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  • 1
    Monograph available for loan
    Monograph available for loan
    San Diego : Academic Press
    Associated volumes
    Call number: 5/M 99.0165 ; AWI G5-00-0002 ; PIK N 454-01-0139 ; PIK N 454-99-0436 ; PIK N 454-08-0217
    In: International geophysics series
    Type of Medium: Monograph available for loan
    Pages: xv, 613 S.
    Edition: 2nd ed.
    ISBN: 012124010X
    Series Statement: International geophysics series 68
    Classification:
    Paleontology
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  • 2
    Monograph available for loan
    Monograph available for loan
    New York : American Institute of Physics
    Call number: M 99.0571 ; M 98.0040 ; PIK N 455-02-0368 ; AWI A3-92-0463
    Type of Medium: Monograph available for loan
    Pages: xxxix, 520 Seiten , Illustrationen
    ISBN: 0883187124
    Classification:
    Meteorology and Climatology
    Language: English
    Note: Contents: Foreword. - Preface. - Acknowledgements. - List of symbols and definitions. - 1. Introduction. - 2. Nature of the problem. - 3. Basic equations for the atmosphere and oceans. - 4. Various decompositions of the circulation. - 5. The data. - 6. Radiation balance. - 7. Observed mean state of the atmosphere. - 8. Observed mean state of the oceans. - 9. Observed mean state of the cryosphere. - 10. Exchange processes between the earth's surface and the atmosphere. - 11. Angular momentum cycle. - 12. Water Cycle. - 13. Energetics. - 14. The ocean-atmosphere heat engine. - 15. Entropy in the climate system. - 16 Interannual and interdecadal variability in the climate system. - 17. Mathematical simulation of climate. - Appendix A: Analysis in terms of Fourier components. - Appendix B: Analysis in terms of empirical orthogonal functions (EOF's). - References. - Name index. - Subject index.
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  • 3
    Call number: M 92.0092/1995 ; PIK N 421-96-0051 ; MOP 47953 / Mitte ; AWI A1-95-0256
    Type of Medium: Monograph available for loan
    Pages: 43 S.
    Note: Einleitung: Paläoklima und aktuelles Klima / Jörg F. W. Negendank. - Prozesse im rezenten Klimasystem / Ernst Augstein. - Stabile Kohlenstoffisotope und Nährsalzgehalt des Südatlantiks im Spätquartär / Andreas Mackensen, Hannes Grobe, Hans-Wolfgang Hubberten. - Klimainformation aus dem grönländischen Inlandeis / Sepp Kipfstuhl. - Die Quartärfolge der Großtagebaue Mitteldeutschlands als Klima-Archiv / Frank Wolfgang Junge, Tatjana Böttger, Achim Hiller. - See-Sedimente und Paläoklimarekonstruktionen / Bernd Zolitschka. - Einflüsse solarer Aktivität auf die Sedimentation in Maarseen / Heinz Vos, Ana Sánchez, Jörg F. W. Negendank, Bert Rein, Bernd Zolitschka. - Kohlenstoffisotope von Bäumen als Klimaindikatoren / Gerd. H. Schleser, Gerd Helle, Achim Bräuning. - Klimazustände und Klimaänderungen in der Vergangenheit / Peter Trimborn, Josef Lipp. - Klimazyklen, Erdkerndynamik und Schwerefeld / Horst Jochmann, Hans Greiner-Mai. - Wärme- und Wasserdampfaustausch zwischen Atmosphäre und Erdboden / Franz Fiedler, Gerhard Adrian, Aurelia Müller. - Wirkungen des Luftverkehrs auf das Klima / Robert Sausen, Michael Ponater, Ines Köhler, Sabine Brinkop. - Die Bedeutung des Wassers in der Atmosphäre / Erhard Raschke, Ute Karstens. - Klimaveränderungen und Kohlenstoffhaushalt / Uwe Franko und Burkhard Oelschlägel.
