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  • 1
    Call number: ZSP-168-640
    In: Berichte zur Polar- und Meeresforschung
    Type of Medium: Series available for loan
    Pages: ii, 192 S. : Ill., graph. Darst., Kt.
    Series Statement: Berichte zur Polar- und Meeresforschung 640
    Language: English
    Location: AWI Reading room
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  • 2
    Monograph available for loan
    Monograph available for loan
    Princeton : Princeton University Press
    Call number: AWI G3-12-0048
    Description / Table of Contents: Contents: Chapter 1: Introduction to the Cryosphere. - Chapter 2: Material Properties of Snow and Ice. - Chapter 3: Snow and Ice Thermodynamics. - Chapter 4: Seasonal Snow and Freshwater Ice. - Chapter 5: Sea Ice. - Chapter 6: Glaciers and Ice Sheets. - Chapter 7: Permafrost. - Chapter 8: Cryosphere-Climate Processes. - Chapter 9: The Cryosphere and Climate Change.
    Description / Table of Contents: The cryosphere encompasses the Earth's snow and ice masses. It is a critical part of our planet's climate system, one that is especially at risk from climate change and global warming. "The Cryosphere" provides an essential introduction to the subject, written by one of the world's leading experts in Earth-system science. In this primer, glaciologist Shawn Marshall introduces readers to the cryosphere and the broader role it plays in our global climate system. After giving a concise overview, he fully explains each component of the cryosphere and how it works - seasonal snow, permafrost, river and lake ice, sea ice, glaciers, ice sheets, and ice shelves. Marshall describes how snow and ice interact with our atmosphere and oceans and how they influence climate, sea level, and ocean circulation. He looks at the cryosphere's role in past ice ages, and considers the changing cryosphere's future impact on our landscape, oceans, and climate. Accessible and authoritative, this primer also features a glossary of key terms, suggestions for further reading, explanations of equations, and a discussion of open research questions in the field.
    Type of Medium: Monograph available for loan
    Pages: IX, 288 Seiten , Illustrationen
    ISBN: 9780691145266
    Series Statement: Princeton primers in climate
    Language: English
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  • 3
    Monograph available for loan
    Monograph available for loan
    Princeton [u.a.] : Princeton Univ. Press
    Call number: AWI A3-13-0048
    Description / Table of Contents: The atmosphere is critical to climate change. It can amplify shifts in the climate system, and also mitigate them. This primer offers a short, reader-friendly introduction to these atmospheric processes and how they work, written by a leading expert on the subject. Giving readers an overview of key atmospheric processes, David Randall looks at how our climate system receives energy from the sun and sheds it by emitting infrared radiation back into space. The atmosphere regulates these radiative energy flows and transports energy through weather systems such as thunderstorms, monsoons, hurricanes, and winter storms. Randall explains how these processes work, and also how precipitation, cloud formation, and other phase changes of water strongly influence weather and climate. He discusses how atmospheric feedbacks affect climate change, how the the large-scale atmospheric circulation works, how predicting the weather and the climate are fundamentally different challenges, and much more. This is the ideal introduction for students and nonspecialists. No prior experience in atmospheric science is needed, only basic college physics.
    Type of Medium: Monograph available for loan
    Pages: VIII, 277 S. : Ill., graph. Darst.
    ISBN: 9780691143750
    Series Statement: Princeton primers in climate
    Language: English
    Note: Contents: Preface. - 1 Basics. - 2 Radiative energy flows. - 3 How turbulence and cumulus clouds carry energy upward. - Appendix to Chapter 3: More about Eddy Fluxes. - 4 How energy travels from the tropics to the poles. - Appendix to chapter 4: Conservation of momentum on a rotating sphere. - 5 Feedbacks. - 6 The water planet. - 7 Predictability of weather and climate. - 8 Air, sea, land. - 9 Frontiers. - Notes. - Glossary. - Suggestions for further reading. - Bibliography. - Index.
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  • 4
    Monograph available for loan
    Monograph available for loan
    Cambridge : Cambridge Univ. Press
    Call number: AWI P6-13-0049
    Description / Table of Contents: Antarctica is the coldest and driest continent on earth - a place for adventure and a key area for global science. Research conducted in this extreme environment has received increasing international attention in recent years due to concerns over destruction of the ozone layer above it and the problems of global warming and rising sea levels. Data collected in the Antarctic now informs a wide range of scientific fields. A record of the globe's climate is locked up in its deep snow and ice while, as part of the early supercontinent Gondwana, its rocks have much to teach us about the geological history of the earth. Adiversity of unique plants and animals abound in Antarctic waters and the clear skies overhead allow astronomers to probe the outer reaches of the universe. Governed internationally since 1959, the Antarctic is also an object lesson in collaboration between nations. This dramatically illustrated new book brings together an international group of leading Antarctic scientists to explain why the Antarctic is so central to understanding the history and potential fate of our planet. It introduces the beauty of the world's greatest wilderness, its remarkable attributes, and the global importance of the international science done there. Spanning topics from marine biology to space science, this book is an accessible overview for anyone interested in the Antarctic and its science and governance. It provides a valuable summary for those involved in polar management and development of new research programmes, and is an inspiration for the next generation of Antarctic researchers.
    Type of Medium: Monograph available for loan
    Pages: xii, 342 S. : Ill., graph. Darst., Kt.
    ISBN: 9781107003927
    Language: English
    Note: Contents: List of contributors. - Introduction. - 1 Discovering the unknown continent. - 2 A keystone in a changing world. - 3 Ice with everything. - 4 Climate of extremes. - 5 Stormy and icy seas. - 6 Life in a cold environment. - 7 Space science research from Antarctica. - 8 Living and working in the cold. - 9 Scientists together in the cold. - 10 Managing the frozen commons. - 11 Antarctica: a global change perspective. - Appendix A Visiting Antarctica. - Appendix B Further reading. - Acknowledgements. - Index.
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  • 5
    Call number: AWI A14-13-0083 ; ad AWI A14-13-0083
    Description / Table of Contents: This handbook provides the first comprehensive review of measurement principles, instruments and processing techniques for airborne observation of the earth's atmosphere and surface. For each field, the major prinicples of measurement are presented and illustrated with commonly-used airborne instruments, to assess the present capabilities in terms of accuracy, to raise awareness of specific issues with the interpretation of measurements from airborne operations, and to review emerging measurement techniques. The authors are internationally-recognized experts in their field, who actively contribute to the design and developement of modern airborne instrumentation and processing techniques. While primarily intended for climate, geophysical and atmospheric researchers, its relevance to the solar system makes this work useful to astronomers studying planetary atmospheres with telescopes and space probes.
    Type of Medium: Monograph available for loan
    Pages: XXXII, 655 Seiten , Illustrationen
    ISBN: 9783527409969
    Series Statement: Wiley series in atmospheric physics and remote sensing
    Language: English
    Note: Contents Preface A Tribute to Dr. Robert Knollenberg List of Contributors 1 Introduction to Airborne Measurements of the Earth Atmosphere and Surface / Ulrich Schumann, David W. Fahey, Manfred Wendisch, and Jean-Louis Brenguier 2 Measurement of Aircraft State and Thermodynamic and Dynamic Variables / Jens Bange, Marco Esposito, Donald H. Lenschow, Philip R. A. Brown,Volker Dreiling, Andreas Giez, Larry Mahrt, Szymon P. Malinowski, Alfred R. Rodi, Raymond A. Shaw, Holger Siebert, Herman Smit, Martin Zöger 2.1 Introduction 2.2 Historical 2.3 Aircraft State Variables 2.3.1 Barometric Measurement of Aircraft Height 2.3.2 Inertial Attitude, Velocity, and Position 2.3.2.1 System Concepts 2.3.2.2 Attitude Angle Definitions 2.3.2.3 Gyroscopes and Accelerometers 2.3.2.4 Inertial-Barometric Corrections 2.3.3 Satellite Navigation by Global Navigation Satellite Systems 2.3.3.1 GNSS Signals 2.3.3.2 Differential GNSS 2.3.3.3 Position Errors and Accuracy of Satellite Navigation 2.3.4 Integrated IMU/GNSS Systems for Position and Attitude Determination 2.3.5 Summary, Gaps, Emerging Technologies 2.4 Static Air Pressure 2.4.1 Position Error 2.4.1.1 Tower Flyby 2.4.1.2 Trailing Sonde 2.4.2 Summary 2.5 Static Air Temperature 2.5.1 Aeronautic Definitions of Temperatures 2.5.2 Challenges of Airborne Temperature Measurements 2.5.3 Immersion Probe 2.5.4 Reverse-Flow Sensor 2.5.5 Radiative Probe 2.5.6 Ultrasonic Probe 2.5.7 Error Sources 2.5.7.1 Sensor 2.5.7.2 Dynamic Error Sources 2.5.7.3 In-Cloud Measurements 2.5.8 Calibration of Temperature Sensors 2.5.9 Summary, Gaps, Emerging Technologies 2.6 Water Vapor Measurements 2.6.1 Importance of Atmospheric Water Vapor 2.6.2 Humidity Variables 2.6.3 Dew or Frost Point Hygrometer 2.6.4 Lyman-α Absorption Hygrometer 2.6.5 Lyman-α Fluorescence Hygrometer 2.6.6 Infrared Absorption Hygrometer 2.6.7 Tunable Laser Absorption Spectroscopy Hygrometer 2.6.8 Thin Film Capacitance Hygrometer 2.6.9 Total Water Vapor and Isotopic Abundances of 18O and 2H 2.6.10 Factors Influencing In-Flight Performance 2.6.10.1 Sticking of Water Vapor at Surfaces 2.6.10.2 Sampling Systems 2.6.11 Humidity Measurements with Dropsondes 2.6.12 Calibration and In-Flight Validation 2.6.13 Summary and Emerging Technologies 2.7 Three-Dimensional Wind Vector 2.7.1 Airborne Wind Measurement Using Gust Probes 2.7.1.1 True Airspeed (TAS) and Aircraft Attitude 2.7.1.2 Wind Vector Determination 2.7.1.3 Baseline Instrumentation 2.7.1.4 Angles of Attack and Sideslip 2.7.2 Errors and Flow Distortion 2.7.2.1 Parameterization Errors 2.7.2.2 Measurement Errors 2.7.2.3 Timing Errors 2.7.2.4 Errors due to Incorrect Sensor Configuration 2.7.3 In-Flight Calibration 2.8 Small-Scale Turbulence 2.8.1 Hot-Wire/Hot-Film Probes for High-Resolution Flow Measurements 2.8.2 Laser Doppler Anemometers 2.8.3 Ultrasonic Anemometers/Thermometers 2.8.4 Measurements of Atmospheric Temperature Fluctuations with Resistance Wires 2.8.5 Calibration of Fast-Response Sensors 2.8.6 Summary, Gaps, and Emerging Technologies 2.9 Flux Measurements 2.9.1 Basics 2.9.2 Measurement Errors 2.9.3 Flux Sampling Errors 2.9.3.1 Systematic Flux Error 2.9.3.2 Random Flux Error 2.9.4 Area-Averaged Turbulent Flux 2.9.5 Preparation for Airborne Flux Measurement 3 In SituTrace Gas Measurements / Jim McQuaid, Hans Schlager, Maria Dolores Andrés-Hernández,Stephen Ball, Agnès Borbon, Steve S. Brown, Valery Catoire, Piero Di Carlo, Thomas G. Custer, Marc von Hobe, James Hopkins, Klaus Pfeilsticker, Thomas Röckmann, Anke Roiger, Fred Stroh, Jonathan Williams, and Helmut Ziereis 3.1 Introduction 3.2 Historical and Rationale 3.3 Aircraft Inlets for Trace Gases 3.4 Examples of Recent Airborne Missions 3.5 Optical In SituTechniques 3.5.1 UV Photometry 3.5.2 Differential Optical Absorption Spectroscopy 3.5.2.1 Measurement Principle 3.5.2.2 Examples of Measurement 3.5.3 Cavity Ring-Down Spectroscopy 3.5.3.1 Measurement Principle 3.5.3.2 Aircraft Implementation 3.5.3.3 Calibration and Uncertainty 3.5.3.4 Broadband Cavity Spectroscopic Methods 3.5.4 Gas Filter Correlation Spectroscopy 3.5.5 Tunable Laser Absorption Spectroscopy 3.5.5.1 Tunable Diode Versus QCLs 3.5.5.2 Further Progress 3.5.6 Fluorescence Techniques 3.5.6.1 Resonance Fluorescence 3.5.6.2 LIF Techniques 3.5.6.3 Chemical Conversion Resonance Fluorescence Technique 3.6 Chemical Ionization Mass Spectrometry 3.6.1 Negative-Ion CIMS 3.6.1.1 Measurement Principle and Aircraft Implementation 3.6.1.2 Calibration and Uncertainties 3.6.1.3 Measurement Example 3.6.2 The Proton Transfer Reaction Mass Spectrometer 3.6.3 Summary and Future Perspectives 3.7 Chemical Conversion Techniques 3.7.1 Peroxy