973. McNeill, J.D. (1990) Use of electromagnetic methods for groundwater studies. In: Ward, S.H. (Ed.), Geotechnical and Environmental Geophysics 1, Society of Exploration Geophysics, pp. 191-218. Melosh, H.J. (1983) Acoustic fluidization. American Science 71, pp. 158-65. Melosh, H.J. (1979) Acoustic fluidization: a new geologic process? J. Geophys. Res. 84, pp. 7513-7520. Melosh, H.J. (1989) Impact cratering a geological process, Oxford University Press, New York. Melosh, H.J. (1990) Giant impacts and the thermal state of the early Earth. In: Newsom, H.E., and Jones, J.H. (Eds.), Origin of the Earth. Oxford University Press, pp. 69-83. Melosh, H.J. and Ivanov, B. (1999) Impact Crater Collapse, Ann. Rev. Earth. Planet. Sci. 27, pp. 385-415. Melosh, H.J. and McKinnon, W.B. (1978) The mechanics of ringed basin formation, Geophysical Research Letters 5, pp. 985-988. Melosh, H.J. and Vickery A.M. (1991) Melt droplet formation in energetic impact events. Nature 350, pp. 494–497. Merkowitz, S.M., Dabney, P.W., Livas, J.C., McGarry, J.F., Neumann, G.A., and Zagwodzki, T.W. (2007) Laser ranging for gravitational, lunar and planetary science. International Journal of Modern Physics D 16, pp. 2151-2164. Mest, S.C. (2011) The geology of Schrödinger basin: Insights from post-Lunar Orbiter data. Geological Society of America Special Papers 477, pp. 95-115. Meyer, C. (2003) NASA Lunar Petrographic Educational Thin Section Set, NASA, 66 pages. Meyer, C., Jr., McKay, D.S., Anderson, D.H., and Butler, P., Jr. (1975) The source of sublimates on the Apollo 15 green and Apollo 17 orange glass samples. Proc. Lunar Science Conf. 6th, pp. 1673-1699. Meyer, J., Elkins-Tanton, L., and Wisdom, J. (2010) Coupled thermal-orbital evolution of the early Moon. Icarus 208, pp. 1-10. Mileikowsky, C., et al. (2000) Natural transfer of viable microbes in space: 1. From Mars to Earth and Earth to Mars. Icarus 145, pp. 391-427.

588

Millman, P.M. (1961) Report on meteor terminology. Journal of the Royal Astronomical Society of Canada 55, pp. 265–267. MIT (2011) LOLA/LRORS PDS Data Node, Accessed July 20, 2011, http://imbrium.mit.edu/. Mitchell, D.L., Halekas, J.S., Lin, R.P., Frey, S., Hood, L.L., Acua, M.H., and Binder, A. (2008) Global mapping of lunar crustal magnetic fields by lunar prospector. Icarus 194, pp. 401–409. Mitrofanov, I.G., Sanin, A.B., Boynton, W.V., Chin, G., Garvin, J.B., Golovin, D., Evans, L.G., Harshman, K., Kozyrev, A.S., Litvak, M.L., Malakhov, A., Mazarico, E., McClanahan, T., Milikh, G., Mokrousov, M., Nandikotkur, G., Neumann, G.A., Nuzhdin, I., Sagdeev, R., Shevchenko, V., Shvetsov, V., Smith, D.E., Starr, R., Tretyakov, V.I., Trombka, J., Usikov, D., Varenikov, A., Vostrukhin, A., and Zuber, M.T. (2010) Hydrogen mapping of the lunar south pole using the LRO Nuetron Detector Experiment LEND. Science 330, pp. 483-486. Mizutani, H. and Osako, M. (1974) Elastic-wave velocities and thermal diffusivities of Apollo 17 rocks and their geophysical implication. Proc. Lunar Sci. Conf 5th, pp. 2891-2901. Mohit, P.S. and Phillips, R.J. (2006) Viscoelastic evolution of lunar multiring basins, J. Geophys. Res. 111, p. E12001. Moon Facts. (2010) SMART-1. European Space Agency.Retrieved 12 May 2010. "Moon Zoo Blog.” (June 6, 2011) http://blogs.zooniverse.org/moonzoo/2011/06/06/crater-chain-boulevard/ (accessed August 2, 2011). Moore, H.J. (1965) Geologic map of the Aristharcus region of the Moon. U.S. Geol. Surv. Misc. Inv. Ser., Map I-465. Moore, H.J. (1967) Geologic map of the quadrangle of the Moon. U.S. Geological Survey Map I-527. Moore, H.J., Hodges, C.A., and Scott, D.H. (1974) Multiringed basins - illustrated by Orientale and associated features. Proc. Lunar Science Conf. 5th, pp. 71-100. Morgan, J.W. and Wandless, G.A. (1983) Strangways Crater, Northern Territory, Australia: Siderophile Element Enrichment and Lithophile Element Fraction, Journal of Geophysical 88, pp. 819-829. Morgan, J. and Warner, M. (1999) Morphology of the Chicxulub impact: Peak-ring or multi-ring basin? In: Large Meteorite Impacts and Planetary Evolution II, Geological Society of America Special Paper 339 Dressler, B.O. and Sharpton, V.L. (eds), Boulder, Colorado, pp. 281-290. Morgan, J.V., Warner, M., the Chicxulub Working Group, Brittan, J., Buffler, R., Camargo, A., Christeson, G., Denton, P., Hildebrand, A., Hobbs, R., Macintyre, H., Mackenzie, G., Maguire, P., Marin, L., Nakamura, Y., Pilkington, M., Sharpton, V., Snyder, D., Suarez, G., Trejo, A. (1997) The size and morphology of the Chicxulub impact crater. Nature 390, pp. 472-476. Morgan, J.V., Warner, M.R., Collins, G.S., Melosh, H.J. and Christeson, G.L. (2000) Peak-ring formation in large impact craters: Geophysical constraints from Chicxulub. Earth and Planetary Science Letters 183, no. 3, pp. 347–354. Morota, T., Haruyama, J., Ohtake, M., Matsunaga, T., Honda, C., Yokota Y., Kimura, J., Ogawa, Y., Hirata, N., Demura, H., Iwasaki, A., Sugihara, T., Saiki, K., Nakamura, S., Kobayashi, S., Ishihara, Y., Takeda, H., and Hiesinger, S. (2011) Timing and characteristics of the latest mare eruption on the Moon. Earth and Planetary Science Letters 302, pp. 255-266. Morota, T., Haruyama, J., Ohtake, M., Matsunaga, T., Yokota, Y., Honda, C., Torii, M., Ogawa, Y., Abe, M., and LISM Working Group (2008) Age determinations of mare basalts surrounding the crater Lictenberg: preliminary results using SELENE (KAGUYA)/Terrain camera data. Lunar Planet. Sci. XXXIX, Abstract # 1513. Morris, R.V., Warner, J.L., McKay, D.S., and Brown, R.W. (1977) Nearly pure KREEP: Soil sample 12023. Proc. Lunar Science Conf. 8th, pp. 2449-2458. Morrison, D.A. (1998) Did a thick South Pole-Aitken Basin melt sheet differentiate to form cumulates? Lunar Planet. Sci. XXIX, Abstract # 1657. Morrison, R.H., and Oberbeck, V.R. (1978) A composition and thickness model for lunar impact crater and basin deposits. Proc. Lunar Science Conf. 9th, pp. 3,763-3,785. Moss, B.E. (1994) A model for estimating basin source contributions to impact-derived lunar regolith. Ph.D. Thesis, Part II, Washington University, St. Louis, MO. Mueller, S., Taylor, G.J., and Phillips, R.J. (1988) Lunar Composition: A Geophysical and Petrological Synthesis. J. Geophys. Res. 93, pp. 6338-6352.

589

Mullis, C.H. (1971) A study and analysis of the MSFC lunar roving vehicle dust profile test program." Contract NAS8- 26715, University of Alabama. Murray, J.B. (1971) Sinuous rilles. In Fielder, G. (editor), Geology and Physics of the Moon, p. 27-39, Elsevier, New York, N. Y., USA. Murray, J.B. (1980) Oscillating peak model of basin and crater formation. The Moon and the Planets, 22, pp. 269-291. Nakamura, Y. (1977) HFT events: Shallow moonquakes? Physics of the Earth and Planetary Interiors 14, pp. 217-223. Nakamura, Y. (1983) Seismic Velocity Structure of the Lunar Mantle. J. Geophys. Res. 88, pp. 677-686. Nakamura, Y. (2005) Farside deep moonquakes and deep interior of the Moon. J. Geophys. Res. 110, pp. 1-12. Nakamura, Y., Dorman, J., Duennebier, F., Ewing, M., Lammlein, D., and Latham, G. (1974) High-frequency lunar teleseismic events. Proc. Lunar Science Conf. 5th and Geochimica et Cosmochimica Acta 3, pp. 2883-2890. Nakamura, Y., Dorman, J., Duennebier, F., Lammlein, D. and Latham, G. (1975) Shallow lunar structure determined from the passive seismic experiment, Earth, Moon, and Planets 13, no. 1, pp. 57–66. Nakamura, Y., Lammlein, D., Latham, G., Ewing, M., Dorman, J., Press, F., and Toksöz, N. (1973) New Seismic Data on the State of the Deep Lunar Interior. Science 181, pp. 49-51. Nakamura, Y., Latham, G.V., and Dorman, H.J. (1982) Apollo lunar seismic experiment – final summary, J. Geophys. Res. 87 (supplement), pp. A117-A123. Nakamura, Y., Latham, G.V., Dorman, H.J., Ibrahim, A.K., Koyama, J., and Horvath, P. (1979) Shallow moonquakes: Depth, distribution and implications as to the present state of the lunar interior. Proc. Lunar Science Conf. 10th, pp. 2299-2309. Namiki, N., Iwata, T., Matsumoto, K., Hanada, H., Noda, H., Goossens, S., Ogawa, M., Kawano, N., Asari, K., Tsuruta, S., Ishihara, Y., Liu, Q., Kikuchi, F., Ishikawa, T., Sasaki, S., Aoshimia, C., , K., Sugita, S., and Takano, T. (2009) Farside Gravity Field of the Moon from Four-Way Measurements of SELENE (Kaguya). Science 323, pp. 900-905. National Aeronautics and Space Administration Manned Spacecraft Center (1972) Apollo 15 Preliminary Science Report. NASA SP-289, Washington D.C. NASA (2005) NASA’s Exploration Systems Architecture Study. NASA-TM-2005-214062, p. 752. Natonal Aeronautics and Space Administration, (2011a) Lunar Mapping and Modeling Project. July 20, 2011, http://pub.lmmp.nasa.gov/LMMPUI/LMMP_CLIENT/LMMP.html. Natonal Aeronautics and Space Administration, (2011b) PDS Geoscience Node - Lunar Prospector Reduced Spectrometer Data - Special Products July 20, 2011, http://pds- geosciences.wustl.edu/missions/lunarp/reduced_special.html. Natonal Aeronautics and Space Administration (2011c) PDS: The Planetary Data System. July 21, 2011, http://pds.nasa.gov/. National Research Council (2007) The scientific context for exploration of the Moon, Washington DC, pp. 107. Neal, C.R. (2005) The importance of establishing a global lunar seismic network, 7th Space Resources Roundtable, Abstract # 2065. Neal, C.R., Hood, L., Huang, S., and Nakamura, Y. (2006) Scientific Rationale for Development of a Long-Lived Geophysical Network on the Moon. Submitted to the NRC Committee on the Scientific Context for the Exploration of the Moon. Neal, C.R., Lawrence, D.J. and Banerdt, W.B. (2003) A future Moon mission: the lunar seismic network, Lunar Planet. Sci. XXXIV, Abstract # 2052. Neal, C.R. and Taylor, L.A. (1992) Petrogenesis of the mare basalts: a record of lunar volcanism, Geochimica et Cosmochimica Acta, 56, pp. 2177-2211. Neukum, G. (1983) Meteoritenbombardement und Datierung planetarer Oberflächen, Habilitationsschrift. Univ. München, Munich, Germany. Neukum, G. and Horn, P. (1975) Effects of lava flows on lunar crater populations. The Moon, 15, pp. 205-222.