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  • 4
    Call number: AWI A6-04-0011 ; PIK N 456-03-0069
    In: Large-scale atmosphere-ocean dynamics, Volume 1
    Description / Table of Contents: Numerical weather prediction is a problem of mathematical physics. The complex flows in the atmosphere and oceans are modelled by the Navier-Stokes based equations of fluid mechanics together with classical thermodynamics. However, due to the enormous complexity of these equations, meteorologists and oceanographers appeal to asymptotic methods, variational principles and conservation laws to construct models of the dominant large-scale flows that control our weather. Simplified models are often amenable to analytical and numerical solution. The lectures in these volumes explain why such simplifications to Newton's second law produce accurate, useful models and, just as meteorologists seek patterns in the weather, mathematicians use geometrical thinking to understand the structure behind the governing equations. Here constrained Hamiltonian mechanics, transformation groups, and convex analysis are used to control the potentially chaotic dynamics in the numerical simulations, and to suggest optimal ways to exploit observational data. This book and its companion show how geometry and analysis quantify the concepts behind the fluid dynamics, and thus facilitate new solution strategies.
    Type of Medium: Monograph available for loan
    Pages: xxx, 370 Seiten , Illustrationen
    ISBN: 052180681X
    Language: English
    Note: Contents: Contributors. - Preface. - Introduction and Scientific Background / J.C.R. Hunt, J. Norbury and I. Roulstone. - 1. A view of the equations of meteorological dynamics and various approximations / A. A. White. - 2. Extended-geostrophic Euler-Poincare models for mesoscale oceanographic flow / J. S. Allen, D. D. Holm and P. A. Newberger. - 3. Fast singular oscillating limits of stably-stratified 3D Euler and Navier-Stokes equations and ageostrophic wave fronts / A. Babin, A. Mahalov and B. Nicolaenko. - 4. New mathematical developments in atmosphere and ocean dynamics, and their application to computer simulations / M. J. P. Cullen. - 5. Rearrangements of functions with applications to meteorology and ideal fluid flow / R. J. Douglas. - 6. Statistical methods in atmospheric dynamics: probability metrics and discrepancy measures as a means of defining balance / S. Baigent and J. Norbury.
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  • 5
    Call number: S 99.0056(2003/6) ; ZSP-761(2003/6) ; PIK N 456-03-0331
    In: Terra nostra
    Type of Medium: Series available for loan
    Pages: 473 S.
    Series Statement: Terra Nostra 2003/6
    Classification:
    Meteorology and Climatology
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  • 6
    Call number: M 00.0109 ; PIK L 820-00-0099 ; AWI G1-00-0066
    Type of Medium: Monograph available for loan
    Pages: S. 113-404 , Ill.
    ISSN: 0800-0395
    Series Statement: Polar research 18,2
    Classification:
    Oceanology
    Language: English
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  • 7
    Call number: M 92.1345 ; M 92.0709 ; AWI A3-93-0247 ; PIK N 455-92-0581 ; MOP 47744 / Mitte
    Description / Table of Contents: In diesem Werk werden ausführlich das Klimasystem mit seinen äußeren Anregungen und den untereinander in komplizierter Wechselwirkung stehenden Komponenten sowie die grundlegenden Wege der Klimaforschung behandelt. Besondere Aufmerksamkeit gilt den Klimaschwankungen in geologischer Vergangenheit und Neuzeit sowie dem anthropogenen Einfluß auf das Klima mit all seinen Konsequenzen in Gegenwart und Zukunft. Diese erste deutschsprachige Monographie über moderne Klimatologie ist nicht nur für Fachkollegen und Studenten gedacht, sondern auch für alle, die interdisziplinäre Bezüge oder tiefergehendes Interesse am Klimaproblem unserer Zeit haben.
