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  • Books  (47)
  • Cambridge : Cambridge University Press
  • Cambridge [u.a.] : Cambridge Univ. Press
  • 1
    Call number: AWI G9-91-0458
    In: World and regional geology, 1
    Type of Medium: Monograph available for loan
    Pages: VIII, 722 Seiten , Illustrationen
    Edition: First published
    ISBN: 0521372666
    Series Statement: World and regional geology 1
    Language: English
    Note: Contents Preface Acknowledgements Crustal development: the craton Uplift history of the East Antarctic shield: constraints imposed by high-pressure experimental studies of Proterozoic mafic dykes / S.M. KUEHNER & D.H. GREEN The crustal evolution of some East Antarctic granulites / S.L. HARLEY Structural evolution of the Bunger Hills area of East Antarctica / P. DING & P.R. JAMES Structural geology of the early Precambrian gneisses of northern Fold Island, Mawson Coast, East Antarctica / P.R. JAMES, P. DING & L. RANKIN The intrusive Mawson charnockites: evidence for a compressional plate margin selling of the Proterozoic mobile belt of East Antarctica / D.N. YOUNG & D.J. ELLIS A review of the field relations, petrology and geochemistry of the Borgmassivet intrusions in the Grunehogna province, western Dronning Maud Land, Antarctica / J.R. KRYNAUW, B.R. WATTERS, D.R. HUNTER & A.H. WILSON Volcanic rocks of the Proterozoic Jutulstraumen Group in western Dronning Maud Land, Antarctica / B.R. WATTERS, J.R. KRYNAUW & D.R. HUNTER The timing and nature of faulting and jointing adjacent to the Pencksokket, western Dronning Maud Land, Antarctica / G.H. GRANTHAM & D.R. HUNTER The tectonic and metamorphic evolution of H.U. Sverdrupfjella, western Dronning Maud Land, Antarctica / A.R. ALLEN Granulites of northern H.U. Sverdrupfjella, western Dronning Maud Land: metamorphic history from garnet-pyroxene assemblages, coronas and hydration reactions / P.B. GROENEWALD & D.R. HUNTER A structural survey of Precambrian rocks, Heimefrontfjella, western Neuschwabenland, with special reference to the basic dykes / W. FIELITZ & G. SPAETH Reflection seismic measurements in western Neuschwabenland / A. HUNGELJNG & F. THYSSEN Geology and metamorphism of the Sør Rondane Mountains, East Antarctica / K. SHIRAISHI, M. ASAMI, H. ISHIZUKA, H. KOJIMA. S. KOJIMA, Y. OSANAI, T. SAKIYAMA, Y. TAKAHASHI, M. YAMAZAKI & S. YOSHIKURA Late Proterozoic paired metamorphic complexes in East Antarctica, with special reference to the tectonic significance of ultramafic rocks / Y. HIROI, K. SHIRAISHI & Y. MOTOYOSHI Petrographic and structural characteristics of a part of the East Antarctic craton, Queen Maud Land, Antarctica / M.K. KAUL, R.K. SINGH, D. SRIVASTAVA, S. JAYARAM & S. MUKERJI Structural and petrological evolution of basement rocks in the Schirmacher Hills, Queen Maud Land, East Antarctica (Extended abstract) / S. SENGUPTA Metamorphic evolution of granulites from the Rauer Group, East Antarctica: evidence for decompression following Proterozoic collision / S.L. HARLEY Fault tectonics and magmatic ages in the Jelly Oasis area, Mac. Robertson Land: a contribution to the Lambert Rift development / J. HOFMANN Major fracture trends near the western margin of East Antarctica / P.D. MARSH Mesozoic magmatism in Greater Antarctica: implications for Precambrian plate tectonics / T.S. BREWER & P.D. CLARKSON Crustal development: the Transantarctic Mountains Sedimentary palaeoenvironments of_the Riphaean Turnpike Bluff Group, Shackleton Range / H.-J. PAECH, K. HAHNE & P. VOGLER Precambrian ancestry of the Asgard Formation (Skelton Group): Rb-Sr age of basement metamorphic rocks in the Dry Valley region, Antarctica / C.J. ADAMS & P.F. WHITLA The Priestley Formation, Terra Nova Bay, and its regional significance / D.N.B. SKINNER The myth of the Nimrod and Beardmore orogenies / E. STUMP, R.J. KORSCH & D.G. EDGERTON Age of the metamorphic basement of the Salamander and Lanterman ranges, northern Victoria Land, Antarctica / C.J. ADAMS & A. HOHNDORF Recovery and recrystallization of quartz and 'crystallinity' of illite in the Bowers and Robertson Bay terranes, northern Victoria Land, Antarctica / W. BUGGISCH & G. KLEINSCHMIDT The boundary of the East Antarctic craton on the Pacific margin / N.W. ROLAND Northern Victoria Land, Antarctica: hybrid