CoolFace
Apppublic

leoniegasteiner/Lunar-Regolith-Database

sourceHugging Faceupdated 29d agoView on Hugging Face
0likes
Dataset_All.csv201 linesDownload Raw Back to root
1Mission / Simulant;Developer;Agency;Moon Location;Terrain;Year;Type of mission;Test;Test location ;Bulk density (g/cm^3);Angle of internal friction (degree);Cohesion (kPa);Bearing capacity (kPa);Normal stress range (kPa);Void ratio;Density of grains (g/cm^3);Compressibility Coefficient;Depth (cm);Porosity (%);Force applied (N);Source;Year of publication;DOI / URL;Comments2Surveyor I;NA;NASA;2.474S 43.339W;Mare;1966;Lander;Spacecraft touchdown analysis ;In-Situ;1.5;30 - 40;0.14 - 0.35;40;NA;NA;NA;NA;NA;NA;NA;Surveyor I Mission Report part II: Scientific Data and Results, Technical Report 32-1023. Jet Propulsion Laboratory, 1966;1966;https://ntrs.nasa.gov/api/citations/19670000738/downloads/19670000738.pdf;NA3Surveyor I;NA;NASA;2.474S 43.339W;Mare;1966;Lander;Spacecraft touchdown analysis ;In-Situ;1.5;0;10;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA4Surveyor I;NA;NASA;2.474S 43.339W;Mare;1966;Lander;Spacecraft touchdown analysis ;In-Situ;1.5;55;0.15 - 15;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA5Surveyor I;NA;NASA;2.474S 43.339W;Mare;1966;Lander;Spacecraft touchdown analysis ;In-Situ;1.5;30 - 40;0.4 - 0.13;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/0.1016/0031-9201(92)90060-9;NA6Surveyor III;NA;NASA;3.0S 23.41W;Mare;1967;Lander;Spacecraft touchdown analysis ;In-Situ;1.5;35 - 40;0.15 - 0.7;20 - 60;NA;NA;NA;NA;NA;NA;NA;Surveyor III Mission Report part II: scientific results, technical report 32-1177, Jet Propulsion Laboratory, 1967;1967;https://ntrs.nasa.gov/api/citations/19670028832/downloads/19670028832.pdf;NA7Surveyor III;NA;NASA;3.0S 23.41W;Mare;1967;Lander;Spacecraft touchdown analysis ;In-Situ;NA;45 - 60;0;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA8Surveyor III;NA;NASA;3.0S 23.41W;Mare;1967;Lander;Spacecraft touchdown analysis ;In-Situ;NA;35 - 37;0.35 - 0.7;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA9Surveyor V;NA;NASA;1.42N 23.20E;Mare;1967;Lander;Spacecraft touchdown analysis ;In-Situ;1.1;35;0.143;27;NA;NA;NA;NA;NA;NA;NA;Surveyor V Mission Report part II: science results, technical report 32-1246, Jet Propulsion Laboratory, 1967;1967;https://ntrs.nasa.gov/citations/19680003577;NA10Surveyor VI;NA;NASA;0.473N 1.427W;Mare;1967;Lander;Spacecraft touchdown analysis ;In-Situ;0.7 - 1.2;30 - 35;0.07 - 1.7;34;NA;NA;NA;NA;NA;NA;NA;Surveyor VI Mission Report part II: science results, technical report 32-1262, Jet Propulsion Laboratory, 1968;1968;https://ntrs.nasa.gov/citations/19680011500;NA11Surveyor VI;NA;NASA;0.473N 1.427W;Mare;1967;Lander;Vernier engine ;In-Situ;NA;35;0.05 - 1.7;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991; https://doi.org/10.1016/0031-9201(92)90060-9;NA12Surveyor VII;NA;NASA;40.97S 11.44W;Highland;1968;Lander;Trench experiment;In-Situ;1.5;37 - 39;0.35 - 0.7;21;NA;NA;NA;NA;NA;NA;NA;Surveyor VII Mission Report part II: science results, technical report 32-1264, Jet Propulsion Laboratory, 1968;1968;https://ntrs.nasa.gov/citations/19680028774;NA13Surveyor VII;NA;NASA;40.97S 11.44W;Highland;1968;Lander;Trench experiment;In-Situ;NA;35 - 37;0.35 - 0.7;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA14Luna 9;NA;ROSCOSMOS;7.13N 64.37W;Mare;1966;Lander;Optical;In-Situ;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;Preliminary analysis of Luna 9, Scientific intelligence digest, 1966, CIA;1966;https://nsarchive2.gwu.edu/NSAEBB/NSAEBB479/docs/EBB-Moon07.pdf;NA15Luna 13;NA;ROSCOSMOS;18.867N 62.050W;Mare;1966;Lander;Penetrometer;In-Situ;0.8;32;0.49;68;NA;NA;NA;NA;NA;NA;NA;I. I. Cherkasov, V.V. Shvarev, Soviet investigations of the mechanics of lunar soils, 1973;1973;https://doi.org/10.1007/BF01704945;NA16Luna 16;NA;ROSCOSMOS;47.24N 68.36E;Mare;1970;Lander;NA;On Earth;1.26;NA;NA;NA;0;NA;NA;NA;NA;NA;NA;V. I. Dnizhininskaya, V. V. Markachev, Preliminary results of the lunar regolith mechanical studies, 1971;1971;https://www.mathnet.ru/links/621d7649e8d4c5db0966a8747fe7315a/dan36374.pdf;Measurement of density of uncompacted soil in Helium atmosphere at atmospheric pressure and 20 degrees Celsius17Luna 16;NA;ROSCOSMOS;47.24N 68.36E;Mare;1970;Lander;Rotational shear;On Earth;1.8;29.3 - 35.3;2.94 - 0.98;NA;19.6;NA;NA;NA;NA;NA;NA;V. I. Dnizhininskaya, V. V. Markachev, Preliminary results of the lunar regolith mechanical studies, 1971;1971;https://www.mathnet.ru/links/621d7649e8d4c5db0966a8747fe7315a/dan36374.pdf;Measurement using rotating shear testing in helium atmosphere with compressing normal force18Luna 16;NA;ROSCOSMOS;47.24N 68.36E;Mare;1970;Lander;Direct shear;On Earth;NA;20 - 25;3.9 - 5.9;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA19Luna 16;NA;ROSCOSMOS;47.24N 68.36E;Mare;1970;Lander;NA;On Earth;1.115;NA;NA;NA;NA;1.69;3;NA;NA;NA;NA;V. Gromov, Physical and mechanical properties of lunar and planetary soils, Kluwer Academic Publishers, 1999;1999;https://doi.org/10.1023/A:1006353510204;Loose soil density value20Luna 16;NA;ROSCOSMOS;47.24N 68.36E;Mare;1970;Lander;NA;On Earth;1.793;NA;NA;NA;NA;0.67;3;NA;NA;NA;NA;V. Gromov, Physical and mechanical properties of lunar and planetary soils, Kluwer Academic Publishers, 1999;1999;https://doi.org/10.1023/A:1006353510204;Compacted soil density value21Luna 16;NA;ROSCOSMOS;47.24N 68.36E;Mare;1970;Lander;Rotating drum;On Earth;1.03 - 1.51;NA;NA;NA;0.05 - 98;NA;NA;0.3;NA;NA;NA;E. Slyuta, Physical and mechanical properties of the lunar soil, Solar System Research,2014;2014;https://doi.org/10.1134/S0038094614050050;NA22Luna 16;NA;ROSCOSMOS;47.24N 68.36E;Mare;1970;Lander;Direct shear ;On Earth;1.12;30;0;NA;NA;NA;NA;NA;NA;NA;NA;L. Jaffe, Shear strength of lunar soil from oceanus procellarum, The Moon Vol.8, 1973;1973;https://doi.org/10.1007/BF00562750;Nitrogen atomsphere, high normal load 23Luna 16;NA;ROSCOSMOS;47.24N 68.36E;Mare;1970;Lander;Direct shear ;On Earth;1.29;10 - 12;0;NA;NA;NA;NA;NA;NA;NA;NA;L. Jaffe, Shear strength of lunar soil from oceanus procellarum, The Moon Vol.8, 1973;1973;https://doi.org/10.1007/BF00562750;Nitrogen