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Geological rhythms, cycles and other revolutions

Published online by Cambridge University Press:  01 May 2009

Michael House
Affiliation:
Department of Geology, University of Hull, Hull HU6 7RX, U.K.

Abstract

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Type
Essay Review
Copyright
Copyright © Cambridge University Press 1987

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References

Ager, D. V. 1981. Major marine cycles in the Mesozoic. Journal of the Geological Society of London 138, 159–66.CrossRefGoogle Scholar
Barrell, J. 1917. Rhythms and the measurement of geological time. Bulletin of the Geological Society of America 28, 745904.Google Scholar
Conybeare, W. D. & Phillips, W. 1822. Outline of the Geology of England and Wales. London: W. Phillips. xlv + 470 pp.Google Scholar
Croll, J. 1875. Climate and Time in their Geological Relations. A Theory of Secular Change of the Earth's Climate. London: Daldy, Ibister & Co. xvi + 577 pp.Google Scholar
Dunn, C. E. 1974. Identification of sedimentary cycles through Fourier analysis of geochemical data. Chemical Geology 13, 271–32.CrossRefGoogle Scholar
Einsele, G. & Seilacher, A. (eds). 1982. Cyclic and Event Stratification. Berlin, Heidelberg, New York: Springer-Verlag. xiv + 536 pp.CrossRefGoogle Scholar
Erben, H. K. 1985. Faunal mass extinction by ecocatastrophes? Journal of the Paleontological Society of Korea 1, 185.Google Scholar
Fischer, A. G. 1986. Climatic rhythms recorded in strata. Annual Reviews of Earth and Planetary Sciences 14, 351–76.CrossRefGoogle Scholar
Gilbert, G. K. 1895. Sedimentary measurement of Cretaceous time. Journal of Geology 3, 121–7.CrossRefGoogle Scholar
Gould, S. J. 1985. The paradox of the first tier: an agenda for paleobiology. Paleobiology 11, 212.CrossRefGoogle Scholar
Hallam, A. 1986. The Pliensbachian and Tithonian extinction events. Nature, London 319, 765–8.Google Scholar
Harland, W. B., Holland, C. H., House, M. R., Hughes, N. F., Reynolds, A. B., Rudwick, M. J. S., Satter-Thwaite, G. E., Tarlo, L. B. H. & Willey, E. G. 1967. The Fossil Record. London: The Geological Society. xii + 828 pp.Google Scholar
Hays, J. D., Imbrie, J. & Shackleton, N. J. 1976. Variations in the Earth's orbit; pacemaker of the ice ages. Science 194, 1121–32.CrossRefGoogle ScholarPubMed
Heckel, P. H. 1986. Sea-level curve for Pennsylvanian eustatic marine transgressive–regressive depositional cycles along midcontinent outcrop belt, North America. Geology 14, 330–4.2.0.CO;2>CrossRefGoogle Scholar
Holmes, A. 1944. Principles of Physical Geology. London: Nelson & Sons. xii + 532 pp.Google Scholar
House, M. R. 1985 a. Correlation of mid–Palaeozoic ammonoid evolutionary events with global sedimentary perturbations. Nature, London 313, 1722.Google Scholar
House, M. R. 1985 b. A new approach to an absolute time scale from measurements of orbital cycles and sedimentary microrhythms. Nature, London 316, 721–5.CrossRefGoogle Scholar
Imbrie, J. 1985. A theoretical framework for the ice ages. Journal of the Geological Society of London 142, 417–32.CrossRefGoogle Scholar
Imbrie, J. & Imbrie, K. P. 1979. Ice Ages: Solving the Mystery. Hillside, N. J.: Enslow 224 pp.Google Scholar
Kirkpatrick, R. 19131917. The Nummulosphere. W. Clows & Sons. Lumley & Co., 3 parts, 104+16 + 366 pp.Google Scholar
Milankovitch, M. 1941. Kanon der Erdbestrahlung und seine Anwendung auf das Eiszeitproblem. Köninglich Serbische Akademie Belgrade 133, 633 pp.Google Scholar
Nisbet, E. G. 1985. The conceptual framework of Precambrian stratigraphy: a personal opinion. Geological Magazine 122, 82–4.CrossRefGoogle Scholar
Phillips, J. 1842. Figures and Descriptions of the Palaeozoic Fossils of Cornwall, Devon, and West Somerset. Longman, Brown, Green & Longmans. 231 pp.Google Scholar
Raup, D. M. & Sepkoski, J. J. Jr. 1982. Mass extinction in the marine fossil record. Science 215, 1501–3.Google Scholar
Robinson, N. D. 1986. Fining-upward microrhythms with basal scours in the Chalk of Kent and Surrey, England and their stratigraphic importance. Newsletters on Stratigraphy 17, 21–8.Google Scholar
Sepkoski, J. J. 1982. A compendium of fossil marine families. Contributions in Biology and Geology, Milwaukee Public Museum no. 51, 125 pp.Google Scholar
Sepkoski, J. J. Jr. & Raup, D. M. 1986. Periodicity in marine events. In Dynamics of Extinction (ed. Elliott, D. K.), pp. 336. John Wiley & Sons.Google Scholar
Trueman, A. 1946. Stratigraphical problems in the Coal Measures of Europe and North America. Quarterly Journal of the Geological Society of London 102, xlix-xcii.Google Scholar
Weedon, G. P. 1986. Hemipelagic shelf sedimentation and climatic cycles: the basal Jurassic (Blue Lias) of S. Britain. Earth and Planetary Science Letters 76, 321–35.Google Scholar
Wyatt, A. R. 1986. Post-Triassic hypsometry and sea level. Journal of the Geological Society of London 143, 907–10.Google Scholar