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  • Berlin ; Heidelberg : Springer  (546)
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  • 1
    Monograph available for loan
    Monograph available for loan
    Amsterdam : Elsevier
    Call number: 19/M 16.90210
    Type of Medium: Monograph available for loan
    Pages: XVII, 321 Seiten , Illustrationen, Diagramme
    Edition: Second Edition
    Edition: Online-Ausg.
    ISBN: 9780128044889
    Classification:
    Mathematics
    Parallel Title: Print version Environmental data analysis with matlab
    Language: English
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  • 2
    Call number: https://doi.org/10.1144/SP407
    In: Geological Society special publication
    Description / Table of Contents: This Special Publication is dedicated to heritage stone: those natural stones that have special significance in human culture. Some stones that have had important uses in the past are now neglected because theyare no longer extracted. Others are still commercially important, but their heritage uses have not beenwell documented in widely available sources. The Heritage Stone Task Group of the International Unionof Geological Sciences is working to establish a new formal designation of 'Global Heritage StoneResource' to recognize those stones that have had internationally significant architectural and ornamentaluses. The aim is to spread awareness of the cultural heritage aspects of these stones, to help to encouragecontinued supply for maintenance and repair of important monuments and to preserve historically importantquarries. The aim is neither to promote nor to limit these stones for new construction: in some cases continuingcommercial use might help to ensure future supplies for building conservation purposes.
    Type of Medium: 12
    Pages: 1 Online-Ressource (VI, 275 Seiten)
    ISBN: 9781862396951 (electronic) , 9781862396852 (print)
    Series Statement: Geological Society special publication 407
    URL: Cover
    Language: English
    Note: Introduction -- Procedures and criteria for the definition of Global Heritage Stone Resources -- The 'Global Heritage Stone Resource' designation: past, present and future -- Global stone heritage: Larvikite, Norway -- The Hallandia gneiss, a Swedish heritage stone resource -- The Kolmården serpentine marble in Sweden: a stone found both in castles and peoples homes -- Global Heritage Stone: Estremoz Marbles, Portugal -- Contribution of Portuguese two-mica granites to stone built heritage: the historical value of Oporto granite -- Piedra Pajarilla: a candidacy as a global heritage stone resource for Martinamor granite -- The Sierra Nevada serpentinites: the serpentinites most used in Spanish heritage buildings -- Villamayor Stone (Golden Stone) as a Global Heritage Stone Resource from Salamanca (NW of Spain) -- Colmenar Limestone, Madrid, Spain: considerations for its nomination as a Global Heritage Stone Resource due to its long term durability -- Carrara Marble: a nomination for Global Heritage Stone Resource from Italy -- Rosa Beta granite (Sardinian Pink Granite): a heritage stone of international significance from Italy -- Pietra Serena: the stone of the Renaissance -- Ornamental stones of the Verbano Cusio Ossola quarry district: characterization of materials, quarrying techniques and history and relevance to local and national heritage -- Stone materials used for monumental buildings in the historical centre of Turin (NW Italy): architectonical survey and petrographic characterization of Via Roma -- Podpec limestone: a heritage stone from Slovenia -- Stone heritage in Southeast Slovenia -- Ornamental stone in the history of St Petersburg architecture -- Natural stone in the built heritage of the interior of Brazil: the use of stone in Minas Gerais -- Piedra Mar del Plata: An Argentine orthoquartzite worthy of being considered as a Global Heritage Stone Resource..
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  • 3
    Call number: 9/M 07.0421(509)
    In: Geological Society special publication ; 509
    Type of Medium: Monograph available for loan
    Pages: 289 Seiten , Illustrationen
    Series Statement: Geological Society special publication no. 509
    Language: English
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  • 4
    Call number: 9/M 07.0421(493)
    In: Geological Society special publication ; 493
    Type of Medium: Monograph available for loan
    Pages: 1 Online Ressource , Illustrationen, Diagramme, Karten
    Series Statement: Geological Society special publication no. 493
    Language: English
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  • 5
    Call number: 9780128092590 (ebook)
    Description / Table of Contents: Introduction to Satellite Remote Sensing: Atmosphere, Ocean and Land Applications is the first reference book to cover ocean applications, atmospheric applications, and land applications of remote sensing. Applications of remote sensing data are finding increasing application in fields as diverse as wildlife ecology and coastal recreation management. The technology engages electromagnetic sensors to measure and monitor changes in the earth's surface and atmosphere. The book opens with an introduction to the history of remote sensing, starting from when the phrase was first coined. It goes on to discuss the basic concepts of the various systems, including atmospheric and ocean, then closes with a detailed section on land applications. Due to the cross disciplinary nature of the authors' experience and the content covered, this is a must have reference book for all practitioners and students requiring an introduction to the field of remote sensing. Provides study questions at the end of each chapter to aid learning Covers all satellite remote sensing technologies, allowing readers to use the text as instructional material Includes the most recent technologies and their applications, allowing the reader to stay up-to-date Delves into laser sensing (LIDAR) and commercial satellites (DigitalGlobe) Presents examples of specific satellite missions, including those in which new technology has been introduced.