atomsphere, high normal load 24Luna 16;NA;ROSCOSMOS;47.24N 68.36E;Mare;1970;Lander;Direct shear ;On Earth;1.51;22;3;NA;NA;NA;NA;NA;NA;NA;NA;L. Jaffe, Shear strength of lunar soil from oceanus procellarum, The Moon Vol.8, 1973;1973;https://doi.org/10.1007/BF00562750;Nitrogen atomsphere, high normal load 25Luna 16;NA;ROSCOSMOS;47.24N 68.36E;Mare;1970;Lander;Direct shear ;On Earth;1.61;23;5.2;NA;NA;NA;NA;NA;NA;NA;NA;L. Jaffe, Shear strength of lunar soil from oceanus procellarum, The Moon Vol.8, 1973;1973;https://doi.org/10.1007/BF00562750;Nitrogen atomsphere, high normal load 26Luna 16;NA;ROSCOSMOS;47.24N 68.36E;Mare;1970;Lander;Direct shear ;On Earth;1.61;46;4;NA;NA;NA;NA;NA;NA;NA;NA;L. Jaffe, Shear strength of lunar soil from oceanus procellarum, The Moon Vol.8, 1973;1973;https://doi.org/10.1007/BF00562750;Nitrogen atomsphere, low normal load 27Luna 17;NA;ROSCOSMOS;38.2376N 35.00163W;Mare;1970;Rover;Penetrometer;In-Situ;NA;22.5;5;33.34;NA;NA;NA;NA;NA;NA;NA;I. I. Cherkasov, V.V. Shvarev, Soviet investigations of the mechanics of lunar soils, 1973;1973;https://doi.org/10.1007/BF01704945;NA28Luna 17;NA;ROSCOSMOS;38.2376N 35.00163W;Mare;1970;Rover;Vane shear;In-Situ;NA;NA;3.9 - 4.9;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA 29Luna 17;NA;ROSCOSMOS;38.2376N 35.00163W;Mare;1970;Rover;Vane shear;In-Situ;NA;50 - 25;0.26 - 1.1;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA 30Luna 17;NA;ROSCOSMOS;38.2376N 35.00163W;Mare;1970;Rover;Vane shear;In-Situ;NA;50 - 25;1.2 - 4.8;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA31Luna 17;NA;ROSCOSMOS;38.2376N 35.00163W;Mare;1970;Rover;Vane shear;In-Situ;NA;50 - 25;0.64 - 2.6;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA32Luna 17;NA;ROSCOSMOS;38.2376N 35.00163W;Mare;1970;Rover;Penetrometer;In-Situ;NA;45 - 25;0.17 - 1;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;Crater inner wall33Luna 17;NA;ROSCOSMOS;38.2376N 35.00163W;Mare;1970;Rover;Penetrometer;In-Situ;NA;45 - 25;0.52 - 2.7;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;Crater outer slope34Luna 17;NA;ROSCOSMOS;38.2376N 35.00163W;Mare;1970;Rover;Penetrometer;In-Situ;NA;45 - 25;0.34 - 1.8;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;Horizontal ground35Luna 20;NA;ROSCOSMOS;3.7863N 56.6242E;Highland;1972;Lander;Direct shear;On Earth;1;22.3 - 26.6;4.41 - 4.9;NA;NA;NA;NA;NA;NA;NA;NA;E. Slyuta, Physical and mechanical properties of the lunar soil, Solar System Research,2014;2014;https://doi.org/10.1134/S0038094614050050;NA36Luna 20;NA;ROSCOSMOS;3.7863N 56.6242E;Highland;1972;Lander;Direct shear;On Earth;0.98 - 1.51;NA;NA;NA;0.05 - 0.98;NA;NA;0.3;NA;NA;NA;E. Slyuta, Physical and mechanical properties of the lunar soil, Solar System Research,2014;2014;https://doi.org/10.1134/S0038094614050050;NA37Luna 20;NA;ROSCOSMOS;3.7863N 56.6242E;Highland;1972;Lander;Core tube;In-Situ;1.1 - 1.8;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA38Luna 20;NA;ROSCOSMOS;3.7863N 56.6242E;Highland;1972;Lander;Rotating drum;On Earth;1.04;NA;NA;NA;NA;1.88;3;NA;NA;NA;NA;V. Gromov, Physical and mechanical properties of lunar and planetary soils, Kluwer Academic Publishers, 1999;1999;https://doi.org/10.1023/A:1006353510204;Loose soil density value39Luna 20;NA;ROSCOSMOS;3.7863N 56.6242E;Highland;1972;Lander;Rotating drum ;On Earth;1.798;NA;NA;NA;NA;0.67;3;NA;NA;NA;NA;V. Gromov, Physical and mechanical properties of lunar and planetary soils, Kluwer Academic Publishers, 1999;1999;https://doi.org/10.1023/A:1006353510204;Compacted soil density value40Luna 21;NA;ROSCOSMOS;25.9994N 30.4076E;Mare;1973;Rover;Rover tracks;In-Situ;NA;22.5;5;40;NA;0.8;NA;NA;NA;NA;NA;I. I. Cherkasov, V. V. Shvarev, New Soviet investigations of lunar soil and its analogs, 1977;1977;https://doi.org/10.1007/BF02093004;General values obtained over the path of Lunokhod 241Luna 24;NA;ROSCOSMOS;12.7142N 62.2129E;Mare;1976;Lander;Core tube;On Earth;1.6 - 2.1;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;V.L. Barsukov, Preliminary data for the regolith core brought to earth by the automatic lunar station Luna 24, Lunar Science Conference, 1977;1977;https://articles.adsabs.harvard.edu//full/1977LPSC....8.3303B/0003311.000.html;NA42Luna 24;NA;ROSCOSMOS;12.7142N 62.2129E;Mare;1976;Lander;Core tube;In-Situ;1.6 - 2.1;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA43Apollo 11;NA;NASA;0.67416N 23.47314E;Mare;1969;Crewed;Spacecraft touchdown analysis ;In-Situ;0.75 - 1.75;NA;NA;5.5 - 14.48;NA;NA;NA;NA;NA;NA;NA;Apollo 11 preliminary science report, NASA SP-214;1969;https://www.nasa.gov/history/alsj/a11/a11psr.html;NA44Apollo 11;NA;NASA;0.67416N 23.47314E;Mare;1969;Crewed;Core tube;On Earth;1.77;NA;0.34 - 1.38;NA;NA;NA;NA;NA;0 - 2;NA;10.5;Apollo 11 preliminary science report, NASA SP-214;1969;https://www.nasa.gov/history/alsj/a11/a11psr.html;NA45Apollo 11;NA;NASA;0.67416N 23.47314E;Mare;1969;Crewed;Core tube;In-Situ;1.54 - 1.75;37 - 45;0.75 - 2.1;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA46Apollo 11;NA;NASA;0.67416N 23.47314E;Mare;1969;Crewed;Penetrometer;On Earth;1.81 - 1.92;42 - 38;0.25 - 0.85;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA47Apollo 11;NA;NASA;0.67416N 23.47314E;Mare;1969;Crewed;Penetrometer;On Earth;1.36;NA;NA;NA;NA;NA;NA;NA;0 - 2;NA;1.82;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA48Apollo 11;NA;NASA;0.67416N 23.47314E;Mare;1969;Crewed;Penetrometer;On Earth;1.8;NA;NA;NA;NA;NA;NA;NA;0 - 2;NA;54.5;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA49Apollo 11;NA;NASA;0.67416N 23.47314E;Mare;1969;Crewed;Core Tube ;On Earth;1.66;NA;NA;NA;NA;NA;NA;NA;0 - 10;46.5;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA50Apollo 11;NA;NASA;0.67416N 23.47314E;Mare;1969;Crewed;NA;On Earth;1.36;NA;NA;NA;NA;1.21;3.01;NA;NA;NA;NA;V. Gromov, Physical and mechanical properties of lunar and planetary soils, Kluwer Academic Publishers, 1999;1999;https://doi.org/10.1023/A:1006353510204;Loose soil density value51Apollo 11;NA;NASA;0.67416N 23.47314E;Mare;1969;Crewed;NA;On Earth;1.8;NA;NA;NA;NA;0.67;3.01;NA;NA;NA;NA;V. Gromov, Physical and mechanical properties of lunar and planetary soils, Kluwer Academic Publishers, 