geological, aeromagnetic and Landsat-physiographic maps / B.K. LUCCHITTA, J.A. BOWELL, F. TESSENSOHN & J.C. BEHRENDT Setting and significance of the Shackleton Limestone, central Transantarctic Mountains / A.J. ROWELL & M.N. REES Lower-mid-Palaeozoic sedimentation and tectonic patterns on the palaeo-Pacific margin of Antarctica / M.G. LAIRD The pre-Devonian Palaeozoic elastics of the central Transantarctic Mountains: stratigraphy and depositional settings / M.N. REES & A.J. ROWELL The Devonian Pacific margin of Antarctica / M.A. BRADSHAW The palaeo-Pacific margin as seen from East Antarctica / J.W. COLLINSON Permo-Carboniferous glacial sedimentation in the central Transantarctic Mountains and its palaeotectonic implications (Extended abstract) / J.M.G. MILLER & B.J. WAUGH Clay mineralogy and provenance of fine-grained Permian elastics, central Transantarctic Mountains / L.A. KRISSEK & T.C. HORNER Evidence for a low-gradient alluvial fan from the palaeo-Pacific margin in the Upper Permian Buckley Formation, Beardmore Glacier area, Antarctica / J.L. ISBELL Provenance and tectonic implications of sandstones within the Permian Mackellar Formation, Beacon Supergroup of East Antarctica / R.S. FRISCH & M.F. MILLER Crustal development: Weddell Sea-Ross Sea region Evolution of the Gondwana plate boundary in the Weddell Sea area / Y. KRISTOFFERSEN & K. HINZ Petrology and palynology of Weddell Sea glacial sediments: implications for subglacial geology / J.B. ANDERSON, B.A. ANDREWS, L.R. BARTEK & E.M. TRUSWELL A multichannel seismic profile across the Weddell Sea margin of the Antarctic Peninsula: regional tectonic implications / P.F. BARKER & M.J. LONSDALE Verification of crustal sources for satellite elevation magnetic anomalies in West Antarctica and the Weddell Sea and their regional tectonic implications / M.E. GHIDELLA, C.A. RAYMOND & J.L. LABRECQUE Aeromagnetic studies of crustal blocks and basins in West Antarctica: a review / S.W. GARRETT Palaeomagnetic studies of Palaeozoic rocks from the Ellsworth Mountains, West Antarctica / M. FUNAKI. M. YOSHIDA & H. MATSUEDA Seismic reflection profiling of a sediment-filled graben beneath ice stream B, West Antarctica / S.T. ROONEY. D.D. BLANKENSHIP, R.B. ALLEY & C.R. BENTLEY The aeromagnetic survey of northern Victoria Land and the western Ross Sea during GANOVEX IV and a geophysical-geological interpretation / W. BOSUM, D. DAMASKE, J.C. BEHRENDT & R. SALTUS The Ross Sea rift system, Antarctica: structure, evolution and analogues / F. TESSENSOHN & G. WORNER Structural and depositional controls on Cenozoic and (?)Mesozoic strata beneath the western Ross Sea / A.K. COOPER, F.J. DAVEY & J.C. BEHRENDT Crustal extension and origin of sedimentary basins beneath the Ross Sea and Ross Ice Shelf, Antarctica / A.K. COOPER, F.J. DAVEY & K. HINZ Chemical characteristics of greywacke and palaeosol of early Oligocene or older sedimentary breccia, Ross Sea DSDP Site 270 / A.B. FORD Extensive volcanism and related tectonism beneath the western Ross Sea continental shelf, Antarctica: interpretation of an aeromagnetic survey / J.C. BEHRENDT, H.J. DUERBAUM, D. DAMASKE, R. SALTUS, W. BOSUM & A.K. COOPER Geochemistry and tectonic implications of lower-crustal granulites included in Cenozoic volcanic rocks of southern Victoria Land / R.l. KALAMARIDES & J.H. BERG Geology, petrology and tectonic implications of crustal xenoliths in Cenozoic volcanic rocks of southern Victoria Land / J.H. BERG Geochemistry and petrology of ultramafic xenoliths of the Erebus volcanic province / F.M. MCGIBBON Lithospheric flexure induced by the load of Ross Archipelago, southern Victoria Land, Antarctica / T.A. STERN, F.J. DAVEY & G. DELISLE The structure and seismic activity of Mount Erebus, Ross Island / K. KAMINUMA & K. SHIBUYA Crustal development: the Pacific margin Mid-Palaeozoic basement in eastern Graham Land and its relation to the Pacific margin of Gondwana / A.J. MILNE & l.L. MILLAR Basement gneisses in north-western Palmer Land: further evidence for pre-Mesozoic rocks in Lesser Antarctica / S.M. HARRISON & B.A. PIERCY Granitoids of the Ford Ranges, Marie Byrd Lan
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  • 2
    Call number: PIK N 071-01-0507
    In: IPCC Special Report
    Type of Medium: Monograph available for loan
    Pages: 377 p.