    Type of Medium: 12
    Pages: 1 Online-Ressource (872 pages)
    ISBN: 978-0-12-809259-0 , 978-0-12-809254-5
    Language: English
    Note: Front Cover --- Introduction to Satellite Remote Sensing --- Introduction to Satellite Remote Sensing: Atmosphere, Ocean, Land and Cryosphere Applications --- Copyright --- Dedication --- Contents --- 1 - THE HISTORY OF SATELLITE REMOTE SENSING --- 1.1 THE DEFINITION OF REMOTE SENSING --- 1.2 THE HISTORY OF SATELLITE REMOTE SENSING --- 1.2.1 THE NATURE OF LIGHT AND THE DEVELOPMENT OF AERIAL PHOTOGRAPHY --- 1.2.2 THE BIRTH OF EARTH-ORBITING SATELLITES --- 1.2.3 THE FUTURE OF POLAR-ORBITING SATELLITES --- 1.2.3.1 The Cross-Track Infrared Sounder --- 1.2.4 OTHER HISTORICAL SATELLITE PROGRAMS --- 1.2.4.1 The NIMBUS Program --- 1.2.4.2 The Landsat Program --- 1.2.4.3 The Defense Meteorological Satellite Program --- 1.2.4.4 Geostationary Weather Satellites --- 1.2.4.4.1 GOES-R --- 1.3 STUDY QUESTIONS --- 2 - BASIC ELECTROMAGNETIC CONCEPTS AND APPLICATIONS TO OPTICAL SENSORS --- 2.1 MAXWELL'S EQUATIONS --- 2.2 THE BASICS OF ELECTROMAGNETIC RADIATION --- 2.3 THE REMOTE SENSING PROCESS --- 2.4 THE CHARACTER OF ELECTROMAGNETIC WAVES --- 2.4.1 DEFINITION OF RADIOMETRIC TERMS --- 2.4.2 POLARIZATION AND THE STOKES VECTOR --- 2.4.3 REFLECTION AND REFRACTION AT THE INTERFACE OF TWO FLAT MEDIA --- 2.4.4 BREWSTER'S ANGLE --- 2.4.5 CRITICAL ANGLE --- 2.4.6 ALBEDO VERSUS REFLECTANCE --- 2.5 ELECTROMAGNETIC SPECTRUM: DISTRIBUTION OF RADIANT ENERGIES --- 2.5.1 GAMMA, X-RAY, AND ULTRAVIOLET PORTIONS OF THE ELECTROMAGNETIC SPECTRUM --- 2.5.2 VISIBLE SPECTRUM --- 2.5.3 THERMAL INFRARED SPECTRUM --- 2.5.4 MICROWAVE SPECTRUM --- 2.6 ATMOSPHERIC TRANSMISSION --- 2.6.1 SPECTRAL WINDOWS --- 2.6.2 ATMOSPHERIC EFFECTS --- 2.6.2.1 Beer-Lambert Absorption Law --- 2.6.2.2 Beer-Lambert Absorption Law: Opacity --- 2.6.2.3 Atmospheric Scattering --- 2.7 SENSORS TO MEASURE PARAMETERS OF THE EARTH'S SURFACE --- 2.8 INCOMING SOLAR RADIATION --- 2.9 INFRARED EMISSIONS --- 2.10 SURFACE REFLECTANCE: LAND TARGETS --- 2.10.1 LAND SURFACE MIXTURES --- 2.11 STUDY QUESTIONS --- 3 - OPTICAL IMAGING SYSTEMS --- 3.1 PHYSICAL MEASUREMENT PRINCIPLES --- 3.2 BASIC OPTICAL SYSTEMS --- 3.2.1 PRISMS --- 3.2.2 FILTER-WHEEL RADIOMETERS --- 3.2.2.1 An Example: The Cloud Absorption Radiometer --- 3.2.2.2 Filters --- 3.2.3 GRATING SPECTROMETER --- 3.2.4 INTERFEROMETER --- 3.3 SPECTRAL RESOLVING POWER --- THE RAYLEIGH CRITERION --- 3.4 DETECTING THE SIGNAL --- 3.5 VIGNETTING --- 3.6 SCAN GEOMETRIES --- 3.7 FIELD OF VIEW --- 3.8 OPTICAL SENSOR CALIBRATION --- 3.8.1 VISIBLE WAVELENGTHS CALIBRATION --- 3.8.2 POLARIZATION FILTERS --- 3.9 LIGHT DETECTION AND RANGING --- 3.9.1 PHYSICS OF THE MEASUREMENT --- 3.9.2 OPTICAL AND TECHNOLOGICAL CONSIDERATIONS --- 3.9.3 APPLICATIONS OF LIDAR SYSTEMS --- 3.9.4 WIND LIDAR --- 3.9.4.1 Vector Wind Velocity Determination --- 3.9.4.1.1 Velocity Azimuth Display LIDAR Vector Wind Method --- 3.9.4.1.2 Doppler Beam Swinging LIDAR Vector Wind Method --- 3.9.4.2 Direct Detection Doppler Wind LIDAR --- 3.9.4.3 LIDAR Wind Summary --- 3.10 STUDY QUESTIONS --- 4 - Microwave Radiometry --- 4.1 Basic Concepts on Microwave Radiometry --- 4.1.1 Blackbody Radiation --- 4.1.2 Gray-body Radiation: Brightness Temperature and Emissivity --- 4.1.3 General Expressions for the Emissivity --- 4.1.3.1 Simple Emissivity Models: Emission From a Perfect Specular Surface --- 4.1.3.2 Simple Emissivity Models: Emission From a Lambertian Surface --- 4.1.3.1 Simple Emissivity Models: Emission From a Perfect Specular Surface --- 4.1.3.2 Simple Emissivity Models: Emission From a Lambertian Surface --- 4.1.4 Power Collected by an Antenna Surrounded by a Blackbody --- 4.1.5 Power Collected by an Antenna Surrounded by a Gray body: Apparent Temperature and Antenna Temperature --- 4.2 The Radiative Transfer Equation --- 4.2.1 The Complete Polarimetric Radiative Transfer Equation --- 4.2.2 Usual Approximations to the Radiative Transfer Equation --- 4.3 Emission Behavior of Natural Surfaces --- 4.3.1 The Atmosphere --- 4.3.1.1 Attenuation by Atmospheric Gases --- 4.3.1.2 Attenuation by Rain --- 4.3.1.3 Attenuation by Clouds and Fog --- 4.3.2 The Ionosphere --- 4.3.2.1 Faraday Rotation --- 4.3.2.2 Ionospheric Losses: Absorption and Emission --- 4.3.3 Land Emission --- 4.3.3.1 Soil Dielectric Constant Models --- 4.3.3.2 Bare Soil Emission --- 4.3.3.3 Vegetated Soil Emission --- 4.3.3.4 Snow-Covered Soil Emission --- 4.3.3.5 Topography Effects --- 4.3.4 Ocean Emission --- 4.3.4.1 Water Dielectric Constant Behavior --- 4.3.4.2 Calm Ocean Emission --- 4.3.4.2.1 Influence of the Salinity --- 4.3.4.2.2 Influence of Frequency --- 4.3.4.2.3 Influence of the Water Temperature --- 4.3.4.3 Influence of the Sea State --- 4.3.4.3.1 Influence of the Look Angle --- 4.3.4.4 Emissivity of the Sea Surface Covered With Oil --- 4.3.4.5 Emissivity of the Sea Ice Surface --- 4.4 Understanding Microwave Radiometry Imagery --- 4.5 Applications of Microwave Radiometry --- 4.6 Sensors --- 4.6.1 Historical Review of Microwave Radiometers and Frequency Bands Used --- 4.6.2 Microwave Radiometers: Basic Performance --- 4.6.2.1 Spatial Resolution --- 4.6.2.1.1 Real Aperture Radiometers --- 4.6.2.1.2 Synthetic Aperture Radiometers --- 4.6.2.2 Radiometric Resolution --- 4.6.2.2.1 Real Aperture Radiometers --- 4.6.2.2.2 Synthetic Aperture Radiometers --- 4.6.2.3 Trade-off Between Spatial Resolution and Radiometric Precision --- 4.6.3 Real Aperture Radiometers --- 4.6.3.1 Instrument Considerations --- 4.6.3.1.1 Antenna Considerations --- 4.6.3.1.2 Receiver Considerations --- 4.6.3.1.3 Sampling Considerations --- 4.6.3.2 Types of Real Aperture Radiometers --- 4.6.3.3 Radiometer Calibration --- 4.6.3.3.1 External Calibration --- 4.6.3.3.1.1 Using Hot and Cold Targets --- 4.6.3.3.1.2 Fully Polarimetric Radiometer Calibration Using External Targets --- 4.6.3.3.1.3 Tip Curves --- 4.6.3.3.1.4 Earth Targets: Vicarious Calibration --- 4.6.3.3.2 Internal Calibration --- 4.6.3.3.3 Radiometer Linearity --- 4.6.3.4 Radio Frequency Interference Detection and Mitigation --- 4.6.3.5 Example: Special Sensor Microwave Imager Radiometric and Geometric Corrections --- 4.6.4 Synthetic Aperture Radiometers --- 4.6.4.1 Types of Synthetic Aperture Radiometers --- 4.6.4.1.1 Mills Cross --- 4.6.4.1.2 Synthetic Aperture Radiometers using Matched Filtering --- 4.6.4.1.3 Synthetic Aperture Radiometers using Fourier Synthesis --- 4.6.4.1.3.1 1D Synthetic Aperture Radiometers: Array Thinning --- 4.6.4.1.3.2 2D Synthetic Aperture Radiometers: Array Topologies --- 4.6.4.1.3.3 Other Synthetic Aperture Radiometer Concepts --- 4.6.4.2 Radiometer Calibration --- 4.6.4.2.1 Internal Calibration --- 4.6.4.2.2 External Calibration --- 4.6.4.3 Image Reconstruction --- 4.6.4.4 ESA's SMOS Mission and the MIRAS Instrument --- 4.6.5 Future Trends in Microwave Radiometers --- 4.7 Study Questions --- 5 - RADAR --- 5.1 A COMPACT INTRODUCTION TO RADAR THEORY --- 5.1.1 REMOTE RANGING --- 5.1.2 DOPPLER ANALYSIS --- 5.2 RADAR SCATTERING --- 5.2.1 RADAR FREQUENCY BANDS --- 5.2.2 NORMALIZATIONS OF THE RADAR REFLECTIVITY --- 5.2.3 POINT VERSUS DISTRIBUTED SCATTERERS --- 5.2.4 SPECKLE, MULTILOOK, AND RADIOMETRIC RESOLUTION --- 5.2.5 RADAR EQUATION --- 5.2.6 RADAR WAVES AT AN INTERFACE --- 5.2.7 MULTIPLE REFLECTIONS: DOUBLE BOUNCE, TRIPLE BOUNCE, AND URBAN AREAS --- 5.2.8 BACKSCATTERING OF SURFACES --- 5.2.9 PERIODIC SCATTERING: THE BRAGG MODEL --- 5.2.10 BACKSCATTERING OF VOLUMES --- 5.2.11 OVERALL SUMMARY OF RADAR BACKSCATTER --- 5.2.12 DEPOLARIZATION OF RADAR WAVES --- 5.3 RADAR SYSTEMS --- 5.3.1 RANGE-DOPPLER RADARS --- 5.3.2 OPTIMAL RECEIVER FOR A SINGLE ECHO: THE MATCHED FILTER --- 5.3.3 MATCHED FILTER VERSUS INVERSE FILTER --- 5.3.4 OPTIMAL RECEIVER FOR RANGE-DOPPLER RADAR ECHOES: THE BACKPROJECTION OPERATOR --- 5.3.5 RADAR WAVEFORMS --- 5.3.6 A PARADIGMATIC EXAMPLE: LINEAR FREQUENCY MODULATED PULSES (CHIRPS) --- 5.3.7 GEOMET
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  • 6
    Monograph available for loan
    Monograph available for loan
    Amsterdam : Elsevier
    Call number: M 17.90812