Radical Chemical Amplification 3.7.1.1 Measurement Principles 3.7.1.2 Airborne Measurements 3.7.1.3 Calibration and Uncertainties 3.7.2 Chemiluminescence Techniques 3.7.2.1 Measurement Principle 3.7.2.2 Measurement of Ozone Using Chemiluminescence 3.7.2.3 NOy and NO2 Conversion 3.7.2.4 Calibration and Uncertainties 3.7.2.5 Measurement Examples 3.7.2.6 Summary 3.7.3 Liquid Conversion Techniques 3.7.3.1 Measurement Principles 3.7.3.2 Aircraft Implementation 3.7.3.3 Data Processing 3.7.3.4 Limitations, Uncertainties, and Error Propagation 3.7.3.5 Calibration and Maintenance 3.7.3.6 Measurement Examples 3.7.3.7 Summary and Emerging Technologies 3.8 Whole Air Sampler and Chromatographic Techniques 3.8.1 Rationale 3.8.2 Whole Air Sampling Systems 3.8.2.1 Design of Air Samplers 3.8.2.2 The M55-Geophysica Whole Air Sampler 3.8.3 Water Vapor Sampling for Isotope Analysis 3.8.4 Measurement Examples 3.8.5 Off-Line Analysis of VOCs 3.8.5.1 Air Mass Ageing 3.8.5.2 Using VOC Observations to Probe Radical Chemistry 4 In Situ Measurements of Aerosol Particles / Andreas Petzold, Paola Formenti, Darrel Baumgardner, Ulrich Bundke, Hugh Coe, Joachim Curtius, Paul J. DeMott, Richard C. Flagan, Markus Fiebig, James G. Hudson, Jim McQuaid, Andreas Minikin, Gregory C. Roberts, and Jian Wang 4.1 Introduction 4.1.1 Historical Overview 4.1.2 Typical Mode Structure of Aerosol Particle Size Distribution 4.1.3 Quantitative Description of Aerosol Particles 4.1.4 Chapter Structure 4.2 Aerosol Particle Number Concentration 4.2.1 Condensation Particle Counters 4.2.2 Calibration of Cut-Off and Low-Pressure Detection Efficiency 4.3 Aerosol Particle Size Distribution 4.3.1 Single-Particle Optical Spectrometers 4.3.1.1 Measurement Principles and Implementation 4.3.1.2 Measurement Issues 4.3.2 Aerodynamic Separators 4.3.3 Electrical Mobility Measurements of Particle Size Distributions 4.3.4 Inversion Methods 4.4 Chemical Composition of Aerosol Particles 4.4.1 Direct Offline Methods 4.4.2 Direct Online Methods (Aerosol Mass Spectrometer, Single Particle Mass Spectrometer, and Particle-Into-Liquid Sampler) 4.4.2.1 Bulk Aerosol Collection and Analysis 4.4.2.2 Mass Spectrometric Methods 4.4.2.3 Incandescence Methods 4.4.3 Indirect Methods 4.5 Aerosol Optical Properties 4.5.1 Scattering Due to Aerosol Particles 4.5.2 Absorption of Solar Radiation Due to Aerosol Particles 4.5.2.1 Filter-Based Methods 4.5.2.2 In Situ Methods 4.5.2.3 Airborne Application 4.5.3 Extinction Due to Aerosol Particles 4.5.4 Inversion Methods 4.6 CCN and IN 4.6.1 CCN Measurements Methods 4.6.2 IN Measurement Methods 4.6.3 Calibration 4.6.3.1 CCN Instrument Calibration 4.6.3.2 IN Instrument Calibration 4.7 Challenges and Emerging Techniques 4.7.1 Particle Number 4.7.2 Particle Size 4.7.3 Aerosol Optical Properties 4.7.4 Chemical Composition of Aerosol Particles 4.7.5 CCN Measurements 4.7.6 IN Measurements 5 In Situ Measurements of Cloud and Precipitation Particles / Jean-Louis Brenguier, William Bachalo, Patrick Y. Chuang, Biagio M. Esposito, Jacob Fugal, Timothy Garrett, Jean-Francois Gayet, Hermann Gerber, Andy Heymsfield, Alexander Kokhanovsky, Alexei Korolev, R. Paul Lawson, David C. Rogers, Raymond A. Shaw, Walter Strapp, and Manfred Wendisch 5.1 Introduction 5.1.1 Rationale 5.1.2 Characterization of Cloud Microphysical Properties 5.1.3 Chapter Outline 5.
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  • 6
    Monograph available for loan
    Monograph available for loan
    San Francisco : No Starch Press
    Call number: PIK M 034-13-0174
    Type of Medium: Monograph available for loan
    Pages: XVIII, 656 S. : zahlr. Ill., graph. Darst. , 24 cm
    Edition: 1. print.
    ISBN: 1593273835 , 978-1-59327-383-5
    Uniform Title: GIMP.
    Language: English
    Location: A 18 - must be ordered
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  • 7
    Monograph available for loan
    Monograph available for loan
    Washington, DC [u.a.] : Island Press
    Call number: IASS 13.0071
    Type of Medium: Monograph available for loan
    Pages: 207 S. : Ill., graph. Darst.
    ISBN: 9781597268271
    Uniform Title: Livet mellem husene
    Language: English
    Branch Library: RIFS Library
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  • 8
    Monograph available for loan
    Monograph available for loan
    Garmisch-Partenkirchen : Dt. Radar-Verl.-Ges.
    Call number: MOP 21647
    Type of Medium: Monograph available for loan
    Pages: 372 S. : Ill., graph. Darst.
    Series Statement: Lehrbücherei der Funkortung 3
    Uniform Title: The use of radar at sea
    Language: German
    Location: MOP - must be ordered
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  • 9
    Call number: PIK N 071-14-0089
    Description / Table of Contents: Contents: Einführung ; 1 Was verstehen wir unter Klima? ; 2 Die Entdeckung von Klimawandel ; 3 Was leistet Wissenschaft? ; 4 Welchen Wert haben Werte? ; 5 Woran wir glauben ; 6 Wovor wir uns fürchten ; 7 Wie kommunizieren wir Risiken? ; 8 Was ist Fortschritt? ; 9 Wer regiert das Klima? ; 10 Jenseits von Klimawandel
    Type of Medium: Monograph available for loan
    Pages: 381 S. : Ill., graph. Darst.
    Edition: Dt. Erstausg.
    ISBN: 9783865814593
    Uniform Title: Why we disagree about climat change
    Language: German
    Location: A 18 - must be ordered
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  • 10
    Monograph available for loan
    Monograph available for loan
    Cambridge [u.a.] : Cambridge Univ. Press
    Call number: AWI S2-14-0042 ; M 15.0198
    Description / Table of Contents: This revised and updated edition focuses on constrained ordination (RDA, CCA), variation partitioning and the use of permutation tests of statistical hypotheses about multivariate data. Both classification and modern regression methods (GLM, GAM, loess) are reviewes and species functional traits and spatial structures are analysed. Nine case studies of varying difficulty help to illustrate the suggestes analytical methods, using the latest version of Canoco 5. All studies utilise descriptive and manipulative approaches, and are supported by data sets and project files available from the book website: http://regent.prf.jcu.cz/maed2/. Written primarily for community ecologists needing to analyse data resulting from field observations and experiments, this book is a valuable resource for students and researchers dealing with both simple and complex ecological problems, such as the variation of biotic communities with environmental conditions or their response to experimental manipulation.
    Type of Medium: Monograph available for loan
    Pages: XII, 362 S. : Ill., graph. Darst.
    Edition: 2. ed.
    ISBN: 9781107694408 , 1-107-69440-X
    Language: English
    Note: Contents: Preface. - 1 Introduction and datatypes. - 1.1 Why ordination?. - 1.2 Datatypes. - 1.3 Data transformation and standardisation. - 1.4 Missing values. - 1.5 Types of analyses. - 2 Using Canoco 5. - 2.1 Philosophy of Canoco 5. - 2.2 Data import and editing. - 2.3 Defining analyses. - 2.4 Visualising results. - 2.5 Beware, CANOCO 4.x users!. - 3 Experimental design. - 3.1 Completely randomised design. - 3.2 Randomised complete blocks. - 3.3 Latin square design. - 3.4 Pseudo replicates. - 3.5 Combining more than one factor. - 3.6 Following the development of objects in time: repeated observations. - 3.7 Experimental and observational data. - 4 Basics of gradient analysis. - 4.1 Techniques of gradient analysis. - 4.2 Models of response to gradients. - 4.3 Estimating species optima by weighted averaging. - 4.4 Calibration. - 4.5 Unconstrained ordination. - 4.6 Constrained ordination. - 4.7 Basic ordination techniques. - 4.8 Ordination axes as optimal predictors. - 4.9 Ordination diagrams. - 4.10 Two approaches. - 4.11 Testing significance of the relation with explanatory variables. - 4.12 Monte Carlo permutation tests for the significance of regression. - 4.13 Relating two biotic communities. - 4.14 Community composition as a cause: using reverse analysis. - 5.1 Permutation tests: the philosophy. - 5.2 Pseudo-F statistics and significance. - 5.3 Testing individual constrained axes. - 5.4 Tests with spatial or temporal constraints. - 5.5 Tests with hierarchical constraints. - 5.6 Simple versus conditional effects and stepwises election. - 5.7 Variation partitioning. - 5.8 Significance adjustment for multiple tests. - 6 Similarity measures and distance-based methods. - 6.1 Similarity measures for presence-absence data. - 6.2 Similarity measures for quantitative data. - 6.3 Similarity of cases versus similarity of communities. - 6.4 Similarity between species in trait values. - 6.5 Principal coordinates analysis. - 6.6 Constrained principal coordinates analysis (db-RDA). - 6.7 Non-metric multidimensional scaling. - 6.8 Mantel test. - 7.1 Example data set properties. - 7.2 Non-hierarchical classification (K-means clustering). - 7.3 Hierarchical classification. - 7.4 TWINSPAN. - 8 Regression methods. - 8.1 Regression models in general. - 8.2 General linear model: terms. - 8.3 Generalized linear models (GLM). - 8.4 Loess smoother. - 8.5 Generalized additive models (GAM). - 8.6 Mixed-effect models (LMM, GLMM and GAMM). - 8.7 Classification and regression trees (CART). - 8.8 Modelling species response curves with Canoco. - 9 Interpreting community composition with functional traits. - 9.1 Required data. - 9.2 Two approaches in traits - environment studies. - 9.3 Community-based approach. - 9.4 Species-based approach. - 10 Advanced use of ordination. - 10.1 Principal response curves (PRC). - 10.2 Separating spatial variation. - 10.3 Linear discriminant analysis. - 10.4 Hierarchical analysis of community variation. - 10.5 Partitioning diversity indices into alpha and beta components. - 10.6 Predicting community composition. - 11 Visualising multivariate data. - 11.1 Reading ordination diagrams of linear methods. - 11.2 Reading ordination diagrams of unimodal methods. - 11.3 Attribute plots. - 11.4 Visualising classification, groups, and sequences. - 11.5 T-value biplot. - 12 Case study 1: Variation in forest bird assemblages. - 12.1 Unconstrained ordination: portraying variation in bird community. - 12.2 Simple constrained ordination: the effect of altitude on bird community. - 12.3 Partial constrained ordination: additional effect of other habitat characteristics. - 12.4 Separating and testing alpha and beta diversity. - 13 Case study 2: Search for community composition patterns and their environmental correlates: vegetation of spring meadows. - 13.1 Unconstrained ordination. - 13.2 Constrained ordination. - 13.3 Classification. - 13.4 Suggestions for additional analyses. - 13.5 Comparing two communities. - 14 Case study 3: Separating the effects of explanatory variables. - 14.1 Introduction. - 14.2 Data. - 14.3 Changes in species richness and composition. - 14.4 Changes in species traits. - 15 Case study 4: Evaluation of experiments in randomised complete blocks. - 15.1 Introduction. - 15.2 Data. - 15.3 Analysis. - 15.4 Calculating ANOVA using constrained ordination. - 16 Case study 5: Analysis of repeated observations of species composition from a factorial experiment. - 16.1 Introduction. - 16.2 Experimental design. - 16.3 Data coding and use. - 16.4 Univariate analyses. - 16.5 Constrained ordinations. - 16.6 Principal response curves. - 16.7 Temporal changes across treatments. - 16.8 Changes in composition of functional traits. - 17 Case study 6: Hierarchical analysis of crayfish community variation. - 17.1 Data and design. - 17.2 Differences among sampling locations. - 17.3 Hierarchical decomposition of community variation. - 18 Case study 7: Analysis of taxonomic data with discriminant analysis and distance-based ordination. - 18.1 Data. - 18.2 Summarising morphological data with PCA. - 18.3 Linear discriminant analysis of morphological data. - 18.4 Principal coordinates analysis of AFLP data. - 18.5 Testing taxon differences in AFLP data using db-RDA. - 18.6 Taking populations into account. - 19 Case study 8: Separating effects of space and environment on oribatid community with PCNM. - 19.1 Ignoring the space. - 19.2 Detecting spatial trends. - 19.3 All-scale spatial variation of community and environment. - 19.4 Variation partitioning with spatial predictors. - 19.5 Visualising spatial variation. - 20 Case study 9: Performing linear regression with redundancy analysis. - 20.1 Data. - 20.2 Linear regression using program R. - 20.3 Linear regression with redundancy analysis. - 20.4 Fitting generalized linear models in Canoco. - Appendix A Glossary. - Appendix B Sample data sets and projects. - Appendix C Access to Canoco and overview of other software. - Appendix D Working with R. - References. - Index to useful tasks in Canoco 5. - Subject index.
