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  • 1
    Call number: M 96.0550 ; AWI G6-96-0128
    Description / Table of Contents: A lake, as a body of water, is in continuous interaction with the rocks and soils in its drainage basin, the atmosphere, and surface and groundwaters. Human industrial and agricultural activities introduce new inputs and processes into lake systems. This volume is a selection of ten contributions dealing with diverse aspects of lake systems, including such subjects as the geological controls of lake basins and their histories, mixing and circulation patterns in lakes, gaseous exchange between the water and atmosphere, and human input to lakes through atmospheric precipitation and surficial runoff. This work was written with a dual goal in mind: to serve as a textbook and to provide professionals with in-depth expositions and discussions of the more important aspects of lake systems.
    Type of Medium: Monograph available for loan
    Pages: XVI, 334 Seiten , Illustrationen
    Edition: 2. ed.
    ISBN: 3540578919
    Classification:
    Sedimentology
    Language: English
    Note: Contents: 1 Global Distribution of Lakes / M. MEYBECK. - 1 Introduction. - 2 Background Material and Approaches to Global Lake Census. - 2.1 Data Used. - 2.2 Approaches to Global Lake Census. - 3 General Laws of Lake Distribution. - 3.1 Lake Density . - 3.2 Limnic Ratio. - 4 Distribution of Lakes of Tectonic Origin. - 5 Lakes of Glacial Origin. - 5.1 Lake Densities. - 5.2 Global Deglaciated Area. - 5.3 Total Number of Glacial Lakes. - 6 Fluvial Lakes. - 7 Global Distribution of Crater Lakes. - 8 Global Distribution of Saline Lakes. - 8.1 Coastal Lagoons. - 8.2 Salinized Lakes due to Evaporation. - 9 Global Lake Distribution. - 9.1 Extrapolation Approach. - 9.2 Lake Type Approach. - 9.3 Climatic Typology Approach. - 9.4 Lake Distribution in Endorheic Areas. - 9.5 Global Dissolved Salt Distribution in Lakes. - 10 Major Changes in Global Lake Distribution in the Geological Past. - 10.1 Lake Ages. - 10.2 Historical Changes. - 10.3 Postglacial Changes. - 11 Discussion and Conclusions. - References. - 2 Hydrological Processes and the Water Budget of Lakes / T. C. WINTER. - 1 Introduction. - 2 Hydrological System with Regard to Lakes. - 2.1 Interaction of Lakes with Atmospheric Water. - 2.2 Interaction of Lakes with Surface Water. - 2.3 Interaction of Lakes with Subsurface Water. - 2.4 Change in Lake Volume. - 3 Summary. - References. - 3 Hydrological and Thermal Response of Lakes to Climate: Description and Modeling / S. W. HOSTETLER. - 1 Introduction. - 2 Hydrological Response. - 3 The Hydrological Budget. - 4 Hydrological Models. - 5 Thermal Response. - 5.1 Energy Budget and Energy Budget Models. - 5.2 Models and Modeling. - 6 Use of Models to Link Lakes with Climate Change. - 7 Input Data Sets. - 8 Sample Applications. - 9 Summary. - References. - 4 Mixing Mechanisms in Lakes / D. M. IMBODEN and A. WÜEST. - 1 Transport and Mixing. - 2 Lakes as Physical Systems. - 3 Fluid Dynamics: Mathematical Description of Advection and Diffusion. - 3.1 Equations of Fluid Motion. - 3.2 Turbulence, Reynolds' Stress, and Eddy Diffusion. - 3.3 Vertical Momentum Equation. - 3.4 Nonlocal Diffusion and Transilient Mixing. - 4 Density and Stability of Water Column. - 4.1 Equation of State of Water. - 4.2 Potential Temperature and Local Vertical Stability. - 5 Energy Fluxes: Driving Forces Behind Transport and Mixing. - 5.1 Thermal Energy. - 5.2 Potential Energy. - 5.3 Kinetic Energy. - 5.4 Turbulent Kinetic Energy Balance in Stratified Water. - 5.5 Internal Turbulent Energy Fluxes: Turbulence Cascade. - 6 Mixing Processes in Lakes. - 6.1 Waves and Mixing. - 6.2 Mixing in the Surface Layer. - 6.3 Diapycnal Mixing. - 