    Type of Medium: Monograph available for loan
    Pages: 464 S. , Ill., graph. Darst., Kt. , + Kt.-Beil. , 25 cm
    ISBN: 3055007123
    Classification:
    Meteorology and Climatology
    Language: German
    Note: Inhaltsverzeichnis : 1. Das Klima - internationaler und interdisziplinärer Forschungsschwerpunkt / (W. BÖHME, G. S. GOLIOYN). - 1.1. Grundlegende Aspekte moderner Klimatologie. - 1.2. Das Weltklimaprogramm. - 1.2.1. Anliegen und Anlage des Weltklimaprogramms. - 1.2.2. Phasen der bisherigen Entwicklung des Programms. - 1.2.3. Ergebnisse, Stand und neue Programme sowie Erfordernisse. - 1.2.4. Zweite Weltklimakonferenz. - 2. Eigenschaften und Komponenten des Klimasystems / (G. FLEMMEKTG, M. B. GALTST, H.-F. GRAF, A. HELBIG, P. HUPFER, K. JA. KONDRAT'EV). - 2.1. Klima und Klimasystem. - 2.1.1. Klimabegriff. - 2.1.1.1. Definitionen. - 2.1.1.2. Maßstabsbezogenheit des Klimas. - 2.1.2. Hauptwege der Erforschung des Klimas. - 2.1.3. Klimafaktoren und -elemente. - 2.1.3.1. Klimafaktoren. - 2.1.3.2. Klimaelemente. - 2.1.4. Das Klimasystem und seine Haupteigenschaften. - 2.2. Solarstrahlung und globaler Energiehaushalt. - 2.2.1. Die Solarkonstante und ihre Variationen. - 2.2.2. Globale Energiebilanzen. - 2.2.3. Grundlegende Energieflüsse im Klimasystem. - 2.3. Die Atmosphäre als Komponente des Klimasystems. - 2.3.1. Wolken. - 2.3.2. Aerosol. - 2.3.3. Strahlungsaktive Gase. - 2.3.3.1. Allgemeine Übersicht. - 2.3.3.2. Kohlenstoffkreislauf. - 2.3.3.3. Ozon. - 2.3.3.4. Vergleich von Klimaeffekten. - 2.4. Klimafaktor Ozean. - 2.4.1. Basisprozesse an der Grenzfläche Ozean/Atmosphäre. - 2.4.1.1. Transformation der Solarstrahlung. - 2.4.1.2. Fühlbarer und latenter Wärmestrom. - 2.4.1.3. Hydrologischer Zyklus. - 2.4.1.4. Austausch von Gasen. - 2.4.1.5. Austausch von Stoff. - 2.4.1.6. Übergang kinetischer Energie. - 2.4.1.7. Gegenseitige Hauptwirkungen von Ozean und Atmosphäre. - 2.4.2. Großräumige Wechselwirkungen Ozean/Atmosphäre. - 2.4.2.1. Der Ozean als Wärmereservoir. - 2.4.2.2. Ozeanischer Energietransport. - 2.4.2.3. Wechselwirkung Ozean/Atmosphäre und innertropische Konvergenzzone (ITCZ). - 2.4.2.4. Ozeanische Absink- und Auftriebszonen. - 2.4.3. Die energetisch aktiven Zonen des Ozeans und das Programm RAZREZY. - 2.5. Festland und Biosphäre als Komponenten des Klimasystems. - 2.5.1. Energetische Wechselwirkungen Erdoberfläche/Atmosphäre. - 2.5.2. Massenaustausch Landoberfläche/Atmosphäre. - 2.5.2.1. Hydrologischer Kreislauf und Bodenfeuchteregime. - 2.5.2.2. Stoffaustausch. - 2.5.3. Einfluß der Pflanzendecke. - 2.5.3.1. Allgemeines. - 2.5.3.2. Vergleich von Kurzgras mit pflanzenlosem Boden. - 2.5.3.3. Besonderheiten niederwüchsiger Vegetationstypen. - 2.5.3.4. Eigenschaften homogener Waldbestände. - 2.5.3.5. Zur Berücksichtigung der Vegetation in Klimamodellen. - 2.5.4. Der Einfluß der Gebirge auf