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Will There be a Global ‘Greenhouse’ Warming?

Published online by Cambridge University Press:  24 August 2009

Reid Allen Bryson
Affiliation:
Emeritus Professor of Meteorology of Geography, and of Environmental Studies Center for Climatic Research, Institute for Environmental Studies, University of Wisconsin, 1225 W. Dayton Street, Madison, Wisconsin 53706, USA.

Abstract

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Type
Guest Comment
Copyright
Copyright © Foundation for Environmental Conservation 1989

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References

Bryson, R.A. (1988). What the climatic past tells us about the Environmental Future. Pp. 230–47 in Earth '88, The National Geographic Society, Washington, DC, USA: 392 pp.Google Scholar
Bryson, R.A. (1989). Late Quaternary volcanic modulation of Milankovitch climate forcing. Theoretical and Applied Climatology, 39, pp. 115–25.CrossRefGoogle Scholar
Bryson, R.A. (in press). Modeling the NW India monsoon for the last 40000 years. Climate Dynamics (in press).Google Scholar
Bryson, R.A. & Dittberner, G.J. (1976). A non-equilibrium model of hemispheric mean surface temperatures. Journal of Atmospheric Sciences, 33(11), pp. 2094–106.2.0.CO;2>CrossRefGoogle Scholar
Chamberlain, T.C. (1899). An attempt to frame a working hypothesis of the cause of glacial periods on an atmospheric basis. Jour. Geology, 7, pp. 545–84, 667–85, and 751–87.CrossRefGoogle Scholar
Cohmap Members (1988). Climatic changes of the Last 18000 years: observations and model simulations. Science, 24, pp. 1043–52.Google Scholar
Eddy, J.A. (1976). The Maunder Minimum. Science, 192, pp. 1189–202.CrossRefGoogle ScholarPubMed
Folland, C.K., Parker, D.E. & Kates, F.E. (1984). Worldwide marine temperature fluctuations 1856–1981. Nature (London), 310, pp. 670–3.CrossRefGoogle Scholar
Goodman, B.M. (1984). The Climatic Impact of Volcanic Activity. Ph.D. thesis, Department of Meteorology, University of Wisconsin-Madison, Madison, Wisconsin, USA: 245 pp.Google Scholar
Hansen, J. & Lebedeff, S. (1987). Global trends of measured surface air temperature, J. Geophys. Res., 92, pp. 13345–72.CrossRefGoogle Scholar
Hansen, J. & Lebedeff, S. (1988). Global surface air temperature update through 1987. Geophys. Res. Lett., 15, pp. 323–6.CrossRefGoogle Scholar
Jones, P.D. (1988). Hemispheric surface air temperature variations: recent trends and an update to 1987. J Climate, 1, pp. 654–60.2.0.CO;2>CrossRefGoogle Scholar
Jones, P.O., Bradley, R.S., Diaz, H.F., Kelly, P.M. & Wigley, T.M.L. (1986 a). Northern Hemisphere surface air temperature variations: 1851–1984. J. Climate Appl. Meteor., 25, pp. 161–79.2.0.CO;2>CrossRefGoogle Scholar
Jones, P.D., Raper, S.C.B. & Wigley, T.M.L. (1986 b). Southern Hemisphere surface air temperature variations: 1851–1984. J. Climate Appl. Meteor., 25, pp. 1213–30.2.0.CO;2>CrossRefGoogle Scholar
Karl, T.R. & Jones, P.D. (1989). Urban bias in area-averaged surface air temperature trends. Bull. Amer. Met. Soc., 70, pp. 265–70.2.0.CO;2>CrossRefGoogle Scholar
Milankovitch, M. (1941). Kanon der Erdbestrahlung und seine Anwendung auf das Eiszeiten Problem. R. Serb. Akad. Spec. Publ. (Belgrade), 133, pp. 1613. (English translation published by Israel Program for Scientific Translations, Jerusalem, 1969. Available from U.S. Dept of Commerce, Washington, D.C.)Google Scholar
NOAA (1988). Weekly Climate Bulletin. National Oceanic and Atmospheric Administration, National Weather Service. National Meteorological Center, Washington, DC, USA, No. 88/27, 07 2, 1988, p. 7.Google Scholar