    ISBN: 0521804957
    Series Statement: IPCC Special Report
    Location: A 18 - must be ordered
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  • 3
    Call number: PIK B 160-10-0056
    Description / Table of Contents: Contents: 1. Introduction ; 2. Origins and development of the EU ETS ; 3. Allowance allocation ; 4. Effects of free allocation ; 5. Market development ; 6. Emissions abatement ; 7. Industrial competitiveness ; 8. Costs ; 9. Linkage and global implications ; 10. Conclusions ; Annex: The interaction between the EU ETS and European electricity markets
    Type of Medium: Monograph available for loan
    Pages: XXI, 368 S. : graph. Darst.
    ISBN: 9780521196475
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  • 4
    Monograph available for loan
    Monograph available for loan
    Cambridge [u.a.] : Cambridge Univ. Press
    Call number: 19/M 98.0482 ; AWI S1-98-0189
    Type of Medium: Monograph available for loan
    Pages: xix, 1008 S.
    ISBN: 052155506X
    Classification:
    C.1.9.
    Language: English
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  • 5
    Monograph available for loan
    Monograph available for loan
    Cambridge [u.a.] : Cambridge Univ. Press
    Call number: PIK N 630-11-0269
    Description / Table of Contents: Contents: Preface ; 1. The succulent ; 2. Climate and vegetation of deserts ; 3. The Namib desert ; 4. Physiological implications ; 5. Life strategies of succulents
    Type of Medium: Monograph available for loan
    Pages: XIX, 340 S. : Ill., graph. Darst.
    ISBN: 0521244684
    Series Statement: Cambridge studies in ecology
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  • 6
    Monograph available for loan
    Monograph available for loan
    Cambridge [u.a.] : Cambridge Univ. Press
    Call number: 20-3/M 10.0026
    Description / Table of Contents: Contents: Part I. The Building Blocks of Soil: 1. Introduction; 2. Basic concepts: soil morphology; 3. Basic concepts: soil horizonation; 4. Basic concepts: soil mineralogy; 5. Basic concepts: soil physics; 6. Basic concepts: soil organisms; 7. Soil classification, mapping and maps; Part II. Soil Genesis: From Parent Material to Soil: 8. Soil parent materials; 9. Weathering; 10. Pedoturbation; 11. Models and concepts of soil formation; 12. Soil genesis and profile differentiation; Part III. Soil Geomorphology: 13. Soil geomorphology and hydrology; 14. Soil development and surface exposure dating; 15. Soils, paleosols and paleoenvironmental reconstruction; 16. Conclusions and perspectives
    Type of Medium: Monograph available for loan
    Pages: XIII, 817 S.
    Edition: 3rd print.
    ISBN: 9780521812016
    Classification:
    Geography and Geomorphology
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  • 7
    Monograph available for loan
    Monograph available for loan
    Cambridge : Cambridge University Press
    Call number: MOP 29721
    Type of Medium: Monograph available for loan
    Pages: VII, 145 S.