1999;1999;https://doi.org/10.1023/A:1006353510204;Compacted soil density value52Apollo 11;NA;NASA;0.67416N 23.47314E;Mare;1969;Crewed;Core tube ;In-situ;NA;37 - 45;0.71 - 2.1;NA;NA;NA;NA;NA;NA;NA;NA;E. Slyuta, Physical and mechanical properties of the lunar soil, Solar System Research,2014;2014;https://doi.org/10.1134/S0038094614050050;Depth down to 70cm53Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Spacecraft touchdown analysis ;In-Situ;1.8;NA;NA;5.52 - 7.58;NA;NA;NA;NA;NA;NA;NA;Apollo 12 preliminary science report, NASA SP-235;1970;https://www.nasa.gov/history/alsj/a12/a12psr.html;NA54Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;EVA observations;In-Situ;1.5;35 - 39;0.35 - 0.7;7 - 14;NA;NA;NA;NA;NA;NA;NA;Apollo 12 preliminary science report, NASA SP-235;1970;https://www.nasa.gov/history/alsj/a12/a12psr.html;NA55Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Direct shear;On Earth;1.69 - 2.02;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;Apollo 12 preliminary science report, NASA SP-235;1970;https://www.nasa.gov/history/alsj/a12/a12psr.html;NA56Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Core tube;In-Situ;1.7 - 1.9;38 - 44;0.56 - 0.75;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA57Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Vacuum Direct shear;On Earth;NA;28 - 35;0 - 0.7;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA58Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Direct shear;On Earth;NA;13 - 56;0.1 - 3.1;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA59Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Triaxial shear;On Earth;NA;51 - 59;0 - 1;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA60Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Core tube;In-Situ;1.6 - 2;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA61Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Core tube;In-Situ;1.55 - 1.9;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA62Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Direct shear ;On Earth;1.15;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;V. Gromov, Physical and mechanical properties of lunar and planetary soils, Kluwer Academic Publishers, 1999;1999;https://doi.org/10.1023/A:1006353510204;Loose soil density value63Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Direct shear ;On Earth;1.93;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;V. Gromov, Physical and mechanical properties of lunar and planetary soils, Kluwer Academic Publishers, 1999;1999;https://doi.org/10.1023/A:1006353510204;Compacted soil density value64Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Direct shear ;On Earth;1.67 - 1.82;NA;NA;NA;0.08 - 67.5;NA;NA;0.04 - 0.11;NA;NA;NA;E. Slyuta, Physical and mechanical properties of the lunar soil, Solar System Research,2014;2014;https://doi.org/10.1134/S0038094614050050;NA65Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Direct shear ;On Earth;1.84 - 1.92;NA;NA;NA;0.09 - 31.2;NA;NA;0.012 - 0.062;NA;NA;NA;E. Slyuta, Physical and mechanical properties of the lunar soil, Solar System Research,2014;2014;https://doi.org/10.1134/S0038094614050050;NA66Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Direct shear ;On Earth;1.91 - 2;NA;NA;NA;1.9 - 69.9;NA;NA;0.03 - 0.09;NA;NA;NA;E. Slyuta, Physical and mechanical properties of the lunar soil, Solar System Research,2014;2014;https://doi.org/10.1134/S0038094614050050;NA67Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Direct shear ;On Earth;1.29 - 1.6;NA;NA;NA;0.12 - 28;NA;NA;0.21;NA;NA;NA;E. Slyuta, Physical and mechanical properties of the lunar soil, Solar System Research,2014;2014;https://doi.org/10.1134/S0038094614050050;NA68Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Direct shear ;On Earth;1.4 - 1.64;NA;NA;NA;0.14 - 28;NA;NA;0.11;NA;NA;NA;E. Slyuta, Physical and mechanical properties of the lunar soil, Solar System Research,2014;2014;https://doi.org/10.1134/S0038094614050050;NA69Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Direct shear ;On Earth;1.58 - 1.68;NA;NA;NA;0.14 - 28;NA;NA;0.04;NA;NA;NA;E. Slyuta, Physical and mechanical properties of the lunar soil, Solar System Research,2014;2014;https://doi.org/10.1134/S0038094614050050;NA70Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Direct shear;On Earth;0.99;13;0.3;NA;0.14;2.12;NA;NA;NA;NA;NA;L. Jaffe, Shear strength of lunar soil from oceanus procellarum, The Moon Vol.8, 1973;1973;https://doi.org/10.1007/BF00562750;Sample analyzed in atmospheric conditions, bulk density and void ratio values are before normal force application, compaction method: light tap71Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Direct shear;On Earth;1.43;17;0.1;NA;0.14;1.17;NA;NA;NA;NA;NA;L. Jaffe, Shear strength of lunar soil from oceanus procellarum, The Moon Vol.8, 1973;1973;https://doi.org/10.1007/BF00562750;Sample analyzed in atmospheric conditions, bulk density and void ratio values are before normal force application, compaction method: light tap72Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Direct shear;On Earth;1.6;19;0.5;NA;0.14;0.94;NA;NA;NA;NA;NA;L. Jaffe, Shear strength of lunar soil from oceanus procellarum, The Moon Vol.8, 1973;1973;https://doi.org/10.1007/BF00562750;Sample analyzed in atmospheric conditions, bulk density and void ratio values are before normal force application, compaction method: hard tap73Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Direct shear;On Earth;1.7;14;3.1;NA;28;0.82;NA;NA;NA;NA;NA;L. Jaffe, Shear strength of lunar soil from oceanus procellarum, The Moon Vol.8, 1973;1973;https://doi.org/10.1007/BF00562750;Sample analyzed in atmospheric conditions, bulk density and void ratio values are before normal force application 74Apollo 12;NA;NASA;3.01239S 23.42157W;Mare;1970;Crewed;Direct shear;On Earth;1.87;56;2.8;NA;28;0.66;NA;NA;NA;NA;NA;L. Jaffe, Shear strength of lunar soil from oceanus procellarum, The Moon Vol.8, 1973;1973;https://doi.org/10.1007/BF00562750;Sample analyzed in atmospheric conditions, bulk density and void ratio values are before normal force application 75Apollo 14;NA;NASA;3.42S 19.67W;Highland;1971;Crewed;Rover