Feedbacks, Timescales, and Seeing Red
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[1] Kevin E. Trenberth,et al. Climate System Modeling , 2010 .
[2] J. Clack,et al. The Fin to Limb Transition: New Data, Interpretations, and Hypotheses from Paleontology and Developmental Biology , 2009 .
[3] S. Philander. Where Are You From? Why Are You Here? An African Perspective on Global Warming , 2009 .
[4] K. Whipple,et al. Feedbacks among climate, erosion, and tectonics in a critical wedge orogen , 2008, American Journal of Science.
[5] G. Roe,et al. Why Is Climate Sensitivity So Unpredictable? , 2007, Science.
[6] J. R. Bates,et al. Some considerations of the concept of climate feedback , 2007 .
[7] S. Bony,et al. How Well Do We Understand and Evaluate Climate Change Feedback Processes , 2006 .
[8] B. Soden,et al. An Assessment of Climate Feedbacks in Coupled Ocean–Atmosphere Models , 2006 .
[9] J. Harte,et al. Missing feedbacks, asymmetric uncertainties, and the underestimation of future warming , 2006 .
[10] G. Roe. Feedbacks between climate, erosion, and tectonics in a critical wedge orogen , 2006 .
[11] J. Gregory,et al. Observational constraints on climate sensitivity , 2006 .
[12] Epica Community Members. One-to-one coupling of glacial climate variability in Greenland and Antarctica , 2006, Nature.
[13] Leonard A. Smith,et al. Uncertainty in predictions of the climate response to rising levels of greenhouse gases , 2005, Nature.
[14] C. Bitz,et al. A Mechanism for the High Rate of Sea Ice Thinning in the Arctic Ocean , 2004 .
[15] G. Roe,et al. Characterization of Millennial-Scale Climate Variability , 2004 .
[16] S. Hemming,et al. Heinrich events: Massive late Pleistocene detritus layers of the North Atlantic and their global climate imprint , 2004 .
[17] P. Huybers. Comments on 'Coupling of the hemispheres in observations and simulations of glacial climate change' by A. Schmittner, O.A. Saenko, and A.J. Weaver. , 2004 .
[18] Matthew Newman,et al. ENSO-Forced Variability of the Pacific Decadal Oscillation , 2003 .
[19] R. Wood,et al. Global warming and thermohaline circulation stability , 2003, Philosophical Transactions of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences.
[20] Heinz Schmidt-Walter,et al. Electrical Engineering: A Pocket Reference , 2003 .
[21] R. Colman,et al. A comparison of climate feedbacks in general circulation models , 2003 .
[22] A. Weaver,et al. Coupling of the hemispheres in observations and simulations of glacial climate change , 2003 .
[23] C. Deser,et al. Understanding the persistence of sea surface temperature anomalies in midlatitudes , 2003 .
[24] S. Raper,et al. An Observationally Based Estimate of the Climate Sensitivity , 2002 .
[25] Andrei P. Sokolov,et al. Quantifying Uncertainties in Climate System Properties with the Use of Recent Climate Observations , 2002, Science.
[26] Andrei P. Sokolov,et al. Quantifying uncertainties in climate system properties using recent climate observations , 2001 .
[27] Arnold Neumaier,et al. Algorithm 808: ARfit—a matlab package for the estimation of parameters and eigenmodes of multivariate autoregressive models , 2001, TOMS.
[28] Johannes Oerlemans,et al. Glaciers and climate change , 2001 .
[29] P. Imkeller,et al. Stochastic climate models , 2001 .
[30] H. Storch,et al. Statistical Analysis in Climate Research , 2000 .
[31] Cecilia M. Bitz,et al. Interannual to decadal variability in climate and the glacier mass balance in Washington, Western Canada, and Alaska , 1999 .
[32] Carl Wunsch,et al. The Interpretation of Short Climate Records, with Comments on the North Atlantic and Southern Oscillations , 1999 .
[33] T. Stocker,et al. Asynchrony of Antarctic and Greenland climate change during the last glacial period , 1998, Nature.
[34] R. Lindzen,et al. On the climatic implications of volcanic cooling , 1998 .
[35] R. Colman,et al. Non-linear climate feedback analysis in an atmospheric general circulation model , 1997 .
[36] J. Wallace,et al. A Pacific Interdecadal Climate Oscillation with Impacts on Salmon Production , 1997 .
[37] Mojib Latif,et al. Decadal climate variability over the North Pacific and North America: Dynamics and predictability , 1996 .
[38] T. P. Barnett,et al. Causes of Decadal Climate Variability over the North Pacific and North America , 1994, Science.
[39] J. Hack,et al. Diagnostic study of climate feedback processes in atmospheric general circulation models , 1994 .
[40] R. Lindzen. CLIMATE DYNAMICS AND GLOBAL CHANGE , 1994 .
[41] R. Kline,et al. Harold Black and the negative-feedback amplifier , 1993, IEEE Control Systems.
[42] A. Thorndike. A toy model linking atmospheric thermal radiation and sea ice growth , 1992 .
[43] John F. B. Mitchell,et al. Intercomparison and interpretation of climate feedback processes in 19 atmospheric general circulation models , 1990 .
[44] S. Manabe,et al. Cloud Feedback Processes in a General Circulation Model , 1988 .
[45] M. Schlesinger. Quantitative Analysis of Feedbacks in Climate Model Simulations of CO2-Induced Warming , 1988 .
[46] T. Wigley,et al. Analytical solution for the effect of increasing CO2 on global mean temperature , 1985, Nature.
[47] F. Luther,et al. The Potential climatic effects of increasing carbon dioxide , 1985 .
[48] J. Peixoto,et al. Physics of climate , 1984 .
[49] Akula Venkatram,et al. Uncertainty in predictions from air quality models , 1983 .
[50] A. Callegari,et al. The role of deep sea heat storage in the secular response to climatic forcing , 1980 .
[51] J. Kutzbach. Estimates of Past Climate at Paleolake Chad, North Africa, Based on a Hydrological and Energy-Balance Model , 1980, Quaternary Research.
[52] H. S. Black,et al. Inventing the negative feedback amplifier: Six years of persistent search helped the author conceive the idea “in a flash” aboard the old Lackawanna Ferry , 1977, IEEE Spectrum.
[53] J. Wallace,et al. Atmospheric Science: An Introductory Survey , 1977 .
[54] K. Hasselmann. Stochastic climate models Part I. Theory , 1976 .
[55] R. Cess. Global climate change: an investigation of atmospheric feedback mechanisms , 1975 .
[56] J. Lovelock,et al. Atmospheric homeostasis by and for the biosphere: the gaia hypothesis , 1974 .
[57] Stephen H. Schneider,et al. Cloudiness as a Global Climatic Feedback Mechanism: The Effects on the Radiation Balance and Surface Temperature of Variations in Cloudiness , 1972 .
[58] D. G. Watts,et al. Spectral analysis and its applications , 1968 .
[59] Syukuro Manabe,et al. Thermal Equilibrium of the Atmosphere with a Given Distribution of Relative Humidity , 1967 .
[60] H. W. Bode,et al. Network analysis and feedback amplifier design , 1945 .
[61] S. Arrhenius. “On the Infl uence of Carbonic Acid in the Air upon the Temperature of the Ground” (1896) , 2017, The Future of Nature.
[62] J. Maxwell. I. On governors , 1868, Proceedings of the Royal Society of London.
[63] J. Croll. XIII. On the physical cause of the change of climate during geological epochs , 1864 .
[64] G.,et al. Climate Response Times : Dependence on Climate Sensitivity and Ocean Mixing , 2022 .