das Klima. - 2.5.4.1. Allgemeine Eigenschaften des Gebirgsklimas. - 2.5.4.2. Der Einfluß der Meereshöhe und des Stockwerkaufbaus der Atmosphäre. - 2.5.5. Gegenwärtige Änderungen der Landnutzung und ihre Bedeutung für das Klima. - 2.6. Die Wirkung von Vulkaneruptionen im Klimasystem. - 2.6.1. Einführung. - 2.6.2. Eigenschaften vulkanischer Eruptionen. - 2.6.3. Aeronomische Auswirkungen von Vulkaneruptionen - Entwicklung und Eigenschaften von Vulkanaerosol. - 2.6.4. Auswirkungen vulkanischen Aerosols auf den Strahlungshaushalt. - 2.6.5. Beobachtete Klimavariationen nach Vulkanausbrüchen. - 2.6.6. Modellierung der Auswirkungen stratosphärischen Aerosols auf das Klimasystem. - 2.7. Kryosphäre als Komponente des Klimasystems. - 2.7.1. Kryosphäre und Klimaentwicklung. - 2.7.2. Landeisformen. - 2.7.2.1. Schneedecke. - 2.7.2.2. Eisschilde. - 2.7.2.3. Unterirdisches Eis/Ewiger Frostboden. - 2.7.2.4. Gebirgsgletscher. - 2.7.3. Meereis. - 2.8. Die allgemeine Zirkulation der Atmosphäre und ihre Energetik. - 2.8.1. Grundzüge und Eigenschaften. - 2.8.2. Die Zirkulation nach den Beobachtungen. - 2.8.3. Drehimpuls-Bilanz. - 2.8.4. Energetik der allgemeinen Zirkulation. - 2.8.5. Schlußfolgerungen. - 2.9. Telekonnektionen und el Nino/Südliche Oszillation (ENSO). - 2.9.1. Hemisphärische und globale „Fernwirkungen". - 2.9.2. Zur Anregung von el Nino/Südliche Oszillation (ENSO). - 3. Klimadaten / (M. OLBERG, R. STELLMACHER, K. J A . KONDRAT'EV). - 3.1. Analyse von Daten. - 3.1.1. Einleitung. - 3.1.2. Homogenitätsprüfung, Trendanalyse. - 3.1.2.1. Daten. - 3.1.2.2. Ausgewählte Methoden der Homogenitätsprüfung. - 3.1.2.3. Einige Möglichkeiten der Trendelimination. - 3.1.2.4. Über die Schätzung fehlender Meßwerte. - 3.1.2.5. Beispiele zur Trendanalyse. - 3.1.3. Spektralanalyse klimatologischer Datenreihen. - 3.1.3.1. Schätzung des konventionellen und des Maximum-Entropie-Spektrums. - 3.1.3.2. Signifikanzgrenzen für das empirische Spektrum. - 3.1.4. Klimadatenanalyse in gleitenden Zeitintervallen. - 3.1.4.1. Numerische Filterung. - 3.1.4.2. Gleitende MESA. - 3.1.5. Hinweise zur mehrkanaligen Spektralanalyse. - 3.2. Klimaüberwachung aus dem Kosmos. - 3.2.1. Haupterfordernisse einer Klimaüberwachung. - 3.2.2. Programm und Genauigkeitsforderungen. - 3.2.3. Aussichten. - 4. Klimatheorie und -modellierung / (G. SCHMITZ). - 4.1. Einleitung. - 4.2. Grundgleichungen. - 4.3. Grundgleichungen für den großräumigen Scale. - 4.4. Global gemittelte Klima-Gleichungen. - 4.5. Klimamodellierung. - 4.6. Hierarchie von Klimamodellen. - 4.6.1. Energiebilanzmodelle. - 4.6.2. Strahlungs-Konvektions-Modelle. - 4.6.3. Statistisch-dynamische Modelle. - 4.6.4. Zirkulationsmodelle der Atmosphäre. - 4.6.5. Globale Zirkulationsmodelle. - 4.6.6. Stochastische Modelle. - 4.7. Energiebilanzmodelle. - 4.7.1. Global gemittelte Modelle. - 4.7.2. Zonal-gemittelte