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  • 11
    Call number: 18/M 14.0226
    Description / Table of Contents: Das mobile Web stellt Webdesigner vor völlig neue Herausforderungen: Mit was für einem Device greift ein Nutzer auf eine Website zu? Welche Hardware bringt ein Gerät mit? Welche Bildschirmgröße und -auflösung hat es? All diese Faktoren beeinflussen die Darstellung der Website und machen ein flexibles Design immer wichtiger. Responsive Webdesign setzt genau hier an: Es sorgt dafür, dass sich eine Website an das Gerät anpasst, mit dem sie aufgerufen wird.Dieses hoch gelobte Buch richtet sich an Webdesigner und -entwickler, die Grundkenntnisse in HTML und CSS mitbringen und sich nun mit Responsive Webdesign vertraut machen möchten. Behandelt werden sowohl technische Aspekte als auch konzeptionelle Fragen, die dieser Designansatz mit sich bringt.Was ist Responsive Webdesign?Mit dieser Frage beschäftigen Sie sich zu Beginn des Buchs. Sie erfahren, wie Sie ein Design entwickeln, das Ihre Inhalte auf allen Geräten so übersichtlich und benutzerfreundlich wie möglich darstellt. Zum Einsatz kommt dabei eine Kombination aus Fluid Layouts, Media Queries und Responsive Media.Feilen Sie an der User ExperienceWas ist zu bedenken, wenn eine Website sowohl auf Smartphones als auch auf Desktoprechnern angenehm zu nutzen sein soll? Wie sollten die Bedienelemente der Website beschaffen sein? Welche Interaktionsmöglichkeiten wollen Sie bieten? Und ganz wichtig: Was bedeutet das für die Inhalte Ihrer Website? Fragen wie diese werden eingehend diskutiert und mit Praxisbeispielen illustriert. So entwickeln Sie ein gutes Gespür, worauf Sie bei eigenen Projekten achten sollten.Verbessern Sie die PerformanceBenutzer erwarten heutzutage nicht nur, dass eine Website angenehm zu bedienen ist, sondern auch, dass sie schnell lädt. Sorgen Sie deshalb unbedingt für eine gute Performance Ihrer Website! Lernen Sie verschiedene Möglichkeiten kennen, das Download-Volumen Ihrer Website zu reduzieren und sie so vor allem für mobile Surfer attraktiver zu machen.
    Type of Medium: Monograph available for loan
    Pages: xvi, 287 S. , Ill., graph. Darst.
    Edition: 1. Aufl.
    ISBN: 9783955614331
    Series Statement: O'Reillys basics
    Uniform Title: Implementing responsive design
    Classification:
    Informatics
    Language: German
    Location: Reading room
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  • 12
    Call number: IASS 14.0036
    Type of Medium: Monograph available for loan
    Pages: 525 S.
    ISBN: 9783593399171
    Uniform Title: The Zero Marginal Cost Society: The Internet of Things, the Collaborative Common
    Language: German
    Branch Library: RIFS Library
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  • 13
    Call number: IASS 14.0070 ; PIK N 071-14-0220
    Type of Medium: Monograph available for loan
    Pages: 317 S , Ill., graph. Darst., Kt
    ISBN: 9783865814791
    Parallel Title: Online-Ausg. Contributions Towards a Sustainable World
    Language: English
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  • 14
    Monograph available for loan
    Monograph available for loan
    Berlin : Links
    Call number: PIK N 454-14-0177
    Description / Table of Contents: Contents: Prolog: Eine Reise in die Welt des Wassers ; Die neue Wasserunsicherheit ; Das Zeitalter der Wasserfürsten ; Ein neues Wasserzeitalter ; Epilog: Die Macht des Wassers
    Type of Medium: Monograph available for loan
    Pages: 256 S.
    Edition: 1. Aufl.
    ISBN: 9783861537328
    Uniform Title: En reise i vannets fremtid
    Language: German
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  • 15
    Call number: PIK B 200-14-0176
    Description / Table of Contents: Contents: Kapitel 1 Aufstieg eines globalen Rohstoffs ; Kapitel 2 Der Aufbau des Kriegskapitalismus ; Kapitel 3 Der Lohn des Kriegskapitalismus ; Kapitel 4 Jagd nach Arbeitern und Eroberung von Land ; Kapitel 5 Die Sklaverei auf dem Vormarsch ; Kapitel 6 Der Industriekapitalismus im Aufwind ; Kapitel 7 Die Mobilisierung von Fabrikarbeitern ; Kapitel 8 Die Bildung globaler Netzwerke ; Kapitel 9 Ein Krieg und sein weltweiter Widerhall ; Kapitel 10 Der Umbau des Baumwollimperiums ; Kapitel 11 Kreative Zerstörungen ; Kapitel 12 Unter nationaler Flagge: der neue Baumwollimperialismus ; Kapitel 13 Rückkehr in den globalen Süden ; Kapitel 14 Kette und Schuss. Ein Epilog
    Type of Medium: Monograph available for loan
    Pages: 525 S. : Ill., graph. Darst., Kt.
    ISBN: 9783406659218
    Uniform Title: Empire of cotton
    Language: German
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  • 16
    Call number: AWI G6-15-0043
    Description / Table of Contents: Cosmogenic radionuclides are radioactive isotopes which are produced by natural processes and distributed across the earth. Utilizing a holistic approach to the environment, the authors show how cosmogenic radionuclides can be used to trace and to reconstruct the history of a large variety of processes. They discuss the ways in which cosmogenic radionuclides can assist in the quantification of complex processes in the present-day environment. The book aims to demonstrate to the reader the strength of analytic tools based on cosmogenic radionuclides, their contribution to almost any field of modern natural science, and how these tools may assist in the solution of many present and future problems that we face here on earth. The book provides a comprehensive discussion of the basic principles behind the applications of cosmogenic (and other) radionuclides as environmental tracers and dating tools. Following the introduction, the second part of the book provides basic information on the origin, properties, and time variability of cosmic radiation, and the concepts, terminology and formulate that will be used in the later chapters. The third part discusses in detail the production of radionuclides by cosmic radiation, their transport and distribution in the atmosphere and the hydrosphere, their storage in natural archives, and how they are measured. The fourth part of the book presents a number of examples selected to illustrate typical tracer and dating applications in a number of different contexts (atmosphere, hydrosphere, geosphere, biosphere, solar physics and astronomy). At the same time the authors outline the limitations of the use of cosmogenic radionuclides. Written on a level accessible to graduate students without specialist skills in physics or mathematics, the book addresses a wide audience, ranging from archaeology, biophysics, and geophysics, to atmospheric physics, hydrology, astrophysics and space science.
    Type of Medium: Monograph available for loan
    Pages: XVI, 426 S. : Ill., graph. Darst.
    ISBN: 9783642146503
    Series Statement: Physics of earth and space environments
    Language: English
    Note: Contents: Part 1 Introduction. - 1 Motivation. - 2 Goals. - Reference. - 3 Setting the Stage and Outline. - Part 2 Cosmic Radiation. - 4 Introduction to Cosmic Radiation. - 5 The Cosmic Radiation Near Earth. - 5.1 Introduction and History of Cosmic Ray Research. - 5.2 The "Rosetta Stone" of Paleocosmic Ray Studies. - 5.3 Some Important Definitions. - 5.4 The Origin and Properties of the Galactic Cosmic Radiation. - 5.5 Our Variable Sun. - 5.6 The Heliosphere, the Termination Shock, and the Current Sheet. - 5.7 Modulation of the Cosmic Radiation in the Heliosphere. - 5.7.1 The Cosmic Ray Propagation Equation. - 5.7.2 The Local Interstellar Spectrum. - 5.7.3 The Cosmic Ray Modulation Function and Potential. - 5.7.4 Practical Applications of the Modulation Function. - 5.7.5 Drift Effects (qA Positive and qA Negative Effects). - 5.7.6 Shock Wave Effects (The Forbush Decrease and GMIRs). - 5.8 Geomagnetic Field Effects. - 5.8.1 The Properties of the Geomagnetic Field. - 5.8.2 The Geomagnetic Cut-off Rigidity. - 5.8.3 The Earth's Magnetosphere and the Polar Aurora. - References. - 6 Instrumental Measurements of the Cosmic Radiation. - 6.1 Introduction. - 6.2 Ionization Chambers and Muon Telescopes. - 6.3 The IGY and IQSY Neutron Monitors, and Spaceship Earth. - 6.4 Satellite Borne Detectors. - 6.5 Latitude Effects and the Yield Functions. - 6.6 Inter-calibration of the Different Cosmic Ray Records. - 6.7 Cosmic Ray Archives. - References. - 7 Time Variations of the Cosmic Radiation. - 7.1 Introduction and Atmospheric Effects. - 7.2 The Eleven-and Twenty-Two-Year Variations. - 7.3 The Long-term Variations. - 7.4 Forbush Decreases, Globally Merged Interaction Regions and Some Smaller Effects. - References. - 8 The Solar Cosmic Radiation. - 8.1 Historical Overview. - 8.2 The Observed Production of Cosmic Rays by the Sun. - 8.2.1Ground Level Events. - 8.2.2 SEP Events Observed by Satellites. - 8.2.3 Paleo-Cosmic Ray Measurements of SEP Events. - 8.3 Overall Characteristics of the Solar Cosmic Radiation. - 8.3.1 The Energy Spectra. - 8.3.2 The Effect of Longitude Relative to the Central Solar Meridian. - 8.3.3 The Frequency of Occurrence, and the Detection of Historic SEP Events. - References. - Part 3 Cosmogenic Radionuclides. - 9 Introduction to Cosmogenic Radionuclides. - 10 Production of Cosmogenic Radionuclides in the Atmosphere. - 10.1 Introduction. - 10.2 Interaction of Primary Cosmic Rays with the Atmosphere. - 10.2.1 Production of Secondary Particles. - 10.2.2 Ionization and Excitation Processes. - 10.2.3 Simulated Atmospheric Proton and Neutron Fluxes. - 10.3 Production of Cosmogenic Radionuclides in the Atmosphere. - 10.3.1 Early Production Models. - 10.3.2 Production Cross-Sections. - 10.3.3 Production Rates and Inventories. - 10.4 Production Results and Analytical Tools. - References. - 11 Production of Cosmogenic Radionuclides in Other Environmental Systems. - 11.1 Introduction. - 11.2 Terrestrial Solid Matter (Rocks, Ice). - 11.2.1 36Cl Production in Limestone and Dolomite. - 11.2.2 10Be and 14C Production in Ice. - 11.3 Extraterrestrial Solid Matter. - References. - 12 Alternative Production Mechanisms. - 12.1 Introduction. - 12.2 Natural Production Mechanisms. - 12.2.1 Cosmic Ray Induced Reactions. - 12.2.2 Radioactive Decay-Induced Reactions. - 12.3 Anthropogenic Production Mechanisms. - 12.3.1 Nuclear Power Plant and Nuclear Bomb-Induced Reactions. - 12.3.2 Research, Industrial, and Medical Induced Reactions. - References. - 13 Transport and Deposition. - 13.1 Introduction. - 13.2 Basics of the Atmosphere. - 13.3 Removal or Scavenging Processes. - 13.3.1 Wet Deposition. - 13.3.2 Dry Deposition. - 13.3.3 Gravitational Settling. - 13.3.4 The Big Picture. - 13.4 Modelling the Atmospheric Transport. - 13.4.1 Summary. - 13.5 Geochemical Cycles. - 13.5.1 Introduction. - 13.5.2 The Beryllium Cycle. - 13.5.3 Carbon Cycle. - 13.5.4 The Chlorine Cycle. - 13.5.5 The Iodine Cycle. - References. - 14 Archives. - 14.1 Introduction. - 14.2 Intrinsic Properties of the Cosmogenic Radionuclide Archives. - 14.3 Time Scales. - 14.4 Examples of Archives. - 14.5 Proxies and Surrogates. - 14.6 Properties of Data in the Cosmogenic Archives. - 14.6.1 Sampling Effects. - 14.6.2 Transfer Functions. - 14.7 Modelled Transfer Functions. - 14.7.1 10Be and 7Be in the Atmosphere. - 14.7.2 10Be and 26Al in Deep-Sea Sediments. - References. - 15 Detection. - 15.1 Introduction. - 15.2 Low-Level Decay Counting. - 15.3 Accelerator Mass Spectrometry. - 15.4 Decay Versus Atom Counting. - 15.5 Other Techniques, Optical Methods. - 15.5.1 Final Remarks. - References. - Part 4 Applications. - 16 Introduction to Applications. - 17 Solar Physics. - 17.1 Introduction. - 17.2 Solar Periodicities and the "Grand Minima" in the Cosmogenic Radionuclide Record. - 17.2.1 Solar Periodicities: Time Domain Studies. - 17.2.2 Solar Periodicities: Frequency Domain Studies. - 17.3 Cosmic Rayand Solar Effects in the Past. - 17.3.1 The Past Millennium. - 17.3.2 The Past 10,000 Years (the "Holocene"). - 17.3.3 The Long Solar Minimum of 2007-2009. - 17.4 The Heliomagnetic Field Throughout the Past 10,000 Years. - 17.5 Solar Irradiance and Terrestrial Climate. - 17.6 Radiation Doses on Earth and in Space in the Future. - 17.7 Quantitative Measures of Solar Activity for the Past. - 17.7.1 Reconstructed Sunspot Numbers. - 17.7.2 Modulation Function. - References. - 18 Galactic Astronomy. - 18.1 Introduction. - 18.2 Galactic Structure. - 18.3 Individual Supernova. - References. - 19 Atmosphere. - 19.1 Introduction. - 19.2 Studies of Atmospheric Mixing. - 19.3 36Cl Bomb Pulse as a Tracer of Atmospheric Transport. - 19.4 Concentrations and Fluxes. - References. - 20 Hydrosphere. - 20.1 Introduction. - 20.2 Tritium. - 20.3 Carbon-14. - 20.4 Krypton-81. - 20.5 Chlorine-36. - 20.6 Beryllium-7 to Beryllium-10 Ratio. - References. - 21 Geosphere. - 21.1 Introduction. - 21.2 Geomagnetic Field Intensity. - 21.3 Transport of Cosmogenic Radionuclides in Geological Systems. - 21.3.1 Introduction. - 21.3.2 Migration in Ice. - 21.3.3 Transport in Soils. - 21.3.4 Transport in Rocks. - 21.3.5 Formation of Loess Plateaus. - 21.3.6 Subduction. - References. - 22 Biosphere. - 22.1 Introduction. - 22.2 Radiocarbon Applications. - 22.3 Chlorine-36 in Ecosystems. - 22.4 Iodine-129. - 22.5 Aluminium-26. - References. - 23 Dating. - 23.1 Introduction. - 23.2 Absolute Dating. - 23.2.1 Principle of Radiocarbon Dating. - 23.2.2 Exposure Dating. - 23.2.3 10Be/36Cl- and 7Be/10Be-Dating. - 23.3 Synchronization of Records. - 23.3.1 10Be or 36Cl with 14C During the Holocene. - 23.3.2 The Use of Time Markers. - References. - Glossary. - Index.
