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  • Deutsches GeoForschungsZentrum GFZ  (50)
  • Amsterdam ; Boston : Elsevier  (38)
  • Amsterdam : Elsevier  (25)
  • English  (113)
  • 2005-2009  (112)
  • 1965-1969  (1)
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Language
Years
Year
  • 1
    Monograph available for loan
    Monograph available for loan
    Amsterdam : Elsevier
    Call number: MOP 43353 / Mitte
    Type of Medium: Monograph available for loan
    Pages: XII, 347 Seiten , Illustrationen , 2 Beilagen , 23 cm
    Language: English
    Location: MOP - must be ordered
    Branch Library: GFZ Library
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  • 2
    Monograph available for loan
    Monograph available for loan
    Amsterdam : Elsevier
    Call number: AWI G2-21-94484
    Description / Table of Contents: Although it is generally accepted that the Arctic Ocean is a very sensitive and important region for changes in the global climate, this region is the last major physiographic province of the earth whose short-and long-term geological history is much less known in comparison to other ocean regions. This lack of knowledge is mainly caused by the major technological/logistic problems in reaching this harsh, ice-covered region with normal research vessels and in retrieving long and undisturbed sediment cores. During the the last about 20 years, however, several international and multidisciplinary ship expeditions, including the first scientific drilling on Lomonosov Ridge in 2004, a break-through in Arctic research, were carried out into the central Artic and its surrounding shelf seas. Results from these expeditions have greatly advanced our knowledge on Arctic Ocean paleoenvironments. Published syntheses about the knowledge on Arctic Ocean geology, on the other hand, are based on data available prior to 1990. A comprehensive compilation of data on Arctic Ocean paleoenvironment and its short-and long-term variability based on the huge amount of new data including the ACEX drilling data, has not been available yet. With this book, presenting (1) detailed information on glacio-marine sedimentary processes and geological proxies used for paleoenvironmental reconstructions, and (2) detailed geological data on modern environments, Quaternary variability on different time scales as well as the long-term climate history during Mesozoic-Tertiary times, this gap in knowledge will be filled.
    Type of Medium: Monograph available for loan
    Pages: XIV, 592 Seiten , Illustrationen
    Edition: First edition
    ISBN: 9780444520180
    Series Statement: Developments in marine geology 2
    Language: English
    Note: Contents Preface Acknowledgements List of Abbreviations Part 1: Introduction and Background Chapter 1. Introduction to the Arctic: Significance and History 1.1 The Arctic Ocean and Its Significance for the Earth's Climate System 1.2 History of Arctic Ocean Research 1.3 Plate Tectonic Evolution and Palaeogeography 1.4 Glaciations in Earth's History Chapter 2. Modern Physiography, Hydrology, Climate, and Sediment Input 2.1 Bathymetry and Physiography 2.2 Oceanic Circulation Pattern and Water-Mass Characteristics 2.3 Sea-Ice Cover: Extent, Thickness, and Variability 2.4 Primary Production and Vertical Carbon Fluxes in the Arctic Ocean 2.5 River Discharge 2.6 Permafrost 2.7 Coastal Erosion 2.8 Aeolian Input 2.9 Modern Sediment Input: A Summary Part 2: Processes and Proxies Chapter 3. Glacio-Marine Sedimentary Processes 3.1 Sea-Ice Processes: Sediment Entrainment and Transport 3.2 Ice Sheet- and Iceberg-Related Processes 3.3 Sediment Mass-Wasting Processes 3.4 Turbidite Sedimentation in the Central Arctic Ocean Chapter 4. Proxies Used for Palaeoenvironmental Reconstructions in the Arctic Ocean 4.1 Lithofacies Concept 4.2 Grain-Size Distribution 4.3 Proxies for Sources and Transport Processes of Terrigenous Sediments 4.4 Trace Elements Used for Palaeoenvironmental Reconstruction 4.5 Micropalaeontological Proxies and Their (Palaeo-) Environmental and Stratigraphical Significance 4.6 Stable Isotopes of Foraminifers 4.7 Organic-Geochemical Proxies for Organic-Carbon Source and Palaeoenvironment Part 3: The Marine-Geological Record 5 Modern Environment and its record in surface sediments 5.1 Terrigenous (non-biogenic) components in Arctic Ocean surface sediments: Implications for provenance and modern transport processes 5.2 Organic-Carbon Content: Terrigenous Supply versus Primary Production Chapter 6. Quaternary Variability of Palaeoenvironment and Its Sedimentary Record 6.1 The Stratigraphic Framework of Arctic Ocean Sediment Cores: Background, Problems, and Perspectives 6.2 Variability of Quaternary Ice Sheets and Palaeoceanographic Characteristics: Terrestrial, Model, and Eurasian Continental Margin Records 6.3 Circum-Arctic Glacial History, Sea-Ice Cover, and Surface-Water Characteristics: Quaternary Records from the Central Arctic Ocean 6.4 Accumulation of Particulate Organic Carbon at the Arctic Continental Margin and Deep-Sea Areas During Late Quaternary Times Chapter 7. Mesozoic to Cenozoic Palaeoenvironmental Records of High Northern Latitudes 7.1 Mesozoic High-Latitude Palaeoclimate and Arctic Ocean Palaeoenvironment 7.2 Cenozoic High-Latitude Palaeoclimate and Arctic Ocean Palaeoenvironment Chapter 8. Open Questions and Future Geoscientific Arctic Ocean Research 8.1 Quaternary and Neogene Climate Variability on Sub-Millennial to Milankovich Time Scales 8.2 The Mesozoic-Cenozoic History of the Arctic Ocean References Index
    Location: AWI Reading room
    Branch Library: AWI Library
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  • 3
    Unknown
    Amsterdam ; Boston : Elsevier
    Keywords: DDC 514.74 ; LC QA614 ; Global analysis (Mathematics) ; Mathematical physics