tracks;In-Situ;1.87;37;NA;NA;NA;NA;NA;NA;NA;NA;NA;Apollo 14 preliminary science report, NASA SP-272;1971;https://www.nasa.gov/history/alsj/a14/a14psr.html;NA76Apollo 14;NA;NASA;3.42S 19.67W;Highland;1971;Crewed;Penetrometer;In-Situ;1.5;35 - 37;0.35 - 0.7;NA;NA;NA;NA;NA;NA;NA;NA;Apollo 14 preliminary science report, NASA SP-272;1971;https://www.nasa.gov/history/alsj/a14/a14psr.html;NA77Apollo 14;NA;NASA;3.42S 19.67W;Highland;1971;Crewed;Trench experiment;In-Situ;1.9*;35*;0.03 - 0.1;NA;NA;NA;NA;NA;NA;NA;NA;Apollo 14 preliminary science report, NASA SP-272;1971;https://www.nasa.gov/history/alsj/a14/a14psr.html;NA78Apollo 14;NA;NASA;3.42S 19.67W;Highland;1971;Crewed;Penetrometer;In-Situ;NA;NA;NA;NA;NA;NA;NA;NA;0 - 44;NA;71 - 134;Apollo 14 preliminary science report, NASA SP-272;1971;https://www.nasa.gov/history/alsj/a14/a14psr.html;NA79Apollo 14;NA;NASA;3.42S 19.67W;Highland;1971;Crewed;Penetrometer;In-Situ;NA;NA;NA;NA;NA;NA;NA;NA;0 - 62;NA;134 - 223;Apollo 14 preliminary science report, NASA SP-272;1971;https://www.nasa.gov/history/alsj/a14/a14psr.html;NA80Apollo 14;NA;NASA;3.42S 19.67W;Highland;1971;Crewed;Core Tube ;On Earth;1.75;NA;NA;NA;NA;NA;NA;NA;0 - 36;NA;NA;Apollo 14 preliminary science report, NASA SP-272;1971;https://www.nasa.gov/history/alsj/a14/a14psr.html;NA81Apollo 14;NA;NASA;3.42S 19.67W;Highland;1971;Crewed;Trench experiment;In-Situ;NA;35 - 45;0.03 - 0.1;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA82Apollo 14;NA;NASA;3.42S 19.67W;Highland;1971;Crewed;Rover tracks;In-Situ;NA;37 - 47;NA;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA83Apollo 14;NA;NASA;3.42S 19.67W;Highland;1971;Crewed;Core tube;In-Situ;1.45 - 1.6;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA84Apollo 14;NA;NASA;3.42S 19.67W;Highland;1971;Crewed;Drill core ;On Earth;0.87 - 0.89;NA;NA;NA;NA;2.26 - 2.37;2.9 - 2.93;NA;NA;NA;NA;V. Gromov, Physical and mechanical properties of lunar and planetary soils, Kluwer Academic Publishers, 1999;1999; https://doi.org/10.1016/0031-9201(92)90060-9;Loose soil density value85Apollo 14;NA;NASA;3.42S 19.67W;Highland;1971;Crewed;Drill core ;On Earth;1.55 - 1.51;NA;NA;NA;NA;0.87 - 0.94;2.9 - 2.93;NA;NA;NA;NA;V. Gromov, Physical and mechanical properties of lunar and planetary soils, Kluwer Academic Publishers, 1999;1999; https://doi.org/10.1016/0031-9201(92)90060-9;Compacted soil density value86Apollo 14;NA;NASA;3.42S 19.67W;Highland;1971;Crewed;Drill core ;In-Situ;1.55 - 1.9;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;E. Slyuta, Physical and mechanical properties of the lunar soil, Solar System Research,2014;2014;https://doi.org/10.1134/S0038094614050050;NA87Apollo 14;NA;NASA;3.42S 19.67W;Highland;1971;Crewed;Trench experiment;In-Situ;NA;35 - 45;0.03 - 0.1;NA;NA;NA;NA;NA;NA;NA;NA;E. Slyuta, Physical and mechanical properties of the lunar soil, Solar System Research,2014;2014;https://doi.org/10.1134/S0038094614050050;NA88Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Penetrometer;In-Situ;1.97;49.5;1;NA;NA;NA;NA;NA;NA;NA;NA;Apollo 15 preliminary science report, NASA SP-289;1971;https://www.nasa.gov/history/alsj/a15/a15psr.html;NA89Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Trench experiment;In-Situ;1.8*;51.7;0.94;NA;NA;NA;NA;NA;NA;NA;NA;Apollo 15 preliminary science report, NASA SP-289;1971;https://www.nasa.gov/history/alsj/a15/a15psr.html;NA90Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Rover tracks;In-Situ;1.63 - 1.83;38.5 - 41;0 - 0.29;NA;NA;NA;NA;NA;NA;NA;NA;Apollo 15 preliminary science report, NASA SP-289;1971;https://www.nasa.gov/history/alsj/a15/a15psr.html;NA91Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Drive tube;In-Situ;1.36;NA;NA;NA;NA;NA;NA;NA;0 - 35;NA;NA;Apollo 15 preliminary science report, NASA SP-289;1971;https://www.nasa.gov/history/alsj/a15/a15psr.html;NA92Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Drive tube;In-Situ;1.64 - 1.69;NA;NA;NA;NA;NA;NA;NA;35 - 70;NA;NA;Apollo 15 preliminary science report, NASA SP-289;1971;https://www.nasa.gov/history/alsj/a15/a15psr.html;NA93Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Drive tube;In-Situ;1.35;NA;NA;NA;NA;NA;NA;NA;0 - 35;NA;NA;Apollo 15 preliminary science report, NASA SP-289;1971;https://www.nasa.gov/history/alsj/a15/a15psr.html;NA94Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Drive tube;In-Situ;1.69;NA;NA;NA;NA;NA;NA;NA;0 - 23;NA;NA;Apollo 15 preliminary science report, NASA SP-289;1971;https://www.nasa.gov/history/alsj/a15/a15psr.html;NA95Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Drive tube;In-Situ;1.79 - 1.91;NA;NA;NA;NA;NA;NA;NA;23 - 68;NA;NA;Apollo 15 preliminary science report, NASA SP-289;1971;https://www.nasa.gov/history/alsj/a15/a15psr.html;NA96Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Drill stem;In-Situ;1.62 - 1.96;NA;NA;NA;NA;NA;NA;NA;0 - 236;NA;NA;Apollo 15 preliminary science report, NASA SP-289;1971;https://www.nasa.gov/history/alsj/a15/a15psr.html;NA97Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Drill stem;In-Situ;1.84;NA;NA;NA;NA;NA;NA;NA;0 - 236;NA;NA;Apollo 15 preliminary science report, NASA SP-289;1971;https://www.nasa.gov/history/alsj/a15/a15psr.html;NA98Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Drill stem;In-Situ;1.75;NA;NA;NA;NA;NA;NA;NA;0 - 236;NA;NA;Apollo 15 preliminary science report, NASA SP-289;1971;https://www.nasa.gov/history/alsj/a15/a15psr.html;NA99Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Drill stem;In-Situ;1.79;NA;NA;NA;NA;NA;NA;NA;0 - 236;NA;NA;Apollo 15 preliminary science report, NASA SP-289;1971;https://www.nasa.gov/history/alsj/a15/a15psr.html;NA100Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Drill stem;In-Situ;1.62;NA;NA;NA;NA;NA;NA;NA;0 - 236;NA;NA;Apollo 15 preliminary science report, NASA SP-289;1971;https://www.nasa.gov/history/alsj/a15/a15psr.html;NA101Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Drill stem;In-Situ;2.15;NA;NA;NA;NA;NA;NA;NA;0 - 236;NA;NA;Apollo 15 preliminary science report, NASA SP-289;1971;https://www.nasa.gov/history/alsj/a15/a15psr.html;NA102Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Penetrometer;In-Situ;NA;NA;NA;NA;NA;NA;NA;NA;0 - 20;NA;NA;Apollo 15 preliminary science report, NASA SP-289;1971;https://www.nasa.gov/history/alsj/a15/a15psr.html;NA103Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Penetrometer;In-Situ;NA;47.5 - 51.5;NA;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA104Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Trench experiment;In-Situ;NA;50;1;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA105Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Core tube;In-Situ;1.36 - 1.85;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA106Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Drill core;In-Situ;1.62 - 1.93;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA107Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Drill core ;On Earth;1.1;NA;NA;NA;NA;1.94;3.24;NA;NA;NA;NA;V. Gromov, Physical and mechanical properties of lunar and planetary soils, Kluwer Academic Publishers, 1999;1999;https://doi.org/10.1023/A:1006353510204;Loose soil density value108Apollo 15;NA;NASA;26.13224N 3.63400E;Mare;1971;Crewed;Drill core ;On Earth;1.89;NA;NA;NA;NA;0.71;3.24;NA;NA;NA;NA;V. Gromov, Physical and mechanical properties of lunar and planetary soils, Kluwer Academic Publishers, 1999;1999;https://doi.org/10.1023/A:1006353510204;Compacted soil density value109Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Penetrometer;In-Situ;1.7*;46.5;0.6;NA;NA;NA;NA;NA;NA;NA;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA110Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Sample return;In-Situ;1.75;46.5*;1.3;NA;NA;NA;NA;NA;NA;NA;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA111Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Drive tube;In-Situ;1.47;NA;NA;NA;NA;NA;NA;NA;0 - 32;52;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA112Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Drive tube;In-Situ;1.72;NA;NA;NA;NA;NA;NA;NA;32 - 65;43.5;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA113Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Drive tube;In-Situ;1.48;NA;NA;NA;NA;NA;NA;NA;0 - 28;51.5;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA114Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Drive tube;In-Situ;1.63;NA;NA;NA;NA;NA;NA;NA;29 - 63;46.5;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA115Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Drive tube;In-Situ;1.39;NA;NA;NA;NA;NA;NA;NA;0 - 32;53.5;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA116Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Drive tube;In-Situ;1.66;NA;NA;NA;NA;NA;NA;NA;32 - 66;45.5;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA117Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Drive tube;In-Situ;1.59;NA;NA;NA;NA;NA;NA;NA;0 - 27;48;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA118Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Drill stem;In-Situ;1.46;NA;NA;NA;NA;NA;NA;NA;0 - 223;52;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA119Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Drill stem;In-Situ;1.43;NA;NA;NA;NA;NA;NA;NA;0 - 223;53;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA120Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Drill stem;In-Situ;1.56;NA;NA;NA;NA;NA;NA;NA;0 - 223;49;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA121Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Drill stem;In-Situ;1.66;NA;NA;NA;NA;NA;NA;NA;0 - 223;45.5;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA122Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Drill stem;In-Situ;1.75;NA;NA;NA;NA;NA;NA;NA;0 - 223;42.5;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA123Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Penetrometer;In-Situ;2.04;NA;NA;NA;NA;NA;NA;NA;0 - 8;33;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA124Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Penetrometer;In-Situ;1.97;NA;NA;NA;NA;NA;NA;NA;0 - 25;33.5;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA125Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Penetrometer;In-Situ;1.97;NA;NA;NA;NA;NA;NA;NA;0 - 25;35.5;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA126Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Penetrometer;In-Situ;1.68;NA;NA;NA;NA;NA;NA;NA;0 - 5;45;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA127Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Penetrometer;In-Situ;1.71;NA;NA;NA;NA;NA;NA;NA;0 - 5;44;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA128Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Penetrometer;In-Situ;1.89;NA;NA;NA;NA;NA;NA;NA;0 - 20;38;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA129Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Penetrometer;In-Situ;1.77;NA;NA;NA;NA;NA;NA;NA;0 - 25;42;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA130Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Penetrometer;In-Situ;1.87;NA;NA;NA;NA;NA;NA;NA;0 - 25;39;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA131Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Footprint analysis;In-Situ;1.73;NA;NA;NA;NA;NA;NA;NA;0 - 10;43.1;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA132Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Footprint analysis;In-Situ;1.67;NA;NA;NA;NA;NA;NA;NA;0 - 10;45.2;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA133Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Footprint analysis;In-Situ;1.69;NA;NA;NA;NA;NA;NA;NA;0 - 10;44.8;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA134Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Footprint analysis;In-Situ;1.69;NA;NA;NA;NA;NA;NA;NA;0 - 10;44.8;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA135Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Footprint analysis;In-Situ;1.68;NA;NA;NA;NA;NA;NA;NA;0 - 10;45;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA136Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Footprint analysis;In-Situ;1.73;NA;NA;NA;NA;NA;NA;NA;0 - 10;43.7;NA;Apollo 16 preliminary science report, NASA