K; 2nd ed.
Why use ice cores?
Review From the reviews of the second edition: "A complete summary of the most up-to-date information and theories of the history and causes of Quaternary climate change. The volume consists of 11 chapters, 24 pages of references, and a 6-page index.
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- Interglacials of the last , years - - - Reviews of Geophysics - Wiley Online Library!
- Why use ice cores?!
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It is profusely illustrated with a combination of color and black-and-white maps and graphs in addition to 11 data tables. Summing Up: Recommended.
Ice Ages and Interglacials: Measurements, Interpretation, and Models by Donald Rapp - udapikezedut.tk
Upper-division undergraduates and graduate students. Andrews, Choice, Vol.
This book will become the premier reference and sourcebook on ice ages. It will also connect up to more recent times regarding climate change. See all Product description. No customer reviews.
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Ice Ages and Interglacials
This book provides a useful overview of current understanding regarding ice ages and past climate. It covers the basic methodology and use of ice cores, deep ocean sediment cores, and other proxies for past temperature trends and ice volume and their use in climate modeling. Though more of an academic textbook than something for the general reader, it will still benefit someone with a general science background and a particular interest in ice ages.
Some content may not be receptive to those with a strong man-made global warming bias, as the author attempts to remain objective. Go to Amazon. Skip to search form Skip to main content. Proxy records from ice cores are commonly assumed to represent annual mean averages.
Phase relations between climate proxy records: Potential effect of seasonal precipitation changes
These averages, however, may be biased toward a particular season due, for example, to a change in the distribution of precipitation. View PDF. Save to Library.
Create Alert. Share This Paper. Citations Publications citing this paper. Synchronicity of Antarctic temperatures and local solar insolation on orbital timescales Thomas Laepple , Martin Werner , Gerrit Lohmann. Antarctic temperature at orbital timescales controlled by local summer duration Peter Huybers , George H.