6.4 Boundary Mixing. - 6.5 Double Diffusion. - 6.6 Isopycnal Mixing. - 7 Mixing and Its Ecological Relevance. - 7.1 Time Scales of Mixing. - 7.2 Reactive Species and Patchiness. - 7.3 Mixing and Growth: The Search for an Ecological Steering Factor. - References. - 5 Stable Isotopes of Fresh and Saline Lakes / J. R. GAT. - 1 Introduction. - 1.1 Isotope Separatio During Evaporation. - 2 Small-Area Lakes. - 2.1 Seasonal and Annual Changes. - 2.2 Deep Freshwater Lakes. - 2.3 Transient Surface-Water Bodies. - 3 Interactive and Feedback Systems. - 3.1 Network of Surface-Water Bodies. - 3.2 Recycling of Reevaporated Moisture into the Atmosphere. - 3.3 Large Lakes. - 3.4 Large-Area Lakes with Restricted Circulation. - 4 Saline Lakes. - 4.1 Isotope Hydrology of Large Salt Lakes. - 4.2 Ephemeral Salt Lakes and Sabkhas. - 5 Isotopie Paleolimnology. - 6 Conclusions: From Lakes to Oceans. - References. - 6 Exchange of Chemicals Between the Atmosphere and Lakes / P. VLAHOS, D. MACKAY, S. J. EISENREICH, and KC. HORNBUCKLE. - 1 Introduction. - 2 Air-Water Partitioning Equilibria. - 3 Diffusion Between Water and Air. - 4 Volatilization and Absorption: Double-Resistance Approach. - 5 Factors Affecting Mass-Transfer Coefficients. - 6 Partitioning of Chemical to Paniculate Matter in Air and Water. - 6.1 Air. - 6.2 Water. - 7 Atmospheric Deposition Processes. - 7.1 Dry Deposition. - 7.2 Wet Deposition. - 8 Specimen Calculation. - 8.1 Step 1: Physicochemical Properties. - 8.2 Step 2: Mass-Transfer Coefficients. - 8.3 Step 3: Sorption in Air and Water. - 8.4 Step 4: Equilibrium Status. - 8.5 Step 5: Volatilization and Deposition Rates. - 9 Role of Air-Water Exchange in Lake Mass Balances. - 10 Case Studies. - 10.1 Mass Balance on Siskiwit Lake, Isle Royale. - 10.2 Mass Balance on Lake Superior. - 10.3 Air-Water Exchange in Green Bay, Lake Michigan. - 10.4 Air-Water Exchange in Lake Superior. - 11 Conclusions. - References. - 7 Atmospheric Depositions: Impact of Acids on Lakes / W. STUMM and J. SCHNOOR. - Abstract. - 1 Introduction: Anthropogenic Generation of Acidity. - 1.1 Genesis of Acid Precipitation. - 2 Acidity and Alkalinity: Neutralizing Capacities. - 2.1 Transfer of Acidity (or Alkalinity) from Pollution Through the Atmosphere to Ecosystems. - 3 Acidification of Aquatic and Terrestrial Ecosystems. - 3.1 Disturbance of H+ Balance from Temporal or Spatial Decoupling of the Production and Mineralization of the Biomass. - 3.2 In Situ H+ Ion Neutralization in Lakes. - 3.3 Krug and Frink Revisited. - 4 Brønsted Acids and Lewis Acids: Pollution by Heavy Metals, as Influenced by Acidity. - 4.1 Cycling of Metals. - 4.2 Pb in Soils. - 5 Impact of Acidity on Ecology in Watersheds. - 5.1 Soils. - 5.2 Lakes. - 5.3 Nitrogen Saturation of Forests. - 6 Critical Loads. - 6.1 Critical Load Maps. - 6.2 Models for Critical Load Evaluation. - 7 Case Studies. - 7.1 Chemical Weathering of Crystalline Rocks in the Catchment Area of Acidic Ticino Lakes, Switzerland. - 7.2 Watershed Manipulation Project at Bear Brooks, Maine. - 8 Summary. - References. - 8 Redox-Driven Cycling of Trace Elements in Lakes / J. HAMILTON-TAYLOR and W. DAVISON. - 1 Introduction. - 2 Major Biogeochemical Cycles and Pathways. - 3 Iron and Manganese. - 3.1 Transformations and Cycling. - 3.2 Iron and Manganese Compounds as Carrier Phases. - 4 Sediment-Water Interface. - 4.1 Diffusive Flux from Sediments. - 4.2 Evidence of Little or No Diffusive Efflux from Sediments. - 4.3 Transient Remobilization. - 4.4 Diffusive Flux into Sediments. - 5 Pathways Involving Redox Reactions Directly: Case Studies. - 5.1 Arsenic. - 5.2 Chromium. - 5.3 239,240Pu. - 5.4 Selenium 6 Pathways Involving Redox Reactions Indirectly: Case Studies. - 6.1 137Cs. - 6.2 Stable Pb, 210Pb, and 