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    Berlin u.a. : Springer
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    In: Technische Schwingungslehre
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    C.3.6.
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    Helsinki [u.a.] ; 326.1984 -
    Call number: Z 92.0098
    ISSN: 0367-522X
    Former Title: Bulletin / Geologinen Tutkimuslaitos
    Language: English
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    Call number: SR 90.0001(975-E)
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    Pages: IV S., S. 337-388, V S. + 8 pl.
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    Pages: S. 381-456, III S.
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    Call number: SR 90.0001(1072-F)
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    Call number: SR 90.0001(1028-I)
    In: U.S. Geological Survey bulletin
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    Pages: V S., S. 211-248 + 4 pl.
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  • 51
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    Call number: SR 90.0001(1045-B)
    In: U.S. Geological Survey bulletin
    Type of Medium: Series available for loan
    Pages: III S., S. 63-79 + 1 pl.
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    Language: English
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  • 52
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    Washington, DC : United States Gov. Print. Off.
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    Call number: SR 90.0001(1046-G)
    In: U.S. Geological Survey bulletin
    Type of Medium: Series available for loan
    Pages: III S., S. 149-164 + 1 pl.
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  • 53
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    Call number: SR 90.0001(1045-E)
    In: U.S. Geological Survey bulletin
    Type of Medium: Series available for loan
    Pages: III S., S. 139-317 + 4 pl.
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  • 54
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    Call number: SR 90.0001(1046-I)
    In: U.S. Geological Survey bulletin
    Type of Medium: Series available for loan
    Pages: III S., S. 183-203 + 5 pl.
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  • 55
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    Call number: SR 90.0001(1000-H)
    In: U.S. Geological Survey bulletin
    Type of Medium: Series available for loan
    Pages: III S., S. 397-408, III S.
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  • 56
    Call number: SR 90.0001(1087-E)
    In: U.S. Geological Survey bulletin
    Type of Medium: Series available for loan
    Pages: IV S., S. 133-168 + 5 pl.
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  • 57
    Series available for loan
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    Call number: SR 90.0001(1106-B)
    In: U.S. Geological Survey bulletin
    Type of Medium: Series available for loan
    Pages: III S., S. 129-259
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  • 58
    Monograph available for loan
    Monograph available for loan
    Cambridge : Cambridge University Press
    Call number: AWI A5-12-0038
    Description / Table of Contents: Murry Salby's new book provides an integrated treatment of the processes controlling the Earth-atmosphere system developed from first principles through a balance of theory and applications. This book builds on Salby's previous book Fundamentals of Atmospheric Physics. The scope has been expanded to include climate, while streamlining the presentation for undergraduates in scinece, mathematics, and engineering. Advanced material, suitable for graduate students and researchers, has been retained but distingushed from the basic development. The book offers a conceptual yet quantitative understanding of the controlling influences integrated through theory and major applications. It leads readers through a methodical development of the diverse physical processes that shape weather, global energetics, and climate. End-of-chapter problems of varying difficulty develop student knowledge and ist quanitative application, supported by answers and detailed solutions online for instructors.
    Type of Medium: Monograph available for loan
    Pages: XIX, 666 Seiten , Illustrationen
    Edition: First published 2012, 2nd edition
    ISBN: 9780521767187 , 978-0-521-76718-7
    Language: English
    Note: Contents Preface Prelude 1 The Earth-atmosphere system 1.1 Introduction 1.1.1 Descriptions of atmospheric behavior 1.1.2 Mechanisms influencing atmospheric behavior 1.2 Composition and structure 1.2.1 Description of air 1.2.2 Stratification of mass 1.2.3 Thermal and dynamical structure 1.2.4 Trace constituents 1.2.5 Cloud 1.3 Radiative equilibrium of the Earth 1.4 The global energy budget 1.4.1 Global-mean energy balance 1.4.2 Horizontal distribution of radiative transfer 1.5 The general circulation 1.6 Historical perspective: Global-mean temperature 1.6.1 The instrumental record 1.6.2 Proxy records Suggested references Problems 2 Thermodynamics of gases 2.1 Thermodynamic concepts 2.1.1 Thermodynamic properties 2.1.2 Expansion work 2.1.3 Heat transfer 2.1.4 State variables and thermodynamic processes 2.2 The First Law 2.2.1 Internal energy 2.2.2 Diabatic changes of state 2.3 Heat capacity 2.4 Adiabatic processes 2.4.1 Potential temperature 2.4.2 Thermodynamic behavior accompanying vertical motion 2.5 Diabatic processes 2.5.1 Polytropic processes Suggested references Problems 3 The Second Law and its implications 3.1 Natural and reversible processes 3.1.1 The Carnot cycle 3.2 Entropy and the Second Law 3.3 Restricted forms of the Second Law 3.4 The fundamental relations 3.4.1 The Maxwell Relations 3.4.2 Noncompensated heat transfer 3.5 Conditions for thermodynamic equilibrium 3.6 Relationship of entropy to potential temperature 3.6.1 Implications for vertical motion Suggested references Problems 4 Heterogeneous systems 4.1 Description of a heterogeneous system 4.2 Chemical equilibrium 4.3 Fundamental relations for a mufti-component system 4.4 Thermodynamic degrees of freedom 4.5 Thermodynamic characteristics of water 4.6 Equilibrium phase transformations 4.6.1 Latent heat 4.6.2 Clausius-Clapeyron Equation Suggested references Problems 5 Transformations of moist air 5.1 Description of moist air 5.1.1 Properties of the gas phase 5.1.2 Saturation properties 5.2 Implications for the distribution of water vapor 5.3 State variables of the two-component system 5.3.1 Unsaturated behavior 5.3.2 Saturated behavior 5.4 Thermodynamic behavior accompanying vertical motion 5.4.1 Condensation and the release of latent heat 5.4.2 The pseudo-adiabatic process 5.4.3 The Saturated Adiabatic Lapse Rate 5.5 The pseudo-adiabatic chart Suggested references Problems 6 Hydrostatic equilibrium 6.1 Effective gravity 6.2 Geopotential coordinates 6.3 Hydrostatic balance 6.3.1 Hypsometric equation 6.3.2 Meteorological Analyses 6.4 Stratification 6.4.1 Idealized stratification 6.5 Lagrangian interpretation of stratification 6.5.1 Adiabatic stratification: A paradigm of the troposphere 6.5.2 Diabatic stratification: A paradigm of the stratosphere Suggested references Problems 7 Static stability 7.1 Reaction to vertical displacement 7.2 Stability categories 7.2.1 Stability in terms of temperature 7.2.2 Stability in terms of potential temperature 7.2.3 Moisture dependence 7.3 Implications for vertical motion 7.4 Finite displacements 7.4.1 Conditional instability 7.4.2 Entrainment 7.4.3 Potential instability 7.4.4 Modification of stability under unsaturated conditions 7.5 Stabilizing and destabilizing influences 7.6 Turbulent dispersion 7.6.1 Convective mixing 7.6.2 Inversions 7.6.3 Life cycle of the nocturnal inversion 7.7 Relationship to observed thermal structure Suggested references Problems 8 Radiative transfer 8.1 Shortwave and longwave radiation 8.1.1 Spectra of observed SW and LW radiation 8.2 Description of radiative transfer 8.2.1 Radiometric quantities 8.2.2 Absorption 8.2.3 Emission 8.2.4 Scattering 8.2.5 The Equation of Radiative Transfer 8.3 Absorption characteristics of gases 8.3.1 Interaction between radiation and molecules 8.3.2 Line broadening 8.4 Radiative transfer in a plane parallel atmosphere 8.4.1 Transmission function 8.4.2 Two-stream approximation 8.5 Thermal equilibrium 8.5.1 Radiative equilibrium in a gray atmosphere 8.5.2 Radiative-convective equilibrium 8.5.3 Radiative heating 8.6 Thermal relaxation 8.7 The greenhouse effect 8.7.1 Feedback in the climate system 8.7.2 Unchecked feedback 8.7.3 Simulation of climate Suggested references Problems 9 Aerosol and cloud 9.1 Morphology of atmospheric aerosol 9.1.1 Continental aerosol 9.1.2 Marine aerosol 9.1.3 Stratospheric aerosol 9.2 Microphysics of cloud 9.2.1 Droplet growth by condensation 9.2.2 Droplet growth by collision 9.2.3 Growth of ice particles 9.3 Macroscopic characteristics of cloud 9.3.1 Formation and classification of cloud 9.3.2 Microphysical properties of cloud 9.3.3 Cloud dissipation 9.3.4 Cumulus detrainment: Influence on the environment 9.4 Radiative transfer in aerosol and cloud 9.4.1 Scattering by molecules and particles 9.4.2 Radiative transfer in a cloudy atmosphere 9.5 Roles of cloud and aerosol in climate 9.5.1 Involvement in the global energy budget 9.5.2 Involvement in chemical processes Suggested references Problems 10 Atmospheric motion 10.1 Description of atmospheric motion 10.2 Kinematics of fluid motion 10.3 The material derivative 10.4 Reynolds'transport theorem 10.5 Conservation of mass 10.6 The momentum budget 10.6.1 Cauchy's Equations of Motion 10.6.2 Momentum equations in a rotating reference frame 1 0.7 The first law of thermodynamics Suggested references Problems 11 Atmospheric equations of motion 11.1 Curvilinear coordinates 11.2 Spherical coordinates 11.2.1 The traditional approximation 11.3 Special forms of motion 11.4 Prevailing balances 11.4.1 Motion-related stratification 11.4.2 Scale analysis 11.5 Thermodynamic coordinates 11.5.1 Isobaric coordinates 11.5.2 Log-pressure coordinates 11.5.3 Isentropic coordinates Suggested references Problems 12 Large-scale motion 12.1 Ceostrophic equilibrium 12.1.1 Motion on an f plane 1 2.2 Vertical shear of the geostrophic wind 12.2.1 Classes of stratification 12.2.2 Thermal wind balance 12.3 Frictional geostrophic motion 1 2.4 Curvilinear motion 12.4.1 Inertial motion 12.4.2 Cyclostrophic motion 12.4.3 Gradient motion 12.5 Weakly divergent motion 12.5.1 Barotropic nondivergent motion 12.5.2 Vorticity budget under baroclinic stratification 12.5.3 Quasi-geostrophic motion Suggested references Problems 13 The planetary boundary layer 13.1 Description of turbulence 13.1.1 Reynolds decomposition 13.1.2 Turbulent diffusion 13.2 Structure of the boundary layer 13.2.1 The Ekman Layer 13.2.2 The surface layer 1 3.3 Influence of stratification 1 3.4 Ekman pumping Suggested references Problems 14 Wave propagation 14.1 Description of wave propagation 14.1.1 Surface water waves 14.1.2 Fourier synthesis 14.1.3 Limiting behavior 14.1.4 Wave dispersion 14.2 Acoustic waves 14.3 Buoyancy waves 14.3.1 Shortwave limit 14.3.2 Propagation of gravity waves in an inhomogeneous medium 14.3.3 The WKB approximation 14.3.4 Method of geometric optics 1 4.4 The Lamb wave 14.5 Rossby waves 14.5.1 Barotropic nondivergent Rossby waves 14.5.2 Rossby wave propagation in three dimensions 14.5.3 Planetary wave propagation in sheared mean flow 14.5.4 Transmission of planetary wave activity 14.6 Wave absorption 14.7 Nonlinear considerations Suggested references Problems 15 The general circulation 15.1 Forms of atmospheric energy 15.1.1 Moist static energy 15.1.2 Total potential energy 15.1.3 Available potential energy 1 5.2 Heat transfer in a zonally symmetric circulation 1 5.3 Heat transfer in a laboratory analogue 1 5.4 Quasi-permanent features 15.4.1 Thermal properties of the Earth's surface 1 5.4.2 Surface pressure and wind systems 1 5.4.3 Tropical circulations 15.5 Fluctuations of the circulation 15.5.1 Interannual changes 15.5.2 Intraseasonal variations Suggested references Problems 16 Dynamic stability 16.1 Inertial instability 16.2 Shear instability 16.2.1 Necessary conditions for instability 16.2.2
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  • 59
    Call number: PIK B 314-12-0239
    Description / Table of Contents: Contents: 1 Setting the stage ; 2 Eat well, eat better ; 3 Reducing losses and waste at consumption, distribution and processing levels ; 4 Reducing post-harvest losses in developing nations ; 5 Producing other goods ; 6 Managing ecosystem services ; 7 Will there be enough land? ; 8 The need to strive for productive yet ecological agriculture ; 9 Feeding the world starts with fighting poverty ; 10 Towards a global governance of food ; Conclusion
    Type of Medium: Monograph available for loan
    Pages: VI, 231 S. : graph. Darst.