SP-315;1972;https://www.nasa.gov/history/alsj/a16/a16psr.html;NA137Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Penetrometer;In-Situ;NA;46.5;0.6;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA138Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Penetrometer;In-Situ;NA;49.5;0.37;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA139Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Penetrometer;In-Situ;NA;50 - 47;0.25 - 0.6;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA140Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Drill core;In-Situ;1.47 - 1.75;46.5;1.3;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA141Apollo 16;NA;NASA;8.97301S 15.49812E;Highland;1972;Crewed;Core tube;In-Situ;1.4 - 1.8;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA142Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Rover tracks;In-Situ;1.6;35;0.17;NA;NA;NA;NA;NA;NA;NA;NA;Apollo 17 preliminary science report, NASA SP-330;1972;https://www.nasa.gov/history/alsj/a17/a17psr.html;NA143Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Drive tube;In-Situ;1.6;NA;NA;NA;NA;NA;NA;NA;0 - 22;NA;NA;Apollo 17 preliminary science report, NASA SP-330;1972;https://www.nasa.gov/history/alsj/a17/a17psr.html;NA144Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Drive tube;In-Situ;1.73;NA;NA;NA;NA;NA;NA;NA;22 - 70;NA;NA;Apollo 17 preliminary science report, NASA SP-330;1972;https://www.nasa.gov/history/alsj/a17/a17psr.html;NA145Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Drive tube;In-Situ;2.04;NA;NA;NA;NA;NA;NA;NA;0 - 33;NA;NA;Apollo 17 preliminary science report, NASA SP-330;1972;https://www.nasa.gov/history/alsj/a17/a17psr.html;NA146Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Drive tube;In-Situ;2.29;NA;NA;NA;NA;NA;NA;NA;33 - 71;NA;NA;Apollo 17 preliminary science report, NASA SP-330;1972;https://www.nasa.gov/history/alsj/a17/a17psr.html;NA147Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Drive tube;In-Situ;1.57;NA;NA;NA;NA;NA;NA;NA;0 - 16;NA;NA;Apollo 17 preliminary science report, NASA SP-330;1972;https://www.nasa.gov/history/alsj/a17/a17psr.html;NA148Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Drive tube;In-Situ;1.67;NA;NA;NA;NA;NA;NA;NA;0 - 20;NA;NA;Apollo 17 preliminary science report, NASA SP-330;1972;https://www.nasa.gov/history/alsj/a17/a17psr.html;NA149Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Drive tube;In-Situ;1.74;NA;NA;NA;NA;NA;NA;NA;20 - 71;NA;NA;Apollo 17 preliminary science report, NASA SP-330;1972;https://www.nasa.gov/history/alsj/a17/a17psr.html;NA150Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Drive tube;In-Situ;1.77;NA;NA;NA;NA;NA;NA;NA;0 - 28;NA;NA;Apollo 17 preliminary science report, NASA SP-330;1972;https://www.nasa.gov/history/alsj/a17/a17psr.html;NA151Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Drill stem;In-Situ;1.99;NA;NA;NA;NA;NA;NA;NA;0 - 305;NA;NA;Apollo 17 preliminary science report, NASA SP-330;1972;https://www.nasa.gov/history/alsj/a17/a17psr.html;NA152Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Drill stem;In-Situ;1.8;NA;NA;NA;NA;NA;NA;NA;0 - 305;NA;NA;Apollo 17 preliminary science report, NASA SP-330;1972;https://www.nasa.gov/history/alsj/a17/a17psr.html;NA153Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Drill stem;In-Situ;1.85;NA;NA;NA;NA;NA;NA;NA;0 - 305;NA;NA;Apollo 17 preliminary science report, NASA SP-330;1972;https://www.nasa.gov/history/alsj/a17/a17psr.html;NA154Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Drill stem;In-Situ;1.84;NA;NA;NA;NA;NA;NA;NA;0 - 305;NA;NA;Apollo 17 preliminary science report, NASA SP-330;1972;https://www.nasa.gov/history/alsj/a17/a17psr.html;NA155Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Drill stem;In-Situ;1.83;NA;NA;NA;NA;NA;NA;NA;0 - 305;NA;NA;Apollo 17 preliminary science report, NASA SP-330;1972;https://www.nasa.gov/history/alsj/a17/a17psr.html;NA156Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Drill stem;In-Situ;1.74;NA;NA;NA;NA;NA;NA;NA;0 - 305;NA;NA;Apollo 17 preliminary science report, NASA SP-330;1972;https://www.nasa.gov/history/alsj/a17/a17psr.html;NA157Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Drill core;In-Situ;1.74 - 1.99;50 - 30;1.1 - 1.8;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA158Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Core tube;In-Situ;1.57 - 2.29;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA159Apollo 17;NA;NASA;20.1911N 30.7723E;Mare;1972;Crewed;Rover tracks;In-Situ;NA;35;0.17;NA;NA;NA;NA;NA;NA;NA;NA;Grant H. Heiken, David T. Vaniman, Bevan M. French, Lunar Sourcebook: a user's guide to the Moon, Cambridge University Press, 1991;1991;https://doi.org/10.1016/0031-9201(92)90060-9;NA160Chang'e 3;NA;CNSA;44.1189N 340.487E;Mare;2013;Rover;Lunar Penetration Radar;In-Situ;1.63;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;Zehua Donga, Guangyou Fang, Parameters and structure of lunar regolith in Chang E-3 landing area from lunar penetrating radar (LPR) data, 2016;2016;https://doi.org/10.1016/j.icarus.2016.09.010;NA161Chang'e 4;NA;CNSA;45.44N 177.59E;Mare;2019;Rover;Rover tracks;In-Situ;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;Zhencheng Tang , Jianjun Liu, Physical and Mechanical Characteristics of Lunar Soil at the Chang E?4 Landing Site, 2020;2020;https://doi.org/10.1029/2020GL089499;NA162Chang'e 5;NA;CNSA;43.06N 51.92W;Mare;2020;Rover;SEM;On Earth;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;Hui Zhang, Xian Zhang, Size, morphology, and composition of lunar samples returned by Chang E-5 mission, 2021;2021;https://doi.org/10.1007/s11433-021-1818-1;NA163Chandrayaan 3;NA;ISRO;69.37S 32.31E;Highland;2023;Rover;Surface Thermophysical Experiment;In-Situ;1.3;NA;NA;NA;NA;NA;NA;NA;NA;NA;NA;Nizy Mathew, K. Durga Prasad, Chandrayaan 3 s surface thermophysical experiment (ChaSTE) onboard Chandrayaan 3 Lander, 2025;2025;https://doi.org/10.1016/j.asr.2025.01.022;NA164Lunar Reconnaisance Orbiter ;NA;NASA;NA;Highland;2009;Remote sensing;Boulder tracks;Remote;1.39 - 1.66;30;1;38 - 66;NA;NA;NA;NA;0 - 100;NA;NA;V.T. Bickel, et al., Analysis of Lunar Boulder Tracks: Implications for Trafficability of Pyroclastic Deposits, 2019;2019;https://doi.org/10.1029/2018JE005876;Bearing capacity using Hansen's method at slope angle 