210Po. - 6.3 Zinc. - 7 Summary and Conclusions. - References. - 9 Comparative Geochemistry of Marine Saline Lakes / F. T. MACKENZIE, S. VINK, R. WOLLAST, and L. CHOU. - 1 Introduction. - 2 General Characteristics of Marine Saline Lakes. - 3 Comparative Sediment-Pore-Water Reactions. - 3.1 Mangrove Lake, Bermuda. - 3.2 Solar Lake, Sinai. - 4 Conclusions. - References. - 10 Organic Matter Accumulation Records in Lake Sediments / P. A. MEYERS and R. ISHIWATARI. - 1 Introduction. - 1.1 Significance of Organic Matter in Lake Sediments. - 1.2 Origins of Organic Matter to Lake Sediments. - 1.3 Alterations of Organic Matter During Deposition. - 1.4 Similarities and Differences Between Organic Matter in Sediments of Lakes and Oceans. - 1.5 Dating of Lake-Sediment Records. - 2 Indicators of Sources and Alterations of Total Organic Matter in Lake Sediments. - 2.1 Source Information Preserved in C/N Ratios of Sedimentary Organic Matter. - 2.2 Source Information from Carbon-Stable Isotopic Compositions. - 2.3 Source Information from Nitrogen-Stable Isotopic Compositions. - 3 Origin and Alterations of Humic Substances. - 4 Sources and Alterations of Lipid Biomarkers. - 4.1 Alteration of Lipids During Deposition. - 4.2 Changes in Sources vs Selective Diagenesis. - 4.3 Effects of Sediment Grain Size on Geolipid Compositions. - 4.4 Source Records of Alkanes in Lake Sediments. - 4.5 Preserv
    Location: Upper compact magazine
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  • 2
    Series available for loan
    Series available for loan
    Bremerhaven : Alfred-Wegener-Inst. für Polar- und Meeresforschung
    Associated volumes
    Call number: ZSP 168-501 ; ZS-090(501)
    In: Berichte zur Polar- und Meeresforschung
    Type of Medium: Series available for loan
    Pages: II, 247 S.
    ISSN: 1618-3193
    Series Statement: Berichte zur Polar- und Meeresforschung 501
    Classification:
    Oceanology
    Language: English
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  • 3
    Series available for loan
    Series available for loan
    Canberra : Australian Government Publishing Service
    Call number: AWI G9-96-0440 ; AWI G9-96-0502
    Type of Medium: Series available for loan
    Pages: x, 124 p. , Ill., graph. Darst., Kt. , 1 Kt.-Beil.
    ISBN: 0-644-45247-1
    ISSN: 0084-7089
    Series Statement: Bulletin / Australian Geological Survey Organisation 244
    Note: Contents: Abstract. - Introduction. - Bunger Hills-Obruchev Hills area. - Metamorphic rocks. - Pyroxene-quartz-feldspar gneiss. - Mafic granulite. - Ultramafic rocks. - Garnet-quartz-feldspar gneiss. - Aluminous metasediments. - Quartzite. - Calc-silicate rocks and marble. - Igneous rocks. - Mafic to felsic plutonic rocks. - Felsic dykes and minor intrusions. - Mafic dykes. - Rapakivi granite and felsic volcanics. - Denman Glacier Area. - Metamorphic rocks. - Felsic orthogneiss. - Mafic rocks. - Ultramafic rocks. - Garnet-quartz-feldspar gneiss. - Metasediments. - Igneous rocks. - Mafic to felsic plutonic rocks. - Felsic dykes and minor intrusions. - Mafic dykes. - Mount Amundsen and Mount Sandow. - Sandow Group. - Sediments. - Metabasalt. - Structural Geology. - Bunger Hills area. - D1 deformation. - D2 deformation. - D3 deformation. - D4 deformation. - Denman Glacier area and Mounts Amundsen and Sandow. - Metamorphism. - Bunger Hills area. - Peak metamorphism. - Retrograde metamorphism. - Denman Glacier area. - Discussion. - Geological history of the Bunger Hills area. - Regional correlations. - Gondwana reconstruction and tectonic synthesis. - Gondwana correlations. - Acknowledgements. - References. - Appendix: Chemical analyses of rock samples rom the Bunger Hills and Denman Glacier areas. - Analytical methods. - Precision and accuracy.