590

Neukum, G. and Ivanov, B.A. (1994) Crater size distribution and impact probabilities on Earth from lunar terrestrial- planet and asteroid cratering data. In: Hazards Due to Comets and Asteroids, T. Gehrels (ed) University of Arizona Press, pp. 359-416. Neukum, G., Ivanov, B.A., and Hartmann, W.K. (2001) Cratering records in the inner solar system in relation to the lunar reference system. In Chronology and evolution of Mars, Kallenbach R., Geiss J., Hartmann W.K., (eds). Kluwer, pp. 55-86. Neukum, G. and Koenig, B. (1976) Dating of individual lunar craters. Proc. Lunar Science Conf. 7th, pp. 2867–2881. Neumann, G.A, Zuber, M.T., Smith, D.E. and Lemoine, F.G. (1996) The lunar crust: Global structure and signature of major basins. J. Geophys. Res. 101, no. E7, pp. 16841–16843. Newkirk, G. (1979) Mechanisms of Solar Variability on Time Scales of 10^5 to 10^9 Years. Proceedings from The Ancient Sun: Fossil Record in the Earth, Moon, and Meteorites, 68-69. Nickerson, R.D., Bart, G.D., Lawder, M.T. and Melosh, H.J. (2011) Global lunar regolith depths revealed. Lunar Planet Sci. XLII, Abstract # 2607. Noble, S.K., et al. (2001) The optical properties of the finest fraction of lunar soil: Implications for space weathering. Meteoritics and Planetary Science 36, pp. 31-42. Noda, H., Araki, H., Goossens, S., Ishihara, Y., Matsumoto, K., Tazawa, S., Kawano, N. and Sasaki, S. (2008) Illumination conditions at the lunar polar regions by KAGUYA(SELENE) laser altimeter. Geophysical Research Letters 35, pp. 24,203–+, doi:10.1029/2008GL035692. Norman, M.D. and Ryder, G. (1979) A summary of the petrology and geochemistry of pristine highlands rocks. Proc. Lunar Science Conf. 10th, pp. 531-559. Nozette, S., , C. L., Spudis, P., Bonner, R., Ort, W., Malaret, E., Robinson, M., and Shoemaker, E. M. (1996) The Clementine bistatic radar experiment. Science 274, pp. 1495-1498. Nozette, S., Rustan, P., Pleasance, L.P., Horan, D.M., Regeon, P., Shoemaker, E.M., Spudis, P.D., Acton, C.H., Baker, D.N., Blamont, J.E., Buratti, B.J., Corson, M.P., Davies, M.E., Duxbury, T.C., Eliason, E.M., Jakosky, B.M., Kordas, J.F., Lewis, I.T., Lichtenberg, C.L., Lucey, P.G., Malaret, E., Massie, M.A., Resnick, J.H., Rollins, C.J., Park, H.S., McEwen, A.S., Priest, R.E., Pieters, C.M., Reisse, R.A., Robinson, M.S., Simpson, R.A., Smith, D.E., Sorenson, T.C., Vorder Breugge, R.W., and Zuber, M.T. (1994) The Clementine Mission to the Moon: Scientific Overview. Science 266, pp. 1835-1839. Nyquist, L.E., Bogard, D.D., and Shih, C.Y. (2001) The Century of Space Science. Chapter Radiometric chronology of the Moon and Mars, pp. 1325–1376, Kluwer Academic Publishers. Nyquist, L.E., and Shih, C.-Y. (1992) The isotope record of lunar volcanism. Geochimica et Cosmochimica Acta 56, pp. 2213-2234. O’Connell-, C.D. and Spray, J.G. (2010) Geochemistry of the Manicouagan impact melt sheet. Lunar Planet. Sci. XLI, Abstract # 1755. O’Keefe, J.D. and Ahrens, T.J. (1977) Impact-induced energy partitioning, melting, and vaporization on terrestrial planets. Proc. Lunar Science Conf. 8th, pp. 3357-3374. O’Keefe, J.D., Ahrens, T.J. (1998) Complex craters: Relationship of stratigraphy and rings to the impact conditions. J. Geophys. Res. O’Sullivan, K.M., Kohout, T., Thaisen, K.G., and Kring, D.A. (2011) Calibrating several key lunar stratigraphic units representing 4 billion years of lunar history within Schrödinger Basin. Geological Society of America Special Papers 477, pp. 117-128. Oberbeck, V.R. (1975) The Role of Ballistic Erosion and Sedimentation in Lunar Stratigraphy. Reviews of Geophysics and Space Physics 13, pp. 337-362. Oberbeck, V.R., and Morrison, R.H. (1973) On the formation of the lunar herringbone pattern. Proc. Lunar Sci. Conf. 4th, pp. 107-123. Oberbeck, V.R. and Quaide, W. (1968) Genetic Implications of Lunar regolith thickness variations, Icarus 9, pp. 446- 465. Oberbeck, V.R., Quaide, W.L., Gault, D.E., Horz, F., and Morrison, R.H. (1975) On the origin of the lunar smooth plains. Earth Moon Planets 12, pp. 19-54.

591

Oberst, J. (1987) Unusually High Stress Drops Associated With Shallow Moonquakes. J. Geophys. Res. 92, pp. 1397- 1405. Oberst, J. and Nakamura, Y. (1991) A search for clustering among the meteoroid impacts detected by the Apollo Lunar Seismic Network. Icarus 91, pp. 315-325. Ohtake, M., Matsunaga, T., Haruyama, J., and Yokota, Y. (2009) The global distribution of pure anorthosite on the Moon. Nature 461, no. 7261, pp. 36–241. Ohtake, M., Matsunaga, T., Haruyama, J., Yokota, Y., Morota, T., Honda, C., Ogawa, Y., Torii, M., Miyamoto, H., Arai, T., Hirata, N., Iwasaki, A., Nakamura, R., Hiroi, T., Sugihara, T., Takeda, H., Otake, H., Pieters, C.M., Saiki, K., Kitazato, K., Abe, M., Asada, N., Demura, H., Yamaguchi, Y., Sasaki, S., Kodama, S., Terazono, J., Shirao, M., Yamaji, A., Minami, S., Akiyama, H. and Josset, J-L. (2009) The global distribution of pure anorthosite on the Moon. Nature 461, pp. 236-240. Ohtake, M., Takeda, H., Matsunaga, T., Yokota, Y., Haruyama, J., Morota, T., Yamamoto, S., Ogawa, Y., Hiroi, T., Karouji, Y., Saiki, K. and Lucey, P.G. (2012) Asymmetric crustal growth on the Moon indicated by primitive farside highlands material. Nature Geoscience 5, pp. 384-388. Ong, L., Asphaug, E. I., Korycansky, D., and Coker, R. F., (2010) Volatile retention from cometary impacts on the Moon. Icarus 207, pp. 578-589. Ong, L. and Melosh, H. J. (2010) Reorientation of the Moon due to the South Pole-Aitken Basin ejecta. Lunar and Planet. Sci. Conf. XLI, Abstract # 1533. Østgaard, N., Mende, S. B., Frey, H. U., Gladstone, G. R., and Lauche, H. (2003) Neutral hydrogen density profiles derived from geocoronal imaging. J. Geophys. Res. 108, p.12. Ostrach, L. and Robinson, M. (2010) Effects of seismic shaking on grain size and density sorting with implications for constraining lunar regolith bulk composition, Lunar Planet. Sci. XLI, Abstract # 2521. Ozima, M., Seki, K., Terada, N., Miura, Y.N., Podosek, F.A. and Shinagawa, M. (2005) Terrestrial nitrogen and noble gases in lunar soils. Nature 436, pp. 655-659. Paige, D.A., Foote, M.C., Greenhagen, B.T., Schofield, J.T., Calcutt, S., Vasavada, A.R., Preston, D.J., Taylor, F.W., Allen, C.C., Snook, K.J., Jakosky, B.M., Murray, B.C., Soderblom, L.A., Jau, B., Loring, S., Bulharowski, J., Bowles, N.E., Thomas, L.R., Sullivan, M.T., Avis, C., De Jong, E.M., Hartford, W., and McCleese, D.J. (2010) The Lunar Reconnaissance Orbiter Diviner Lunar Radiometer Experiment. Space Science Reviews 150, pp. 125-160. Paige, D.A., Siegler, M.A., and Williams, J.P. (2011) Diviner Lunar Radiometer Observations of the North and South Polar Regions of the Moon. Wet vs. Dry Moon 2011 Conference. Paige, D.A., Siegler, M.A., Zhang, J.A., Hayne, P.O., Foote, E.J., Bennett, K.A., Vasavada, A.R., Greenhagen, B.T., Schofield, J.T., McCleese, D.J., Foote, M.C., DeJong, E., Bills, B.G., Hartford, W., Murray, B.C., Allen, C.C., Snook, K., Soderblom, L.A., Calcutt, S., Taylor, F.W., Bowles, N.E., Bandfield, J.L., Elphic, R.C., Ghent, R., Glotch, T.D., Wyatt, M.B., and Lucey, P.G. (2010) Diviner lunar radiometer observations of cold trarps in the Moon's south polar region. Science 330, pp. 479-482. Papike, J.J. (Ed.) (1998) Planetary Materials. Reviews in Mineralogyc 36, The Mineralogical Society of America, Washington, D.C. Papike, J.J., Ryder, G., and Shearer, C.K. (1998) Lunar samples, in Planetary Materials, edited by J. J. Papike, Mineralogical Society of America, Washington, D.C. Parker, R.A. (1973) Summary of Scientific Results. In: Apollo 17 Preliminary Science Report. NASA SP-330, Washington D.C. Parmentier, E.M., Zhong, S., and Zuber, M.T. (2002) Gravitational differentiation due to initial chemical stratification: origin of lunar asymmetry by the creep of dense KREEP? Earth and Planetary Science Letters 201, no. 3-4, pp. 473– 480. Pearce, S.J. and Melosh, H.J. (1986) Terrace width variation in complex lunar craters. J. Geophys. Res. Letters 13, pp. 1419-22. Peterson, C.A., Hawke, B.R., Lucey, P.G., Taylor, G.J., Blewett, D.T. and Spudis, P.D. (2000) Anorthosite on the Lunar Farside and Its Relationship to South Pole-Aitken Basin. Lunar Planet. Sci. XXXI, Abstract # 1680. Petro, N.E., Gaddis, L.R., and Staid, M.I. (2001) Analysis of the Oppenheimer pyroclastic deposits using Clementine UVVIS data. Proc. Lunar Planet. Sci. Conf. 32nd, p. 1953.