    Description / Table of Contents: Front Cover -- ADDRESSES/INSTITUTIONS -- A Concise Geologic Time Scale -- A Concise Geologic Time Scale -- Copyright -- CONTENTS -- 1 - Introduction -- Geologic time scale and this book -- International divisions of geologic time and their global boundaries (GSSPs) -- Biologic, chemical, sea-level, geomagnetic, and other events or zones -- Assigned numerical ages -- Time Scale Creator database and chart-making package -- Geologic Time Scale 2020 -- Selected publications and websites -- 2 - PLANETARY TIME SCALE -- Introduction -- The Moon -- Mars -- Mercury -- Venus
    Description / Table of Contents: Other solar system bodies -- Selected publications and websites -- 3 - Precambrian -- Status of international subdivisions -- Summary of Precambrian trends and events, and a potential revised time scale -- Hadean -- Archean -- Proterozoic -- Acknowledgments -- Selected publications and websites -- 4 - Cryogenian and Ediacaran -- Basal definitions and status of international subdivisions -- Cryogenian -- Selected main stratigraphic scales and events -- (1) Stable-isotope stratigraphy, magnetostratigraphy, and selected events -- (2) Biostratigraphy and major trends -- Numerical age model
    Description / Table of Contents: GTS2012 age model and potential future enhancements -- Revised ages compared to GTS2012 -- Acknowledgments -- Selected publications and websites -- 5 - CAMBRIAN -- Basal definition and status of international subdivisions -- Terreneuvian series -- Series 2 -- Series 3 -- Furongian series -- Selected main stratigraphic scales and events -- (1) Biostratigraphy and major trends -- (2) Stable-isotope stratigraphy, magnetostratigraphy, and selected events -- Numerical age model -- GTS2012 age model and potential future enhancements -- Revised ages compared to GTS2012
    Description / Table of Contents: Estimated uncertainties on assigned ages on stage boundaries -- Acknowledgments -- Selected publications and websites -- 6 - ORDOVICIAN -- Basal definition and international subdivisions -- Selected main stratigraphic scales and events -- (1) Biostratigraphy and major trends -- (2) Stable-isotope stratigraphy and selected events -- Numerical age model -- GTS2012 age model and potential future enhancements -- Estimated uncertainties on assigned ages on stage boundaries -- Acknowledgments -- Selected publications and websites -- 7 - SILURIAN -- Basal definition and international subdivisions
    Description / Table of Contents: Selected main stratigraphic scales and events -- (1) Biostratigraphy (marine -- terrestrial) -- (2) Stable-isotope stratigraphy, magnetostratigraphy, and selected events -- Numerical age model -- GTS2012 age model and potential future enhancements -- Estimated uncertainties on assigned ages on stage boundaries -- Acknowledgments -- Selected publications and websites -- 8 - DEVONIAN -- Basal definition and international subdivisions -- Selected main stratigraphic scales and events -- Biostratigraphy (marine -- terrestrial) -- Magnetostratigraphy -- Stable-isotope stratigraphy and selected events
    Description / Table of Contents: Numerical age model
    Type of Medium: Monograph available for loan
    Pages: 243 Seiten
    ISBN: 9780444637710 , 9780444594679
    Classification:
    Historical Geology
    Parallel Title: Print version A Concise Geologic Time Scale : 2016
    Language: English
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  • 7
    Monograph available for loan
    Monograph available for loan
    London : The Geological Society
    Associated volumes
    Call number: 9/M 07.0421(433)
    In: Geological Society special publication ; 433
    Type of Medium: Monograph available for loan
    Pages: X, 315 Seiten , Illustrationen
    ISBN: 9781862397477
    Series Statement: Geological Society Special Publication 433
    Classification:
    Historical Geology
    Language: English
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  • 8
    Call number: https://doi.org/10.1144/SP499
    In: Geological Society special publication