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  • 4
    Monograph available for loan
    Monograph available for loan
    Chichester : Wiley
    Call number: AWI A6-08-0012
    Type of Medium: Monograph available for loan
    Pages: X, 280 Seiten , Illustrationen , 1 CD-ROM
    ISBN: 0470861738
    Language: English
    Note: Contents Preface Part I Anatomy of a cyclone 1 Anatomy of a cyclone 1.1 A 'typical' extra-tropical cyclone 1.2 Describing the atmosphere 1.3 Air masses and fronts 1.4 The structure of a typical extra-tropical cyclone Review questions 2 Mathematical methods in fluid dynamics 2.1 Scalars and vectors 2.2 The algebra of vectors 2.3 Scalar and vector fields 2.4 Coordinate systems on the Earth 2.5 Gradients of vectors 2.6 Line and surface integrals 2.7 Eulerian and Lagrangian frames of reference 2.8 Advection Review questions 3 Properties of fluids 3.1 Solids, liquids, and gases 3.2 Thermodynamic properties of air 3.3 Composition of the atmosphere 3.4 Static stability 3.5 The continuum hypothesis 3.6 Practical assumptions 3.7 Continuity equation Review questions 4 Fundamental forces 4.1 Newton's second law: F=ma 4.2 Body, surface, and line forces 4.3 Forces in an inertial reference frame 4.4 Forces in a rotating reference frame 4.5 The Navier-Stokes equations Review questions 5 Scale analysis 5.1 Dimensional homogeneity 5.2 Scales 5.3 Non-dimensional parameters 5.4 Scale analysis 5.5 The geostrophic approximation Review questions 6 Simple steady motion 6.1 Natural coordinate system 6.2 Balanced flow 6.3 The Boussinesq approximation 6.4 The thermal wind 6.5 Departures from balance Review questions 7 Circulation and vorticity 7.1 Circulation 7.2 Vorticity 7.3 Conservation of potential vorticity 7.4 An introduction to the vorticity equation Review questions 8 Simple wave motions 8.1 Properties of waves 8.2 Perturbation analysis 8.3 Planetary waves Review questions 9 Extra-tropical weather systems 9.1 Fronts 9.2 Frontal cyclones 9.3 Baroclinic instability Review questions Part II Atmospheric phenomena 10 Boundary layers 10.1 Turbulence 10.2 Reynolds decomposition 10.3 Generation of turbulence 10.4 Closure assumptions Review questions 11 Clouds and severe weather 11.1 Moist processes in the atmosphere 11.2 Air mass thunderstorms 11.3 Multi-cell thunderstorms 11.4 Supercell thunderstorms and tornadoes 11.5 Mesoscale convective systems Review questions 12 Tropical weather 12.1 Scales of motion 12.2 Atmospheric oscillations 12.3 Tropical cyclones Review questions 13 Mountain weather 13.1 Internal gravity waves 13.2 Flow over mountains 13.3 Downslope windstorms Review questions 14 Polar weather 14.1 Katabatic winds 14.2 Barrier winds 14.3 Polar lows Review questions 15 Epilogue: the general circulation 15.1 Fueled by the Sun 15.2 Radiative-convective equilibrium 15.3 The zonal mean circulation 15.4 The angular momentum budget 15.5 The energy cycle Appendix A - symbols Appendix Β - constants and units Bibliography Index
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  • 5
    Monograph available for loan
    Monograph available for loan
    Montreal [u.a.] : McGill-Queen's Univ. Press
    Call number: PIK N 630-11-0268 ; AWI Bio-17-17112
    Type of Medium: Monograph available for loan
    Pages: XVIII, 361 S. : Ill., graph. Darst., Kt.
    ISBN: 0773512411
    Language: English
    Note: Contents: Figures. - Tables. - Preface. - Illustrations. - 1. Introduction. - 1.1 Background. - 1.2 Scope of the text. - 1.3 World vegetation types. - 1.3.1 Vegetation formations and zones. - 1.3.2 Zonobiomes. - 1.3.3 Exoclimates. - 1.3.4 The Canadian vegetation classification system. - 1.3.5 Ecozones. - 1.3.6 Floristic realms. - 1.3.7 Plant species nomenclature. - 1.4 Soil classification and soil systems. - 1.5 Climatic parameters. - 1.5.1 The role of climate. - 1.5.2 Moisture indices. - 1.5.3 Climate diagrams. - 1.6 Plant strategies. - 1.6.1 Competition. - 1.6.2 Hydrature and moisture regulation. - 1.6.3 Life forms. - 1.6.4 Leaf morphology and adaptation. - 1.7 Biomass and