    ISBN: 9782759216826
    Series Statement: Collection Matière à débattre et décider
    Uniform Title: 9 milliards d'hommes à nourrir, un défi pour demain
    Language: German
    Location: A 18 - must be ordered
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  • 60
    Series available for loan
    Series available for loan
    Washington, DC : U.S. Gov. Print. Off.
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    Call number: MOP Per 603(80-1)
    In: Natural disaster survey report, 80-1
    Type of Medium: Series available for loan
    Pages: V, 60 S.
    Series Statement: Natural disaster survey report 80-1
    Language: English
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  • 61
    Call number: PIK A 130-12-0240
    Type of Medium: Monograph available for loan
    Pages: 131 S.
    Edition: Version 16.01.2012
    ISBN: 9783941492462
    Uniform Title: Guide to financial issues relating to indirect actions of the seventh framework programmes
    Language: German
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  • 62
    Monograph available for loan
    Monograph available for loan
    Bonn : Bundeszentrale für Politische Bildung
    Call number: IASS 12.0140
    Type of Medium: Monograph available for loan
    Pages: 350 S. : Ill. , Ill. , 238 mm x 145 mm
    Edition: Lizenzausg.
    ISBN: 9783838901428
    Series Statement: Schriftenreihe 1142
    Uniform Title: Dirt
    Language: German
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  • 63
    Call number: M 12.0187
    Type of Medium: Monograph available for loan
    Pages: XXX, 573 S. : Ill., graph. Darst.
    ISBN: 9783868991826
    Uniform Title: Head first HTML5 programming
    Language: German
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  • 64
    Monograph available for loan
    Monograph available for loan
    Stuttgart : Schweizerbart
    Call number: AWI Bio-12-0071
    Description / Table of Contents: Das vorliegende Werk dokumentiert die weltweit bekannten Torfmoos-Arten (Gattung Sphagnum) und enthält Bestimmungsschlüssel. Es ist die erste Gesamtdarstellung von Sphagnum seit Carl Warnstorfs "Sphagnologia Universalis" (1911). Seitdem sind, insbesondere durch Andrews, Eddy und Isoviita, zahlreiche Namen als Synonyme erkannt und revidiert worden. Diese Revisionen, sowie die rund 150 seitdem gültig neu beschriebenen Arten sind ebenso wie eigene Studien des Autors in den vorliegenden Band eingeflossen. Zur Artabgrenzung problematischer Gruppen wurden genetische Studien herangezogen. Die Torfmoose besitzen unter den Moosen eine besondere ökologische und ökonomische Bedeutung. Sie besiedeln fast alle Kontinente mit deutlichen Schwerpunkten im nördlichen Südamerika, in Nordamerika, in Ost- und Nordasien sowie Europa. Die Gattung Sphagnum steht innerhalb der Laubmoose sehr isoliert, Gemeinsamkeiten im Bau des Sporophyten deuten auf entfernte Beziehungen zu den Klaffmoosen (Klasse Andreaeopsida) hin. Zur Gliederung von Sphagnum gibt es sehr unterschiedliche Ansätze mit bis zu 4 Untergattungen und bis zu 18 möglichen Sektionen, wovon in diesem Band 13 unterschieden werden; darunter die neu aufgestellte Sektion Lapazensis. Die Torfmoose im engeren Sinne (Gattung Sphagnum) zeigen eine unter den Moosen einzigartige Kombination von Blattdimorphismus (Stamm- und Astblätter). Obwohl deshalb die Zuordnung eines Torfmooses zur Gattung Sphagnum in der Regel keine Probleme mit sich bringt, bereitet die Bestimmung bis zur Art mitunter Schwierigkeiten. Der Autor beschreibt einführend Anatomie und Morphologie von Sphagnum, darauf aufbauend erläutert er Reproduktionsbiologie und Forschungs- und Stammesgeschichte der Torfmoose. Der systematische Teil ist in drei Abschnitte gegliedert: Beschreibung und Aufschlüsselung der Sektionen, Schlüssel für alle Torfmoosarten, getrennt nach Kontinenten, sowie Sphagnum-Artenlisten für 19 Regionen der Erde. Die Schlüssel für Afrika, Europa und Nordamerika orientieren sich an vorhandenen Daten und werden unter Zuhilfenahme rezenter Beschreibungen, Artkonzepte und floristischer Daten neu beschrieben und ergänzt. Für Südamerika und Asien wurden völlig neue Schlüssel erarbeitet, weil es diese bislang nicht gab. 286 Torfmoosarten werden ausführlich neu beschrieben, ergänzt durch Daten über Habitate, geographische Verbreitung und Synonymlisten. Ergänzt wird dieser Abschnitt durch die Darstellung der inneren und äußeren Merkmale auf 194 Tafeln. Ein sehr umfangreiches Literaturverzeichnis rundet den Band ab.
    Type of Medium: Monograph available for loan
    Pages: 408 Seiten , Illustrationen , 1 Beilage
    ISBN: 9783510480319
    Series Statement: Bibliotheca botanica 160
    Language: German
    Note: Inhaltsverzeichnis: Vorwort. - Zusammenfassung. - Abstract. - 1. Einleitung. - 1.1. Äußerer und innerer Bau der Torfmoose. - 1.2. Reproduktionsbiologie der Torfmoose. - 1.3. Forschungsgeschichte. - 1.4. Stammesgeschichte. - 1.5. Bestimmungshinweise. - 2. Schlüssel und Kurzbeschreibung der Sektionen. - 2.1. Schlüssel zu den Sektionen. - 2.2. Kurzbeschreibung der Sektionen. - 3. Schlüssel und Regionalfloren. - 3.1. Bestimmungsschlüssel. - 3.1.1. Europa. - 3.1.2. Asien. - 3.1.3. Afrika. - 3.1.4. Nord- und Mittelamerika. - 3.1.5. Südamerika. - 3.1.6. Australien, Neuseeland und Pazifik. - 3.2. Regionalfloren. - 3.2.1. Europa. - 3.2.2. Nordasien. - 3.2.3. Ostasien. - 3.2.4. Südasien. - 3.2.5. Südostasien. - 3.2.6. Westasien. - 3.2.7. Nordafrika. - 3.2.8. Zentralafrika. - 3.2.9. Südafrika. - 3.2.10. Madagaskar. - 3.2.11. Nordamerika. - 3.2.12. Mittelamerika Festland. - 3.2.13. Mittelamerika Antillen. - 3.2.14. Nordwestliches Südamerika. - 3.2.15. Östliches Südamerika. - 3.2.16. Gemäßigtes Südamerika. - 3.2.17. Australien. - 3.2.18. Neuseeland. - 3.2.19. Pazifik. - 4. Artbeschreibungen. - 4.1. Sphagnum sect. Sericea. - 4.2. Sphagnum sect. Lapazensis. - 4.3. Sphagnum sect. Sphagnum. - 4.4. Sphagnum sect. Rigida. - 4.5. Sphagnum sect. lnsulosa. - 4.6. Sphagnum sect. Acutifolia. - 4.7. Sphagnum sect. Squarrosa. - 4.8. Sphagnum sect. Polyclada. - 4.9. Sphagnum sect. Subsecunda. - 4.10. Sphagnum sect. Isocladus. - 4.11. Sphagnum sect. Hemitheca. - 4.12. Sphagnum sect. Cuspidata. - 4.13. Sphagnum sect. Mollusca. - 4.14. Ambuchanania. - 5. Verzeichnis der verwendeten Fachausdrücke. - 6. Literatur. - 7. Verzeichnis der Zeitschriften und Schriftenreihen. - 8. Abbildungsnachweis. - 9. Register. , Zusammenfassung in englischer Sprache
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  • 65
    Monograph available for loan
    Monograph available for loan
    London [u.a.] : Routledge [u.a.]
    Call number: PIK B 160-12-0326
    Description / Table of Contents: Contents: Foreword ; 1. The Limited Environmental Capacity ; 2. On politics in crisis ; 3. On science's role and responsibility ; 4. From Copenhagen to Durban ; 5. Respect The Planetary Boundaries ; 6. A Triply Green Revolution ; 7. The Critical Role of Energy ; 8. The Forgotten Issue ; 9. The Weapon of Doubt ; 10. The Greenhouse Effect ; 11. What Climate Denies Do Not Want To Know ; 12. The Arctic: Canary in the mine ; 13. Is Sweden a World Champion in Climate Policy ; 14. Getting the Economy Right ; 15. The Financial Sector: Ignoring The Risks ; 16. Growth's Dilemma ; 17. Toward A Circular Economy ; 18. How much is enough? ; 19. The Road Ahead
    Type of Medium: Monograph available for loan
    Pages: XII, 206 S. : graph. Darst.
    Edition: revised ed.