Modelle. - 4.7.3. Stochastische Energiebilanzmodelle. - 4.8. Statistisch-dynamische Modelle. - 4.8.1. Zonal-symmetrische Modelle. - 4.8.2. Modelle stationärer Störungen. - 4.9. Globale Zirkulationsmodelle. - 4.9.1. Kleinräumige Prozesse. - 4.9.2. Ausgewählte Anwendungen und Ergebnisse. - 5. Globale Klimaklassifikation / (M. HENDL). - 5.1. Allgemeine Probleme der Klimaklassifikation. - 5.2. Die Anfänge der klimatischen Gliederung der Erdoberfläche: Die Aufstellung individueller Klimaprovinzen. - 5.3. Die Einführung der objekten Klimaklasssifikation durch Wladimir Köppen: das vegetationsbezogene Köppen-Klimasystem und seine Modifikationen. - 5.4. Vegetationsbezogene Klimasysteme mit abweichendem Klassifikationsprinzip. - 5.4.1. Die effektive Klimaklassifikation von N. N. IVANOV. - 5.4.2. Die Klimaklassifikationen von THORNTHWAITE. - 5.4.3. Neuere Entwicklungstendenzen. - 5.5. Effektive Klimaklassifizierung nach landwirtschaftlichen Gesichtspunkten. - 5.6. Effektive Klimaklassifizierung nach humanphysiologischen Gesichtspunkten. - 5.7. Effektive Klimaklassifizierung für technische Zwecke: Das HOFFMANN-System 1975. - 5.8. Bemühungen um genetische Klimaklassifikationen. - 6. Klima und Gesellschaft / (K. BERNHARDT, A. HELBIG). - 6.1. Anthropogene Wirkungen im klimatischen System. - 6.1.1. Überblick. - 6.1.2. Anthropogene Modifikation des Lokalklimas im Stadtgebiet und in Industrie-Ballungsräumen. - 6.1.3. Anthropogene Einwirkungen auf das globale Klima. - 6.1.4. Auswirkungen eines massierten Kernwaffeneinsatzes. - 6.2. Klimawirkungen auf gesellschaftliche Systeme. - 6.2.1. Klima und geographisches Milieu. - 6.2.2. Klima und globale Probleme. - 7. Klimate der geologischen Vorzeit / (L. EISSMANN, CHR. HÄNSEL). - 7.1. Entstehung und Wandlung der Erdatmosphäre. - 7.2. Klimazeugen und physikalische Informationsmethoden zum Paläoklima. - 7.3. Ursachen und Prozesse erdgeschichtlicher Klimaänderungen. - 7.4. Merkmale der Klimate der Erdgeschichte. - 7.4.1. Präkambrium. - 7.4.2. Paläozoikum. - 7.4.3. Mesozoikum. - 7.4.4. Känozoikum. - 7.4.4.1. Tertiär. - 7.4.4.2. Quartär. - 8. Rezente Klimaschwankungen / (K. BERNHARDT, G. HELBIG, P. HUPFER, R. K. KLIGE). - 8.1. Holozäne Klimaschwankungen. - 8.1.1. Zum Wesen von Klimaänderungen. - 8.1.2. Datenquellen zur holozänen Klimageschichte. - 8.1.3. Zur Klimaentwicklung im Holozän. - 8.2. Jüngste Klimaschwankungen. - 8.2.1. Zirkulationsschwankungen. - 8.2.2. Änderungen von Luft- und Wassertemperatur. - 8.2.3. Variationen von Komponenten des glob
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  • 8
    Monograph available for loan
    Monograph available for loan
    Amsterdam [u.a.] : Elsevier
    Call number: M 01.0275 ; M 02.0279 ; PIK N 454-99-0015 ; AWI G6-01-0087
    Type of Medium: Monograph available for loan
    Pages: xxix, 872 S.
    Edition: 1. ed., 2nd impr.