net primary productivity. - 2. Tundra 2.1 Tundra distribution. - 2.2 Climate. - 2.3 Soils. - 2.4 Tundra in North America. - 2.4.1 Ecoclimatic sub-provinces and regions. - 2.4.2 High and mid-Arctic. - 2.4.3 Low Arctic. - 2.5 Tundra in other Northern Hemisphere locations. - 2.5.1 Arctic Tundra. - 2.5.2 Typical Tundra. - 2.5.3 Southern Tundra. - 2.5.4 Tundra on Arctic Islands. - 2.6 Tundea in the Southern Hemisphere. - 2.6.1 The Antarctic Subregion. - 2.6.2 The Sub-Antarctic Subregion. - 2.7 Alpine Tundra. - 2.7.1 Temperate-latitude alpine Tundra. - 2.7.2 Low-latitude (equatorial) alpine Tundra. - 2.8 Primary production and phytomass in Tundra. - 3. Forest-Tundra or Boreal-Tundra Ecotone. - 3.1 Definitions. - 3.2 Distribution. - 3.3 Climate. - 3.4 Soils. - 3.5 Forest-Tundra in Canada. - 3.5.1 Ecoclimatic sub-provinces. - 3.5.2 The shrub subzone (Northern Forest-Tundra). - 3.5.3 The forest subzone (Southern Forest Tundra). - 3.6 Eurasian Forest-Tundra. - 3.7 Primary production and phytomass in forest-Tundra. - 4. Boreal Forest (Taiga) and Mixed Forest Transition. - 4.1 Distribution. - 4.2 Climate. - 4.3 Soils. - 4.4 Boreal forest in North America. - 4.4.1 Open Lichen Woodland. - 4.4.2 Northern Coniferous Forest. - 4.4.3 Mixed-Forest (Boreal-Broadleaf ecotone). - 4.4.4 Mixed-Forest transition to grassland (Northern Mixedwoods). - 4.5 Eurasian Boreal. - 4.5.1 The European Boreal. - 4.5.2 The Siberian Boreal. - 4.5.3 Northwest Pacific Fringe Boreal. - 4.6 Primary production and phytomass in boreal forest. - 5. Prairie (Steppe). - 5.1 Distribution. - 5.2 Climate. - 5.2.1 North America. - 5.2.2 Climate in Eurasia and elsewhere. - 5.3 Soils. - 5.4 Prairie in North America. - 5.4.1 The Canadian Prairie. - 5.4.2 Prairie in the USA. - 5.5. Eurasian Steppe. - 5.6 Southern Hemisphere Grasslands. - 5.6.1 The High Veldt. - 5.6.2 The Pampas/Campos Grasslands. - 5.7 Primary production and biomass. - 6. Cordilleran Environments in Western North America. - 6.1 Canada's Cordilleran ecoclimatic provinces. - 6.1.1 Distribution. - 6.1.2 Climate. - 6.1.3 Soils. - 6.1.4 Pacific Coastal Mesothermal Forest. - 6.1.5 Pacific Coastal Subalpine Forest. - 6.1.6 Cordilleran Forest Region. - 6.1.7 Cordilleran Cold Steppe and Savanna Forst. - 6.1.8 Canadian Cordilleran Subalpine Forest. - 6.1.9 Alpine Tundra and Boreal Forest. - 6.2 The Cordilleran Region in the USA. - 6.2.1 Distribution. - 6.2.2 Northwest Coast Conifer-Hardwood Forests. - 6.2.3 Montane Pine Forests. - 6.2.4 Sagebrush and Grasslands. - 6.2.5 Interior Hemlock-Douglas-Fir-Larch. - 6.2.6 Subalpine Forest. - 6.3 Primary Production and Phytomass. - 7. Temperate Deciduous Forests. - 7.1 Distribution. - 7.2 Climate. - 7.3 Soils. - 7.4 Temperate Deciduous Forest in North America. - 7.4.1 Canada. - 7.4.2 United States of America. - 7.4.3 Southern Mexico and South America. - 7.5 Europe. - 7.5.1 Atlantic Deciduous Forest. - 7.5.2 Central European Deciduous Forest. - 7.5.3 East European Deciduous Forest. - 7.6 Asia. - 7.7 Southern Hemisphere. - 7.8 Primary Production and Phytomass. - 8. Wetlands. - 8.1 Introduction. - 8.2 Climate. - 8.3 Soils. - 8.4 Canadian Wetland Classification. - 8.4.1 Canadian Wetland Classification System. - 8.4.2 Wetland classes. - 8.4.3 Wetland forms and types. - 8.5 Canadian Wetlands. - 8.5.1 Arctic Wetlands. - 8.5.2 Subarctic Wetlands. - 8.5.3 Boreal Wetlands. - 8.5.4 Prairie Wetlands. - 8.5.5 Temperate Wetlands. - 8.5.6 Oceanic Wetlands. - 8.5.7 Mountain Wetlands. - 8.6 Wetlands in the USA. - 8.7 Eurasian Wetlands. - 8.7.1 European Wetlands. - 8.7.2 Asian Wetlands. - 8.8 Central and South American Wetlands. - 8.9 African Wetlands. - 8.10 Austromalesian and Pacific Wetlands. - 8.11 Phytomass and Primary Production. - 9. Conclusion. - Appendix: Biomials and their local names as used in the text. - Bibliography. - Index.
    Location: A 18 - must be ordered
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  • 6
    Call number: AWI G7-98-0169
    Type of Medium: Monograph available for loan
    Pages: III, 142 S. , Ill., graph. Darst.