    ISBN: 9780415539692
    Uniform Title: Den stora förnekelsen
    Language: English
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  • 66
    Monograph available for loan
    Monograph available for loan
    Tübingen : Mohr Siebeck
    Call number: PIK C 111-13-0053
    Description / Table of Contents: Contents: Teil 1 - Die Grundstruktur des Modells ; 1 Einleitung ; 2 Parteimotivationen und die Funktion der Regierung in der Gesellschaft ; 3 Die Grundlagen des Wählens ; 4 Die Grundlagen der Entscheidungsfindung der Regierung ; Teil 2 - Die Allgemeinen Auswirkungen der Ungewissheit ; 5 Der Begriff der Ungewißheit ; 6 Wie Ungewißheit die Entscheidungsfindung der Regierung beeinflußt ; 7 Die Entwicklung politischer Ideologien als Mittel zum Gewinn von Wählerstimmen ; 8 Statik und Dynamik von Parteiideologien ; 9 Rationalitätsprobleme unter Koalitionsregierungen ; 10 Die Bemühungen der Regierung um Stimmenmaximierung und das individuelle Grenzgleichgewicht ; Teil 3 - Besondere Auswirkungen der Informationskosten ; 11. Der Prozeß des Sich-Informierens ; 12 Wie rationale Bürger Informationskosten senken ; 13 Erträge aus Informationen und ihre Verminderung ; 14 Ursachen und Wirkungen rationaler Stimmenthaltung ; Teil 4 - Abgeleitete Implikationen und Hypothesen ; 15 Bemerkungen zu ökonomischen Theorien des Regierungsverhaltens ; 16 Aus der Theorie abgeleitete überprüfbare Sätze
    Type of Medium: Monograph available for loan
    Pages: XIV, 303 S. : graph. Darst.
    Edition: Nachdr.
    ISBN: 9783161461712
    Series Statement: Die Einheit der Gesellschaftswissenschaften 8
    Uniform Title: An economic theory of democracy
    Language: German
    Note: Zugl.: Stanford, Univ., Diss.
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  • 67
    Monograph available for loan
    Monograph available for loan
    Leipzig : Teubner
    Associated volumes
    Call number: MOP 45409 / Mitte
    In: Kleine naturwissenschaftliche Bibliothek
    Type of Medium: Monograph available for loan
    Pages: 176 S. : 41 graph. Darst. u. Kt.
    Edition: 1. Aufl.
    Series Statement: Kleine naturwissenschaftliche Bibliothek 48
    Uniform Title: Atmosfera i čelovek
    Language: German
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  • 68
    Monograph available for loan
    Monograph available for loan
    Sankt-Peterburg : Sankt-Peterburgskij Gosudarstvennyj Universitet
    Call number: AWI Bio-13-0030
    Description / Table of Contents: Atlas contains photographic images of 91 plant species and pollen which are found in Lena River Delta as well as information about current conditions of their growth. This is a major advantage of this atlas as compared to other publications of this kind. All information is presented in Russian and English. All materials were collected in framework of the Russian-German expeditions "Lena-2009", "Lena-2010", "Lena-2011" and "Lena-2012". Photographs illustrate the general view of the plant, inflorescence and pollen grains in different positions and from high to low focus. Plants are grouped into families, where each family has its own color. Atlas is addressed not only to specialists in palynology, but to all who are interested in the flora and vegetation of the Arctic region, including students of geographical, biological and environmental fields.
    Type of Medium: Monograph available for loan
    Pages: 111 Seiten , Illustrationen
    ISBN: 9785439100361
    Language: Russian , English
    Note: Contents: Introduction. - Apiaceae. - Asteraceae. - Betulaceae. - Boraginaceae. - Brassicaceae. - Campanulaceae. - Caryophyllaceae. - Crassulaceae. - Cyperaceae. - Diapensiaceae. - Ericaceae. - Fabaceae. - Gentianaceae. - Hippuriadaceae. - Juncaceae. - Lentibulariaceae. - Liliaceae. - Onagraceae. - Papaveraceae. - Parnassiaceae. - Pinaceae. - Plumbaginaceae. - Poaceae. - Polemoniaceae. - Polygonaceae. - Portulacaceae. - Primulaceae. - Pyrolaceae. - Ranunculaceae. - Rosaceae. - Salicaceae. - Saxifragaceae. - Scrophulariaceae. - Valerianaceae. - Index of plants by family. - Alphabetical index of plants. , In englischer und russischer Sprache. , Teilw. in kyrillischer Schrift
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  • 69
    Monograph available for loan
    Monograph available for loan
    Berlin : Springer
    Call number: AWI G3-13-0054
    Description / Table of Contents: Permafrost hydrology systematically elucidates the roles of seasonally and perennially frozen ground on the distribution, storage and flow of water. Cold regions of the world are subject to mounting development which significantly affects the physical environment. Climate change, natural or human-induced, reinforces the impacts. Knowledge of surface and ground water processes operating in permafrost terrain is fundamental to planning, management and conservation. This book is an indispensable reference for libraries and researchers, an information source for practitioners, and a valuable text for training the next generations of cold region scientists and engineers.
    Type of Medium: Monograph available for loan
    Pages: XII, 563 Seiten , Illustrationen, Diagramme, Karten (teilweise farbig)
    ISBN: 9783642234613
    Language: English
    Note: Contents: 1 Introduction. - 1.1 The world cold regions. - 1.2 Water in frozen soils. - 1.3 Permafrost. - 1.3.1 Definitions. - 1.3.2. Distribution. - 1.3.3. Factors influencing permafrost occurence. - 1.4 Permafrost and hydrology. - 1.4.1 Permafrost hydrology. - 1.4.2 Hydrologic behavior of seasonal frost and permafrost. - 1.5 Environments of permafrost regions. - 1.5.1 Hydroclimatology. - 1.5.2 Geology. - 1.5.3 Glaciation. - 1.5.4 Physiography. - 1.5.5 Vegetation. - 1.5.6 Peat cover. - 1.6 Presentation of the book. - 2 Moisture and heat. - 2.1 Precipitation. - 2.1.1 General pattern. - 2.1.2 Cyclones. - 2.1.3 Recycling. - 2.1.4 Trace precipitation. - 2.2 Surface energy balance. - 2.3 Evaporation. - 2.3.1 Eddy Fluctuation Method. - 2.3.2 Aerodynamic method. - 2.3.3 Bowen Ratio Method. - 2.3.4 Priestley and Taylor Method. - 2.4 Energy balance of the active layer. - 2.4.1 Energy Balance. - 2.4.2 Thermal conductivity and heat capacity. - 2.5 Ground temperature. - 2.5.1 Penetration of temperature waves. - 2.5.2 Frost table development. - 2.6 Heat and moisture flows in frozen soils. - 2.6.1 Stefan's Algorithm. - 2.6.2 Near-Surface ground temperature. - 2.6.3 Moisture migration and ice lens formation. - 2.7 Ground ice. - 2.7.1 Types of ground ice. - 2.7.2 Excess ice. - 3 Groundwater. - 3.1 Groundwater occurence in permafrost. - 3.1.1 Suprapermafrost groundwater. - 3.1.2 Intrapermafrost groundwater. - 3.1.3 Subpermafrost groundwater. - 3.2 Groundwater recharge and circulation. - 3.2.1 Recharge. - 3.2.2 Groundwater movement. - 3.3 Groundwater discharge. - 3.3.1 Seeps. - 3.3.2 Springs. - 3.3.3 Baseflow. - 3.3.4 Ponds and lakes. - 3.4 Icings. - 3.4.1 Ground and spring icings. - 3.4.2 River icings. - 3.4.3 Icing dimension. - 3.4.4 Icing problems. - 3.5 Domed ice features. - 3.5.1 Frost mounds and icing mounds. - 3.5.2 Pingos. - References. - 4 Snow cover. - 4.1 Snow accumulation. - 4.1.1 Winter precipitation. - 4.1.2 Blowing snow. - 4.1.3 Terrain heterogeneity. - 4.1.4 Vegetation cover. - 4.2 Characteristics of the snow cover. - 4.2.1 Snow temperature and insulation. - 4.2.2 Snow metamorphism. - 4.2.3 Snow stratigraphy. - 4.3 Snowmelt processes. - 4.3.1 Radiation melt. - 4.3.2 Turbulent fluxes melt. - 4.3.3 Other melt terms. - 4.4 Snowmelt in permafrost areas. - 4.4.1 Tundra and Barren areas. - 4.4.2 Dirty snow. - 4.4.3 Shrub fields. - 4.4.4 Forests. - 4.5 Meltwater movement in snow. - 4.5.1 Dry snow. - 4.5.2 Wet snow. - References. - 5 Active layer dynamics. - 5.1 Freeze-back and winter periods. - 5.1.1 Snow cover and ground freezing. - 5.1.2 Moisture flux and ice formation. - 5.1.3 Vapor flux from soil to snow. - 5.2 Snowmelt period. - 5.2.1 Snowmelt and basal ice. - 5.2.2 Infiltration into frozen soil. - 5.2.3 Soil warming. - 5.2.4 Surface saturation, evaporation and runoff. - 5.3 Summer. - 5.3.1 Active layer thaw. - 5.3.2 Summer precipitation. - 5.3.3 Evaporation. - 5.3.4 Rainwater infiltration. - 5.3.5 Soil moisture. - 5.3.6 Groundwater. - References. - 6 Slope processes. - 6.1 Flow paths. - 6.1.1 Flow paths in snow. - 6.1.2 Surface and subsurface flows. - 6.1.3 Flow in bedrock areas. - 6.1.4 Flow in unconsolidated materials. - 6.2 Water sources. - 6.3 Factors influencing slope runoff generation. - 6.3.1 Microclimatic control. - 6.3.2 Topographic influence. - 6.3.3 Importance of the Frost table. - 6.3.4 Roles of organic materials. - 6.3.5 Bedrock control. - 6.4 Basin slopes in permafrost regions. - 6.4.1 High Arctic slopes. - 6.4.2 Low Arctic slopes. - 6.4.3 Subarctic slopes. - 6.4.4 Alpine permafrost zones. - 6.4.5 Precambrian bedrock terrain. - 6.5 Concepts for basin flow generation. - 6.5.1 Variable source area and fill-and-spill concepts. - 6.5.2 Heterogenous slopes. - References. - 7 Cold lakes. - 7.1 Types of lake. - 7.2 Lake ice. - 7.2.1 Lake ice regime. - 7.2.2 Ice formation and growth. - 7.2.3 Ice decay. - 7.3 Lake circulation. - 7.4 Hydrologic inputs. - 7.5 Lake evaporation. - 7.6 Lake outflow. - 7.6.1 Outflow conditions. - 7.6.2 Fill-and-Spill concept and lake outflow. - 7.7 Lake level. - 7.8 Large lakes. - 7.9 Permafrost and lakes. - References. - 8 Northern wetlands. - 8.1 Wetlands in permafrost regions. - 8.2 Factors favoring wetland occurence. - 8.2.1 Climate. - 8.2.2 Topography. - 8.2.3 Stratigraphy. - 8.2.4 Other factors. - 8.3 Hydrogeomorphic features in wetlands. - 8.3.1 Bog-related features. - 8.3.2 Fen-related features. - 8.3.3 Marshes and swamps. - 8.3.4 Shallow water bodies. - 8.4 Hydrologic behavior of wetlands. - 8.4.1 Seasonality of hydrologic activities. - 8.4.2 Wetland storage. - 8.4.3 Flow paths. - 8.4.4 Application of Fill-and-Spill concept. - 8.5 Patchy arctic wetlands. - 8.5.1 Wetlands maintained by snowmelt. - 8.5.2 Groundwater-fed wetlands. - 8.5.3 Valley bottom fens. - 8.5.4 Wetlands due to lateral inundation. - 8.5.5 Tundra ponds. - 8.5.6 Lake-fed and lake-bed wetlands. - 8.6 Extensive wetlands. - 8.6.1 Wet terrain. - 8.6.2 Ice-wedge polygon fields. - 8.6.3 Coastal plains. - 8.6.4 Deltas. - 8.6.5 Subarctic continental wetlands. - 8.7 Wetlands, permafrost and disturbances. - References. - 9 Rivers in cold regions. - 9.1 Drainage patterns. - 9.2 In-valley conditions. - 9.2.1 Geological setting for channels. - 9.2.2 River ice. - 9.2.3 River icing. - 9.2.4 In-channel snow. - 9.2.5 Permafrost. - 9.2.6 Alluvial environment. - 9.3 In-channel hydrology. - 9.3.1 Lateral inflow. - 9.3.2 Channel inflow. - 9.3.3 Vertical water exchanges. - 9.3.4 Storage in channels. - 9.4 Flow connectivity and delivery. - 9.4.1 Flow network integration. - 9.4.2 Decoupling of flow network. - 9.4.3 Flow delivery. - References. - 10 Basin hydrology. - 10.1 Basin outflow generation. - 10.1.1 The roles of snow. - 10.1.2 Meltwater from glaciers. - 10.1.3 Rainfall contribution. - 10.1.4 Groundwater supply. - 10.1.5 Evaporation losses. - 10.1.6 Permafrost effects. - 10.1.7 Consequences of basin storage. - 10.2 Streamflow hydrograph. - 10.3 Streamflow regimes. - 10.3.1 Nival regime. - 10.3.2 Proglacial regime. - 10.3.3 Pluvial regime. - 10.3.4 Spring-fed Regime. - 10.3.5 Prolacustrine regime. - 10.3.6 Wetland regime. - 10.4 Streamflow in large basins. - 10.4.1 Scaling up to large rivers. - 10.4.2 Flow generation in a large basin: the Liard river. - 10.4.3 Regulated discharge of large rivers. - 10.4.4 Flow in a sub-continental scale basin: Mackenzie basin. - 10.5 Basin water balance. - 10.5.1 Considerations in water balance investigation. - 10.5.2 Regional tendencies. - 10.5.3 Examples from permafrost environments. - 10.6 Permafrost basin hydrology: general remarks. - References. - Appendices. - Index.