    Description / Table of Contents: Senior managers and Heads of Geological Survey Organizations (GSOs) from around the world have contributed a collection of papers to provide a benchmark on how GSOs are responding to national and international needs in a rapidly changing world. GSOs continue to provide key scientific information about Earth systems, natural hazards and climate change. As countries adopt sustainable development principles and the public increasingly turns to social media to find information about resource and environmental issues, the generation and communication of Earth science knowledge become increasingly important. This volume provides a snapshot of how GSOs are adapting their activities to this changing world. The different national perspectives presented converge around several common themes related to resources, environment and big data. Climate change and the UN's Sustainable Development Goals provide an increased incentive for GSOs of the world to work in harmony, to generate knowledge of Earth systems and to provide solutions for sustainable management of the planet.
    Type of Medium: 12
    Pages: 1 Online-Ressource (305 Seiten) , Illustrationen, Diagramme, Karten
    ISBN: 9781786204769 (print)
    Series Statement: Geological Society special publication 499
    URL: Cover
    Language: English
    Note: The changing role of Geological Surveys: introduction / Philip R. Hill, Daniel Lebel, Murray Hitzman, Morten Smelror and Harvey Thorleifson / Geological Society, London, Special Publications, 499, 1-15, 14 September 2020, https://doi.org/10.1144/SP499-2020-19 --- Geology for society in 2058: some down-to-earth perspectives / Morten Smelror / Geological Society, London, Special Publications, 499, 17-47, 10 March 2020, https://doi.org/10.1144/SP499-2019-40 --- Geological Survey of Canada 8.0: mapping the journey towards predictive geoscience / Daniel Lebel / Geological Society, London, Special Publications, 499, 49-68, 16 January 2020, https://doi.org/10.1144/SP499-2019-79 --- Where is geoscience going? / John Ludden / Geological Society, London, Special Publications, 499, 69-77, 23 July 2020, https://doi.org/10.1144/SP499-2019-212 --- Challenges for geological surveys deriving from global megatrends: The Federal Institute for Geosciences and Natural Resources of Germany's perspective and answers / Ralph Watzel / Geological Society, London, Special Publications, 499, 79-83, 13 December 2019, https://doi.org/10.1144/SP499-2019-41 --- The changing role of geological surveys in Malaysia / Shahar Effendi Abdullah Azizi, Nan-Ley Ling, Say-Gee Sia and Brendawati Ismail / Geological Society, London, Special Publications, 499, 85-97, 16 December 2019, https://doi.org/10.1144/SP499-2019-55 --- Seabed mapping in Norwegian waters: programmes, technologies and future advances / Terje Thorsnes, Ole Arve Misund and Morten Smelror / Geological Society, London, Special Publications, 499, 99-118, 10 March 2020, https://doi.org/10.1144/SP499-2019-69 --- Relevant and flexible geosurveys: how Geological Survey Ireland is adapting / Koen Verbruggen, Aoife K. Braiden, Monica Lee, Ray Scanlon, Sean Cullen and Sean Finlay / Geological Society, London, Special Publications, 499, 119-128, 27 April 2020, https://doi.org/10.1144/SP499-2019-150 --- EuroGeoSurveys: from a non-profit association to a geological service for Europe / J. Vidovic, Y. Schavemaker, T. Witteman, J. Tulstrup, S. van Gessel, K. Piessens and S. Solar / Geological Society, London, Special Publications, 499, 129-137, 7 January 2020, https://doi.org/10.1144/SP499-2019-47 --- The fundamental and pioneering role of the Geological Survey in China's social development / Guangsheng Yan, Liangjun Lin, Shoumai Ren and Yu Situ / Geological Society, London, Special Publications, 499, 139-142, 2 September 2020, https://doi.org/10.1144/SP499-2019-204 --- How to demonstrate the role of geology in a modern society: the case of Lithuania, where geology is not visible / Jonas Satkūnas / Geological Society, London, Special Publications, 499, 143-147, 13 December 2019, https://doi.org/10.1144/SP499-2019-57 --- The Geological Survey of Finland strengthening its role as a key player in mineral raw materials innovation ecosystems / Pekka A. Nurmi / Geological Society, London, Special Publications, 499, 149-163, 6 February 2020, https://doi.org/10.1144/SP499-2019-83 --- The Geological Survey of Denmark and Greenland (GEUS): from classical geological services to long-term environmental monitoring programmes, energy transformation and advice on political sensitive