Skip to content
  • Submit your Article
  • Submit your Candle
  • Submit Event
  • Advertise on Diopus
Diopus Logo

Diopus

For the Love of Animals

  • The Love of Animals
    • Animal Abuse Registry
    • Pet Poison Database
    • History of Human/Animal Interactions
    • How to Locate a Wildlife Rehabilitator
    • Animal Abuse Hotlines
    • Animal Welfare Degrees
    • Animal Welfare Laws
    • In Remembrance
  • Our Beautiful Earth
    • New York Events
    • Visiting / Resources in NY
    • Native to NY Glossary
    • New York Natural Disasters
    • Geologic History
    • Natures Myths & Fairy Tales
  • My …………….
    • Lessons
    • Blog
    • Link Directory
    • Magazine – Chronicle of the What Nots!
    • Family Genealogy
    • Poems
  • About
    • Privacy Policy
    • Term & Conditions
    • Mission Statement
    • Position Statement
    • Advertise on Diopus
    • Police Need Your Help
    • Getting Involved
    • Contact Us
    • Submit an Article
  • Toggle search form

Eochaotian

To Add a link that is about the subject, please enter it here. 


  C. Goldblatt1, K. J. Zahnle1, N. H. Sleep2, and E. G. Nisbet3 proposes that “the Chaotian Eon to demarcate geologic time from the origin of the Solar System to the Moonforming impact on Earth. This separates the solar system wide processes of planet formation from the subsequent divergent evolution of the inner planets. We further propose the division of the Hadean Eon into eras and periods and naming the proto-Earth Tellus”. (The Eons of Chaos and Hades)  

Further Information

  • The Eons of Chaos and Hades
  • The Eochaotian Era
  • An Earth Science Course For Maryland Teacher Professional Development EARTH HISTORY AND THE FOSSIL RECORD

References

  1. Martin Bizzarro, David Ulfbeck, Anne Trinquier, Kristine Thrane, James N. Connelly, Bradley S. Meyer (2007). “Evidence for a Late Supernova Injection of 60Fe into the Protoplanetary Disk”. Science 316 (5828): 1178-1181. doi:10.1126/science.1141040. PMID 17525336
  2. Caffe, M. W.; Hohenberg, C. M.; Swindle, T. D.; Goswami, J. N. (February 1, 1987). “Evidence in meteorites for an active early sun”. Astrophysical Journal, Part 2 – Letters to the Editor 313: L31-L35
  3. Canup RM & CB Agnor (2000), Accretion of the terrestrial planets and the Earth-Moon system. In RM Canup & K Righter (eds.), Origin of the Earth and Moon, Univ. Ariz. Press, pp. 113-129.
  4. Jane S. Greaves (2005). “Disks Around Stars and the Growth of Planetary Systems”. Science 307 (5706): 68-71. doi:10.1126/science.1101979. PMID 15637266.
  5. Halliday AN (2004), Mixing, volatile loss and compositional change during impact-driven accretion of the Earth. Nature 427: 505-509.
  6. Jeff Hester, Steven J. Desch, Kevin R. Healy, Laurie A. Leshin (21 May 2004). “The Cradle of the Solar System”. Science 304 (5674): 1116-1117. doi:10.1126/science.1096808. PMID 15155936.
  7. W. M. Irvine (1983). “The chemical composition of the pre-solar nebula”. In T. I. Gombosi (ed.). Cometary Exploration. 1. pp. 3-12.
  8. Nathan A. Kaib and Thomas Quinn (2008). “The formation of the Oort cloud in open cluster environments”. Icarus 197 (1): 221-238. doi:10.1016/j.icarus.2008.03.020.
  9. M. Küker, T. Henning, G. Rüdiger (2003). “Magnetic Star-Disk Coupling in Classical T Tauri Systems”. Astrophysical Journal 589 (1): 397. doi:10.1086/374408.
  10. Charles H. Lineweaver (2001). “An Estimate of the Age Distribution of Terrestrial Planets in the Universe: Quantifying Metallicity as a Selection Effect”. Icarus 151 (2): 307. arXiv:astro-ph/0012399. doi:10.1006/icar.2001.6607.
  11. M. Momose, Y. Kitamura, S. Yokogawa, R. Kawabe, M. Tamura, S. Ida (2003). “Investigation of the Physical Properties of Protoplanetary Disks around T Tauri Stars by a High-resolution Imaging Survey at lambda = 2 mm”. In Ikeuchi, S., Hearnshaw, J. and Hanawa, T. (eds.) (PDF). The Proceedings of the IAU 8th Asian-Pacific Regional Meeting, Volume I. 289. Astronomical Society of the Pacific Conference Series. pp. 85.
  12. Thierry Montmerle, Jean-Charles Augereau, Marc Chaussidon (2006). “Solar System Formation and Early Evolution: the First 100 Million Years”. Earth, Moon, and Planets (Spinger) 98 (1-4): 39-95. doi:10.1007/s11038-006-9087-5.
  13. Nittler, L. R.: Presolar stardust in meteorites: recent advances and scientific frontiers, Earth Planet. Sci. Lett., 209, 259–273, doi: 10.1016/S0012-821X(02)01153-6, 2003.
  14. Deborah L. Padgett, Wolfgang Brandner, Karl R. Stapelfeldt et al. (March 1999). “Hubble Space Telescope/NICMOS Imaging of Disks and Envelopes around Very Young Stars”. The Astronomical Journal 117 (3): 1490-1504. arXiv:astro-ph/9902101. doi:10.1086/300781.
  15. Simon F. Portegies Zwart (2009). “The Lost Siblings of the Sun”. Astrophysical Journal 696 (L13-L16): L13. doi:10.1088/0004-637X/696/1/L13.
  16. J. J. Rawal (1986). “Further Considerations on Contracting Solar Nebula” (PDF). Earth, Moon, and Planets (Springer Netherlands) 34 (1): 93-100. doi:10.1007/BF00054038. Retrieved 2006-12-27.
  17. Williams, J. (2010). “The astrophysical environment of the solar birthplace”. Contemporary Physics 51 (5): 381-396. doi:10.1080/00107511003764725.
  18. Sukyoung Yi, Pierre Demarque, Yong-Cheol Kim, Young-Wook Lee, Chang H. Ree, Thibault Lejeune, Sydney Barnes (2001). “Toward Better Age Estimates for Stellar Populations: The Y2 Isochrones for Solar Mixture”. Astrophysical Journal Supplement 136: 417. arXiv:astro-ph/0104292. doi:10.1086/321795.
  19. Ann Zabludoff (University of Arizona) (Spring 2003). “Lecture 13: The Nebular Theory of the origin of the Solar System”. Retrieved 2006-12-27.
  20. Michael A. Zeilik, Stephen A. Gregory (1998). Introductory Astronomy & Astrophysics (4th ed.). Saunders College Publishing. ISBN 0-03-006228-4. ,
Post Views: 0

NY Vendors

Weekly Video

https://www.youtube.com/watch?v=5NZiilDHIbM

Policies & Statements

  • Privacy Policy
  • Position Statement
  • Mission Statement
  • Term & Conditions

Contact

  • Contact Diopus Customer Service
Rotterdam, New York info@diopus.com

Copyright © 2026 Diopus.

Powered by PressBook Blog WordPress theme