592

Petro, N.E. and Pieters, C.M. (2002) The size and location of the transient crater of the South Pole-Aitken Basin, Lunar. Planet. Sci. XXXIII, Abstract # 1848. Petro, N.E. and Pieters, C.M. (2003) How much melt breccia can be found in the South Pole-Aitken basin? Lunar Planet. Sci. XXXIV, Abstract # 1427. Petro, N.E. and Pieters, C.M. (2004) Surviving the heavy bombardment: Ancient material at the surface of South Pole- Aitken basin. J. Geophys. Res. 109, no. E06004, pp. 1–13. Petro, N.E. and Pieters, C.M. (2008) The lunar-wide effects of basin ejecta distribution on the early megaregolith, Meteoritics and Planetary Science 43, pp. 1517–1529. Phinney, R.A., O'Keefe, J.A., Adams, J.B., Gault, D.E., Kuiper, G.P. Masursky, H., Collins, R.J., Shoemaker E.M. (1969) Implications of the Surveyor 7 Results. J. Geophys. Res. 74, pp. 6053-6080. Phinney, W.C. (1991) Lunar anorthosites, their equilibrium melts and the bulk moon. Proc. Lunar Planet. Science Conf. 21st, pp. 29-49. Pieters, C. (1991) - strengthening the case for lunar plutons, Geophysical Research Letters 18, no. 11, pp. 2129–2132. Pieters, C.M., Adams, J.B., Smith, M.O., Mouginis-Mark, P.J. and Zisk, S.H. (1985) The nature of crater rays - The Copernicus example. J. Geophys. Res. 90, pp. 12,393-12,413. Pieters, C.M., et al. (2000) Space weathering on airless bodies: Resolving a mystery with lunar samples. Meteoritics and Planetary Science 25, pp. 1101-1107. Pieters, C., Boardman, J., and Buratti, B. (2010) Identification of a new spinel-rich lunar rock type by the Moon Mineralogy Mapper (M3). Lunar Planet. Sci. XLI, Abstract # 1854. Pieters, C.M., Boardman, J., Buratti, B., Chatterjee, A., Clark, R., Glavich, T., Green, R., Head, J., III, Isaacson, P., Malaret, E., McCord, T., Mustard, J., Petro, N., Runyon, C., Staid, M., Sunshine, J., Taylor, L., Tompkins, S., Varanasi, P., and White, M. (2009) The Moon Mineralogy Mapper (M3) on Chandrayaan-1. Current Science 96, pp. 500-505. Pieters, C.M., , E.M., Rode, O. and Basu, A. (1993) Optical effects of space weathering: The role of the finest fraction. J. Geophys. Res. 98, pp. 20817-20824. Pieters, J.W., Gaddis, L., Jolliff, B., and Duke, M. (2001) Rock types of South Pole-Aitken basin and extent of basaltic volcanism. J. Geophys. Res. 106, no. E11, pp. 28001–28022. Pieters, C.M., Goswami, J.N., Clark, R.N., Annadurai, M., Boardman, J., Buratti, B., Combe, J.-P., Dyar, M.D., Green, R., Head, J.W., Hibbitts, C., Hicks, M., Isaacson, P., Klima, R., Kramer, G., Kumar, S., Livo, E., Lundeen, S., Malaret, E., McCord, T., Mustard, J., Nettles, N., Petro, N., Runyon, C., Staid, M., Sunshine, J., Taylor, L.A., Tompkins, S., and Varanasi, P. (2009) Character and Spatial Distribution of OH/H2O on the Surface of the moon Seen by M3 on Chandrayaan-1. Science 326, pp. 586-572. Pieters, C.M., and Head, J.W., III (2001) Extent of basaltic volcanism in South Pole-Aitken basin. Lunar Planet. Sci. XXXII, Abstract # 1821. Pieters, C.M., Head, J.W., III, Gaddis, L., Jolliff, B.L., and Duke, M. (2001) Rock types of South Pole-Aitken basin and extent of basaltic volcanism. J. Geophys. Res. 106, pp. 28001–28022. Pieters, C., Head, J., Sunshine, J., and Fischer, E. (1993) Crustal diversity of the Moon: Compositional analyses of Galileo solid state imaging data. J. Geophys. Res. 98, no. E9, pp. 17127–17148. Pieters, C.M., Staid, M.I., Fischer, E., Tompkins, S., and He, G. (1994) A sharper view of impact craters from Clementine data. Science 266, no. 5192, pp. 1844–1848. Pieters, C.M., Stankevich, D.G., Shkuratov, Y.G. and Taylor, L.A. (2002) Statistical analysis of the links among lunar mare soil mineralogy, chemistry, and reflectance spectra. Icarus 155, no. 2, pp. 285-298. Pieters, C.M, Tompkins, S., Head, J.W. and Hess, P.C. (1997) Mineralogy of the mafic anomaly in the South Pole- Aitken Basin: Implications for excavation of the lunar mantle. Geophysical Research Letters 24, pp. 1903-1906. , W.H. (1904) The Moon; A summary of the existing knowledge of our satellite, 103 pp., Doubleday, Page & company, New York, New York, USA. Pike, R.A. (1974) Depth/ diameter relations of fresh lunar craters: Revision from spacecraft data. Geophys. Res. Lett. 1, pp. 291–294.

593

Pike, R.J. (1974) Ejecta from large craters on the Moon: Comments on the geometric model of McGetchin et al. Earth and Planetary Science Letters 23, pp. 265–274. Pike, R.J. (1977a) Apparent depth/apparent diameter relation for lunar craters. Proc. Lunar Science Conf. 8th, pp. 3427–3436. Pike, R.J. (1977b) Size-dependence in the shape of fresh impact craters on the moon. Impact and Explosion Cratering: Planetary and Terrestrial Implications, pp. 489-509. Pike R.J. (1980) Geometric interpretation of lunar craters, US Geological Survey Professional Paper, 1046-C. Pike, R.J. (1988) Geomorphology of impact craters on Mercury. In Mercury, ed. F. Vilas, C.R. Chapman, M. Shapley- Matthews, pp. 165-273. Tucson: Univ. Ariz. Press. Pike, R.J. and Spudis, P.D. (1987) Basin-ring spacing on the Moon, Mercury, and Mars. Earth, Moon, and Planets 39, pp. 129-194. Pilcher, C., and Veverka, J. (1992) Lunar impact basins and crustal heterogeneity: New western limb and farside data from Galileo. Science 255, pp. 570-576. Pohl, J., Stöffler, D., Gall, H., and Ernston, K. (1977) The Ries impact crater. In: Roddy, D.J., Pepin, R.O., Merrill, R.B. (Eds.), Impact and Explosion Cratering. Pergamon Press, New York; pp. 343-404. Pohn, H.A. (1972) Geologic map of Tycho quadrangle of the Moon, U.S. Geological Survey Map I-713. Pohn, H.A. and Offield, T.W. (1970) Lunar crater morphology and relative-age determination of lunar geologic units – part 1 classification. Geological Survey Research, pp. C153-162. Potter, R.W.K, Collins, G.S., Kring, D.A., Kiefer, W.S., and McGovern, P.J. (2010) Constraining the size of the South Pole-Aitken Basin impact, Lunar Planet. Sci. XLI, Abstract # 1700. Pritchard, M.E., and Stevenson, D.J. (2000) Thermal implications of a lunar origin by giant impact. In: Canup, R.M., and Righter, K. (Eds.), Origin of the Earth and Moon. University of Arizona Press, pp. 179-196. Purucker, M.E. and Nicholas, J. B. (2010) Global spherical harmonic models of the internal magnetic field of the Moon based on sequential and coestimation approaches. J. Geophys. Res. 115, pp. 1-14. Puchtel, I.S., Walker, R.J., James, O.B., and Kring, D.A. (2008) Osmium isotope and highly siderophile element systematics of lunar impact melt breccias: Implications for the late accretion history of the Moon and Earth." Geochimica et Cosmochimica Acta 72, pp. 3022-3042. Qin, C., Muirhead, A.C., and Zhong, S. (2012) Correlation of deep moonquakes and mare basalts: Implications for lunar mantle structure and evolution. Icarus 220, pp. 100-105. Rapp, J.F., and Draper, D.S. (2012) Experimental fractional crystallization of the lunar magma ocean. Lunar Planet. Sci. XLIII, Abstract # 2048. Reid, A.M., Duncan, A.R., and Richardson, S.H. (1977) In search of LKFM, Proc. Lunar Science Conf. 8th, pp. 2321– 2338. Richmond, N.C. and Hood, L.L. (2012) Further constraints on the history of the lunar dynamo from Lunar Prospector magnetometer data. Lunar Planet. Sci. Conf. XLIII, Abstract # 1898. Riebeek, Holli (2011) Catalog of Earth satellite orbits. 2009. http://earthobservatory.nasa.gov/Features/OrbitsCatalog/printall.php (accessed 2011). Righter, K. (2002) Does the Moon Have a Metallic Core? Icarus 158, pp. 1-13. Ringwood, A.E. (1979) Origin of the Earth and Moon. Springer-Verlag, New York. Ringwood, A.E. and Kesson, S.E. (1976) A dynamic model for mare basalt petrogenesis. Proc. Lunar Science Conf. 7th, pp. 1697-1722. Ringwood, A.E., and Kesson, S.E. (1977) Basaltic magmatism and the bulk composition of the moon. II - Siderophile and volatile elements in moon, earth and : Implications for lunar origin, Moon, 16, pp. 425–464, doi: 10.1007/BF00577902. Riris, H., Cavanaugh, J., Sun, X., Liiva, P., Rodriguez, M., and Neuman, G. (2010) The Lunar Orbiter Laser Altimeter (LOLA) on NASA’s Lunar Reconnaissance Orbiter (LRO) Mission. International Conference on Space Optics.