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  • 8
    Call number: AWI A13-12-0037
    Description / Table of Contents: Contents: From Richardson to early numerical weather prediction. - The evolution and future research goals for general circulation models. - Beyond prediction to climate modeling and climate control: new perspectives from the papers of Harry Wexler, 1945 - 1962. - Synergies between numerical weather prediction and general circulation climate models. - Contributions of observational studies to the evaluation and diagnosis of atmospheric GCM simulations. - Coupling atmospheric general circulation to oceans. - Coupling atmospheric circulation models to bio-physical, bio-chemical, and biological processes at the land surface. - The evolution of complexity in general circulation models. - 10. The co-evolution of climate models and the Intergovernmental Panel on Climate Change
    Description / Table of Contents: Presenting a comprehensive discussion of general circulation models of the atmosphere, this book covers their historical and contemporary development, their societal context, and current efforts to integrate these models into wider earth-system models. Leading researchers provide unique perspectives on the scientific breakthroughs, overarching themes, critical applications, and future prospects for atmospheric general circulation models. Key interdisciplinary links to other subject areas such as chemistry, oceanography and ecology are also highlighted. This book is a core reference for academic researchers and professionals involved in atmospheric physics, meteorology and climate science, and can be used as a resource for graduate-level courses in climate modeling and numerical weather prediction. Given the critical role that atmospheric general circulation models are playing in the intense public discourse on climate change, it is also a valuable resource for policy makers and all those concerned with the scientific basis for the ongoing public-policy debate" The aim of this volume is to describe the development of atmospheric general circulation models. We are motivated to do so by the central and essential role of these models in understanding, simulating, and predicting the atmosphere on a wide range of time scales. While atmospheric general circulation models are an important basis for many societal decisions, from responses to changing weather to deliberations on responding to anthropogenic climate change, the scientific basis for these models, and how they have come about and continue to develop, are not widely known. Our objective in editing this volume is to provide a perspective on these matters."
    Type of Medium: Monograph available for loan
    Pages: XV, 255 S. : Ill., graph. Darst., Kt.
    Edition: 1. publ.
    ISBN: 9780521190060
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  • 9
    Monograph available for loan
    Monograph available for loan
    Cambridge : Cambridge University Press
    Call number: AWI A13-12-0036
    Description / Table of Contents: The modeling of the past, present, and future climates is of fundamental importance to the issue of climate change and variability. Climate change and climate modeling provides a solid foundation for science students in all disciplines for our current understanding of global warming and important natural climate variations such as El Niño, and lays out the essentials of how climate models are constructed. As issues of climate change and impacts of climate variability become increasingly important, climate scientists must reach out to science students from a range of disciplines. Climate models represent one of our primary tools for predicting and adapting to climate change. An understanding of their strengths and limitations - and of what aspects of climate science are well understood and where quantitative uncertainities arise - can be communicated very effectively to students from a broad range of the sciences. This book will provide a basis for students to make informed decisions concerning climate change, whether they go on to study atmospheric science at a higher level or not. The book has been developed over a number of years form the course that the author teaches at UCLA. It has been extensively class-tested by hundreds of students, and assumes no previous background in atmospheric science except basic calculus and physics.
    Type of Medium: Monograph available for loan
    Pages: XV, 282 Seiten , Illustrationen
    Edition: 1. published 2011, reprinted 2012
    ISBN: 9780521602433
    Language: English
