Earth (planet)/Bibliography: Difference between revisions

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*Doran, P.T. (2009). ''[http://tigger.uic.edu/~pdoran/012009_Doran_final.pdf Examining the scientific consensus on climate change]''. ''Eos'' 90(3): 21-22.
*{{CZ:Ref:Nicholson 2009 Ancient micronauts: interplanetary transport of microbes by cosmic impacts}}
*{{CZ:Ref:Nicholson 2009 Ancient micronauts: interplanetary transport of microbes by cosmic impacts}}
*Schneider, S.H., S. Semenov, A. Patwardhan, I. Burton, C.H.D. Magadza, M. Oppenheimer, A.B. Pittock, A. Rahman, J.B. Smith, A. Suarez & F. Yamin (2007). [http://www.ipcc.ch/publications_and_data/ar4/wg2/en/ch19.html Assessing key vulnerabilities and the risk from climate change]. In M.L. Parry, O.F. Canziani, J.P. Palutikof, P.J. van der Linden & C.E. Hanson (eds) ''[http://www.ipcc.ch/publications_and_data/ar4/wg2/en/contents.html Climate Change 2007: Impacts, Adaptation and Vulnerability. Contribution of Working Group II to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change]''. Cambridge: Cambridge University Press. pp.779-810.

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A list of key readings about Earth (planet).
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Abstract: Recent developments in microbiology, geophysics and planetary sciences raise the possibility that the planets in our solar system might not be biologically isolated. Hence, the possibility of lithopanspermia (the interplanetary transport of microbial passengers inside rocks) is presently being re-evaluated, with implications for the origin and evolution of life on Earth and within our solar system. Here, I summarize our current understanding of the physics of impacts, space transport of meteorites, and the potentiality of microorganisms to undergo and survive interplanetary transfer.