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化石に残された地球自転速度減少の証拠

増田富士雄著「地球をまるごと考える3 リズミカルな地球の変動」岩波書店(1993年刊)より引用















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  3. Pannella, G., 1976. Tidal growth patterns in Recent and fossil mollusc bivalve shells: A tool for the reconstruction of paleotides. Naturwissenschaften 63: p539〜543.
  4. Pannella, G., C. MacClintock and M. Thompson, 1968. Paleontological evidence of variation in length of synodic month since Late Cambrian. Science 162: p792〜796.
  5. Rosenberg, G. D. and S. K. Runcorn (eds.), 1975. Growth Rhythms and the History of the Earth's Rotation. New York: Wiley.
  6. Scrutton, C. T., 1970. Evidence for a monthly periodicity in the growth of some corals. In: Palaeogeophysics, S. K. Runcorn, ed., London: Academic Press, p11〜16.
  7. Scrutton, C. T., 1978. Periodic growth features in fossil organisms and the length of the day and month. In: Tidal Friction and the Earth's Rotation. P. Brosche and J. Sundermann, eds., Berlin: Springer-Verlag, p154〜196.
  8. Wells, J. W., 1963. Coral growth and geochronometry. Nature 197: p948〜950.
  9. Wells, J. W., 1970. Problems of annual and daily growth-rings in corals. In: Palaeogeophysics, S. K. Runcorn, ed., London: Academic Press, p3〜9.
  10. Williams, G. E., Late Precambrian tidal rhythmites in South Australia and the history of the Earth’s rotation, J. Geol. Soc. London, 146, p97〜111, 1989
  11. Williams, G. E., Precambrian tidal sedimentary cycles and Earth’s paleorotation, Eos Trans. AGU, 70, 33 and p40〜41,1989
  12. Williams, G. E., 1997. Precambrian length of day and the validity of tidal rhythmite paleotidal values. Geophysical Research Letters 24(4): p421〜424.
  13. Williams, G. E., Geological constraints on the precambrian history of earth's rotation, Reviews of Geophysics, 38, 1 / February 2000, p37〜59. これは下記よりダウンロード可
    http://eos.ubc.ca/~mjelline/453website/eosc453/E_prints/1999RG900016.pdf
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