    Pages: Online-Ressource (xii, 1229 pages)
    Edition: 1st ed
    ISBN: 9780444528339
    Language: English
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  • 4
    Unknown
    Amsterdam ; Boston : Elsevier
    Keywords: DDC 519.2/4 ; LC QA273.6 ; Approximation theory ; Distribution (Probability theory) ; Information theory
    Description / Table of Contents: Mixing up various disciplines frequently produces something that are profound and far-reaching. Cybernetics is such an often-quoted example. Mix of information theory, statistics and computing technology proves to be very useful, which leads to the recent development of information-theory based methods for estimating complicated probability distributions. Estimating probability distribution of a random variable is the fundamental task for quite some fields besides statistics, such as reliability, probabilistic risk analysis (PSA), machine learning, pattern recognization, image processing, neural networks and quality control. Simple distribution forms such as Gaussian, exponential or Weibull distributions are often employed to represent the distributions of the random variables under consideration, as we are taught in universities. In engineering, physical and social science applications, however, the distributions of many random variables or random vectors are so complicated that they do not fit the simple distribution forms at al. Exact estimation of the probability distribution of a random variable is very important. Take stock market prediction for example. Gaussian distribution is often used to model the fluctuations of stock prices. If such fluctuations are not normally distributed, and we use the normal distribution to represent them, how could we expect our prediction of stock market is correct? Another case well exemplifying the necessity of exact estimation of probability distributions is reliability engineering. Failure of exact estimation of the probability distributions under consideration may lead to disastrous designs. There have been constant efforts to find appropriate methods to determine complicated distributions based on random samples, but this topic has never been systematically discussed in detail in a book or monograph. The present book is intended to fill the gap and documents the latest research in this subject. Determining a complicated distribution is not simply a multiple of the workload we use to determine a simple distribution, but it turns out to be a much harder task. Two important mathematical tools, function approximation and information theory, that are beyond traditional mathematical statistics, are often used. Several methods constructed based on the two mathematical tools for distribution estimation are detailed in this book. These methods have been applied by the author for several years to many cases. They are superior in the following senses: (1) No prior information of the distribution form to be determined is necessary. It can be determined automatically from the sample; (2) The sample size may be large or small; (3) They are particularly suitable for computers. It is the rapid development of computing technology that makes it possible for fast estimation of complicated distributions. The methods provided herein well demonstrate the significant cross influences between information theory and statistics, and showcase the fallacies of traditional statistics that, however, can be overcome by information theory.〈P〉 Key Features: - Density functions automatically determined from samples - Free of assuming density forms - Computation-effective methods suitable for PC〈P〉 - density functions automatically determined from samples - Free of assuming density forms - Computation-effective methods suitable for PC
    Pages: Online-Ressource (xvii, 299 pages)
    Edition: 1st ed
    ISBN: 9780444527967
    Language: English
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  • 5
    Unknown
    Amsterdam ; Boston : Elsevier
    Keywords: DDC 515/.64 ; LC QA316 ; Equilibrium (Economics) ; Variational inequalities (Mathematics)
    Pages: Online-Ressource (xiii, 235 pages)
    Edition: 1st ed
    ISBN: 9780444530301
    Language: English
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  • 6
    Unknown
    Amsterdam ; Boston : Elsevier
    Keywords: DDC 515/.724 ; LC QA329 ; Differentiable dynamical systems ; Operator equations
    Pages: Online-Ressource (xiii, 289 pages)
    Edition: 1st ed
    ISBN: 9780444527950
    Language: English
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  • 7
    Unknown
    Amsterdam ; Boston : Elsevier
    Keywords: DDC 511.326 ; LC QA689 ; Generalized spaces ; Mappings (Mathematics) ; Topology
    Pages: Online-Ressource (xvi, 559 pages)
    ISBN: 9780444515865
    Language: English
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  • 8
    Unknown
    Amsterdam ; Boston : Elsevier
    Keywords: DDC 516.3/75 ; LC QA689 ; Finsler spaces ; Global differential geometry ; Manifolds (Mathematics)
    Pages: Online-Ressource (xiii, 250 pages)
    Edition: 1st ed
    ISBN: 9780444521064
    Language: English
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  • 9
    Keywords: DDC 515/.3533 ; LC QA379 ; Boundary value problems ; Differential equations, Elliptic
    Pages: Online-Ressource (v, 531 pages)
    Edition: 1st ed
    ISBN: 9780444521095
    Language: English
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  • 10
    Unknown
    Amsterdam ; Boston : Elsevier
    Keywords: DDC 515/.392 ; LC QA871 ; Computer science - Mathematics ; Differential equations ; Runge-Kutta formulas ; Stability
    Pages: Online-Ressource (xv, 286 pages)
    Edition: 1st ed
    ISBN: 9780444521408
    Language: English
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