0 degrees, values of density from literature, assuming a cohesion of 1 kPa, angle of internal friction estimation from angle of repose and averaged for a terrain 165Lunar Reconnaisance Orbiter ;NA;NASA;NA;Highland;2009;Remote sensing;Boulder tracks;Remote;1.39 - 1.66;30;1;142 - 190;NA;NA;NA;NA;100 - 200;NA;NA;V.T. Bickel, et al., Analysis of Lunar Boulder Tracks: Implications for Trafficability of Pyroclastic Deposits, 2019;2019;https://doi.org/10.1029/2018JE005876;Bearing capacity using Hansen's method at slope angle 0 degrees, values of density from literature, assuming a cohesion of 1 kPa, angle of internal friction estimation from angle of repose and averaged for a terrain 166Lunar Reconnaisance Orbiter ;NA;NASA;NA;Highland;2009;Remote sensing;Boulder tracks;Remote;1.39 - 1.66;30;1;251 - 377;NA;NA;NA;NA;200 - 600;NA;NA;V.T. Bickel, et al., Analysis of Lunar Boulder Tracks: Implications for Trafficability of Pyroclastic Deposits, 2019;2019;https://doi.org/10.1029/2018JE005876;Bearing capacity using Hansen's method at slope angle 0 degrees, values of density from literature, assuming a cohesion of 1 kPa, angle of internal friction estimation from angle of repose and averaged for a terrain 167Lunar Reconnaisance Orbiter ;NA;NASA;NA;Highland;2009;Remote sensing;Boulder tracks;Remote;1.39 - 1.66;30;1;607 - 809;NA;NA;NA;NA;600 - 1500;NA;NA;V.T. Bickel, et al., Analysis of Lunar Boulder Tracks: Implications for Trafficability of Pyroclastic Deposits, 2019;2019;https://doi.org/10.1029/2018JE005876;Bearing capacity using Hansen's method at slope angle 0 degrees, values of density from literature, assuming a cohesion of 1 kPa, angle of internal friction estimation from angle of repose and averaged for a terrain 168Lunar Reconnaisance Orbiter ;NA;NASA;NA;Mare;2009;Remote sensing;Boulder tracks;Remote;1.86 - 1.96;28;1;73 - 97;NA;NA;NA;NA;0 - 100;NA;NA;V.T. Bickel, et al., Analysis of Lunar Boulder Tracks: Implications for Trafficability of Pyroclastic Deposits, 2019;2019;https://doi.org/10.1029/2018JE005876;Bearing capacity using Hansen's method at slope angle 0 degrees, values of density from literature, assuming a cohesion of 1 kPa, angle of internal friction estimation from angle of repose and averaged for a terrain 169Lunar Reconnaisance Orbiter ;NA;NASA;NA;Mare;2009;Remote sensing;Boulder tracks;Remote;1.86 - 1.96;28;1;148 - 186;NA;NA;NA;NA;100 - 200;NA;NA;V.T. Bickel, et al., Analysis of Lunar Boulder Tracks: Implications for Trafficability of Pyroclastic Deposits, 2019;2019;https://doi.org/10.1029/2018JE005876;Bearing capacity using Hansen's method at slope angle 0 degrees, values of density from literature, assuming a cohesion of 1 kPa, angle of internal friction estimation from angle of repose and averaged for a terrain 170Lunar Reconnaisance Orbiter ;NA;NASA;NA;Mare;2009;Remote sensing;Boulder tracks;Remote;1.86 - 1.96;28;1;226 - 326;NA;NA;NA;NA;200 - 600;NA;NA;V.T. Bickel, et al., Analysis of Lunar Boulder Tracks: Implications for Trafficability of Pyroclastic Deposits, 2019;2019;https://doi.org/10.1029/2018JE005876;Bearing capacity using Hansen's method at slope angle 0 degrees, values of density from literature, assuming a cohesion of 1 kPa, angle of internal friction estimation from angle of repose and averaged for a terrain 171Lunar Reconnaisance Orbiter ;NA;NASA;NA;Mare;2009;Remote sensing;Boulder tracks;Remote;1.86 - 1.96;28;1;758 - 894;NA;NA;NA;NA;600 - 1500;NA;NA;V.T. Bickel, et al., Analysis of Lunar Boulder Tracks: Implications for Trafficability of Pyroclastic Deposits, 2019;2019;https://doi.org/10.1029/2018JE005876;Bearing capacity using Hansen's method at slope angle 0 degrees, values of density from literature, assuming a cohesion of 1 kPa, angle of internal friction estimation from angle of repose and averaged for a terrain 172Lunar Reconnaisance Orbiter ;NA;NASA;NA;Pyroclastic deposits;2009;Remote sensing;Boulder tracks;Remote;1.63 - 1.85;31;1;110 - 152;NA;NA;NA;NA;0 - 100;NA;NA;V.T. Bickel, et al., Analysis of Lunar Boulder Tracks: Implications for Trafficability of Pyroclastic Deposits, 2019;2019;https://doi.org/10.1029/2018JE005876;Bearing capacity using Hansen's method at slope angle 0 degrees, values of density from literature, assuming a cohesion of 1 kPa, angle of internal friction estimation from angle of repose and averaged for a terrain 173Lunar Reconnaisance Orbiter ;NA;NASA;NA;Pyroclastic deposits;2009;Remote sensing;Boulder tracks;Remote;1.63 - 1.85;31;1;170 - 230;NA;NA;NA;NA;100 - 200;NA;NA;V.T. Bickel, et al., Analysis of Lunar Boulder Tracks: Implications for Trafficability of Pyroclastic Deposits, 2019;2019;https://doi.org/10.1029/2018JE005876;Bearing capacity using Hansen's method at slope angle 0 degrees, values of density from literature, assuming a cohesion of 1 kPa, angle of internal friction estimation from angle of repose and averaged for a terrain 174Lunar Reconnaisance Orbiter ;NA;NASA;NA;Pyroclastic deposits;2009;Remote sensing;Boulder tracks;Remote;1.63 - 1.85;31;1;257 - 415;NA;NA;NA;NA;200 - 600;NA;NA;V.T. Bickel, et al., Analysis of Lunar Boulder Tracks: Implications for Trafficability of Pyroclastic Deposits, 2019;2019;https://doi.org/10.1029/2018JE005876;Bearing capacity using Hansen's method at slope angle 0 degrees, values of density from literature, assuming a cohesion of 1 kPa, angle of internal friction estimation from angle of repose and averaged for a terrain 175Lunar Reconnaisance Orbiter ;NA;NASA;NA;Pyroclastic deposits;2009;Remote sensing;Boulder tracks;Remote;1.63 - 1.85;31;1;810 - 1476;NA;NA;NA;NA;600 - 1500;NA;NA;V.T. Bickel, et al., Analysis of Lunar Boulder Tracks: Implications for Trafficability of Pyroclastic Deposits, 2019;2019;https://doi.org/10.1029/2018JE005876;Bearing capacity using Hansen's method at slope angle 0 degrees, values of density from literature, assuming a cohesion of 1 kPa, angle of internal friction estimation from angle of repose and averaged for a terrain 176LSS-ISAC-1;ISRO;ISRO;NA;Highland;2020;NA;Triaxial compression;On Earth;1.52;36.34;0.343;NA;NA;NA;NA;NA;NA;NA;NA;S. Anbazhagan, I. Venugopal, A lunar soil simulant (LSS-ISAC-1) for the lunar