594

Robinson, M.S., Ashley, J.W., Boyd, A.K., Wagner, R.V., Speyerer, E.J., Hawke, R.R., Hiesinger, H., and van der Boegert, C.H. (2012) Confirmation of sublunarean voids and thin layering in mare deposits. Planetary and Space Science 69, pp. 18-27. Robinson, M.S., Brylow, S.M., Tschimmel, M., Humm, D., Lawrence, S.J., Thomas, P.C., Denevi, B.W., Bowman- Cisneros, E., Zerr, J., Ravine, M.A., Caplinger, M.A., Ghaemi, F.T., Schaffner, J.A., Maling, M.C., Mahanti, P., , A., Anderson, J., Tran, T.N., Eliason, E.M., McEwen, A.S., Turtle, E., Jolliff, B.L., and Hiesinger, H. (2010) Lunar Reconnaissance Orbiter Camera (LROC) Instrument Overview. Space Science Reviews 150, pp. 81-124. Rosanova, C., Gaddis, L., Hare, T.M., Coombs, C., Hawke, B.R., and Robinson, M.S. (1998) Characterization of “new” pyroclastic deposits on the Moon using Clementine data. Lunar Planet. Sci. XXIX, Abstract # 1710. Rosenburg, M.A. , Aharonson, O., Head, J.W., Kreslavsky, M.A., Mazarico, E., Neumann, G.A., Smith, D.E., Torrence, M.H. and Zuber, M.T. (2011) Global surface slopes and roughness of the Moon from the Lunar Orbiter Laser Altimeter. J. Geophys. Res. 116, no. E02001, pp. 1-11. Runcorn, S.K. (1977) Early melting of the Moon. Proc. Lunar Science Conf. 8th, pp. 463-469. Runcorn, S.K. (1980) Lunar polar wandering. Proc. Lunar Science Conf. 11th, pp. 1867-1877. Runcorn, S.K. (1994) The early magnetic field and primeval satellite system of the Moon: clues to planetary formation. Philosophical Transactions of the Royal Society 349, pp. 181-196. Runcorn, S.K. (1996) The formation of the lunar core. Geochimica et Cosmochimica Acta 60, pp. 1205–1208. Russell, C.T., Coleman, P.J., Jr., and Goldstein, B.E. (1981) Measurements of the lunar induced magnetic moment in the geomagnetic tail: Evidence for a lunar core? Proc. Lunar Science Conf. 12th, pp. 831-836. Ryder, G. (1991) Lunar ferroan anorthosites and mare basalt source regions: The mixed connection. Geophysical Research Letters 18, pp. 2065-2068. Ryder, G., Koeberl, C. and Mojzsis, S.J. (2000) Heavy bombardment on the Earth at ~3.85 Ga: The search for petrographic and geochemical evidence, in Origin of the Earth and Moon, edited by R.M. Canup and K. Righter, pp. 475-492, Univ. of Ariz. Press, Tucson, AZ. Ryder, G., Norman, M.D., and Taylor, G.J. (1997) The complex stratigraphy of the highland crust in the Serenitatis region of the Moon inferred from mineral fragment chemistry. Geochimica et Cosmochimica Acta 61, pp. 1083-1105. Ryder, G. and Wood, J.A. (1977) Serenitatis and Imbrium impact melts: Implications for large-scale layering in the lunar crust. Proc. Lunar Science Conf. 8th, pp. 655-668. Saal, A.E., Hauri, E.H., Lo Cascio, M., Van Orman, J.A., Rutherford, M.C., and Cooper, R.F. (2008) Volatile content of lunar volcanic glasses and the presence of water in the Moon’s interior. Nature 454, pp. 192-195. Sackmann, I.-J., and Boothroyd, A.I. (2003) Our Sun V: A bright young Sun consistent with helioseismology and warm temperatures on ancient Earth and Mars. Astrophysical J. 583, no. 2, p. 1024. Sakamaki, T., Ohtani, E., Urakawa, S., Suzuki, A., Katayama, Y., and Zhao, D. (2010) Density of high-Ti magma at high pressure and origin of heterogeneities in the lunar mantle. Earth and Planetary Science Letters 299, pp. 285-289. Sanin, A.B., Boynton, W., Evans, L., Harshman, K., Kozyrev, A., Litvak, M.L., Malakhov, A., McClanahan, T., Milikh, G., Mitrofanov, I.G., Mokrousov, M., Sagdeev, R., Shevchenko, V., Schvetsov, V.N., Starr, R., Trombka, J., and Vostrukhin, A. (2009) Lunar Exploration Neutron Detector (LEND) for NASA Lunar Reconnaissance Orbiter: Searching for the Water Ice. Lunar Planet. Sci. XL, Abstract # 1249. Schaber, G. (1973) Lava flows in Mare Imbrium: Geologic evaluation from Apollo orbital photography. Proc. Lunar Science Conf. 4th, pp. 1, 73-92. Schaber, G.G (1969) Geologic map of the Sinus Iridum quadrangle of the Moon, Map I-602 (LAC-24), U.S. Geol. Surv., Reston, VA. Scherer, K., et al. (2007) Interstellar-terrestrial relations: variable cosmic environments, the dynamic heliosphere, and their imprints on terrestrial archives and climate. Space Sci. Rev. 127, pp. 327-465. Schonfeld, E. (1974) K and U systematics and average concentrations on the Moon. Proc. Lunar Science Conf. 5th, pp. 1135–1145. Schorghofer, N. and Taylor, G. J. (2007) Subsurface migration of H2O at lunar cold traps. J. Geophys. Res. 112, p. 11. Schubert, G., Lingenfelter, R.E., and Peale, S.J. (1970) The Morphology, Distribution, and Origin of Lunar Sinuous Rilles. Reviews of Geophysics and Space Physics 8, pp. 199-224.

595

Schultz, P.H. (1976) Moon Morphology, University of Texas Press. Schultz, P.H. (1976) Floor-fractured lunar craters. Earth, Moon, and Planets 15, pp. 241-273. Schultz, P.H. (1997) Forming the South-Pole Aitken basin: the extreme games. Lunar Planet. Sci. XXVIII, Abstract # 1787. Schultz, P.H. and Crawford, D.A. (2008) Impactor Survivors as Additional Sources for the Late Heavy Bombardment. Workshop on the Early Solar System Impact Bombardment, LPI Contribution No. 1439, pp. 55-56. Schultz, P.H., Hermalyn, B., Colaprete, A., Ennico, K., Shirley, M., and Marshall, W.S. (2010) The LCROSS Cratering Experiment. Science, pp. 468-472. Schultz, P.H., and W. Mendell (1978) Orbital infrared observations of lunar craters ans possible implications for impact ejecta emplacement. Proc. Lunar Science Conf. 9th, pp. 2,857-2,883. Schultz, P.H. and Spudis, P.D. (1979) Evidence for ancient mare volcanism. Proc. Lunar Science Conf. 10th, pp. 2899– 2918. Schultz, P.H. and Spudis, P.D. (1983) The beginning and end of lunar mare volcanism. Nature 302, pp. 233-236. Schultz, P.H., Staid, M.I., and Pieters, C.M. (2006) Lunar activity from recent gas release. Nature 444, pp. 184-186. Schuraytz, B.C., and Sharpton, V.L. (1993) Chicxulub - k/t melt complexities. Nature 362, p. 503. Scott, D.H. and Eggleton, R.E. (1973) Geologic map of the Rümker quadrangle of the Moon. U.S. Geol. Surv. Misc. Inv. Ser., Map I-805. Scott, D.H., McCauley, J.F. and West, M.N. (1977) Geologic map of the west side of the Moon. Miscellaneous Investigations Series Map I-1034, U.S. Geol. Surv., Reston, VA. Scott, R.G., Spray, J.G. (2000) The South Range Breccia Belt of the Sudbury impact structure: a possible terrace collapse feature. Meteorite. Planet. Sci. 35, pp. 505–520. Seidelmann, P.K., Archinal, B.A., A’heam, M.F., Conrad, A., Consolmagno, G.J., Hestroffer, D., Hilton, J.L., Krasinsky, G.A., Neumann, G., Oberst, J., Stooke, P., Tedesco, E.F., Tholen, D.J., Thomas, P.C. and Williams, I.P. (2007) Report of the IAU/IAG Working Group on cartographic coordinates and rotational elements: 2006. Celestial Mech Dyn Astr Special Report 98, pp. 155-180. Sellers, P.C. (1992) Seismic evidence for a low-velocity lunar core. J. Geophys. Res. 97, pp. 11663-11672. Settle, M., Head, J.W. and McGetchin, T.R. (1974) Ejecta from large craters on the Moon: Discussion, Earth and Planetary Science Letters 23, pp. 271–274. Sharp, Z.D., Shearer, C.K., McKeegan, K.D., Barnes, J.D., and Wang, Y.Q. (2010) The Chlorine Isotope Composition of the Moon and Implications for an Anhydrous Mantle. Science 329, pp. 1050-1053. Shaviv, N.J. (2006) Long-term variations in the galactic environment of the Sun. In Solar Journey: the Significance of our Galactic Environment for the Heliosphere and Earth, edited by P. C. Frisch, 99-131. Dordrecht: Springer. Shaviv, N.J. (2003) The spiral structure of the Milky Qay, cosmic rays, and ice age epochs on Earth. New Astron. 8, pp. 39-77. Shaw, H.R. and Swanson, D.A. (1970) Eruption and flow rates of flood basalts, in Proceedings, 2nd Columbia River Basalts Symposium, edited by E. H. Gilmore and D. Stradling, Eastern Washington State College Press, Cheney. Shea, E.K., Weiss, B.P., Cassata, W.S., Shuster, D.L., Tikoo, S.M., Gattacceca, J., Grove, T.L., and Fuller, M.D. (2012) A Long-Lived Lunar Core Dynamo. Science 335, pp. 453-456. Shearer, C.K., Hess, P.C., Wieczorek, M.A., Pritchard, M.E., Parmentier, E.M., Borg, L.E., Longhi, J., Elkins-Tanton, L.T., Neal, C.R., Antonenko, I., Canup, R.M., Halliday, A.N., Grove, T.L., Hager, B.H., Lee, D-C., and Wiechert, U. (2006) Thermal and Magmatic Evolution of the Moon. In: Jolliff, B.L., Wieczorek, M.A., Shearer, C.K., and Neal, C.R. (Eds.), New Views of the Moon. Reviews in Mineralogy and Geochemistry 60, pp. 365-518. Shearer, C.K. and Papike, J.J. (1993) Basaltic magmatism on the moon: A perspective from volcanic picritic glasses. Lunar Planet. Sci. XXIV, Abstract # 1285. Shearer, C.K. and Papike, J. (1993) Exlporing volcanism on the Moon: A perspective from volcanic picritic glass beads. Geochim. Cosmochim. Acta 57, pp. 4785-4712. Shearer, C.K. and Papike, J.J. (1999) Magmatic evolution of the Moon. American Mineralogist 84, pp. 1469-1494.

596

Shearer, C.K. and Papike, J.J. (2005) Early crustal building processes on the moon: Models for the petrogenesis of the magnesian suite. Geochimica et Cosmochimica Acta 69, pp. 3445-3461. Shevchenko, V.V., Chikmachev, V.I., and Pugacheva, S.G. (2007) Structure of the South Pole-Aitken Lunar Basin. Solar System Research 41, pp. 447-462. Shkuratov, Y.G. and , N.V. (2001) Regolith layer thickness mapping of the Moon by radar and optical data. Icarus 149, pp. 329-338. Shoemaker, E.M. (1960) Ballistics of the Copernician . Proceedings of Lunar and Planetary Exploration Colloquium 2, pp. 7-21. Shoemaker, E.M. (1962) Interpretation of lunar craters, In. Physics and Astronomy of the Moon, Kopal, Z. (ed), New York/London Academic, pp. 282-359. Shoemaker, E.M., Bailey, N.G., Batson, R.M., Dahlem, D.H., Foss, T.H., Grolier, M.J., Goddard, E.N., Hait, M.H., Holt, H.E., Larson, K.B., Rennilson, J.J., Schaber, G.G., Schleicher, D.L., Schmitt, H.H., Sutton, R.L., Swann, G.A., , A.C., and West, M.N. (1969) Geologic setting of the lunar samples returned by the Apollo 11 mission. In: Apollo 11 Preliminary Science Report. NASA SP-214, Washington D.C. Shoemaker, E.M., Batson, R.M., Holt, H.E., Morris, E.C., Rennilson, J.J., and Whitaker, E.A. (1968) Television observations from Surveyor VII, In: Surveyor VII Mission Report Part II. Science Results, NASA Technical Report 32- 1264, pp. 9-76. Shoemaker, E.M., Robinson, M.S., Eliason, E.M., Siegler, M.A., Bills, B.G., and Paige, D.A. (1994) The south pole region of the Moon as seen by Clementine. Science 266, pp. 1851-1854. Short, N.M. and Forman, M.L. (1972) Thickness of impact crater ejecta on the lunar surface. Modern Geology 3, no. 2, pp. 69–91. Siegler, M.A., Bills, B.G., and Paige, D.A. (2011) Lunar polar ice and the obliquity history of the Moon. Wet vs. Dry Moon 2011 Conference, Abstract # 6045. Siegler, M.A., Bills, B.G., and Paige, D.A. (2011) Effects of orbital evolution on lunar ice stability. J. Geophys. Res. 116, p. E03010. Siegler, M.A., Paige, D.A., Keihm, S.J., Vasavada, A.R., Ghent, R.R., Bandfield, J.L., and Snook, K.J. (2010) Lunar Heat Flow Experiments and the LRO Diviner Radiometer. Lunar and Planetary Science Converence XLI, Abstract # 2650. Simmons, G., Todd, T., and Wang, H. (1973) The 25-km Discontinuity: Implications for Lunar History. Science 182, pp. 158-161. Simonds, C.H., Warner J.L., Phinney W.C., and McGee P.E. (1976) Thermal model for impact breccia lithification: Manicouagan and the Moon. Proc. Lunar Science Conf. 7th, pp. 2509–2528. Simonds, C.H., Floran R.J., McGee P.E., Phinney W.C., and Warner J.L. (1978a) Petrogenesis of melt rocks, Manicouagan impact structure, Quebec. J. Geophys. Res., 83, pp. 2773–2788. Simonds, C.H., Phinney W.C., McGee P.E., and Cochran A. (1978b) West Clearwater, Quebec, impact structure, Part I: Field geology, structure and bulk chemistry. Proc. Lunar Science Conf. 9th, pp. 2633–2658. Simpson, F., and Bahr, K. (2005) Practical Magnetotellurics. Cambridge University Press, Cambridge.