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  • 70
    Monograph available for loan
    Monograph available for loan
    Berlin [u.a.] : Springer
    Associated volumes
    Call number: AWI A4-13-0079
    In: Springer Praxis books in geophysical sciences
    Description / Table of Contents: Contents: Preface to the first edition. - Preface to the second editon. - List of figures. - List of tables. - List of symbols. - List of abbreviations. - 1 Introduction. - 2 Drift ice material. - 2.1 Sea ice cover. - 2.2 Ice floes to drift ice particles. - 2.3 Sea ice growth and melting. - 2.4 Ice thickness distribution. - 2.5 Sea ice ridges. - 2.6 Drift ice state. - 3 Ice kinematics. - 3.1 Description of ice velocity field. - 3.2 Observations. - 3.3 Stochastic modelling. - 3.4 Conservation of ice. - 4 Sea ice rheology. - 4.1 General. - 4.2 Viscous laws. - 4.3 Plastic laws. - 4.4 Granular floe collision models. - 4.5 Scaling of ice strength. - 5 Equation of drift ice motion. - 5.1 Derivation of the equation of motion. - 5.2 Atmospheric and oceanic boundary layers. - 5.3 Sea ice-ocean interaction. - 5.4 Scale analysis. - 5.5 Dynamics of a single ice floe. - 6 Free drift. - 6.1 Steady state solution. - 6.2 Non-steady case. - 6.3 Linear coupled ice-ocean model. - 6.4 Frequency spectrum of free drift. - 6.5 Spatial aspects of free drift. - 7 Drift in the presence of internal friction. - 7.1 The role of internal friction. - 7.2 Channel flow of sea ice. - 7.3 Ice drift along coastal boundary. - 7.4 Zonal sea ice drift. - 7.5 Modelling of ice tank experiments. - 7.6 Timespace scaling of ice drift. - 8 Numerical modelling. - 8.1 Numerical solutions. - 8.2 Examples of sea ice dynamics models. - 8.3 Short-term modelling applications. - 8.4 Oil spills in ice conditions. - 8.5 Climate models. - 9 Use and need of knowledge on ice drift. - 9.1 Science. - 9.2 Practice. - 9.3 Final comments. - 10 Study problems. - 10.1 Problems. - 10.2 Instructions and solutions. - 11 References. - Index.
    Description / Table of Contents: This new edition of The drift of sea ice brings the theory, observations and practical applications of research into sea ice drift completely up to date, taking in to account and discussing the many new scientific results which have been published, in particular connected with thermodynamics, ice-ocean interaction, scaling, and numerical model applications in short-term and climate forecasting. This revised and expanded text presents the geophysical theory, observations from field programs, mathematical modelling techniques, and applications of sea ice drift science. It shows how the fundamental laws of sea ice drift come from the material properties of sea ice and the basic laws of mechanics. The book provides detailed analytical modelling and mathematical models and presents the construction of numerical ice drift models. The drift of sea ice gives a collection of worked examples on sea ice dynamics; details the derivation of the fundamental laws of sea ice dynamics in an understandable form; teaches methods for local and regional ice forecasting for ice engineering applications; analyses the system of equations for the general properties of sea ice drift and the derivation of the free drift model and analytical models for ice drift in the presence of internal friction; makes an excellant source book for climate research concerning the role of sea ice dynamics in the global climate.
    Type of Medium: Monograph available for loan
    Pages: XXX, 347 Seiten , Illustrationen
    Edition: 2. Aufl., Softcover reprint of hardcover 2011
    ISBN: 9783642267574
    Series Statement: Springer Praxis books in geophysical sciences
    Language: English
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  • 71
    Monograph available for loan
    Monograph available for loan
    Berlin [u.a.] : Springer Spektrum
    Call number: AWI A5-13-0151
    Description / Table of Contents: Mit der Dynamik von Wind und Wellen, mit dem Haushalt von Wärme und Wasser befasst sich die theoretische Meteorologie. Viele Studierende haben eine Scheu vor dem Fach, weil sie die Mathematik fürchten. Aber jeder, der sich für Meteorologie und Wetter interessiert, weiß im Grunde: ohne Mathematik (und ein bisschen theoretische Physik) geht es nicht. Etliche Formeln muss man sich merken, und man muss mit ihnen arbeiten können. Michael Hantel führt interessierte LeserInnen hin zu den eigentlichen Begriffen, die hinter den Formeln stehen. Diese Begriffswelt in neuer Frische darzustellen ist sein Anliegen. Statt Übungsaufgaben bietet der Autor vorgerechnete Abschätzungen, die das Verstehen des Faches erleichtern. Das Buch ist gegliedert in die Abschnitte Strahlung, Thermodynamik, Hydrodynamik, barotrope Prozesse, Grenzschicht, barokline Prozesse und globale Haushalte. Es bietet ein Gesamtbild der theoretischen Meteorologie auf dem Niveau des Bachelor-Studienganges, und es kann auch als Grundlage für eine vertiefte Beschäftigung mit der Atmosphäre und dem Klima dienen.
    Type of Medium: Monograph available for loan
    Pages: XVIII, 430 S. : graph. Darst., Kt.
    ISBN: 9783827430557
    Language: German
    Note: Inhaltsverzeichnis: I STRAHLUNG. - 1 Allgemeine Strahlungsgesetze. - 1.1 Grundbegriffe. - 1.1.1 Strahlungsfluss und Strahldichte. - 1.1.2 Das Lambertsche Gesetz. - 1.1.3 Vektor der Strahlungsflussdichte. - 1.1.4 Energiedichte. - 1.1.5 Strahlungsheizung und -kühlung. - 1.1.6 Das Spektrum. - 1.2 Gesetze der thermischen Strahlung. - 1.2.1 Kirchhoffsches Gesetz. - 1.2.2 Das Stefan-Boltzmannsche Strahlungsgesetz. - 1.2.3 Das Plancksche Strahlungsgesetz. - 1.2.4 Solare und terrestrische Strahlung. - 1.2.5 Treibhauseffekt. - 1.3 Wechselwirkung von Strahlung und Materie. - 1.3.1 Der optische Weg. - 1.3.2 Das Beersche Gesetz. - 1.3.3 Absorption und Streuung. - 1.4 Die Strahlungsübertragungsgleichung (SÜG). - 1.4.1 SÜG im Weltraum. - 1.4.2 SÜG im Medium ,aber ohne Strahlungsquelle. - 1.4.3 SÜG im Medium mit konstanter Strahlungsquelle. - 1.4.4 Allgemeine SÜG mit variabler Quelle. - 1.4.5 Optisch dichtes Medium. - 1.4.6 Die Strahlungsheizung. - 2 Terrestrische Strahlung. - 2.1 Die planparallele Atmosphäre. - 2.2 Berechnung des optischen Weges. - 2.3 Berechnung der Strahldichte. - 2.4 Berechnung des Flusses. - 2.5 Mathematischer Exkurs: Das Exponentialintegral. - 2.6 Das Konzept der Transmissionsfunktion. - 2.7 Das Konzept der Absorbermasse. - 2.8 Die Goodyschen Flussformeln. - 3 Solare Strahlung. - 3.1 Die SÜG mit Streuung. - 3.2 Die Phasenfunktion. - 3.3 Rayleigh-Streuung. - 3.4 Mikroprozesse. - 4 Die Strahlung als Komponente der atmosphärischen Dynamik. - 4.1 Fernerkundung. - 4.2 Das strahlungskonvektive Gleichgewicht der Atmosphäre. - II THERMODYNAMIK. - 5 Hydrostatik von Geofluiden. - 5.1 Zustandsgrößen. - 5.1.1 Masse, Menge, Teilchenzahl. - 5.1.2 Der Druck. - 5.1.3 Die Temperatur. - 5.2 Die Zustandsgleichung idealer Gase. - 5.2.1 Die universelle Gasgleichung. - 5.2.2 Individuelle Gasgleichungen. - 5.2.3 Gasgemische. - 5.2.4 Die virtuelle Temperatur. - 5.3 Zustandsgleichung für Flüssigkeiten und Festkörper. - 5.4 Das Geopotenzial. - 5.5 Die hydrostatische Gleichung. - 5.6 Die barometrische Höhenformel. - 5.6.1 Isotherme Atmosphäre. - 5.6.2 Polytrope Atmosphäre. - 5.7 Zustandsgrößen des Wassers in der Atmosphäre. - 6 Elementare Thermodynamik. - 6.1 Das Energieprinzip. - 6.2 Grundformen der Energie. - 6.2.1 Mechanische Energie. - 6.2.2 Chemische Energie. - 6.2.3 Der Übergang zur Thermodynamik: Wärme. - 6.3 Das Prinzip der Energieumwandlungen. - 6.3.1 Die Gibbssche Form. - 6.3.2 Prozesse und Zustandsänderungen. - 6.4 Homogene Systeme. - 6.4.1 Spezifische Größen. - 6.4.2 Homogenität der Energie. - 6.5 Thermodynamische Funktionen. - 6.5.1 Die Enthalpie. - 6.5.2 Thermodynamische Potenziale. - 6.6 Spezifische Wärmekapazitäten von Gasen. - 6.6.1 Spezifische Wärmekapazität bei konstantem Volumen. - 6.6.2 Spezifische Wärmekapazität bei konstantem Druck. - 6.6.3 Zusammenhang zwischen den Wärmekapazitäten. - 6.7 Zustandsänderungen von Gasen. - 6.8 Wärme und Entropie. - 6.8.1 Die potenzielle Temperatur. - 6.8.2 Der Föhneffekt. - 6.8.3 Die Poisson-Gleichung. - 6.8.4 Isentroper Temperaturgradient. - 6.8.5 Zustandsänderungen idealer Gase. - 6.8.6 Entropiezufuhr beim Heizen. - 6.8.7 Die Heizung der Atmosphäre. - 6.8.8 Isentrop, adiabatisch, reversibel. - 6.8.9 Entropiezunahme bei Temperaturausgleich. - 6.9 Chemische Energie. - 6.9.1 Das chemische Potenzial. - 6.9.2 Phasenübergänge im Gleichgewicht: Die Verdampfungsenthalpie. - 6.9.3 Die Clausius-Clapeyronsche Gleichung. - 6.10 Latente Wärme. - 6.10.1 Enthalpie feuchter Luft. - 6.10.2 Die äquivalentpotenzielle Temperatur. - III HYDRODYNAMIK. - 7 Erhaltung des Impulses. - 7.1 Die Kraft als Ursache der Bewegung. - 7.2 Der Geopotenzialgradient. - 7.3 Der Druckgradient. - 7.4 Reibungskräfte. - 7.4.1 Scherungskräfte. - 7.4.2 Normalkräfte. - 7.4.3 Gesamte Reibungskraft. - 7.5 Gesamte Kraftwirkung: Bewegungsgleichungen. - 7.5.1 Die Eulersche Gleichung. - 7.5.2 Die Navier-Stokessche Gleichung. - 8 Fluidkinematik. - 8.1 Trajektorien und Stromlinien. - 8.2 Die Bewegungsgleichungen bei starrer Rotation. - 8.2.1 Transformation der Zeitableitung bei starrer Rotation. - 8.2.2 Die Eulerschen Gleichungen im starr rotierenden System. - 8.3 Die hydrostatischen Bewegungsgleichungen. - 8.3.1 2D-Bewegungsgleichungen in z-Koordinaten. - 8.3.2 Vorgriff: Transformation auf Druckkoordinaten. - 8.3.3 2D-Bewegungsgleichungen in p-Koordinaten. - 8.3.4 Natürliche Horizontalkoordinaten. - 8.3.5 2D-Bewegungsgleichungen in natürlichen Koordinaten. - 8.4 Der geostrophische Wind. - 8.5 Der Gradientwind. - 8.6 Kinematische Größen des Strömungsfelds. - 8.6.1 Die Divergenz. - 8.6.2 Die Vorticity. - 8.6.3 Spezielle Strömungsfelder. - 8.7 f-Ebene und ß-Ebene. - 9 Die Kontinuitätsgleichung. - 9.1 Die Kontinuitätsgleichung. - 9.1.1 Fluidvolumen und Divergenz. - 9.1.2 Die Funktionaldeterminante. - 9.2 Generalisierte Koordinaten. - 9.2.1 Einführung in die generalisierten Koordinaten. - 9.2.2 Das Differenzial und die Zeitableitung. - 9.2.3 Der Operator der totalen Zeitableitung. - 9.2.4 Die advektive Zeitableitung. - 9.3 Die fluiddynamische Kontinuitätsgleichung. - 9.4 Die Divergenz in verschiedenen Koordinatensystemen. - 9.4.1 Kugelkoordinaten. - 9.4.2 Rotierende Kugelkoordinaten. - 9.4.3 Geofluidkoordinaten. - 9.4.4 Hydrostatische Vertikalkoordinaten. - 10 Erhaltung der Masse. - 10.1 Globale Massenerhaltung. - 10.2 Massenerhaltung aus lokaler Sicht. - 10.2.1 Die Erhaltung von Autos, Bällen und Kugeln. - 10.2.2 Die Massenkontinuitätsgleichung. - 10.3 Die Massenflussdichte. - 10.4 Die generalisierte