exploration programme of the Indian Space Research Organisation, 2021;2021;https://doi.org/10.1016/j.icarus.2021.114511;NA177CUG-1A;China University of Geosciences;CNSA;NA;Highland;2010;NA;NA;On Earth;1.45;21;5;NA;NA;NA;NA;NA;NA;NA;NA;X.X. He, L. Xiao, LUNAR REGOLITH SIMULANT CUG-1A, 2010;2010;https://ui.adsabs.harvard.edu/abs/2010LPI....41.1183H;NA178CAS-1;Chinese Academy of Sciences;CNSA;NA;Mare;2005;NA;NA;On Earth;NA;33.3;1;NA;NA;NA;NA;NA;NA;NA;NA;Yongchun Zheng, Shijie Wang, CAS-1 lunar soil simulant, 2009;2009;https://doi.org/10.1016/j.asr.2008.07.006;NA179IGG-01;Chinese Academy of Sciences;CNSA;NA;Moderate-Ti Mare;2024;NA;Direct Shear;On Earth;1.69;41.8;19.2;NA;NA;NA;NA;NA;NA;NA;NA;Ruan Renhao, Yang Wei, A moderate-Ti lunar mare soil simulant: IGG-01, 2024;2024;https://doi.org/10.1016/j.actaastro.2024.08.010;NA180PolyU-1;Chinese Academy of Sciences;CNSA;NA;Mare;2024;NA;Direct Shear;On Earth;1.58;40.3;13.5;NA;NA;NA;NA;NA;NA;NA;NA;Zou Yuan, Wu Huangyu, Development and characterization of the PolyU-1 lunar regolith simulant based on Chang e-5 returned samples, 2024;2024;https://doi.org/10.1016/j.ijmst.2024.08.006;NA181WHU-1;Wuhan University;CNSA;NA;Mare;2025;NA;Triaxial compression;On Earth;1.31 - 1.99;40.57;9.9;NA;NA;NA;NA;NA;NA;NA;NA;Teng Yue, Wang Shun, Influence of loading conditions on mechanical behaviors of lunar regolith simulant WHU-1 based on Chang e-5 returned samples, 2025;2025;https://doi.org/10.1007/s11440-025-02553-7;NA182FJS-1;JAXA;JAXA;NA;Low-Ti Mare;1995;NA;NA;On Earth;NA;39.4;8.13;NA;NA;NA;NA;NA;NA;NA;NA;Maki Syou, Jing Han, Magnetism of Simulated Lunar Regolith of FJS-1, 2014;2014;http://www.bmfsa.org/archive/journal-E/19-2/e2014-19-2-sl01.pdf;NA183TLS-01;Space Zab;GISTDA;NA;Mare;2021;NA;Direct Shear;On Earth;NA;39.4 - 45;1.65 - 8.14;NA;NA;NA;NA;NA;NA;NA;NA;Chancharoen Wares, Seehanam Saran, Development and Mechanical properties of the first Thailand lunar regolith simulant (TLS-01), 2021;2021;https://doi.org/10.3390/IAAI-2021-10583;NA184KLS-1;Korea Institute of Construction Technology;KASA;NA;Highland;2018;NA;Direct Shear;On Earth;NA;44.91;1.85;NA;NA;NA;NA;NA;NA;NA;NA;Ryu Byung-Hyun, Wang Cheng-Can, Development of a Korean Lunar Simulant(KLS-1) and its Possible Further Recommendations, 2018;2018;https://doi.org/10.1061/(ASCE)AS.1943-5525.0000798;NA185EAC-1A;European Astronaut Center;ESA;NA;Low-Ti Mare;2020;NA;Direct Shear;On Earth;1.95;NA;0.38;NA;NA;NA;NA;NA;NA;NA;NA;V.S. Engelschion, S.R. Eriksson, EAC-1A: A novel large-volume lunar regolith simulant, 2020;2020;https://doi.org/10.1038/s41598-020-62312-4;NA186BP-1;NASA;NASA;NA;Low-Ti Mare;2010;NA;Triaxial compression;On Earth;1.43 - 1.86;39 - 51;0 - 2;NA;NA;NA;NA;NA;NA;NA;NA;D.B. Stoeser, D.L. Rickman, Preliminary Geological Findings on the BP-1 Simulant, 2010;2010;https://ntrs.nasa.gov/api/citations/20100036344/downloads/20100036344.pdf;NA187GRC-3;NASA;NASA;NA;NA;2013;NA;Triaxial compression;On Earth;1.52 - 1.94;37.8 - 47.8;NA;NA;NA;NA;NA;NA;NA;NA;NA;He Chunmei, Zeng Xiangwu, Geotechnical Properties of GRC-3 Lunar Simulant, 2013;2013;https://doi.org/10.1061/(ASCE)AS.1943-5525.0000162;NA188LHS-1;Exolith lab;NASA;NA;Highland;2020;NA;Triaxial compression;On Earth;1.6;40.3;1.7;NA;NA;NA;NA;NA;NA;NA;NA;Yin Kexin, Cheng Zhichao, Shear properties of LHS-1 and LMS-1 Lunar regolith simulants, 2023;2023;https://doi.org/10.1016/j.pss.2022.105630;NA189LMS-1;Exolith lab;NASA;NA;Low-Ti Mare;2021;NA;Triaxial compression;On Earth;1.54;40.5;3.9;NA;NA;NA;NA;NA;NA;NA;NA;Yin Kexin, Cheng Zhichao, Shear properties of LHS-1 and LMS-1 Lunar regolith simulants, 2023;2023;https://doi.org/10.1016/j.pss.2022.105630;NA190JSC-1;NASA;NASA;NA;Mare;1994;NA;Triaxial compression;On Earth;1.5;45;1;NA;NA;NA;NA;NA;NA;NA;NA;D.S. McKay, J.L. Carter, JSC-1: A NEW LUNAR SOIL SIMULANT, 1994;1994;https://www.lpi.usra.edu/lunar/strategies/jsc_lunar_simulant.pdf?q=jsc;NA191JSC-1A;ORBITEC;NASA;NA;Low-Ti Mare;2009;NA;Triaxial compression;On Earth;1.63;42.9 - 48.8;1.4 - 2.4;NA;NA;NA;NA;NA;NA;NA;NA;K.A. Alshibli, A. Hasan, Strength Properties of JSC-1A Lunar Regolith Simulant, 2009;2009;https://doi.org/10.1061/(ASCE)GT.1943-5606.0000068;NA192CSM-LHT-1;Colorado School of Mines;NASA;NA;Highland;2021;NA;NA;On Earth;1.5 - 1.9;32;12;NA;NA;NA;NA;NA;NA;NA;NA;A. Slabic, J.E. Gruener, Lunar Regolith Simulant User's Guide: Revision A, 2024;2024;https://ntrs.nasa.gov/citations/20240011783;NA193CSM-LMT-1;Colorado School of Mines;NASA;NA;High-Ti Mare;2021;NA;NA;On Earth;1.5 - 1.76;36;12;NA;NA;NA;NA;NA;NA;NA;NA;A. Slabic, J.E. Gruener, Lunar Regolith Simulant User's Guide: Revision A, 2024;2024;https://ntrs.nasa.gov/citations/20240011783;NA194MLS-1;University of Minnesota;NASA;NA;High-Ti Mare;1988;NA;Triaxial compression;On Earth;1.59 - 2.09;41.4 - 62.3;0.1 - 1.5;NA;NA;NA;NA;NA;NA;NA;NA;A. Slabic, J.E. Gruener, Lunar Regolith Simulant User's Guide: Revision A, 2024;2024;https://ntrs.nasa.gov/citations/20240011783;NA195NU-LHT-4M;USGS;NASA;NA;Highland;2023;NA;NA;On Earth;1.5 - 1.63;38;8;NA;NA;NA;NA;NA;NA;NA;NA;A. Slabic, J.E. Gruener, Lunar Regolith Simulant User's Guide: Revision A, 2024;2024;https://ntrs.nasa.gov/citations/20240011783;NA196OB-1A;Deltion;NASA;NA;Highland;2008;NA;NA;On Earth;1.51 - 1.63;35;15;NA;NA;NA;NA;NA;NA;NA;NA;ARES | Exploration Science Projects | Lunar Regolith Simulants | OB-1, 2010;2010;https://ares.jsc.nasa.gov/projects/simulants/ob-1.html;NA197OPRH3N;Off Planet Research;NASA;NA;Highland;2021;NA;NA;On Earth;1.32 - 1.5;36;12;NA;NA;NA;NA;NA;NA;NA;NA;A. Slabic, J.E. Gruener, Lunar Regolith Simulant User's Guide: Revision A, 2024;2024;https://ntrs.nasa.gov/citations/20240011783;NA198OPRL2N;Off Planet Research;NASA;NA;High-Ti Mare;2021;NA;NA;On Earth;1.31 - 1.54;40;7;NA;NA;NA;NA;NA;NA;NA;NA;A. Slabic, J.E. Gruener, Lunar Regolith Simulant User's Guide: Revision A, 2024;2024;https://ntrs.nasa.gov/citations/20240011783;NA199NAO-1;Chinese Academy of Sciences;CNSA;NA;Highland;2009;NA;Triaxial compression;On Earth;1.93;46.57;95.3;NA;NA;NA;NA;NA;NA;NA;NA;Yongquan Li, Jianzhong Liu, NAO-1: Lunar Highland Soil Simulant Developed in China, 2009;2009;https://doi.org/10.1061/(ASCE)0893-1321(2009)22:1(53);NA200 201