    ISBN: 044450155X
    Classification:
    Geochemistry
    Language: English
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  • 9
    Monograph available for loan
    Monograph available for loan
    New York : Wiley
    Call number: G 9124 ; AWI G6-94-0196 ; PIK N 400-95-0394
    Type of Medium: Monograph available for loan
    Pages: XIII, 550 Seiten , Illustrationen , 1 Diskette
    Edition: Second edition
    ISBN: 0471080799 , 0-471-08079-9
    Language: English
    Note: Contents Page Chapter 1 Introduction About This Book Geostatistics Measurement Systems A False Feeling of Security Selected Readings Chapter 2 Elementary Statistics Probability Statistics Joint Variation of Two Variables Induced Correlations Testing Normal Populations Central Limits Theorem Significance The f Test Degrees of Freedom Test of Correlation The F Test Analysis of Variance Two-Way Analysis of Variance The x2 Test The Lognormal Distribution and Other Transformations Other Transformations Nonparametric Methods Mann-Whitney Test Kruskal-Wallis Test Nonparametric Correlation Kolmogorov-Smirnov Tests Selected Readings Chapter 3 Matrix Algebra The Matrix Elementary Matrix Operations Matrix Multiplication Convolution Matrix Inversion and Simultaneous Equations Transposition Determinants Eigenvalues and Eigenvectors Selected Readings Chapter 4 Analysis of Sequences of Data Geologic Measurements in Sequences Interpolation Procedures Markov Chains Embedded Markov Chains Series of Events Runs Tests Least-Squares Methods and Regression Analysis Curvilinear Regression Orthogonal Polynomial Regression Reduced Major Axis Splines Segmenting Sequences Zonation Seriation Autocorrelation Cross-Correlation Cross-Correlation and Geologic Correlation Cross-Association Semivariograms Modelling the Semivariogram Spectral Analysis Harmonic Analysis The Continuous Spectrum Filters Smoothing and Time-Trend Analysis Derivatives Substitutability Analysis Selected Readings Chapter 5 Map Analysis Geologic Maps - Conventional and Otherwise Systematic Patterns of Search Distribution of Points Uniform Patterns Random Patterns Clustered Patterns Nearest-Neighbor Analysis Distribution of Lines Analysis of Directional Data Testing Hypotheses about Circular Directional Data Test for Randomness Testing for a Specified Trend Test of Goodness-of-Fit 326 Testing the Equality of Two Sets of Directional Vectors Spherical Distributions Matrix Representation of Vectors Displaying Spherical Data Testing Hypotheses about Spherical Directional Data A Test of Randomness Shape Fourier Measurements of Shape Computer Contouring Contouring by Triangulation Contouring by Gridding Moving Averages Moving Weighted Averages of Block Means Kriging Punctual Kriging Universal Kriging Calculating the Drift An Example Trend Surfaces Statistical Tests of Trends Two Trend-Surface Models Pitfalls Four-Dimensional Trend Surfaces Double Fourier Series Comparing Maps Overall Similarity Similarity Maps Comparing Map Coefficients Selected Readings Contents Chapter 6 Analysis of Multivariate Data Multiple Regression Discriminant Functions Tests of Significance Multivariate Extensions of Elementary Statistics Equality of Two Vector Means Equality of Variance-Covariance Matrices Cluster Analysis Introduction to Eigenvector Methods, Including Factor Analysis Eckart-Young Theorem Principal Components Analysis R-Mode Factor Analysis Factor Rotation Maximum Likelihood Factors O-Mode Factor Analysis Principal Coordinates Analysis Correspondence Analysis Application to Continuous Variables Simultaneous R- and O-Mode Factor Analysis Multigroup Discriminant Functions Canonical Correlation Selected Readings Appendix: How to Run the STAT Program Index
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  • 10
    Monograph available for loan
    Monograph available for loan
    New York, NY : Freeman
    Call number: 12/M 02.0062 ; AWI A3-02-0023 ; PIK N 456-02-0005
    Type of Medium: Monograph available for loan
    Pages: xxi, 465 S. , zahlr. Ill., graph. Darst., Kt. , 28 cm
    ISBN: 0716737418
    Classification:
    D 4..