Massenkontinuitätsgleichung. - 10.5 Die Massenkontinuitätsgleichung für hydrostatische Koordinaten. - 11 Erhaltung der Energie. - 11.1 Globale Energieerhaltung. - 11.2 Ideale Fluide (mit Potenzial). - 11.2.1 Die Gleichung für die mechanische Energie. - 11.2.2 Die Gleichung für die innere Energie. - 11.2.3 Austausch zwischen mechanischer und innerer Energie. - 11.2.4 Der lokale Energiesatz für ideale Fluide. - 11.3 Reale Fluide. - 11.3.1 Innere Reibung. - 11.3.2 Der lokale Energiesatz für reale Fluide. - 11.4 Erzeugung von Entropie. - 11.4.1 Dissipation. - 11.4.2 Wärmeleitung. - 11.5 Haushaltsgleichungen von Energie und Entropie. - 11.6 Energie- und Entropiehaushalt feuchter Luft. - 12 Transformation der Bewegungsgleichungen. - 12.1 Die Euler-Lagrange-Gleichungen. - 12.2 Kugelkoordinaten A*, Phi*, R*. - 12.3 Rotierende Kugelkoordinaten. - 12.3.1 Zonale Bewegungsgleichung. - 12.3.2 Meridionale Bewegungsgleichung. - 12.3.3 Vertikale Bewegungsgleichung. - 12.3.4 Die Bewegungsgleichungen in Kugelkoordinaten. - 12.4 Was sind Scheinkräfte?. - 12.5 Flachgeofluide. - 12.6 Hydrostatische Koordinaten. - 12.6.1 Die Metrik in hydrostatischen Koordinaten. - 12.6.2 Spezialfall: Kartesische Koordinaten. - 12.6.3 Spezialfall: Druckkoordinaten. - 12.6.4 Spezialfall: Isentrope Koordinaten. - 12.6.5 Wahl der Gleichungen. - IV BAROTROPE PROZESSE. - 13 Elementare Wellentheorie. - 13.1 Schwingungen der ruhenden Atmosphäre. - 13.1.1 Potenzielle Temperatur und potenzielle Dichte. - 13.1.2 Auftriebsschwingungen und statische Stabilität. - 13.2 Darstellung harmonischer Wellen. - 13.2.1 Parameter einer harmonischen Welle. - 13.2.2 Die eindimensionale Wellengleichung. - 13.2.3 Die räumliche Welle. - 13.2.4 Instabilität. - 13.2.5 Dispersion. - 13.3 Oberflächenwellen. - 13.3.1 Gleichungen im Vertikalschnitt. - 13.3.2 Randbedingungen. - 13.3.3 Der horizontale Druckgradient. - 13.3.4 Linearisierung. - 13.3.5 Die Phasengeschwindigkeit von Oberflächenwellen. - 13.4 Interne Wellen. - 14 Das Flachwassermodell (FWM). - 14.1 Barotropie. - 14.1.1 Vertikale Konstanz der horizontalen Druckbeschleunigung. - 14.1.2 Vertikale Konstanz des Horizontalwindes. - 14.1.3 Isotherme und isentrope Atmosphäre. - 14.1.4 Barotropie und Zweidimensionalität. - 14.2 Das barotrope FWM. - 14.2.1 Hydrostasie. - 14.2.2 Horizontale Druckbeschleunigung. - 14.2.3 Horizontale Bewegungsgleichungen. - 14.2.4 Massenerhaltung. - 14.2.5 Die Gleichungen für das FWM. - 14.3 Die Vorticity-Gleichungen. - 14.3.1 Die dynamisch äquivalente Beta-Ebene
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  • 72
    Monograph available for loan
    Monograph available for loan
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    Call number: 3/S 01.0446(2012)
    In: Jahresbericht
    Type of Medium: Monograph available for loan
    Pages: 81 S. : farb. Ill., graph. Darst.
    Edition: Stand: Juli 2013
    Language: German
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  • 73
    Series available for loan
    Series available for loan
    [Zürich] : IAHS (ICSI)
    Associated volumes
    Call number: AWI G7-14-0007
    In: Glacier mass balance bulletin
    Type of Medium: Series available for loan
    Pages: 106 S. : Ill., graph. Darst., Kt.
    Language: English
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  • 74
    Call number: 9/M 07.0421(375) ; https://doi.org/10.1144/SP375
    In: Geological Society special publication
    Description / Table of Contents: The historical links between geology and medicine are surprisingly numerous and diverse. This, the first ever volume dedicated to the subject, contains contributions from an international authorship of geologists, historians and medical professionals.Rocks, minerals, fossils and earths have been used therapeutically since earliest times and details recorded on ancient papyri, clay tablets, medieval manuscripts and early published sources. Pumice was used to clean teeth, antimony to heal wounds, clays as antidotes to poison, gold to cure haemorrhoids and warts, and gem pastes to treat syphilis and the plague, while mineral springs preserved health. Geology was crucial in the development of public health. Medical men who made important contributions to geology include Steno, Worm, Parkinson, Bigsby, William Hunter, Jenner, John Hulke, Conan Doyle, Gorini and various Antarctic explorers.
    Type of Medium: Monograph available for loan
    Pages: vi, 490 Seiten , Illustrationen, Diagramme, Karten
    ISBN: 9781862393561
    Series Statement: Geological Society special publication 375
    Classification:
    Geology
    Language: English
    Note: TABLE OF CONTENTS Geology as medicine and medics as geologists / Christopher J. Duffin / Geological Society, London, Special Publications, 375, 1-6, 23 August 2013, https://doi.org/10.1144/SP375.29 Lithotherapeutical research sources from antiquity to the mid-eighteenth century / Christopher J. Duffin / Geological Society, London, Special Publications, 375, 7-43, 4 September 2013, https://doi.org/10.1144/SP375.25 Cryptopalaeontology / Eladio Liñán, María Liñán and Joaquín Carrasco / Geological Society, London, Special Publications, 375, 45-64, 10 May 2013, https://doi.org/10.1144/SP375.14 The stomatological use of stones cited in the Kitab al-tasrif treatise (Abulcasis, 1000 CE) / Joaquín Carrasco and María Liñán / Geological Society, London, Special Publications, 375, 65-80, 11 December 2012, https://doi.org/10.1144/SP375.7 The gem electuary / Christopher J. Duffin / Geological Society, London, Special Publications, 375, 81-111, 17 December 2012, https://doi.org/10.1144/SP375.9 Medicinal terra sigillata: a historical, geographical and typological review / Arthur Macgregor / Geological Society, London, Special Publications, 375, 113-136, 15 November 2012, https://doi.org/10.1144/SP375.1 Materia medica in the seventeenth-century Paper Museum of Cassiano dal Pozzo / W. D. Ian Rolfe / Geological Society, London, Special Publications, 375, 137-156, 15 November 2012, https://doi.org/10.1144/SP375.3 History of the pharmaceutical use of pumice / Christopher J. Duffin / Geological Society, London, Special Publications, 375, 157-169, 17 December 2012, https://doi.org/10.1144/SP375.8 Pharmaceutical use of gold from antiquity to the seventeenth century / Renzo Console / Geological Society, London, Special Publications, 375, 171-191, 2 April 2013, https://doi.org/10.1144/SP375.12 Bezoar stones, magic, science and art / Maria Do Sameiro Barroso / Geological Society, London, Special Publications, 375, 193-207, 26 February 2013, https://doi.org/10.1144/SP375.11 Some early eighteenth century geological Materia Medica / Christopher J. Duffin / Geological Society, London, Special Publications, 375, 209-233, 2 April 2013, https://doi.org/10.1144/SP375.13 Religiosity and magic in some lithoiatric practices of European folk medicine / Massimo Aliverti / Geological Society, London, Special Publications, 375, 235-242, 23 August 2013, https://doi.org/10.1144/SP375.27 Britain’s spa heritage: a hydrogeological appraisal / John D. Mather / Geological Society, London, Special Publications, 375, 243-260, 2 April 2013, https://doi.org/10.1144/SP375.16 Groundwater – Medicine by the Glassful? / N. S. Robins and P. L. Smedley / Geological Society, London, Special Publications, 375, 261-267, 2 April 2013, https://doi.org/10.1144/SP375.17 Sunday Stone: an enduring metaphor of mining diseases and underground mining conditions / John H. Pearn and Christopher Gardner-Thorpe / Geological Society, London, Special Publications, 375, 269-278, 11 July 2013, https://doi.org/10.1144/SP375.22 The influence of geology in the development of public health / Beverly P. Bergman / Geological Society, London, Special Publications, 375, 279-287, 15 November 2012, https://doi.org/10.1144/SP375.6 From flesh to fossils – Nicolaus Steno’s anatomy of the Earth / Jakob Bek-Thomsen / Geological Society, London, Special Publications, 375, 289-305, 2 April 2013, https://doi.org/10.1144/SP375.15 Diagnosing fossilization in the Nordic Renaissance: an investigation into the correspondence of Ole Worm (1588–1654) / Ella Hoch / Geological Society, London, Special Publications, 375, 307-327, 17 September 2013, https://doi.org/10.1144/SP375.26 Education forms the tender mind / Christopher Gardner-Thorpe / Geological Society, London, Special Publications, 375, 329-337, 23 August 2013, https://doi.org/10.1144/SP375.28 James Parkinson’s ‘system of successive creations’ / Cherry Lewis / Geological Society, London, Special Publications, 375, 339-348, 15 May 2013, https://doi.org/10.1144/SP375.18 From obstetrics to oryctology: inside the mind of William Hunter (1718–1783) / J. J. Liston / Geological Society, London, Special Publications, 375, 349-373, 15 May 2013, https://doi.org/10.1144/SP375.21 John Jeremiah Bigsby, MD: British Army physician and pioneer North American geologist / Leonard G. Wilson / Geological Society, London, Special Publications, 375, 375-394, 15 May 2013, https://doi.org/10.1144/SP375.20 Five eighteenth-century medical polymaths / Gillian C. Hull / Geological Society, London, Special Publications, 375, 395-407, 15 November 2012, https://doi.org/10.1144/SP375.5 John Whitaker Hulke, surgeon and palaeontologist / Simon Wills / Geological Society, London, Special Publications, 375, 409-427, 22 February 2013, https://doi.org/10.1144/SP375.10 Dr Arthur Conan Doyle’s contribution to the popularity of pterodactyls / David M. Martill and Tony Pointon / Geological Society, London, Special Publications, 375, 429-443, 15 May 2013, https://doi.org/10.1144/SP375.19 Physicians and their contribution to the early history of earth sciences in Austria / Daniela Claudia Angetter, Bernhard Hubmann and Johannes Seidl / Geological Society, London, Special Publications, 375, 445-454, 15 November 2012, https://doi.org/10.1144/SP375.4 Medical geologists during the Heroic Age of Antarctic exploration / Henry Guly / Geological Society, London, Special Publications, 375, 455-462, 15 November 2012, https://doi.org/10.1144/SP375.2 Vomiting stones: mental illness and forensic medicine in 18th century Italy / Alessandro Porro, Carlo Cristini, Bruno Falconi, Antonia Francesca Franchini and Lorenzo Lorusso / Geological Society, London, Special Publications, 375, 463-468, 4 July 2013, https://doi.org/10.1144/SP375.23 Geology, conservation and dissolution of corpses by Paolo Gorini (1813–1881) / Lorenzo Lorusso, Bruno Falconi, Francesca Antonia Franchini and Alessandro Porro / Geological Society, London, Special Publications, 375, 469-474, 9 July 2013, https://doi.org/10.1144/SP375.24
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