    ISSN: 1040-6182
    Series Statement: Quaternary International 45/46
    Note: Contents: Preface / W. Karlén, J. Lundqvist and N. Rutter. - Late-Weichselian ice sheets in Arctic and Pacific Siberia / M. G. Grosswald. - The last ice sheet of the Kara Sea: terrestrial constraints on its age / A. Astakhov. - Stratigraphy and paleogeography of the Sartan Glaciation in West Siberia / S. A. Arkhipov. - The relationship of massive ground ice and the late Pleistocene history of northwest Siberia / F. A. Michel. - Scanning electron microscopy of pleistocene sands from Yamal and Taz Peninsulas, Ob River Estuary, Northwestern Siberia / W. C. Mahaney. - The quaternary vegetation and landscape evolution of Novaya Zemlya in the light of palynological records / L. Serebryanny and E. Malyasova. - Reconstruction of the 2.4 million km2 late pleistocene ice sheet on the Tibetan Plateau and its impact on the Tibetan Plateau and its impact on the global climate / M. Kuhle. - On the problem of Quaternary glaciations, and the extent and patterns of pleistocene ice cover in the Qinghai-Xizang (Tibet) Plateau / Z. Benzing and N. Rutter. - Extent and spatial distribution of pleistocene glaciations in Eastern Tibet / F. Lehmkuhl. - The sequence of the quaternary glaciation in the Bayan Har Mountains / Z. Shangzhe and L. Jijun.
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  • 7
    Call number: ZSP-168-180
    In: Berichte zur Polarforschung
    Type of Medium: Series available for loan
    Pages: II, 186 S. : graph. Darst., Kt.
    ISSN: 0176-5027
    Series Statement: Berichte zur Polarforschung 180
    Language: German
    Note: Teilw. zugl.: Bremen, Univ., Diss., 1995
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  • 8
    Monograph available for loan
    Monograph available for loan
    San Diego [u.a.] : Academic Press
    Associated volumes
    Call number: AWI A5-99-0315
    In: International Geophysics Series, Vol. 65
    Type of Medium: Monograph available for loan
    Pages: XVII, 469 S.
    ISBN: 0121995704
    Series Statement: International Geophysics Series 65
    Language: English
    Note: Contents: Preface. - Acknowledgements. - Publisher's Credits. - Part I Basic Concepts. - Chapter 1 Composition, Structure, and State. - 1.1 Composition of the Atmosphere. - 1.2 Composition of the Ocean. - 1.3 Pressure. - 1.4 Density. - 1.5 Temperature. - 1.6 Kinetic-Molecular Model of the Ideal Gas. - 1.7 Equation of State for Air. - 1.8 Equation of State for Seawater. - 1.9 Compressibility and Expansion Coefficients. - 1.10 Hydrostatic Equilibrium. - Notes. - Problems. - Chapter 2 First and Second Laws of Thermodynamics. - 2.1 Work. - 2.2 Heat. - 2.3 First Law. - 2.4 Applications of the First Law to Ideal Gases. - 2.5 Entropy. - 2.6 Second Law. - 2.7 Equilibrium and the Combined First and Second Laws. - 2.8 Calculation of Thermodynamic Relations. - 2.9 Heat Capacity. - 2.10 Dry Adiabatic Processes in the Atmosphere. - 2.11 Adiabatic Processes in the Ocean. - Notes. - Problems. - Chapter 3 Transfer Processes. - 3.1 Time-dependent Thermodynamics. - 3.2 Radiant Energy. - 3.3 Radiative Transfer. - 3.4 Diffusive Transfer Processes. - 3.5 Turbulence and Turbulent Transport. - 3.6 Time-dependent Equations for the Ocean and Atmosphere. - Notes. - Problems. - Chapter 4 Thermodynamics of Water. - 4.1 Molecular Structure and Properties of Water. - 4.2 Thermodynamic Degrees of Freedom. - 4.3 Phase Equilibria. - 4.4 Atmospheric Humidity Variables. - 4.5 Colligative Properties of Water Solutions. - 4.6 Simple Eutectics. - Notes. - Problems. - Chapter 5 Nucleation and Diffusional Growth. - 5.1 Surface Tension. - 5.2 Nucleation of the Liquid Phase. - 5.3 Nucleation of the Ice Phase. - 5.4 Diffusional Growth of Cloud Drops. - 5.5 Ice Crystal Morphology and Growth. - 5.6 Formation of the Initial Sea Ice Cover. - 5.7 Formation of Sea Ice Transition and Columnar Zones. - Notes. - Problems. - Part II Applications. - Chapter 6 Moist Thermodynamic Processes in the Atmosphere. - 6.1 Combined First and Second Laws. - 6.2 Isobaric Cooling. - 6.3 Cooling and Moistening by Evaporation of Water. - 6.4 Saturation by Adiabatic, Isobaric Mixing. - 6.5 Saturated Adiabatic Cooling. - 6.6 The Ice Phase. - 6.7 Conserved Moist Thermodynamic Variables. - 6.8 Aerological Diagrams. - Notes. - Problems. - Chapter 7 Static Stability of the Atmosphere and Ocean. - 7.1 Stability Criteria. - 7.2 Stability of a Saturated Atmosphere. - 7.3 Processes Producing Changes in Stability. - Notes. - Problems. - Chapter 8 Cloud Characteristics and Processes. - 8.1 Cloud Classification and Characteristics. - 8.2 Precipitation Processes. - 8.3 Radiative Transfer in a Cloudy Atmosphere. - 8.4 Fogs, Stratus Clouds, and Stratocumulus Clouds. - 8.5 Cumuliform Clouds. - 8.6 Parameterization of Cloud Microphysical Processes. - Notes. - Problems. - Chapter 9 Ocean Surface Exchanges of Heat and Freshwater. -
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  • 9
    Monograph available for loan
    Monograph available for loan
    Chichester [u.a.] : Wiley
    Call number: AWI S2-18-91482
    Type of Medium: Monograph available for loan
    Pages: VIII, 942 S. , graph. Darst.
