312
and effect in the United States climate record. J. Climate 1, 1099-1123 (4.2)
Karl, T.R., p.n. Jones, R.W. Knight, G. Kukla, N. Plummer, V.
Razuvayev, K.P. Gallo, J. Lindesay, R.J. Charlson and T.C. Peterson, 1993: Asymmetrie trends of daily maximum and minimum temperature: empirical evidence and possible causes. BuH. Am. Meteor. Soc. 74,
1007-1023 (4.3,4.5)
Karoly, n.J., 1984: Typicalness ofthe FGGE year in the Southern Hemisphere. In, GARP Special ~eport No. 42, World Meteor. Organization,
WMO/TD - No. 22, Geneva, 129-143 (4.2)
Karoly, D.J., 1987: Southern Hemisphere temperature trends: A possible
greenhouse gas effect? Geophys. Res. Lett. 14,1139-1141 (4.4)
Karoly, D.J., 1989: Northern Hemisphere temperature trends: A possible
greenhouse gas effect? Geophys. Res. Lett. 16,465-468 (4.4)
Karoly, D.J., 1994: Observed variability of the Southern Hemisphere atmospheric criculation. In W. Sprigg (Ed.) Climate Variability on Decadeto-Century Time Scales. National Research Council/National Academy of
Sciences, Washington D.C. (in press) (4.4)
Karoly, D.J., J.A. Cohen, G.A. Meehl, J.F.B. MitchelI, A.H. Oort,
R.J. Stouffer and R.T. Wetherald, 1994: An example of fingerprint
detection of greenhouse climate change. Climate Dynamics (in press) (8.2)
Katz, R.W., 1982: Statistical evaluation of climate experiments with general circulation models: A par ametrie time series modeling approach. J.
Atmos. Sei. 39, 1446-1455 (2.4)
Kavvas, M. L., and J. W. Delleur, 1981: A stochastic cluster model of
daily rainfaH sequences. Water Resour. Res., 17(4), 1151-1160 (11.3)
Kimoto, M. and M. Ghil, 1993: Multiple flow regimes in the Northern
hemisphere winter. Part 11: Sectorial regimes and preferred transitions. J.
Atmos. Sei. 50, 2645-2673 (14.4)
Kulkarni, A. and H. von Storch, 1995: Monte Carlo experiments on the
effect of serial correlation on the Mann-KendaH test of trend. Meteorol. Z.
(in press) (2.3)
Kushnir, Y., 1994: Interdecadal variations in North Atlantic sea surface
temperature and assoeiated atmospheric conditions. J. Climate 7, 142-157
(3.4)
Kushnir, Y. and N.C. Lau, 1992: The general eirculation model response
to a North Paeific SST anomaly: Dependence on time scale and pattern polarity. J. Climate 5, 271-283 (3.4)
Kushnir, Y. and J.M. Wallace, 1989: Low frequency variability in the
Northern Hemisphere winter. Geographical distribution, structure and time
dependence. J. Atmos. Sei. 46,3122-3142. (12.1)
Kutzbach, G., 1979: The thermal theory of cyclones. AMS Monograph,
Boston, 254pp. (1.1)
Kutzbach, J .E. and R.A. Bryson, 1974: Variance spectrum of holocene
climatic fluctuations in the North Atlantic sector. J. Atmos. Sei. 31,1958-
and effect in the United States climate record. J. Climate 1, 1099-1123 (4.2)
Karl, T.R., p.n. Jones, R.W. Knight, G. Kukla, N. Plummer, V.
Razuvayev, K.P. Gallo, J. Lindesay, R.J. Charlson and T.C. Peterson, 1993: Asymmetrie trends of daily maximum and minimum temperature: empirical evidence and possible causes. BuH. Am. Meteor. Soc. 74,
1007-1023 (4.3,4.5)
Karoly, n.J., 1984: Typicalness ofthe FGGE year in the Southern Hemisphere. In, GARP Special ~eport No. 42, World Meteor. Organization,
WMO/TD - No. 22, Geneva, 129-143 (4.2)
Karoly, D.J., 1987: Southern Hemisphere temperature trends: A possible
greenhouse gas effect? Geophys. Res. Lett. 14,1139-1141 (4.4)
Karoly, D.J., 1989: Northern Hemisphere temperature trends: A possible
greenhouse gas effect? Geophys. Res. Lett. 16,465-468 (4.4)
Karoly, D.J., 1994: Observed variability of the Southern Hemisphere atmospheric criculation. In W. Sprigg (Ed.) Climate Variability on Decadeto-Century Time Scales. National Research Council/National Academy of
Sciences, Washington D.C. (in press) (4.4)
Karoly, D.J., J.A. Cohen, G.A. Meehl, J.F.B. MitchelI, A.H. Oort,
R.J. Stouffer and R.T. Wetherald, 1994: An example of fingerprint
detection of greenhouse climate change. Climate Dynamics (in press) (8.2)
Katz, R.W., 1982: Statistical evaluation of climate experiments with general circulation models: A par ametrie time series modeling approach. J.
Atmos. Sei. 39, 1446-1455 (2.4)
Kavvas, M. L., and J. W. Delleur, 1981: A stochastic cluster model of
daily rainfaH sequences. Water Resour. Res., 17(4), 1151-1160 (11.3)
Kimoto, M. and M. Ghil, 1993: Multiple flow regimes in the Northern
hemisphere winter. Part 11: Sectorial regimes and preferred transitions. J.
Atmos. Sei. 50, 2645-2673 (14.4)
Kulkarni, A. and H. von Storch, 1995: Monte Carlo experiments on the
effect of serial correlation on the Mann-KendaH test of trend. Meteorol. Z.
(in press) (2.3)
Kushnir, Y., 1994: Interdecadal variations in North Atlantic sea surface
temperature and assoeiated atmospheric conditions. J. Climate 7, 142-157
(3.4)
Kushnir, Y. and N.C. Lau, 1992: The general eirculation model response
to a North Paeific SST anomaly: Dependence on time scale and pattern polarity. J. Climate 5, 271-283 (3.4)
Kushnir, Y. and J.M. Wallace, 1989: Low frequency variability in the
Northern Hemisphere winter. Geographical distribution, structure and time
dependence. J. Atmos. Sei. 46,3122-3142. (12.1)
Kutzbach, G., 1979: The thermal theory of cyclones. AMS Monograph,
Boston, 254pp. (1.1)
Kutzbach, J .E. and R.A. Bryson, 1974: Variance spectrum of holocene
climatic fluctuations in the North Atlantic sector. J. Atmos. Sei. 31,1958-