topics / Flemming G. Christiansen and Flemming Larsen / Geological Society, London, Special Publications, 499, 165-172, 7 January 2020, https://doi.org/10.1144/SP499-2019-118 --- How the Geological Survey of Sweden contributes digital data for sustainable development / Lena Söderberg, Lars-Kristian Stölen, Jakob Levén, Lovisa Zillén Snowball and Helge Reginiussen / Geological Society, London, Special Publications, 499, 173-182, 7 January 2020, https://doi.org/10.1144/SP499-2019-43 --- Changing roles of State Geological Surveys in the USA: experiences from Illinois / Andrew J. Stumpf, Richard C. Berg and B. Brandon Curry / Geological Society, London, Special Publications, 499, 183-201, 31 January 2020, https://doi.org/10.1144/SP499-2019-128 --- The modern geological survey: a model for research, innovation, synthesis. A USGS perspective / Suzette Kimball, M. Goldhaber, J. Baron and V. Labson / Geological Society, London, Special Publications, 499, 203-211, 30 April 2020, https://doi.org/10.1144/SP499-2019-250 --- Geological surveys as research-focused organizations: New Zealand's experience and opportunities / Mark Rattenbury, Gill Jolly, Peter Benfell and Robert Smillie / Geological Society, London, Special Publications, 499, 213-223, 7 January 2020, https://doi.org/10.1144/SP499-2019-63 --- A new international initiative for facilitating data-driven Earth science transformation / Qiuming Cheng, Roland Oberhänsli and Molei Zhao / Geological Society, London, Special Publications, 499, 225-240, 14 May 2020, https://doi.org/10.1144/SP499-2019-158 --- From the Geological Committee of Russia to the Russian Geological Research Institute: solving problems of state geological mapping / Oleg V. Petrov / Geological Society, London, Special Publications, 499, 241-256, 10 March 2020, https://doi.org/10.1144/SP499-2019-123 --- The UNESCO–IUGS International Geoscience Programme (IGCP) in the service of society since 1972 / K. Heirman and O. Adiyaman Lopes / Geological Society, London, Special Publications, 499, 257-265, 13 December 2019, https://doi.org/10.1144/SP499-2019-73 --- Building the future of the geoscience community in Asia: CCOP beyond history and borders / Young Joo Lee, Dhiti Tulyatid, Marivic Uzarraga, Jisoo Kwak and Juhee Seo / Geological Society, London, Special Publications, 499, 261-281, 30 June 2020, https://doi.org/10.1144/SP499-2019-215 --- Epilogue – The rhymes, musings and riddles of the International Community of Geological Surveys (ICOGS) / Daniel Lebel and Philip R. Hill / Geological Society, London, Special Publications, 499, 283-294, 14 September 2020, https://doi.org/10.1144/SP499-2
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  • 9
    Call number: 10.1144/SP513-2021-159 (e-book)
    In: Special publications / the Geological Society, London, No. 513
    Description / Table of Contents: Proterozoic to Cenozoic lamprophyres, lamproites and related rock types hold a unique potential for the investigation of processes affecting mantle reservoirs. They originated from primary mantle-derived melts that intruded both cratons and off-craton regions, which were parts of former supercontinents – Columbia, Rodinia and Gondwana–Pangaea. Well known for hosting economic minerals and elements such as diamonds, base metals, platinum-group elements and Au, they are also significant for our understanding of deep-mantle processes, such as mantle metasomatism and mantle plume–lithosphere interactions, as well as large-scale geodynamic processes, including subduction-related tectonics and supercontinent amalgamation and break-up. This Special Publication presents an overview of the state of the art and recent advances as achieved by individual research groups from different parts of the world, and outlines future research directions. Mineralogical, geochemical, geochronological and isotope analyses are used to decipher the complex petrogenetic and metallogenetic evolution of these extraordinary rocks and unravel a complete history of tectonic events related to individual supercontinent cycles. The Special Publication including this introductory chapter also deals with some issues related to the classification of these rocks.