    ISBN: 9780470510247
    Language: English
    Note: Contents: Preface. - 1 Getting Started. - 2 Essentials of the R Language. - 3 Data Input. - 4 Dataframes. - 5 Graphics. - 6 Tables. - 7 Mathematics. - 8 Classical Tests. - 9 Statistical Modelling. - 10 Regression. - 11 Analysis of Variance. - 12 Analysis of Covariance. - 13 Generalized Linear Models. - 14 Count Data. - 15 Count Data in Tables. - 16 Proportion Data. - 17 Binary Response Variables. - 18 Generalized Additive Models. - 19 Mixed-Effects Models. - 20 Non-linear Regression. - 21 Tree Models. - 22 Time Series Analysis. - 23 Multivariate Statistics. - 24 Spatial Statistics. - 25 Survival Analysis. - 26 Simulation Models. - 27 Changing the Look of Graphics. - References and Further Reading. - Index.
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  • 10
    Monograph available for loan
    Monograph available for loan
    Boca Raton, Fla. [u.a.] : Chapman & Hall/ CRC
    Call number: AWI S2-18-91500
    Type of Medium: Monograph available for loan
    Pages: 455 S. , graph. Darst.
    Edition: 3. ed.
    ISBN: 1584885416 (hbk.) , 9781584885412 (hbk.)
    Series Statement: Texts in statistical science
    Language: English
    Note: Table of Contents: Chapter 1 Randomization. - 1.1 The Idea of a Randomization Test. - 1.2 Examples of Randomization Tests. - 1.3 Aspects of Randomization Testing Raised by the Examples. - 1.3.1 Sampling the Randomization Distribution or Systematic Enumeration. - 1.3.2 Equivalent Test Statistics. - 1.3.3 Significance Levels for Classical and Randomization Tests. - 1.3.4 Limitations of Randomization Tests. - 1.4 Confidence Limits by Randomization. - 1.5 Applications of Randomization in Biology and Related Areas. - 1.5.1 Single Species Ecology. - 1.5.2 Genetics, Evolution, and Natural Selection. - 1.5.3 Community Ecology. - 1.5.4 Other Environmental Applications. - 1.6 Randomization and Observational Studies. - 1.7 Chapter Summary. - Chapter 2 The Jackknife. - 2.1 The Jackknife Estimator. - 2.2 Applications of Jackknifing in Biology. - 2.2.1 Single-Species Analyses. - 2.2.2 Genetics, Evolution, and Natural Selection. - 2.2.3 Community Ecology. - 2.3 Chapter Summary. - Chapter 3 The Bootstrap. - 3.1 Resampling with Replacement. - 3.2 Standard Bootstrap Confidence Limits. - 3.3 Simple Percentile Confidence Limits. - 3.4 Bias- Corrected Percentile Confidence Limits. - 3.5 Accelerated Bias-Corrected Percentile Limits. - 3.6 Other Methods for Constructing Confidence Intervals. - 3.7 Transformations to Improve Bootstrap-t Intervals. - 3.8 Parametric Confidence Intervals. - 3.9 A Better Estimate of Bias. - 3.10 Bootstrap Tests of Significance. - 3.11 Balanced Bootstrap Sampling. - 3.12 Applications of Bootstrapping in Biology. - 3.12.1 Single-Species Ecology. - 3.12.2 Genetics, Evolution, and Natural Selection. - 3.12.3 Community Ecology. - 3.12.4 Other Ecological and Environmental Applications. - 3.13 Further Reading. - 3.14 Chapter Summary. - Chapter 4 Monte Carlo Methods. - 4.1 Monte Carlo Tests. - 4.2 Generalized Monte Carlo Tests. - 4.3 Implicit Statistical Models. - 4.4 Applications of Monte Carlo Methods in Biology. - 4.4.1 Single-Species Ecology. - 4.4.2 Genetics and Evolution. - 4.4.3 Community Ecology. - 4.5 Chapter Summary. - Chapter 5 Some General Considerations. - 5.1 Questions about Computer-Intensive Methods. - 5.2 Power. - 5.3 Number of Random Sets of Data Needed for a Test. - 5.4 Determining a Randomization Distribution Exactly. - 5.5 The Number of Replications for Confidence Intervals. - 5.6 More Efficient Bootstrap Sampling Methods. - 5.7 The Generation of Pseudo-Random Numbers. - 5.8 The Generation of Random Permutations. - 5.9 Chapter Summary. - Chapter 6 One- and Two-Sample Tests. - 6.1 The Paired Comparisons Design. - 6.2 The One-Sample