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  • Books  (7)
  • Cambridge : Cambridge University Press
  • Paris : OECD/IEA
  • 2005-2009  (7)
  • 1995-1999
  • Reading room  (7)
  • 1
    Monograph available for loan
    Monograph available for loan
    Cambridge : Cambridge University Press
    Call number: 20-2/M 12.0169
    Description / Table of Contents: Content: 1. Energy metabolism and phylogenetic diversity of sulphate-reducing bacteria Rudolf K. Thauer, Erko Stackebrandt and W. Allan Hamilton; 2. Molecular strategies for studies of natural populations of sulphate-reducing micro-organisms David A. Stahl, Alexander Loy and Michael Wagner; 3. Functional genomics of sulphate-reducing prokaryotes Ralf Rabus and Axel Strittmatter; 4. Evaluation of stress response in sulphate-reducing bacteria through genome analysis J. D. Wall, H. C. Bill Yen, and E. C. Drury; 5. Response of sulphate-reducing bacteria to oxygen Henrik Sass and Heribert Cypionka; 6. Biochemical, proteomic and genetic characterisation of oxygen survival mechanisms in sulphate-reducing bacteria of the genus Desulfovibrio Alain Dolla, Donald M. Kurtz, Jr., Miguel Teixeira and Gerrit Voordouw; 7. Biochemical, genetic and genomic characterisation of anaerobic electron transport pathways in sulphate-reducing delta-proteobacteria Ines A. C. Pereira, Shelley A. Haveman and Gerrit Voordouw; 8. Dissimilatory nitrate and nitrite ammonification by sulphate-reducing eubacteria Jose J. G. Moura, Pablo Gonzalez, Isabel Moura and Guy Fauque; 9. Anaerobic degradation of hydrocarbons with sulphate as electron acceptor Friedrich Widdel, Florin Musat, Katrin Knittel and Alexander Galushko; 10. Sulphate-reducing bacteria from oil field environments and deep-sea hydrothermal vents Bernard Ollivier, Jean-Luc Cayol and Guy Fauque; 11. The sub-seafloor biosphere and sulphate-reducing prokaryotes: their presence and significance R. John Parkes and Henrik Sass; 12. Eco-physiology of sulphate-reducing bacteria in environmental biofilms Satoshi Okabe; 13. Bioprocess engineering of sulphate reduction for environmental technology Piet N. L. Lens, Marcus Vallero and Giovanni Esposito; 14. Bioremediation of metals and metalloids by precipitation and cellular binding Simon L. Hockin and Geoffrey M. Gadd; 15. Enzymatic and genomic studies on the reduction of mercury and selected metallic oxy-anions by sulphate-reducing bacteria Mireille Bruschi, Larry L. Barton, Florence Goulhen, and Richard M. Plunkett; 16. Sulphate-reducing bacteria and their role in corrosion of ferrous materials Iwona B. Beech and Jan A. Sunner; 17. Anaerobic metabolism of nitroaromatic compounds and bioremediation of explosive by sulphate-reducing bacteria Raj Boopathy; 18. Sulphate-reducing bacteria and the human large intestine George T. Macfarlane, John H. Cummings and Sandra Macfarlan.
    Type of Medium: Monograph available for loan
    Pages: XVIII, 533 S. , ill. (some col.)
    Edition: 1st ed. 2007, thies digitally version
    ISBN: 9780521123990
    Classification:
    Geography and Geomorphology
    Note: Erscheinungsjahr in Vorlageform:2009
    Location: Reading room
    Branch Library: GFZ Library
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  • 2
    Monograph available for loan
    Monograph available for loan
    Cambridge : Cambridge University Press
    Call number: 4/M 11.0330
    Description / Table of Contents: The fourth edition of Physics of the Earth maintains the original philosophy of this classic graduate textbook on fundamental solid earth geophysics, while being completely revised, updated, and restructured into a more modular format to make individual topics even more accessible. Building on the success of previous editions, which have served generations of students and researchers for nearly forty years, this new edition will be an invaluable resource for graduate students looking for the necessary physical and mathematical foundations to embark on their own research careers in geophysics. Several completely new chapters have been added and a series of appendices, presenting fundamental data and advanced mathematical concepts, and an extensive reference list, are provided as tools to aid readers wishing to pursue topics beyond the level of the book. Table of contens: Preface; 1. Origin and history of the Solar System; 2. Composition of the Earth; 3. Radioactivity, isotopes and dating; 4. Isotopic clues to the age and origin of the Solar System; 5. Evidence of the Earth's evolutionary history; 6. Rotation, figure of the Earth and gravity; 7. Precession, wobble and rotational irregularities; 8. Tides and the evolution of the lunar orbit; 9. The satellite geoid, isostasy and post-glacial rebound; 10. Elastic and inelastic properties; 11. Deformation of the crust: rock mechanics; 12. Tectonics; 13. Convective and tectonic stresses; 14. Kinematics of the earthquake process; 15. Earthquake dynamics; 16. Seismic wave propagation; 17. Seismological determination of Earth structure; 18. Finite strain and high pressure equations of state; 19. Thermal properties; 20. The surface heat flux; 21. The global energy budget; 22. Thermodynamics of convection; 23. Thermal history; 24. The geomagnetic field; 25. Rock magnetism and paleomagnetism; 26. Alternative energy sources and natural climate variations: some geophysical background; Appendix A. General reference data; Appendix B. Orbital dynamics (Kepler's laws); Appendix C. Spherical harmonic functions; Appendix D. Relationships between elastic moduli of an isotropic solid; Appendix E. Thermodynamic parameters and derivative properties; Appendix F. An Earth model: mechanical properties; Appendix G. A thermal model of the Earth; Appendix H. Radioactive isotopes; Appendix I. A geological time scale 2004; Appendix J. Problems; References; Index.