    Type of Medium: 12
    Pages: 1 Online-Ressource (vi, 489 Seiten) , Illustrationen, Diagramme, Karten
    ISBN: 9781786205438 , 978-1-78620-543-8
    ISSN: 0305-8719
    Series Statement: Special publications / the Geological Society, London No. 513
    Language: English
    Note: Contents Krmíček, L. and Chalapathi Rao, N. V. / Lamprophyres, lamproites and related rocks as tracers to supercontinent cycles and metallogenesis Tappe, S., Shaikh, A. M., Wilson, A. H. and Stracke, A. / Evolution of ultrapotassic volcanism on the Kaapvaal craton: deepening the orangeite versus lamproite debate Kostrovitsky, S. I., Yakovlev, D. A., Sharygin, I. S., Gladkochub, D. P., Donskaya, T. V., Tretiakova, I. G., Dymshits, A. M., Sekerin, A. P. and Malkovets, V. G. / Diamondiferous lamproites of Ingashi field, Siberian craton Yakovlev, D. A., Kostrovitsky, S. I., Fosu, B. R. and Ashchepkov, I. V. / Diamondiferous kimberlites from recently explored Upper Muna Field (Siberian Craton): petrology, mineralogy and geochemistry insights Meshram, T., Mahapatro, S. N., Aravind, J. K., Dora, M. L., Baswani, S. R., Gopalakrishna, G., Meshram, R. R., Sesha Sai, V. V., Randive, K. and Dash, J. K. / Geochemistry and Sr–Nd isotopic studies of Paleoproterozoic (c. 2.3 Ga) meta-lamprophyre from the Rapuru area, Nellore Schist Belt, southern India: implications for back-arc basin magmatism and its relevance to the Columbia supercontinent assembly Pandey, A., Chalapathi Rao, N. V., Rahaman, W., Seth, V. and Sahoo, S. / Paleoproterozoic metaluminous syenites synchronous with the c. 2.21 Ga mafic dyke swarms from the Eastern Dharwar Craton, India: implications for alkaline magmatism associated with the breakup of supercraton Superia Kumar, A., Talukdar, D., Chalapathi Rao, N. V., Burgess, R. and Lehmann, B. / Mesoproterozoic 40Ar–39Ar ages of some lamproites from the Cuddapah Basin and Eastern Dharwar Craton, southern India: implications for diamond provenance of the Banganapalle Conglomerates, age of the Kurnool Group and Columbia tectonics Dora, M. L., Randive, K., Meshram, R., Meshram, T., Baswani, S. R., Korakoppa, M. and Malviya, V. P. / Petrogenesis of a calc-alkaline lamprophyre (minette) from Thanewasna, Western Bastar Craton, Central India: insights from mineral, bulk rock and in-situ trace element geochemistry Krmíček, L., Magna, T., Pandey, A., Chalapathi Rao, N. V. and Kynický, J. / Lithium isotopes in kimberlites, lamproites and lamprophyres as tracers of source components and processes related to supercontinent cycles Ulrych, J., Krmíč ek, L., Adamovič , J. and Krmíč ková, S. / The story of post-Variscan lamprophyres of the Bohemian Massif: from ultramafic (Upper Cretaceous–Paleocene) to alkaline (Eocene– Oligocene) types Casalini, M., Avanzinelli, R., Tommasini, S., Natali, C., Bianchini, G., Prelević, D., Mattei, M. and Conticelli, S. / Petrogenesis of Mediterranean lamproites and associated rocks: The role of overprinted metasomatic events in the post-collisional lithospheric upper mantle Spišiak, J., Vetráková, L., Chew, D., Ferenc, Š, Šimonová, V., Butek, J. and Mikuš, T. / Permian lamprophyres from the Western Carpathians: a review Chitalin, A. F., Baksheev, I. A., Nikolaev, Y. N., Djedjeya, G. T., Khabibullina, Y. N. and Müller, D. / Porphyry Cu–Au ± Mo mineralization hosted by potassic igneous rocks: implications from the giant Peschanka porphyry deposit, Baimka Trend (North East Siberia, Russia) Mahapatro, S. N., Renjith, M. L., Martha, R. K., Patel, R. K., Upadhyay, D. and Sarma, D. S. / Petrogenesis and U–Pb zircon dating of the Chaitma Alkaline Complex from the southern margin of the Central Indian Tectonic Zone: geodynamic implications Dongre, A., Dhote, P. S., Zamarkar, P., Sangode, S. J., Belyanin, G., Meshram, D. C., Patil, S. K., Karmakar, A. and Jain, L. / Short-lived alkaline magmatism related to the Réunion plume in the Deccan Large Igneous Province: inferences from petrology, 40Ar/39Ar geochronology and palaeomagnetism of lamprophyre from the Sarnu-Dandali Alkaline Igneous Complex Sharma, A., Sahoo, S., Chalapathi Rao, N. V., Belyatsky, B., Dhote, P. and Lehmann, B. / Petrology and Nd–Sr isotopic composition of alkaline lamprophyres from the Early to Late Cretaceous Mundwara Alkaline Complex, NW India: evidence of crystal fractionation, accumulation and corrosion in a complex magma chamber plumbing system Vijaya Kumar, J. and Randive, K. / Platinum group elements in lamprophyre, picrobasalt, gabbro and basalts of the Phenai Mata and nearby areas: implications for Fe–Ni–Cu–PGE mineralization in the Deccan Large Igneous Province Index
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  • 10
    Call number: 10.1144/SP523
    In: Special publications / the Geological Society, London, Volume 523