Randomization Test. - 6.3 The Two-Sample Randomization Test. - 6.4 Bootstrap Tests. - 6.5 Randomizing Residuals. - 6.6 Comparing the Variation in Two Samples. - 6.7 A Simulation Study. - 6.8 The Comparison of Two Samples on Multiple Measurements. - 6.9 Further Reading. - 6.10 Chapter Summary. - Chapter 7 Analysis of Variance. - 7.1 One-Factor Analysis of Variance. - 7.2 Tests for Constant Variance. - 7.3 Testing for Mean Differences Using Residuals. - 7.4 Examples of More Complicated Types of Analysis of Variance. - 7.5 Procedures for Handling Unequal Variances. - 7.6 Other Aspects of Analysis of Variance. - 7.7 Further Reading. - 7.8 Chapter Summary. - Chapter 8 Regression Analysis. - 8.1 Simple Linear Regression. - 8.2 Randomizing Residuals. - 8.3 Testing for a Nonzero β Value. - 8.4 Confidence Limits for β. - 8.5 Multiple Linear Regression. - 8.6 Alternative Randomization Methods with Multiple Regression. - 8.7 Bootstrapping and Jackknifing with Regression. - 8.8 Further Reading. - 8.9 Chapter Summary. - Chapter 9 Distance Matrices and Spatial Data. - 9.1 Testing for Association between Distance Matrices. - 9.2 The Mantel Test. - 9.3 Sampling the Randomization Distribution. - 9.4 Confidence Limits for Regression Coefficients. - 9.5 The Multiple Mantel Test. - 9.6 Other Approaches with More Than Two Matrices. - 9.7 Further Reading. - 9.8 Chapter Summary. - Chapter 10 Other Analyses on Spatial Data. - 10.1 Spatial Data Analysis. - 10.2 The Study of Spatial Point Patterns. - 10.3 Mead's Randomization Test. - 10.4 Tests for Randomness Based on Distances. - 10.5 Testing for an Association between Two Point Patterns. - 10.6 The Besag-Diggle Test. - 10.7 Tests Using Distances between Points. - 10.8 Testing for Random Marking. - 10.9 Further Reading. - 10.10 Chapter Summary. - Chapter 11 Time Series. - 11.1 Randomization and Time Series. - 11.2 Randomization Tests for Serial Correlation. - 11.3 Randomization Tests for Trend. - 11.4 Randomization Tests for Periodicity. - 11.5 Irregularly Spaced Series. - 11.6 Tests on Times of Occurrence. - 11.7 Discussion on Procedures for Irregular Series. - 11.8 Bootstrap Methods. - 11.9 Monte Carlo Methods. - 11.10 Model-Based vs. Moving-Block Resampling. - 11.11 Further Reading. - 11.12 Chapter Summary. - Chapter 12 Multivariate Data. - 12.1 Univariate and Multivariate Tests. - 12.2 Sample Mean Vectors and Covariance Matrices. - 12.3 Comparison of Sample Mean Vectors. - 12.4 Chi-Squared Analyses for Count Data. - 12.5 Comparison of Variations for Several Samples. - 12.6 Principal Components Analysis and Other One-Sample Methods. - 12.7 Discriminant Function Analysis. - 12.8 Further Reading. - 12.9 Chapter Summary. - Chapter 13 Survival and Growth Data. - 13.1 Bootstrapping Survival Data. - 13.2 Bootstrapping for Variable Selection. - 13.3 Bootstrapping for Model Selection. - 13.4 Group Comparisons. - 13.5 Growth Data. - 13.6 Further Reading. - 13.7 Chapter Summary. - Chapter 14 Nonstandard Situations. - 14.1 The Construction of Tests in Nonstandard Situations. - 14.2 Species Co-Occurrences on Islands. - 14.3 Alternative Switching Algorithms. - 14.4 Examining Time Changes in Niche Overlap. - 14.5 Probing Multivariate Data with Random Skewers. - 14.6 Ant Species Sizes in Europe. - 14.7 Chapter Summary. - Chapter 15 Bayesian Methods. - 15.1 The Bayesian Approach to Data Analysis. - 15.2 The Gibbs Sampler and Related Methods. - 15.3 Biological Applications. - 15.4 Further Reading. - 15.5 Chapter Summary. - Chapter 16 Final Comments. - 16.1 Randomization. - 16.2 Bootstrapping. - 16.3 Monte Carlo Methods in General. - 16.4 Classical vs. Bayesian Inference. - References. - Appendix Software for Computer-Intensive Statistics. - Author Index. - Subject Index.
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