    Type of Medium: Monograph available for loan
    Edition: 4th ed., reprint. 2011
    ISBN: 9780521873628
    Classification:
    Geophysics
    Location: Reading room
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  • 3
    Monograph available for loan
    Monograph available for loan
    Cambridge : Cambridge University Press
    Call number: 7/M 10.0019
    Description / Table of Contents: Contents: 1. Introduction; 2. Electromagnetic waves in free space; 3. Interaction of electromagnetic radiation with matter; 4. Interaction of electromagnetic radiation with the Earth's atmosphere; 5. Photographic systems; 6. Electro-optical systems; 7. Passive microwave systems; 8. Ranging systems; 9. Scattering systems; 10. Platforms for remote sensing; 11. Data processing; Appendix 1. The Global Positioning System; Appendix 2. Data; Bibliography; Answers and hints to numerical problems
    Type of Medium: Monograph available for loan
    Pages: xv, 343 S.
    Edition: 2nd ed., 8th printing
    ISBN: 0521660343 , 0-521-66948-0
    Classification:
    Photogrammetry, Remote Sensing
    Location: Reading room
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  • 4
    Monograph available for loan
    Monograph available for loan
    Cambridge : Cambridge University Press
    Call number: 10/M 09.0222
    Description / Table of Contents: Contents: 1. Introduction; 2. Physical properties of magma; 3. Intrusion of magma; 4. Forms of igneous bodies; 5. Cooling of igneous bodies and other diffusion processes; 6. Classification of igneous rocks; 7. Introduction to thermodynamics; 8. Free energy and phase equilibria; 9. Thermodynamics of solutions; 10. Phase equilibria in igneous systems; 11. Effects of volatiles on melt equilibria; 12. Crystal growth; 13. Isotope geochemistry related to petrology; 14. Magmatic processes; 15. Igneous rock associations; 16. Metamorphism and metamorphic facias; 17. Deformation and textures of metamorphic rocks; 18. Graphic analysis of metamorphic mineral assemblages; 19. Geothermometry, geobarometry, and mineral reactions among solid solutions; 20. Mineral reactions involving H2O and CO2; 21. Material transport during metamorphism; 22. Pressure-temperature-time paths and heat transfer during metamorphism; 23. Origin of rocks
    Type of Medium: Monograph available for loan
    Pages: xviii, 686 S.
    Edition: 2nd ed.
    ISBN: 0521880068
    Classification:
    Petrology, Petrography
    Location: Reading room
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  • 5
    Monograph available for loan
    Monograph available for loan
    Cambridge : Cambridge University Press
    Call number: 15/M 07.0474
    Description / Table of Contents: Contents: Part I. Basic Principles: 1. The tectonic stress field; 2. Pore pressure at depth in sedimentary basins; 3. Basic constitutive laws; 4. Rock failure in compression, tension and shear; 5. Fractures and faults in three dimensions; Part II. Measuring Stress Orientation and Magnitude: 6. Compressive and tensile failures in vertical wells; 7. Determination of S3 from minifracs and extended leak-off tests and constraining the magnitude of SHmax from wellbore failures in vertical wells; 8. Wellbore failure and stress determination in deviated wells; 9. Stress fields - from tectonic plates to reservoirs around the world; Part III. Applications: 10. Minimizing wellbore instability; 11. Critically stressed faults and fluid flow; 12. Reservoir depletion.