Singletary, S. and Grove, T. (2008) Origin of lunar high-titanium ultramafic glasses: A hybridized source? Earth and Planetary Science Letters 268, pp. 182-189. Simpson, R.A. and Tyler, G.L. (1999) Reanalysis of Clementine bistatic radar data from the lunar south pole. J. Geophys. Res. 104, pp. 3845-3862. Smith, D.E., Zuber, M.T., Neumann, G.A., Lemoine, F.G., Mazarico, E., Torrence, M.H., McGarry, J.F., Rowlands, D.D., Head, J.W., III, Duxbury, T.H., Aharonson, O., Lucey, P.G., Robinson, M.W., Barnouin, O.S., Cavanaugh, J.F., Sun, X., Liiva, P., Mao, D.-D., Smith, J.C., and Bartels, A.E. (2010) Initial observations from the Lunar Orbiter Laser Altimeter (LOLA). Geophysical Research Letters 37, pp. 1-6. Smith, E.I. (1969) Rümker Hills: a volcanic plateau in the Oceanus Procellarum. Moon 1, p. 139. Smith, E.I. (1973) Identification, distribution and significance of Lunar volcanic domes. The Moon 6, pp. 3-31. Smith, E.L. (1974) Rümker Hills: a lunar volcanic dome complex. The Moon 10, pp. 175-181.

597

Smith, J.V., Anderson, A.T., Newton, R.C., Olsen, E.J. and Wyllie, P.J. (1970) Petrologic history of the moon inferred from petrography, mineralogy, and petrogenesis of Apollo 11 rocks. Proceedings of the Apollo 11 Lunar Science Conference, Geochimica et Cosmochimica Acta Supplement 1, pp. 897-925. Snyder, G.A., Neal, C.R., Taylor, L.A., and Halliday, A.N. (1995) Processes involved in the formation of magnesian- suite plutonic rocks from the highlands of the Earth’s Moon, J. Geophys. Res.100, no. E5, pp. 9365–9388. Snyder, G.A., Taylor, L.A., and Halliday, A.N. (1995) Chronology and petrogenesis of the lunar highlands alkali suite: Cumulates from KREEP basalt crystallization. Geochimica et Cosmochimica Acta 59, no. 6, pp. 1185–1203. Snyder, G.A., Taylor, L.A., and Neal, C.R. (1992) A chemical model for generating the sources of mare basalts: Combined equilibrium and fractional crystallization of the lunar magmasphere. Geochimica et Cosmochimica Acta 56, pp. 3809-3823. Solomon, S.C. (1975) Mare volcanism and lunar crustal structure. Proc. Lunar Science Conf. 6th, pp. 1021-2041. Solomon, S.C. and Chaiken, J. (1976) Thermal expansion and thermal stress in the Moon and terrestrial planets: Clues to early thermal history. Proc. Lunar Science Conf. 7th, pp. 3229-3243. Solomon, S.C., Comer, R.P., Head, J.W. (1982) The evolution of impact basins: viscous relaxation of topographic relief. J. Geophys. Res. 87, pp. 3975-3992. Sonett, C.P., Colburn, D.S., Dyal, P., Parkin, C.W., Smith, B.F., Schubert, G., and Schwartz, K. (1971) Electrical Conductivity of Lunar Rock. Nature 230, pp. 169-170. Spray, J.G. (2010) Frictional Melting Processes in Planetary Materials: From Hypervelocity Impacts to Earthquakes. Annu. Rev. Earth Planet. Sci. 38, pp. 221-254. Spray, J.G., Thompson L.M., Biren M.B., O’Connell-Cooper C. (2010) The Manicouagan impact structure as a terrestrial analogue site for lunar and Martian planetary science. Planetary and Space Science 58, pp. 538-551. Spudis, P.D. (1990) Young dark mantle deposits on the Moon. NASA TM 4210, pp. 406-407. Spudis, P.D. (1993) The geology of multi-ring impact basins – the Moon and other planets, Cambridge University Press, p. 40. Spudis, P. (2000) Volcanism on the Moon, in Encyclopedia of Volcanoes, edited by Sigurdsson, H., Houghton, B., McNutt, S., Rymer, H., and J. Stix, Academic Press, San Diego, California, pp. 697-708. Spudis, P.D. (2008) The geology of the south pole of the Moon and age of Shackleton Crater. Lunar Planet. Sci. XXXIX, Abstract # 1626. Spudis, P.D. and Bussey, D.B.J. (2003) South Pole-Aitken basin: Geology, basin floor, and unit compositions, Lunar Planet. Sci. XXXIV, Abstract # 1693. Spudis, P.D., Bussey, D.B.J., Baloga, S.M., Butler, B.J., Carl, D., Carter, L.M., Chakraborty, M., Elphic, R.C., Gillis- Davis, J.J., Goswami, J.N., Heggy, E., Hillyard, M., Jensen, R., Kirk, R.L., LaVallee, D., McKerracher, P., Neish, C.D., Nozette, S., Nylund, S., Palsetia, M., Patterson, W., Robinson, M.S., Raney, R.K., Schulze, R.C., Sequeira, H., Skura, J., Thompson, T.W., Thomson, B.J., Ustinov, E.A., and Winters, H.L. (2008) Initial Results for the north pole of the Moon from Mini-SAR, Chandrayaan-1 mission. Lunar Planet. Sci. XXXIX, Abstract # 1626. Spudis, P.D., Bussey, D.B.J., Baloga,S.M., Butler, B.J., Carl, D., Carter, L.M., Chakraborty, M., Elphic, R.C., Gillis- Davis, J.J., Goswami, J.N., Heggy, E., Hillyard, M.. Jensen, R., Kirk, R.L., LaVallee, D., McKerracher, P., Neish, C.D., Nozette, S., Nylund, S., Palsetia, M., Patterson, W., Robinson, M.S., Raney, R.K., Schulze, R.C., Sequeira, H., Skura, J., Thompson, T.W., Thomson, B.J., Ustinov, E.A., and Winters, H. L. (2010) Initial results for the north pole of the Moon from Mini-SAR, Chandrayaan-1 mission. Geophysical Research Letters 37, p. L06204. Spudis, P.D., Bussey, D.B.J., Butler, B., Carter, L., Gillis-Davis, J., Goswami, J., Heggy, E., Kirk, R., Misra, T., Nozette, S., Robinson, M.S., Raney, R.K., Thomson, B. and Ustinov, E. (2009) The Mini-SAR Imaging Radar on the Chandrayaan-1 Mission to the Moon. Lunar Planet. Sci. XL, Abstract # 1098. Spudis, P.D., Bussey, B., Plescia, J., Josset, J.-L., and Beauvivre, S. (2008) Geology of Shackleton Crater and the south pole of the Moon. Geophys. Res. Lett. 35, pp. 14,201–+, doi:10.1029/2008GL034468. Spudis, P.D., and Davis, P.A. (1986) A Chemical and Petrological Model of the Lunar Crust and Implications for Lunar Crustal Origin. Proc. Lunar Planet. Sci. Conf. 17th and J. Geophys. Res. 91, pp. E84-E90. Spudis, P.D., Hawke, B., Lucey, P. (1984) Composition of Orientale basin deposits and implications for the lunar basin-forming process, Proc. Lunar Planet. Sci. Conf. 15th and J. Geophys. Res. 89, suppl., pp. C197-210.

598

Spudis, P.D., Hawke, B.R., Lucey, P.G. (1987) Materials and formation of the Imbrium basin. Proc. Lunar Planet. Sci. Conf. 18th, pp. 155-168. Spudis, P.D. and Hood, L.L. (1992) Geological and geophysical field investigations from a lunar base at Mare Smythii. The Second Conference on Lunar Bases and Space Activities of the 21st Century 1, pp. 163-174, NASA, Johnson Space Center. Spudis, P.D., Nozette, S., Lichtenberg, C., Bonner, R., Ort, W., Malaret, E., Robinson, M., and Shoemaker, E., (1998) The Clementine bistatic radar experiment: Evidence for ice on the Moon. Solar System Research 32, pp. 17-22. Spudis, P.D. and Pieters, C. (1991) Global and Regional Data about the Moon. In: Heiken, G.H., Vaniman, D.T., and French, B.M. (Eds.), Lunar Sourcebook: A User’s Guide to the Moon. Cambridge University Press and Lunar and Planetary Institute, New York. Spudis, P.D., Reisse, R.A., and Gillis, J.J. (1994) Ancient multi-ring basins on the Moon revealed by Clementine laser altimetry. Science 266, pp. 1848-1851. Spudis, P.D., Shoemaker, E., Davies, M., Acton, C., Burratti, B., Duxbury, T., Eliason, E., McEwen, A., Baker, D., Smith, D., Lucey, P., Blamont, J., and Pieters, C. (1994) The Clementine Mission – Initial Results from Lunar Mapping. ESA SP-1170, pp. 91-102. Spudis, P.D., Swann, G.D., Greeley, R. (1988) The Formation of Hadley Rille and Implications for the Geology of the Apollo 15 Region. Proc. Lunar Planet. Sci. Conf. 18th, pp. 243-254. Stacy, N.J.S., Campbell, D.B., and Ford, P.G. (1997) Arecibo radar mapping of the lunar poles: A search for ice deposits. Science 276, pp. 1527-1530. Stacey, F.D. and Davis, P.M. (2008) Physics of the Earth, 4th edition. Cambridge University Press, New York. Staid, M.I., Eliason, E., Gaddis, L.R. and Pieters, C.M. (2003) Global comparisons of mare crater spectra from Clementine UVVIS and NIR data. Lunar Planet. Sci. XXXIV, Abstract # 1767. Starukhina, L.V. (2002) Computer simulation of sputtering of lunar regolith by solar wind: Implication to surface chemical alteration and to hydrogen flux in polar regions. Lunar Planet. Sci. XXXIII, Abstract # 1237. Starukhina, L.V. (2005) Adhesion Forces Between Regolith Particles: Constraints on the Conditions of Electrostatic Lofting of Dust. Lunar Planet. Sci. XXXVI, edited by S. Mackwell and E. Stansbery, pp. 1343–+. Starukhina, L.V. (2006) Polar regions of the moon as a potential repository of solar-wind-implanted gases. Advances in Space Research 37, pp. 50-58. Starukhina, L.V. and Shkuratov, Y.G. (2000) The lunar poles: Water ice or chemically trapped hydrogen? Icarus 147, pp. 585-587. Steele, A., McCubbin, F.M., Fries, M., Glamoclija, M., Kater, L., and Nekvasil, H. (2010) Graphite in an Apollo 17 impact melt breccia. Science 329, p. 51. Stegman, D.R., Jellinek, A.M., Zatman, S.A., Baumgardner, J.R., and , M.A. (2003) An early lunar core dynamo driven by thermochemical mantle convection. Nature 421, pp. 143-146. Stevenson, D.J. (1983) Planetary magnetic fields. Reports on Progress in Physics 46, pp. 555-620. Stevenson, D.L. and Yoder, C.F. (1981) A fluid outer core for the Moon and its implications for lunar dissipation, free and magnetism. Proc. Lunar Planet. Sci. Conf. 11th, pp. 1043-1045. Stöffler, D. (1977) Research drilling Nordlingen 1973: polymict breccias, crater basement, and cratering model of the Ries impact structure. Geologica Bavarica 75, pp. 443-458. Stöffler, D. (1981) Cratering mechanics: Data from terrestrial and experimental craters and implications for the Apollo cratering mechanics: Data from terrestrial and experimental craters and implications for the Apollo 16 site, In OB James, editor, Workshop on Apollo 16, pp. 132–141. Stöffler D., Deutsch A., Avermann M., Bischoff L., Brockmeyer P., Buhl D., Lakomy R., and Müller-Mohr (1994) The formation of the Sudbury Structure, Canada: Toward a unified impact model, In Large Meteorite Impacts and Planetary Evolution, pp. 303-318. Stöffler, D. and Grieve, R.A.F. (2007) Towards a unified nomenclature of metamorphic petrology, Chapter 11: , A proposal on behalf of the IUGS Subcommission on the Systematics of Metamorphic Rocks, IUGS Blackwell Publishers.