    Language: English
    Note: Contents: Preface. - PART 1 FRAMEWORK OF CLIMATE SCIENCE. - 1 Overview of Climate Science. - Climate and Climate Change. - 1-1 Geologic Time. - 1-2 How This Book Is Organized. - Development of Climate Science. - 1-3 How Scientists Study Climate Change. - Overview of the Climate System. - 1-4 Components of the Climate System. - 1-5 Climate Forcing. - 1-6 Climate System Responses. - 1-7 Time Scales of Forcing versus Response. - 1-8 Response Rates and Interactions Within the Climate System. - 1-9 Feedbacks in the Climate System. - Tools Of Climate Science: Temperature Scales. - 2 Earth's Climate System Today. - Heating Earth. - 2-1 Incoming Solar Radiation. - 2-2 Receipt and Storage of Solar Heat. - 2-3 Heat Transformation. - Heat Transfer in Earth's Atmosphere. - 2-4 Overcoming Stable Layering in the Atmosphere. - 2-5 Tropical-Subtropical Atmospheric Circulation. - 2-6 Atmospheric Circulation at Middle and High Latitudes. - Heat Transfer in Earth's Oceans. - 2-7 The Surface Ocean. - 2-8 Deep-Ocean Circulation. - Ice on Earth. - 2-9 Sea Ice. - 2-10 Glacial Ice. - Earth's Biosphere. - 2-11 Response of the Biosphere to the Physical Climate System. - 2-12 Effects of the Biosphere on the Climate System. - Looking Deeper into Climate Science: The Structure of Earth's Atmosphere. - Climate Interactions and Feedbacks: Albedo/Temperature. - Climate Interactions and Feedbacks: Water in the Climate System. - Climate Interactions and Feedbacks: Water Vapor. - Looking Deeper into Climate Science: The Conolis Effect. - Climate Interactions and Feedbacks: Vegetation-Climate Feedbacks. - 3 Climate Archives, Oata, and Models. - Climate Archives. - 3-1 Types of Archives. - 3-2 Dating Climate Records. - 3-3 Climate Resolution. - Climate Data. - 3-4 Biotic Data. - 3-5 Geological and Geochemical Data. - Climate Models. - 3-6 Physical Climate Models. - 3-7 Geochemical (Mass Balance) Models. - PART II TECTONIC-SCALE CLIMATE CHANGE. - 4 CO2 and Long-term Climate. - Greenhouse Worlds. - The Faint Young Sun Paradox. - Carbon Exchanges between Rocks and the Atmosphere. - 4-1 Volcanic Input of Carbon from Rocks to the Atmosphere. - 4-2 Chemical Weathering Removal of CO2 from the Atmosphere. - Climate Factors That Control Chemical Weathering. - Chemical Weathering: Earth's Thermostat?. - Is Life the Ultimate Control on Earth's Thermostat?. - 4-3 The Gaia Hypothesis. - Climate Debate: A Snowball Earth?. - Looking Deeper into Climate Science: The Organic Carbon Subcycle. - 5 Plate Tectonics and Climate. - Plate Tectonics. - 5-1 Structure and Composition of Tectonic Plates. - 5-2 Evidence of Past Plate Motions. - The Polar Position Hypothesis. - 5-3 Glaciations and Continental Positions since 500 Myr Ago. - Modeling Climate on the Supercontinent Pangaea. - 5-4 Input to the Model Simulation of Pangaean Climate. - 5-5 Output from the Model Simulation of Pangaean Climate. - Tectonic Control of CO2 Input: The BLAG Spreading Rate Hypothesis. - 5-6 Control of CO2 Input by Seafloor Spreading. - 5-7 Initial Evaluation of the BLAG Spreading Rate Hypothesis. - Tectonic Control of CO2 Removal: The Uplift Weathering Hypothesis. - 5-8 Rock Exposure and Chemical Weathering. - 5-3 Uplift and Chemical Weathering. - What Controls Chemical Weathering?. - 5-10 Weathering: Climate Forcing and Feedback. - Looking Deeper into Climate Science: Brief Glatiation 430 Myr Ago. - 6 Greenhouse Earth. - What Explains Greenhouse Warmth 100 Myr Ago?. - 6-1 Model Simulations of a Greenhouse World. - 6-2 What Explains the Data-Model Mismatch?. - Sea Level Changes and Climate. - 6-3 Causes of Tectonic-Scale Changes in Sea Level. - 6-4 Effect of Sea Level Changes on Climate. - Asteroid Impacts. - Climate Interactions and Feedbacks: The Effect of CO2 on Climate. - Looking Deeper into Climate Science: Calculating Changes in Sea Level. - 7 Back into the Icehouse: The Last 55 Million years. - Global Climate Change Since 55 