    Note: Contents: Preface. - 1. Overview of climate variability and climate science. - 1.1 Climate dynamics, climate change and climate prediction. - 1.2 The chemical and physical climate system. - 1.2.1 Chemical and physical aspects of the climate system. - 1.2.2 El Niño and global warming. - 1.3 Climate models: a brief overview. - 1.4 Global change in recent history. - 1.4.1 Trace gas concentrations. - 1.4.2 A word on the ozone hole. - 1.4.3 Some history of global warming studies. - 1.4.4 Global temperatures. - 1.5 El Niño: an example of natural climate variability. - 1.5.1 Some history of El Niño studies. - 1.5.2 Observations of El Niño: the 1997-98 event. - 1.5.3 The first El Niño forecast with a coupled ocean-atmosphere model. - 1.6 Paleoclimate variability. - Notes. - 2. Basics of global climate. - 2.1 Components and phenomena in the climate system. - 2.1.1 Time and space scales. - 2.1.2 Interactions among scales and the parameterization problem. - 2.2 Basics of radiative forcing. - 2.2.1 Blackbody radiation. - 2.2.2 Solar energy input. - 2.3 Globally averaged energy budget: first glance. - 2.4 Gradients of radiative forcing and energy transports. - 2.5 Atmospheric circulation. - 2.5.1 Vertical structure. - 2.5.2 Latitude structure of the circulation. - 2.5.3 Latitude-Iongitude dependence of atmospheric climate features. - 2.6 Ocean circulation. - 2.6.1 Latitude-longitude dependence of oceanic climate features. - 2.6.2 The ocean vertical structure. - 2.6.3 The ocean thermohaline circulation. - 2.7 Land surface proeesses. - 2.8 The carbon cycle. - Notes. - 3. Physical processes in the climate system. - 3.1 Conservation of momentum. - 3.1.1 Coriolis force. - 3.1.2 Pressure gradient force. - 3.1.3 Velocity equations. - 3.1.4 Application: geostrophic wind. - 3.1.5 Pressure-height relation: hydrostatic balance. - 3.1.6 Application: pressure coordinates. - 3.2 Equation of state. - 3.2.1 Equation of state for the atmosphere: ideal gas law. - 3.2.2 Equation of state for the ocean. - 3.2.3 Application: atmospheric height-pressure-temperature relation. - 3.2.4 Application: thermal circulations. - 3.2.5 Application: sea level rise due to oceanic thermal expansion. - 3.3 Temperature equation. - 3.3.1 Ocean temperature equation. - 3.3.2 Temperature equation for air. - 3.3.3 Application: the dry adiabatic lapse rate near the surface. - 3.3.4 Application: decay of a sea surface temperature anomaly. - 3.3.5 Time derivative following the parcel. - 3.4 Continuity equation. - 3.4.1 Oceanic continuity equation. - 3.4.2 Atmospheric continuity equation. - 3.4.3 Application: coastal upwelling. - 3.4.4 Application: equatorial upwelling. - 3.4.5 Application: conservation of warm water mass in an idealized layer above the thermocline. - 3.5 Conservation of mass applied to moisture. - 3.5.1 Moisture equation for the atmosphere and surface. - 3.5.2 Sources and sinks of moisture, and latent heat. - 3.5.3 Application: surface melting on an ice sheet. - 3.5.4 Salinity equation for the ocean. - 3.6 Moist processes. - 3.6.1 Saturation. - 3.6.2 Saturation in convection; lifting condensation level. - 3.6.3 The moist adiabat and lapse rate in convective regions. - 3.6.4 Moist convection. - 3.7 Wave processes in the atmosphere and ocean. - 3.7.1 Gravity waves. - 3.7.2 Kelvin waves. - 3.7.3 Rossby waves. - 3.8 Overview. - Notes. - 4. El Niño and year-to-year climate prediction. - 4.1 Recap of El Niño basics. - 4.1.1 The Bjerknes hypothesis. - 4.2 Tropical Pacific climatology. - 4.3 ENSO mechanisms I: extreme phases. - 4.4 Pressure gradients in an idealized upper layer. - 4.4.1 Subsurface temperature anomalies in an idealized upper layer. - 4.5 Transition into the 1997-98 El Niño. - 4.5.1 Subsurface temperature measurements. - 4.5.2 Subsurface temperature anomalies during the onset of El Niño. - 4.5.3 Subsurface temperature anomalies during the transition to La Niña. - 4.6 El Niño mechanisms II: dynamics of transition phases. - 4.6.1 Equatorial jets and the Kelvin wave. - 4.6.2 The Kelvin wave speed. - 4.6.3 What sets the width of the Kelvin wave and equatorial jet?. - 4.6.4 Response of the ocean to a wind anomaly. - 4.6.5 The delayed oscillator model and the recharge oscillator model. - 4.6.6 ENSO transition mechanism in brief. - 4.7 El Niño prediction. - 4.7.1 Limits to skill in ENSO forecasts. - 4.8 El Niño remote impacts: teleconnections. - 4.9 Other interannual climate phenomena. - 4.9.1 Hurricane season forecasts. - 4.9.2 Sahel drought. - 4.9.3 North Atlantic oscillation and annular modes. - Notes. - 5. Climate models. - 5.1 Constructing a climate model. - 5.1.1 An atmospheric model. - 5.1.2 Treatment of sub-grid-scale processes. - 5.1.3 Resolution and computational cost. - 5.1.4 An ocean model and ocean-atmosphere