599

Stöffler, D. and Ryder, G. (2001) Stratigraphy and isotope ages of lunar geologic units: chronological standard for the inner solar system. In: Chronology and Evolution of Mars, R. Kallenbach, J. Geiss and W.K. Hartmann (eds.) Kluwer, pp. 9-54. Stöffler D., Ryder, G., Ivanov, B.A., Artemiva, N.A., Cintala, M.J., and Grieve, R.A. (2006) Cratering history and lunar chronology. Reviews in Mineralogy and Geochemistry 60, pp. 519-596. Stothers, R.B. (1998) Galactic disc dark matter, terrestrial impact cratering and the law of large numbers. Mon. Not. R. Astron. Soc. 300, pp. 1098-1104. Strain, G.S. and El-Baz, F. (1977) Topography of sinuous rilles in the Harbinger Mountain region of the Moon. The Moon 16, pp. 221-229. Strom, R.G. and Fielder, G. (1970) Multiphase eruptions associated with Tycho and Aristarchus, Arizona University. Lunar and Planetary Laboratory Communication 8, part 4, # 150, pp. 235-288. Stuart-Alexander, D.E. (1978) Geologic Map of the Central Far Side of the Moon. USGS Miscellaneous Investigations Series, Map I–1047, Geologic Atlas of the Moon, 1:5,000,000 Series. USGS, Denver. Stubbs, T.J., Vondrak, R.R., and Farrell, W.M. (2006) A dynamic fountain model for lunar dust. Advances in Space Research 37, pp. 59-66. Suavet, C., Weiss, B.P., Fuller, M.D., Gattacceca, J., Grove, T.L., and Shuster, D.L. (2012) Persistence of the lunar dynamo until 3.6 billion years ago. Lunar Planetary Sci. XLIII, Abstract # 1925. Sullivan, T. (1994) Catalog of Apollo experiment operations. NASA Reference Publication. no. 1317. Houston. Sunshine, J., Besse, S. and Petro, N. (2010) Hidden in plain sight: Spinel-rich deposits on the nearside of the Moon as revealed by Moon Mineralogy Mapper (M3). Lunar Planet. Sci. XLI, Abstract # 1508. Sunshine, J.M., Petro, N.E., Pieters, C.M., Head, J.W., Taylor, L.A., Klima, R.L., Issacson, P.J., Boardman, J.W., Clark, R.C. and M3 Team (2010) Hidden in Plain Sight: Spinel-Rich deposits on the Nearside of the Moon as revealed by Moon Mineralogy Mapper (M3). Lunar Planet. Sci. XL, Abstract # 1508. Swann, G.A., Bailey, N.G., Batson, R.M., Eggleton, R.E., Hait, M.H., Holt, H.E., Larson, K.B., McEwen, M.C., Mitchell, E.D., Schaber, G.G., Schafer, J.B., Shepard, A.B., Sutton, R.L., Trask, N.J., Ulrich, G.E., Wilshire, H.G., and Wolfe, E.W. (1971) Preliminary Geologic Investigations of the Apollo 14 Landing Site. In: Apollo 14 Preliminary Science Report. NASA SP-272, Washington DC. Swindle, T.D. and Kring, D.A. (1997) Implications of small comets for the noble gas inventories of Earth and Mars. Geophysical Research Letters 24, pp. 3113-3116. Takeda, H., Yamaguchi, A., Bogard, D.D., Karouji, Y., Ebihara, M., Ohtake, M., Saiki, K., and Arai, T. (2006) Magnesian anorthosites and a deep crustal rock from the farside crust of the Moon. Earth and Planetary Science Letters 247, pp. 171-184. Talbot, R.J. and Newman, M.J. (1977) Encounters between stars and dense interstellar clouds. The Astrophysical Journal Supplement Series 34, pp. 295-308. Tawlani, M., Thompson, G., Dent, B., Kahle, H., and Buck, S. (1973) Traverse gravimeter experiment, in Apollo 17. Preliminary Sci. Report, NASA publication SP-330, pp. 13-1-13-13. Taylor, G.J. (1991) Impact melts in the MAC88105 lunar meteorite: Inferences for the lunar magma ocean hypothesis and the diversity of basaltic impact melts. Geochimica et Cosmochimica Acta 55, pp. 3031-3036. Taylor, G.J. (2009) Ancient lunar crust: Origin, composition, and implications. Elements 5, pp. 17-22. Taylor, G.J., Warren, P., Ryder, G., Delano, J., Pieters, C. (1991) Lunar Rocks. In: Heiken, G.H., Vaniman, D.T., and French, B.M. (Eds.), Lunar sourcebook. Cambridge University Press, pp. 183-284. Taylor, J., Warren, P., Ryder, G., Delano, J., Pieters, C., and Lofgren, G. (1993) Lunar Rocks, in The Lunar Source Book, Cambridge University Press, New York, pp. 183-261. Taylor, L.A. (2002) Mineral and glass characterization of apollo 14 soils." Proceedings Lunar and Planetary Science Conference XXXIII. no. 1302. Taylor, L.A. (2001c) Mineralogical and chemical characterization of lunar high-land regolith: lessons learned from mare soils. Lunar Planet. Sci. XXXII, Abstract # 2196. Taylor, L.A. (2003) Mineralogical Characterization of lunar highland soils. Lunar Planet. Sci. XXXIV, Abstract # 1774.

600

Taylor, L.A., Patchen, A., Taylor, D.-H., Chambers, J.G. and McKay, D.S. (1996) X-ray digital imaging and petrography of lunar mare soils: data input for remote sensing calibrations. Icarus 124, pp. 500-512. Taylor, L.A., Pieters, C.M., Keller, L.P., Morris, R.V. and McKay, D.S. (2001b) Lunar mare soils: Space weathering and the major effects of surface-correlated nanophase Fe. J. Geophys. Res. 106, no. 27, p. 999. Taylor, L.A., et al. (2001a) Apollo 17 mare soils: petrographic and chemical characterization. Meteoritics and Planetary Science 36, pp. 285-299. Taylor, L.A., Shervais, J.W., Hunter, R.H., Shih, C.-Y., Bansal, B.M., Wooden, J., Nyquist, L.E. and Laul, L.C. (1983) Pre-4.2 AE mare-basalt volcanism in the lunar highlands, Earth and Planetary Science Letters, 66, pp. 33-47. Taylor, L.A., Schmitt, H.H., Carrier, D.W., and Nakagawa, M. (2005) The lunar dust problem: from liability to asset. 1st Space Exploration Conference: Continuing the Voyage of Discovery. no. 2510. American Institute of Aeronautics and Astronautics, January 30, 2005. Taylor, S.R. (1982) Planetary Science: A lunar perspective. Lunar and Planetary Institute, Houston, TX. Taylor, S.R. (1989) Growth of planetary crust, Tectonophysics 161, pp. 147-156. Taylor, S.R., and Jakes, P. (1974) The geochemical evolution of the moon. Proc. Lunar Sci. Conf. 5th, no. 2, pp. 1287- 1305. Taylor, S.R., Taylor, G.J., and Taylor, L.A. (2006) The Moon: A Taylor perspective. Geochimica et Cosmochimica Acta 70, pp. 5904-5918. Ten Kate, I.L., Cardiff, E.H., Dworkin, J.P., Feng, S.H., Holmes, V., Malespin, C., and Stern, J.G. (2010) VAPoR - Volatile Analysis by Pyrolysis of Regolith - an instrument for in situ detection of water, noble gases, and organics on the Moon. Planetary and Space Sciences 58, pp. 1007-1017. Tera, F, DA Papanastassiou, and GJ Wasserburg (1974), Isotopic evidence for a terminal lunar cataclysm, Earth and Planetary Science Letters, vol. 22, no. 1, pp. 1–21. Terada, K., Anand, M., Sokol, A.K., Bischoff, A., and Sano, Y. (2007) Cryptomare magmatism 4.35 Gyr ago recorded in lunar meteorite Kalahari 009. Nature 450, pp. 849-852. Thacker, C., Liang, Y., Peng, Q., and Hess, P. (2009) The stability and major element partitioning of ilmenite and armalcolite during lunar cumulate mantle overturn. Geochimica et Cosmochimica Acta 73, pp. 820-836. Thaisen, K.G., et al. (2011) Geology of the Moscoviense Basin. J. Geophys. Res. 116, p. E00G07. Therriault, A.M., A.D., and Grieve R.A.F. (2002) The Sudbury igneous complex: A differentiated melt sheet, Economic Geology 97, no. 7, pp. 1521-40. Thompson, T.W., Campbell, B.A., Ghent, R.R. and Hawke, B.R. (2009) Rugged crater ejecta as a guide to megaregolith thickness in the southern nearside of the Moon. Geology 37, no. 7, pp. 655–658. Thompson, D.R., Gilmore, M., Mandrake, L., Castano, R., and Bue, B. (2011) Automatic detection of water and mafics in M3 radiance images. Lunar Planet. Sci. XLII, Abstract # 2397. Thompson, T.W., Cutts, J.A., Shorthill, R.W. and Zisk, S.H. (1979) Infrared and radar signatures of lunar craters - implications about crater evolution. In Proceedings of the Conference on the Lunar Highlands Crust, pp. 483–499, Pergamon Press. Thomson, B.J., Grosfils, E.B., Bussey, B.J., and Spudis, P.D. (2009) A new technique for estimating the thickness of mare basalts in Imbrium Basin. Geophysical Research Letters 36, pp. 1-5. Thompson, T.W., Masursky, H., Shorthill, R.W. and Zisk, S.H. (1974) A comparison of infrared, radar, and geologic mapping of lunar craters. Earth, Moon, and Planets 10, no. 1, pp. 87–117. Thompson, T.W., Roberts, W.J., Hartmann, W.K., Shorthill, R.W. and Zisk, S.H. (1979) Blocky craters: Implications about the lunar megaregolith. Earth, Moon, and Planets 21, no. 3, pp. 319–342. Tikoo, S.M., Weiss, B.P., Buz, J., Lima, E.A., Shea, E.K., Melo, G., and Grove, T.L. (2012b) Magnetic fidelity of lunar samples and implications for an ancient core dynamo. Earth and Planetary Science Letters 337-338, pp. 93-103. Tikoo, S.M., Weiss, B.P., Grove, T.L., and Fuller, M.D. (2012a) Decline of the ancient lunar core dynamo. Lunar Planet. Sci. XLIII, Abstract # 2691. Toksöz, M.N., Dainty, A.M., Solomon, S.C., and Anderson, K.R. (1974) Structure of the Moon. Reviews of Geophysics and Space Physics 12, pp. 539-567.