    Type of Medium: Monograph available for loan
    Pages: xii, 448 S.
    ISBN: 0521770696
    Classification:
    Deposits
    Location: Reading room
    Branch Library: GFZ Library
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  • 6
    Monograph available for loan
    Monograph available for loan
    Cambridge : Cambridge University Press
    Call number: M 05.0438 ; M 07.0130
    Type of Medium: Monograph available for loan
    Pages: xiii, 192 S. : zahlr. graph. Darst.
    Edition: 2nd ed.
    ISBN: 052184875X , 978-0-521-84875-6
    Classification:
    Mineralogy
    Location: Reading room
    Location: Upper compact magazine
    Branch Library: GFZ Library
    Branch Library: GFZ Library
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  • 7
    Monograph available for loan
    Monograph available for loan
    Cambridge : Cambridge University Press
    Associated volumes
    Call number: 13/M 06.0016 ; AWI A4-06-0013
    In: Cambridge atmospheric and space science series
    Type of Medium: Monograph available for loan
    Pages: XVII, 385 Seiten , Illustrationen
    ISBN: 0521814189
    Series Statement: Cambridge atmospheric and space science series
    Classification:
    Meteorology and Climatology
    Language: English
    Note: Contents: Preface. - Acknowledgements. - List of Abbreviations. - 1 The evolution of knowledge about the Arctic and its climate. - 1.1 Historical exploration. - 1.2 The beginning of systematic observations. - 1.3 The modern era. - 2 Physical characteristics and basic climatic features. - 2.1 The Arctic ocean. - 2.2 The Arctic lands. - 2.3 Basic climatic elements. - 3 The basic atmospheric heat budget. - 3.1 The Arctic and the global heat budget. - 3.2 The basic Arctic heat budget. - 3.3 Further analysis of Fwall. - 4 The atmospheric circulation. - 4.1 Historical perspective. - 4.2 The stratospheric circulation. - 4.3 The Arctic tropopause. - 4.4 The mid-tropospheric circulation. - 4.5 Surface and near-surface circulation. - 4.6 Polar Lows. - 5 The surface energy budget. - 5.1 The energy balance equations. - 5.2 The downward solar radiation flux. - 5.3 Surface albedo. - 5.4 Longwave radiation fluxes. - 5.5 Distribution of net radiation. - 5.6 Cloud radiative forcing. - 5.7 Radiation fluxes from surface observations: examples from SHEBA. - 5.8 Partitioning of net radiation. - 5.9 Skin temperature, SAT and vertical structure. - 5.10 Radiation-climate feedbacks. - 6 Precipitation, net precipitation and river discharge. - 6.1 Precipitation. - 6.2 Evapo-transpiration and net precipitation. - 6.3 Mean annual cycles for the major terrestrial drainages. - 6.4 River discharge and runoff. - 7 Arctic ocean-sea ice-climate interactions. - 7.1 Sea ice formation, growth and melt. - 7.2 Mean circulation, ice zones and concentration. - 7.3 Sea ice motion. - 7.4 Examples of large-scale ocean-sea ice-climate interactions. - 7.5 The Fram Strait outflow and the thermohaline circulation. - 8 Climate regimes of the Arctic. - 8.1 The Greenland Ice Sheet. - 8.2 Polar desert. - 8.3 Maritime Arctic. - 8.4 Central Arctic Ocean. - 8.5 Mountains and uplands. - 8.6 Urban modifications of local climate. - 9 Modeling the Arctic climate system. - 9.1 General model types. - 9.2 Single-column models. - 9.3 Land surface models. - 9.4 Sea ice and ice-ocean models. - 9.5 Global climate models. - 9.6 Regional climate models. - 9.7 Numerical weather prediction models. - 9.8 Ecosystem models. - 9.9 Summary of model errors. - 10 Arctic paleoclimates. - 10.1 The distant past. - 10.2 Paleoclimate records for the Quaternary. - 10.3 Features of the Quaternary. - 10.4 Rapid climate shifts. - 10.5 Regional aspects of the LGM. - 10.6 Deglaciation. - 10.7 The Holocene. - 11 Recent climate variability, trends and the future. - 11.1 Setting the stage. - 11.2 Summary of observed variability and change. - 11.3 The NAO and AO. - 11.4 The NAO/AO framework: merits and shortcomings. - 11.5 Related multiyear climate variability. - 11.6 The future. - References. - List of selected websites. - Index.
    Location: Reading room
    Location: Reading room
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    Branch Library: AWI Library
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