coupling. - 5.1.5 Land surface, snow, ice and vegetation. - 5.1.6 Summary of principal climate model equations. - 5.1.7 Climate system modeling. - 5.2 Numerical representation of atmospheric and oceanic equations. - 5.2.1 Finite-difference versus spectral models. - 5.2.2 Time-stepping and numerical stability. - 5.2.3 Staggered grids and other grids. - 5.2.4 Parallel computer architecture. - 5.3 Parameterization of small-scale processes. - 5.3.1 Mixing and surface fluxes. - 5.3.2 Dry convection. - 5.3.3 Moist convection. - 5.3.4 Land surface processes and soil moisture. - 5.3.5 Sea ice and snow. - 5.4 The hierarchy of climate models. - 5.5 Climate simulations and climate drift. - 5.6 Evaluation of climate model simulations for present-day climate. - 5.6.1 Atmospheric model climatology from specified SST. - 5.6.2 Climate model simulation of climatology. - 5.6.3 Simulation of ENSO response. - Notes. - 6. The greenhouse effect and climate feedbacks. - 6.1 The greenhouse effect in Earth's current climate. - 6.1.1 Global energy balance. - 6.1.2 A global-average energy balance model with a one-layer atmosphere. - 6.1.3 Infrared emissions from a layer. - 6.1.4 The greenhouse effect: example with a completely IR-absorbing atmosphere. - 6.1.5 The greenhouse effect in a one-layer atmosphere, global-average model. - 6.1.6 Temperatures from the one-layer energy balance model. - 6.2 Global warming I: example in the global-average energy balance model. - 6.2.1 Increases in the basic greenhouse effect. - 6.2.2 Climate feedback parameter in the one-layer global-average model. - 6.3 Climate feedbacks. - 6.3.1 Climate feedback parameter. - 6.3.2 Contributions of climate feedbacks to global-average temperature response. - 6.3.3 Climate sensitivity. - 6.4 The water vapor feedback. - 6.5 Snow/ice feedback. - 6.6 Cloud feedbacks. - 6.7 Other feedbacks in the physical climate system. - 6.7.1 Stratospheric cooling. - 6.7.2 Lapse rate feedback. - 6.8 Climate response time in transient climate change. - 6.8.1 Transient climate change versus equilibrium response experiments. - 6.8.2 A doubled-CO2 equilibrium response experiment. - 6.8.3 The role of the oceans in slowing warming. - 6.8.4 Climate sensitivity in transient climate change. - Notes. - 7. Climate model scenarios for global warming. - 7.1 Greenhouse gases, aerosols and other climate forcings. - 7.1.1 Scenarios, forcings and feedbacks. - 7.1.2 Forcing by sulfate aerosols. - 7.1.3 Commonly used scenarios. - 7.2 Global-average response to greenhouse warming scenarios. - 7.3 Spatial patterns of warming for time-dependent scenarios. - 7.3.1 Comparing projections of different climate models. - 7.3.2 Multi-model ensemble averages. - 7.3.3 Polar amplification of warming. - 7.3.4 Summary of spatial patterns of the response. - 7.4 Ice, sea level, extreme events. - 7.4.1 Sea ice and snow. - 7.4.2 Land ice. - 7.4.3 Extreme events. - 7.5 Summary: the best-estimate prognosis. - 7.6 Climate change observed to date. - 7.6.1 Temperature trends and natural variability: scale dependence. - 7.6.2 Is the observed trend consistent with natural variability or anthropogenic forcing?. - 7.6.3 Sea ice, land ice, ocean heat storage and sea level rise. - 7.7 Emissions
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  • 10
    Monograph available for loan
    Monograph available for loan
    Cambridge : Cambridge University Press
    Call number: 19/M 15.0012
    Description / Table of Contents: Content: 1. Introduction to information theory; 2. Probability, entropy and inference; More about inference; Part I. Data Compression: 4. The source coding theorem; 5. Symbol codes; 6. Stream codes; 7. Codes for integers; Part II. Noisy-Channel Coding: 8. Dependent random variables; 9. Communication over a noisy channel; 10. The noisy-channel coding theorem; 11. Error-correcting codes and real channels; Part III. Further Topics in Information Theory: 12. Hash codes; 13. Binary codes; 14. Very good linear codes exist; 15. Further exercises on information theory; 16. Message passing; 17. Constrained noiseless channels; 18. Crosswords and codebreaking; 19. Why have sex? Information acquisition and evolution; Part IV. Probabilities and Inference: 20. An example inference task: clustering; 21. Exact inference by complete enumeration; 22. Maximum likelihood and clustering; 23. Useful probability distributions; 24. Exact marginalization; 25. Exact marginalization in trellises; 26. Exact
    Type of Medium: Monograph available for loan
    Pages: XII, 628 S. : graph. Darst.
    Edition: 13. print.
    ISBN: 9780521642989
    Classification:
    Mathematics
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