Myr Ago. - 7-1 Evidence from Ice and Vegetation. - 7-2 Oxygen Isotope Data. - Why Did Global Climate Cool over the Last 55 Myr?. - 7-3 Evaluating the BLAG Spreading Rate Hypothesis. - 7-4 Evaluating the Uplift Weathering Hypothesis. - 7-5 Evaluating the Ocean Heat Transport Hypothesis. - 7-6 Causes of Brief Tectonic-Scale Climate Change. - Understanding and Predicting Tectonic Climate Change. - Tools Of Climate Science: Oxtygen Isotope Ratios (δ18O). - Climate Debate: The Timing of Uplift in Western North America. - Looking Deeper into Climate Science: Is 87Sr/86Sr an Index of Chemical Weathering?. - PART III ORBITAL-SCALE CLIMATE CHANGE. - 8 Astronomical Control of Solar Radiation. - Earth's Orbit Today. - 8-1 Earth's Tilted Axis of Rotation and the Seasons. - 8-2 Earth's Eccentric Orbit: Changes in the Distance Between Earth and Sun. - Long-Term Changes in Earth's Orbit. - 8-3 Changes in Earth's Axial Tilt Through Time. - 8-4 Changes in Earth's Eccentric Orbit Through Time. - 8-5 Precession of Solstices and Equinoxes around Earth's Orbit. - Changes in Insolation Received on Earth. - 8-6 Insolation Changes by Month and Season. - 8-7 Insolation Changes According to Caloric Season. - Looking for Orbital-Scale Changes in Climate Records. - 8-8 Time Series Analysis. - 8-9 Aliasing of Climate Records. - 8-10 Tectonic-Scale Changes in Earth's Orbit. - Tools Of Climate Science: Cycles and Modulation. - Looking Deeper into Climate Science: Earth's Precession as a Sine Wave. - 9 Insolation Control of Monsoons. - Monsoon Circulations. - 9-1 Orbital-Scale Control of Summer Monsoons. - Evidence of Orbital-Scale Changes in Summer Monsoons. - 3-2 "Stinky Muds" in the Mediterranean. - 9-3 Freshwater Diatoms in the Tropical Atlantic. - 9-4 Upwelling in the Equatorial Atlantic. - Refinements of the Orbital Monsoon Hypothesis. - 9-5 Lag of Monsoons Behind Summer Insolation. - 9-6 Clipped Monsoon Responses and Monsoon Harmonics. - Monsoon Forcing Earlier in Earth's History. - 8-7 Monsoons on Pangaea 200 Myr Ago. - 9-8 Joint Tectonic and Orbital Control of Monsoons. - 10 Insolation Control of Ice Sheets. - What Controls the Size of Ice Sheets?. - 10-1 Orbital-Scale Control of Ice Sheets. - The Milankovitch Theory. - Modeling the Behavior of Ice Sheets. - 10-2 Insolation Control of Ice Sheet Size. - 10-3 Ice Sheet Lags behind Summer Insolation Forcing. - 10-4 Delayed Bedrock Response Beneath Ice Sheets. - 10-5 Full Cycle of Ice Growth and Decay. - 10-6 Ice Slipping and Calving. - Northern Hemisphere Ice Sheet History. - 10-7 Conceptual Model: Evolution of Ice Sheet Cycles. - 10-8 Evidence from δ18O: How Ice Sheets Actually Evolved. - 10-9 Confirming Ice Volume Changes: Coral Reefs and Sea Level. - 10-10 Using Astronomical and δ18O Signals as a Chronometer. - Looking Deeper into Climate Science: Ice Volume Response to Insolation. - Climate Debate: Antarctic Deglaciation 3 Myr Ago?. - Looking Deeper into Climate Science: Sea Level on Uplifting Islands. - 11 Orbital-Scale Changes in Carbon Dioxide and Methane. - Ice Cores. - 11-1 Drilling and Dating Ice Cores. - 11-2 Trapping Gases in the Ice. - Orbital-Scale Changes in Methane. - Orbital-Scale Changes in CO2. - 11-3 Physical Oceanographic Explanations of CO2 Changes. - 11-4 Orbital-Scale Carbon Reservoirs. - 11-5 Tracking Carbon through the Climate System. - 11-6 Can δ13C Evidence Detect Glacial Changes in Carbon Reservoirs?. - 11-7 Pumping of Carbon into the Deep Ocean during Glaciations. - 11-8 Changes in the Circulation of Deep Water during Glaciations. - Tools Of Climate Science: Carbon Isotope Ratios (δ13C). - Climate Debate: Do Winds Fertilize the Glacial Ocean?. - 12 Orbital-Scale Interactions in the Climate System. - Orbital-Scale Forcing and Response Revisited. - Ice-Driven Climate Responses. - 12-1 Ice-Driven Responses in High Northern Latitudes. - 12-2 Orbital Cycles in Regions Remote fro
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