[1] | EARN | 1.) Near-Earth Asteroid Lightcurve Analysis at the Center for Solar System Studies: 2019 January-April, B.D. Warner |
[2] | EARN | 1.) N. G. Simion et al, Spectral properties of near-Earth objects with low-Jovian Tisserand invariant (2021) |
[3] | EARN | 1.) Tedesco, E.F. & J. Gradie (1986) I.A.U. Circ. HREF="http://www.cbat.eps.harvard.edu/iauc/04200/04205.html"> 4205. (1986 DA and 1986 EB) |
[4] | EARN | Earth Asteroids Research Node: https://earn.dlr.de |
[5] | EARN | 1.) Wisniewski, W.Z. (1987) Icarus 70, 566-572. (Photometry of six radar target asteroids)1986 DA, 3199, 3103, and 1983 RD. 1986 JK and 1986 RA 2.) Zeigler, K.W. (1990) M.P.B. 17, 1-3. (1986 DA) 3.) Petr Pravec's Ondrejov NEO Photometric Program Webpage "Prepublished Periods" |
[6] | ESA Aegis | ESA orbit determination and impact monitoring system |
[7] | EARN | 1.) Pravec, P. et al. (2012) Icarus 221, 365-387 (Absolute magnitudes of asteroids and a revision of asteroid albedo estimates from WISE thermal observations) 2.) Petr Pravec's Ondrejov NEO Photometric Program Webpage "Prepublished Periods" |
[8] | EARN | 1.) Pravec, P. et al. (2012) Icarus 221, 365-387 (Absolute magnitudes of asteroids and a revision of asteroid albedo estimates from WISE thermal observations) |
[9] | EARN | 1.) Joseph R. Masiero et al 2021 Planet. Sci. J. 2 162 |
[10] | EARN | 1.) Pravec, P. et al. (2012) Icarus 221, 365-387 (Absolute magnitudes of asteroids and a revision of asteroid albedo estimates from WISE thermal observations) 2.) Mainzer, A. et al. (2011) ApJ 743, 156. (NEOWISE Observations of Near-Earth Objects: Preliminary Results) (albedo and diameters of 428 NEOs) 3.) Tedesco, E.F. & J. Gradie (1986) I.A.U. Circ. HREF="http://www.cbat.eps.harvard.edu/iauc/04200/04205.html"> 4205. (1986 DA and 1986 EB) 4.) Tedesco, E.F. & J.Gradie (1987) Astron. J. 93, 738-746. (Discovery of M class objects among the near-earth asteroid population) 5.) Gradie, J.C. & E.F. Tedesco (1987) LPSC 18, 349. (1986 DA and 1986 EB: Iron Objects in Near-Earth Orbits) 6.) Mainzer, A.; Grav, T.; Masiero, J.; Hand, E.; et al. (2011) Astrophys. J. 741, A90. See also Grav 2012b and Masiero 2012. |
[11] | EARN | 1.) Pravec, P. et al. (2012) Icarus 221, 365-387 (Absolute magnitudes of asteroids and a revision of asteroid albedo estimates from WISE thermal observations) 2.) Mainzer, A. et al. (2011) ApJ 743, 156. (NEOWISE Observations of Near-Earth Objects: Preliminary Results) (albedo and diameters of 428 NEOs) 3.) Harris, A.W. (DLR) (1998) Icarus 131, 291-301. (A Thermal Model for Near-Earth Asteroids) 4.) Harris, A.W. (DLR) & J.S.V Lagerros (2002) in "Asteroids III" (Eds. W.F.Bottke et al.), Univ.Ariz.Press, Tucson, USA, pp. 205-218. (Asteroids in the thermal infrared) 5.) Mainzer, A.; Grav, T.; Masiero, J.; Hand, E.; et al. (2011) Astrophys. J. 741, A90. See also Grav 2012b and Masiero 2012. |
[12] | EARN | 1.) Tedesco, E.F. & J.Gradie (1987) Astron. J. 93, 738-746. (Discovery of M class objects among the near-earth asteroid population) |
[13] | EARN | 1.) Ostro, S.J. et al. (1991) Science 252, 1399-1404. (Asteroid 1986 DA - Radar evidence for a metallic composition) 2.) Ostro, S.J. et al. (1991) In NASA, Washington, Reports of Planetary Astronomy, 174. (Asteroid 1986 DA: Radar evidence for a metallic composition) 3.) Ostro, S.J. et al. (1991) Astron. J. 102, 1490-1502. (Asteroid radar astrometry) |