601

Toksöz, M.N., Dainty, A.M., Solomon, S.C., and Anderson, K.R. (1998) Velocity structure and evolution of the Moon. Proc. Lunar Science Conf. 4th, pp. 2529–2547. Toksöz, M.N., Press, F., Dainty, A., Anderson, K., Latham, G., Ewing, M., Dorman, J., Lammlein, D., Sutton, G., and Duennebier, F. (1972) Structure, composition, and properties of lunar crust. Proc. Lunar Science Conf. 3rd and Geochimica et Cosmochimica Acta 3, pp. 2527-2544. Tompkins, S. (1998) Mafic plutons in the lunar highland crust. Lunar Planet. Sci. XXIX, Abstract # 1656. Tompkins, S. and Pieters, C.M. (1999) Mineralogy of the lunar crust: Results from Clementine. Meteoritics and Planetary Science 34, pp. 25-41. Tompkins, S., Pieters, C.M. and Ryder, G. (1996) Spectral variations among crystalline and glassy apollo 17 impact melt rocks. Lunar Planet. Sci. XXVII, Abstract # 1335. Tompkins, S., Pieters, C.M. and Ryder, G. (1997) Spectral characteristics of lunar impact melts - implications for remote sensing. Lunar Planet. Sci. XXVIII, Abstract # 1441. Torbett, M.V. (1986) Dynamical influence of galactic and molecular clouds on the Oort cloud of comets." In The Galaxy and the Solar System, edited by R. Smoluchowski, J. N. Bahcall and M. S. Matthews, pp. 147-172. Tucson: University of Arizona Press. Treiman, A.H., Maloy, Amy K., Shearer, Charles K. and Gross, Juliane (2010) Magnesian anorthositic granulites in lunar meteorites Allan Hills A81005 and Dhofar 309: Geochemistry and global significance. Meteoritics & Planetary Science 45, no. 2, pp. 163–180. Turcotte, D.L. and Schubert, G. (2002) Geodynamics, 2nd edition. Cambridge University Press, New York. USGS Moon Pyroclastic Volcanism Project. http://astrogeology.usgs.gov/geology/moon-pyroclastic-volcanism-project. Tyrie, A. (1988) Age dating of mare in the lunar crater Tsiolkovsky by crater-counting method. Earth, Moon, and Planets 42, no. 3, pp. 245–264. USGS (2009a) The Moon Geology Downloads. http://webgis.wr.usgs.gov/pigwad/down/moon_geology.htm. USGS (2009b) ArcMap 8.x and 9.x Planetary Projection Tutorial http://webgis.wr.usgs.gov/pigwad/tutorials/planetarygis/arcmap_projections.htm. Vaniman, D., French, B., and Heiken, G. (1991) Afterword. In: Heiken, G.H., Vaniman, D.T., and French, B.M. (Eds.), Lunar Sourcebook: A User’s Guide to the Moon. Cambridge University Press and Lunar and Planetary Institute, New York. Vasavada, A.R., Bandfield, J.L., Greenhagen, B.T., Hayne, P.O., Siegler, M.A., Williams, J.-P., and Paige, D.A. (2012) Lunar equatorial surface temperatures and regolith properties from the Diviner Lunar Radiometer Experiment. J. Geophys. Res. 117, pp. 1-12. Vasavada, A.R., Paige, D.A., and Wood, S.E. (1999) Near-surface temperatures on Mercury and the Moon and the stability of polar ice deposits. Icarus 141, pp. 179-193. Vondrak, R.R. (1974) Creation of an artificial lunar atmosphere. Nature 248, pp. 657-659. von Gunten, H.R., Wegmüller, F. and Krähenbühl, U. (1982) Low temperature volatilization on the Moon. J. Geophys. Res. 87, p. 279–+, doi: 10.1029/JB087iS01p0A279. von Schneider, W. (1971) Petrologische Untersuchungen der Bunten Creccie im Nordlingen Ries, Neues Jahrbuch fur Mineralogie (Abhandlungen) 114, pp. 136-180. Wagner, R., Head, J.W., Wolf, U. and Neukum, G. (2010) Lunar red spots: Stratigraphic sequence and ages of domes and plains in the Hansteen and Helmet regions on the lunar nearside. J. Geophys. Res. 115, no. E06015, pp. 1–26. Wagner, T.P. and Grove, T.L. (1997) Experimental constraints on the origin of lunar high-Ti ultramafic glasses. Geochimica et Cosmochimica Acta 61, pp. 1315-1327. Walker, D. (1983) Lunar and Terrestrial Crust Formation. Proc. Lunar Planet. Sci. Conf. 14th and J. Geophys. Res. 88, pp. B17-B25. Ward, W.R. (1975) Past Orientation of the Lunar Spin Axis. Science 189, pp. 377-379. Warner, M.R. (2008) Importance of pre-impact crustal structure for the asymmetry of the Chicxulub impact crater, Nature Geoscience 1, pp. 131-135. Warren, P.H. (1985) The magma ocean concept and lunar evolution. Annual Reviews of Earth and Planetary Science 13, pp. 201-240.

602

Warren, P.H. (1993) A concise compilation of petrologic information on possible pristine nonmare Moon rocks. American Mineralogist 78, pp. 360-376. Warren, P.H. (1993) Limits on differentiation of melt “sheets” from basin-scale lunar Impacts. Lunar Planet. Sci. XXIV, Abstract # 1481. Warren, P.H. (2010) “New” lunar meteorites: Implications for composition of the global lunar surface, lunar crust, and the bulk Moon. Meteoritics & Planetary Science 40, no. 3, pp. 477–506. Warren, P.H., Claeys, P., and Cedillo-Pardo, E. (1996) Mega-impact melt petrology (Chicxulub, Sudbury, and the Moon): Effect of scale and other factors on potential for fractional crystallization and development of cumulates, GSA Special Paper 307, pp. 105-124. Warren, P.H. and Kallemeyn, G.W. (1991) Geochemical investigation of five lunar meteorites: Implications for the composition, origin and evolution of the lunar crust. Antarctic Meteorite Research 4, pp. 91–117. Warren, P.H. and Kallemeyn, G.W. (1993) The ferroan-anorthositic suite, the extent of primordial lunar melting, and the bulk composition of the Moon. J. Geophys. Res. 98, no. E3, pp. 5445–5455. Warren, P.H. and Rasmussen, K.L. (1986) Megaregolith insulation, internal temperatures, and bulk uranium content of the Moon. J. Geophys. Res. 92, no. B5, pp. 3453–3465. Warren, P.H. and Rasmussen, K.L. (1987) Megaregolith Insulation, Internal Temperatures, and Bulk Uranium Content of the Moon. J. Geophys. Res. 92, pp. 3453-3465. Warren, P.H. and Wasson, J.T. (1978) Compositional-petrographic investigation of pristine nonmare rocks. Proc. Lunar Sci. Conf. 9th, pp. 185-217. Warren, P.H. and Wasson, J.T. (1979) The origin of KREEP. Reviews of Geophysics 17, pp. 73-88. Warren, P.H. and Wasson, J.T. (1980) Early lunar petrogenesis, oceanic and extraoceanic. Proceedings of the Lunar Highlands Crust Conference, pp. 81-99. Wasson, J.T. and Warren, P.H. (1980) Contribution of the mantle to the lunar asymmetry. Icarus 44, pp. 752-771. Watkins, J.S. and Kovach, R.L. (1972) Apollo 14 Active Seismic Experiment. Science 17, pp. 1244-1245. Watson, K., Murray, B.C., and Brown, H. (1961) The Behavior of Volatiles on the Lunar Surface. J. Geophys. Res. 66, pp. 3033-3045. Weaver, G., Garstecki, J., and Reynolds, S. (2010) The performance of ultra-stable oscillators for the Gravity Recovery and Interior Laboratory (GRAIL). 42nd Annual Precise Tim and Time Interval (PTTI) Meeting, pp. 369-380. Weber, R.C., Bills, B.G., and Johnson, C.L. (2009) Constraints on deep moonquake focal mechanisms through analyses of tidal stresses. J. Geophys. Res. 114, pp. 1-17. Weber, R.C., Lin, P.Y., Garnero, E.J., Williams, Q., and Lognonné, P. (2011) Seismic Detection of the Lunar Core. Science 331, pp. 309-312. Weider, S.Z., Crawford, I.A. and Joy, K.H. (2010) Inidividual lava flow thicknesses in Oceanus Procellarum and Mare Serenitatis determined from Clementine multispectral data. Icarus 209, no. 2, pp. 323-336. Weitz, C.M. and Head, J.W. (1999) Spectral properties of the Marius Hills volcanic complex and implications for the formation of lunar domes and cones. J. Geophys. Res. 104, no. E8, pp. 18933-18956. Weitz, C.M., Head, J.W., and Pieters, C.M. (1998) Lunar regional dark mantle deposits: Geologic, multispectral, and modeling studies. J. Geophys. Res. 103, pp. 22,725-22,759. Weitz, C.M., Yingst, R.A., Minitti, M., Head, J.W., Prockter, L., Dahl, J.M., Cooper, C.D., Crumpler, L., Gershman, R., Welch, R. and the Jet Propulsion Laboratory Team X (1997) South Pole-Aitken Basin mission (SPAM). Lunar Planet. Sci. XXVIII, Abstract # 1162. Werner, S., Keller, H. U., and Lauche, A. K. (2004) UVIS/HDAC Lyman-alpha observations of the geocorona during 's Earth swingby compared to model predictions. Advances in Space Research 34, pp. 1647-1649. Werner, S.C., and Medvedev, S. (2010) The Lunar rayed-crater population - Characteristics of the spatial distribution and ray retention. Earth and Planetary Science Letters 295, pp. 147-158. Whitaker, E.A. (1972) Lunar color boundaries and their relationship to topographic features. Earth, Moon, and Planets 4, no. 3-4, pp. 348–355.

603

Whitford-Stark, J.L. and Head, J.W. (1977) The Procellarum volcanic complexes: contrasting styles of volcanism. Proc. Lunar Sci. Conf., 8th, pp. 2705-2724. Whitmire, D.P., Doyle, L.R., Reynolds, R.T., and Matese, J.J. (1995) A slightly more massive young Sun as an explanation for warm temperatures on early Mars. J. Geophys. Res. 100, no. E3, pp. 5457-5464. Whitten, J. and Head, J.W. (2011) Impact basins and impact-produced volcanism: The lunar Orientale basin as a case study on the Moon. Large igneous provinces commission, International Association of Volcanology and Chemistry of the Earth’s Interior. January 2011 Large Igneous Province of the . Wichman, R.W. and Schultz, P.H. (1996) Crater-centered laccoliths on the Moon: Modeling intrusion depth and magmatic pressure at the crater . Icarus 122, no. 1, pp. 193–199. Wieczorek, M.A. (2009) The Interior Structure of the Moon: What Does Geophysics Have to Say? Elements 5, pp. 35- 40. Wieczorek, M.A., Cahill, J.T.S., Lucey, P.G., and Shearer, C.K. (2008) The mantle of the moon: Exposed and sampled? Lunar Planet. Sci. XXXIX, Abstract # 1271. Wieczorek, M.A., Jolliff, B.L., Khan, A., Pritchard, M.W., Weiss, B.P., Williams, J.G., Hood, L.L., Righter, K., Neal, C.R., Shearer, C.K., McCallum, I.S., Tompkins, S., Hawke, B.R., Peterson, C., Gillis, J.J., and Bussey, B. (2006) The Constitution and Structure of the Lunar Interior. In: Jolliff, B.L., Wieczorek, M.A., Shearer, C.K., and Neal, C.R. (Eds.), New Views of the Moon. Reviews in Mineralogy and Geochemistry 60, pp. 221-364. Wieczorek, M.A., and Phillips, R.J. (1997) The structure and compensation of the lunar highlands crust. J. Geophys. Res. 102, pp. 10933-10943. Wieczorek, M.A. and Phillips, R.J. (1998) Potential anomalies on a sphere: Applications to the thickness of the lunar crust. J. Geophys. Res. 103, no. E1, pp. 1715–1724. Wieczorek, M.A. and Phillips, R.J. (1999) Lunar Multiring Basins and the Cratering Process. Icarus 139, pp. 246-259. Wieczorek, M.A. and Phillips, R.J. (2000) The “Procellarum KREEP Terrane”: Implications for mare volcanism and lunar evolution. J. Geophys. Res. 105, pp. 20417-20430. Wieczorek, M.A. and Zuber, M.T. (2001) The composition and origin of the lunar crust: Constraints from central peaks and crustal thickness modeling. Geophysical Research Letters 28, pp. 4023-4026. Wieczorek, M.A. and Zuber, M.T. (2002) The “Core” of the Moon: Iron or Titanium Rich? Lunar Planet. Sci. XXXIII, Abstract # 1384. Wiedemann, G. and , R. (1853) The thermal conductivities of metals. Annual Review of Physical Chemistry 89, p. 497. Wieler, R. and Hever, V.S. (2003) Noble gas isotopes on the Moon. Space Science Rev. 106, no. 1, pp. 197-210. Wieler, R., Kehm, K., Meshik, A.P. and Hohenberg, C.M. (1996) Secular changes in the xenon and krypton abundances in the solar wind recorded in single lunar grains. Nature 384, pp. 46-49. Wilcox, B.B., Robinson, M., Thomas, P. and Hawke, B. (2005) Constraints on the depth and variability of the lunar regolith. Meteoritics & Planetary Science XL, no. 5, pp. 695–710. Wilhelms, D.E. (1976) Secondary impact craters of lunar basins. Proc. Lunar Science Conf. 7th, pp. 2883-2901. Wilhelms, D.E. (1984) Moon. In: The Geology of the Terrestrial Planets, Carr, H. (ed), NASA Special Publication 469, pp.106-205. Wilhelms, D.E. (1985) Unmanned spaceflights needed as scientific preparation for a manned lunar base, In: Lunar bases and space activities of the 21st century (A86-30113 13-14) Houston, TX, Lunar and Planetary Institute, pp. 245- 251. Wilhelms, D.E., 1987. The Geological History of the Moon. United States Geological Survey Professional Paper 1348, United States Government Printing Office, Washington DC. Wilhelms, D.E. and Byrne, C.J. (2009) Stratigraphy of Lunar Craters, http://www.imageagain.com/Strata/StratigraphyCraters.2.0.htm. Wilhelms, D.E., and El-Baz, F. (1977) Geologic map of the east side of the Moon. U.S. Geol. Surv. Misc. Invest. Ser., Map 1-948. Wilhelms, D.E., Howard, K.A., Wilshire, H.G. (1979) Geologic map of the far side of the Moon. U.S. Geological. Survey, Map I-1162.

604

Wilhelms, D.E. and McCauley, J.F. (1971) Geologic Map of the Near Side of the Moon. United States Geological Survey, Flagstaff, AZ. Williams, J.G., and Boggs, D.H. (2009) Lunar Core and Mantle. What Does LLR See? Proceedings of the 16th International Workshop on Laser Ranging, pp. 101-120. Williams, J.G., Boggs, D.H., Yoder, C.F., Ratcliff, J.T. and Dickey, J.O. (2001) Lunar rotational dissipation in solid body and molten core. J. Geophys. Res. 106, 27933-27968. Williams, D.A., Greeley, R., Neukum, G., Wagner, R. and Kadel, S.D. (1995) Multispectral studies of western limb and farside maria from Galileo Earth-Moon encounter 1. J. Geophys. Res. 100, no. E11, pp. 23,291-23,299. Williams, J.P., Paige D.A., Siegler M.A., and Vasavada A.R. (2011) Interpreting LRO Diviner observations of fine- scale lunar surface thermal variability. European Planetary Science Conference and AAS Division for Planetary Sciences Joint Meeting 6, Abstract # 1678. Williams, J.G., Turyshev, S.G., Baran, R.T., Birnbaum, K.M., Currie, D., Folkner, W.M., Gutt, G.M., Hanada, H., Hemmati, H., Merkowitz, S.M., Nordtvedt, K.L., Murphy, T.W., Jr., Muller, J., Rambaux, N., Shelus, P.J., Somawardhana, R., and Spero, R. (2010) Lunar Science and Lunar Laser Ranging. A white paper submitted to the Panel on Inner Planets - Mercury, Venus, and the Moon of The National Academies Planetary Science Decadal Survey. Williams, K.K. and Zuber, M.T. (1998) Measurement and analysis of lunar basin deposits from Clementine altimetry. Icarus 131, pp. 107-122. Wilson, L. and Head, J.W., III (1981) Ascent and Eruption of Basaltic Magma on the Earth and Moon. J. Geophys. Res. 86, pp. 2971-3001. Wilson, L. and J. W. Head (2003) Lunar Gruithuisen and Mairan domes: Rheology and mode of emplacement, J. Geophys. Res. 108, no. E2, p. 5012, doi:10.1029/2002JE001909. Wimmer-Schweingruber, R.F. and Bochsler, P. (2000) Is there a record of interstellar pick-up ions in lunar soils? In Acceleration and Transport of Energetic Particles Observed in the Heliosphere, American Institute of Physics Conference Series, vol. 528, edited by R. A. Mewaldt, J. R. Jokipii, M. A. Lee, E. Möbius, and T. H. Zurbuchen, pp. 270–273, doi:10.1063/1.1324323. Wimmer-Schweingruber, R.F. and Bochsler, P. (2001) Lunar soils: A long-term archive for the galactic environment of the heliosphere? In Joint SOHO/ACE workshop ”Solar and Galactic Composition”, American Institute of Physics Conference Series 598, edited by R. F. Wimmer-Schweingruber, pp. 399–404, doi:10.1063/1.1434029. Wiskerchen, M.J. and Sonett, C.P. (1977) A lunar metal core? Proc. Lunar Sci. Conf. 8th, pp. 515-535. Wöhler, C. and Lena, R. (2009) Lunar intrusive domes: Morphometric analysis and laccolith modelling. Icarus 204, no. 2, pp. 381–398. Wolfe, E.W., Lucchitta, B.K., Reed, V.S., Ulrich, G.E. and Sanchez, A.G. (1975) Geology of the Taurus-Littrow valley floor. Proc. Lunar Sci. Conf. 6th, pp. 2463-2482. Wood, B.E., Muller, H.-R., Zank, G. and Linsky, J.L. (2002) Measured mass loss rates of solar-like stars as a function of age and activity. Astrophys. J. 574, pp. 412-425. Wood, C.A. (1979) Monogenetic volcanoes of the terrestrial planets. Proc. Lunar Sci. Conf. 10th, pp. 2815-2840. Wood, C.A. and Anderson. L. (1978) New morphometric data for fresh lunar craters. Proc. Lunar Sci. Conf. 9th, pp. 3669-3689. Wood, C.A. and Head, J.W. (1975) Geologic setting and provenance of spectrally distinct pre-mare material of possible volcanic origin. Conference on Origins of mare basalts and their implications for lunar evolution, pp. 189-193, LPI Contrib. No. 234, The Lunar Science Institute, Houston, TX. Wood, J.A. (1973) Bombardment as a cause of the lunar asymmetry. The Moon 8, pp. 73-103. Wood, J.A., Dickey Jr, J.S., Marvin, U.B. and Powell, B.N. (1970) Lunar anorthosites and a geophysical model of the moon. Proceedings of the Apollo 11 Lunar Science Conference, Geochimica et Cosmochimica Acta Supplement 1, pp. 965-988. , R., Garcia, R.F., Lognonné, P., La Feuvre, M., Calvet, M., and Gagnepain-Beyneix, J. (2011) Optimisation of seismic network design: Application to a geophysical international lunar network. Planetary and Space Science 59, pp. 343-354.

605

Yamamoto, S., Nakamura, R., Matsunaga, T., Ogawa, Y., Ishihara, Y., Morota, T., Hirata, N., Ohtake, M., Hiroi, T., Yokota, Y. and Haruyama, J. (2010) Possible mantle origin of olivine around lunar impact basins detected by SELENE. Nature Geoscience 3, pp. 533-536. Yamamoto, S., Nakamura, R., Matsunaga, T., Ogawa, Y., Ishihara, Y., Morota, T., Hirata, N., Ohtake, M., Hiroi, T., Yokota, Y. and Haruyama, J. (2012) Olivine-rich exposures in the South Pole-Aitken Basin. Icarus 218, pp. 331-344. Yingst, R.A. and Head, J.W. (1999) Geology of mare deposits in South Pole-Aitken basin as seen by Clementine UV/VIS data. J. Geophys. Res. 104, pp. 18,957-18,980. Yingst, R.A. and Head, J.W. (1996) Characteristics of individual eruptive events on the lunar western limb and farside: Implications for magma ascent and eruption mechanism. Proc. Lunar Planet. Sci. Conf. 27th, pp. 1477. Yingst, R.A. and Head, J.W. (1997) Multispectral analysis of mare deposits in South Pole/Aitken Basin. Lunar Planet. Sci. XXVIII, Abstract # 1063. Yingst, R.A., and Head, J.W., III (1998) Characteristics of lunar mare deposits in Smythii and Marginis basins: Implications for magma transport mechanisms. J. Geophys. Res. 103, pp. 11135-11158. Young, R.A. (1977) The lunar impact flux, radiometric age correlation, and dating of specific lunar features. Proc. Lunar Science Conf. 8th, pp. 3457-3473. Young, R.A., Brennan, W.J., Wolfe, R.W. and Nichols, D.J. (1973) Volcanism in the lunar maria. NASA SP-330, Apollo 17 Prelim. Sci. Rept., p. 31.1-31.11. Zhang, J.A. and Paige, D.A. (2010) Correction to “Cold-trapped organic compounds at the poles of the Moon and Mercury: Implications for origins”. Geophysical Research Letters 37, p. 2. Zhong, S., Parmentier, E.M., and Zuber, M.T. (2000) A dynamic origin for the global asymmetry of lunar mare basalts. Earth and Planetary Science Letters 177, pp. 131-140. Zieg, M.J. and Marsh, B.D. (2005) The Sudbury Igneous Complex: Viscous emulsion of a superheated impact melt sheet, GSA Bulletin 117, no. 11-12, pp. 1427-1450. Ziethe, R., Seiferlin, K., and Hiesinger, H. (2009) Duration and extent of lunar volcanism: Comparison of 3D convection models to mare basalt ages. Planetary and Space Science 57, pp. 784-796. Zuber, M. (2008) GRAIL Gravity Mission: Goals and Status. 37th COSPAR Scientific Assembly, p. 3658. Zuber, M.T., Smith, D.E., Asmar, S.W., Konopliv, A.S., Lemoine, F.G., Melosh, H.J., Neumann, G.A., Phillips, R.J., Solomon, S.C., Watkins, M.M., Wieczorek, M.A., Williams, J.G., Head, J.W., III, Mazarico, E., and Torrence, M.H. (2012) Preliminary results on the structure of lunar highland crust from GRAIL gravity and LOLA altimetry. Second Conference on the Lunar Highlands Crust, Abstract # 9015. Zuber, M.T., Smith, D.E., Lemoine, F.G., and Neumann, G.A. (1994) The shape and internal structure of the Moon from the Clementine mission. Science 266, pp. 1839-1843.

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