    Description / Table of Contents: Straits & seaways are the key features that connect oceans, seas & lakes. They regulate water, sediment & biota exchanges, & influence local & global climate. A good understanding of the evolution of straits & seaways is therefore fundamental to accurately reconstruct the palaeogeography, tectonics, palaeoecology & stratigraphy of interconnected basins, the climate dynamics of Earth's past as well as to exploit conventional & renewable energy resources. This volume provides a collection of articles dealing with both ancient & modern case studies, bringing together different but complementary disciplines, such as marine geology, process sedimentology & stratigraphy. With the contents encompassing the evolution, geomorphology, stratigraphy, sedimentology, oceanography & palaeogeography of straits & seaways, & their influence on climate, the book will be of interest to Earth scientists
    Type of Medium: 12
    Pages: 1 Online-Ressource (vi, 530 Seiten) , Illustrationen, Diagramme, Karten
    ISBN: 178620570X , 9781786205704 , 978-1-78620-570-4
    Series Statement: Special publications / the Geological Society, London 523
    Language: English
    Note: Title description Full Access22 March 2023 About this title - Straits and Seaways: Controls, Processes and Implications in Modern and Ancient Systems V. M. Rossi, S. G. Longhitano, C. Olariu, and F. L. Chiocci https://doi.org/10.1144/SP523 Introduction Full Access20 January 2023 Straits and seaways: controls, processes and implications in modern and ancient systems Valentina Marzia Rossi, Sergio G. Longhitano, Cornel Olariu, and Francesco L. Chiocci https://doi.org/10.1144/SP523-2022-271 Articles Open Access8 March 2022 A review of the morphology, physical processes and deposits of modern straits Robert W. Dalrymple https://doi.org/10.1144/SP523-2021-76 Open Access11 January 2023 Straits and seaways: end members within the continuous spectrum of the dynamic connection between basins Valentina Marzia Rossi, Sergio G. Longhitano, Cornel Olariu, and Francesco L. Chiocci https://doi.org/10.1144/SP523-2022-159 Full Access3 February 2022 The dire straits of Paratethys: gateways to the anoxic giant of Eurasia Dan V. Palcu and Wout Krijgsman https://doi.org/10.1144/SP523-2021-73 Full Access20 January 2022 The opening and closure of oceanic seaways during the Cenozoic: pacemaker of global climate change? André Bahr, Stefanie Kaboth-Bahr, and Cyrus Karas https://doi.org/10.1144/SP523-2021-54 Open Access7 December 2022 A shallow-water dunefield in a microtidal, wind-dominated strait (Stintino, NW Sardinia, Italy) S. Andreucci, A. Santonastaso, M. De Luca, S. Cappucci, A. Cucco, G. Quattrocchi, and V. Pascucci https://doi.org/10.1144/SP523-2021-188 Full Access17 October 2022 Bedforms of Bonifacio Strait (Western Mediterranean): hydrodynamics, coastal outline, supply and sediment distribution Giacomo Deiana, Valentino Demurtas, and Paolo Emanuele Orrù https://doi.org/10.1144/SP523-2022-10 Full Access20 January 2022 Morphology and Late Pleistocene–Holocene sedimentation of the Strait of Istanbul (Bosphorus): a review M. Namık Çağatay, K. Kadir Eriş, and Zeynep Erdem https://doi.org/10.1144/SP523-2021-48 Full Access27 January 2022 Large- and medium-scale morphosedimentary features of the Messina Strait: insights into bottom-current-controlled sedimentation and interaction with downslope processes E. Martorelli, D. Casalbore, F. Falcini, A. Bosman, F. G. Falese, and F. L. Chiocci https://doi.org/10.1144/SP523-2021-77 Full Access8 December 2022 Grain-size analysis of the Late Pleistocene sediments in the Corinth Rift: insights into strait-influenced hydrodynamics and provenance of an active rift basin Wenjun Kang, Shunli Li, Robert L. Gawthorpe, Mary Ford, Richard E. Ll. Collier, Xinghe Yu, Liliane Janikian, Casey W. Nixon, Romain Hemelsdaël, Spyros Sergiou, Jack Gillespie,... https://doi.org/10.1144/SP523-2022-166 Full Access26 April 2022 Stratigraphic architecture, sedimentology and structure of the Middle Pleistocene Corinth Canal (Greece) Basile Caterina, Romain Rubi, and Aurélia Hubert-Ferrari https://doi.org/10.1144/SP523-2021-143 Full Access18 May 2022 Channel, dune and sand sheet architectures of a strait-adjacent delta, Rifian Corridor, Morocco Daan Beelen, Lesli Joy Wood, Mohamed Najib Zaghloul, Sebastian Cardona, and Michiel Arts https://doi.org/10.1144/SP523-2021-49 Open Access11 October 2022 A new interpretation for the Pliensbachian Cook Formation (northern North Sea) as north–south-prograding tidal deltas and shelf ridges in the Early Jurassic Seaway: new model of linkage to the Norwegian Sea Atle Folkestad and Ronald J. Steel https://doi.org/10.1144/SP523-2021-75 Full Access17 January 2022 Early Pliocene marine transgression into the lower Colorado River valley, southwestern USA, by re-flooding of a former tidal strait Rebecca J. Dorsey, Juan Carlos Braga, Kevin Gardner, Kristin McDougall, and Brennan O'Connell https://doi.org/10.1144/SP523-2021-57 Full Access20 May 2022 Palaeostrait tectonosedimentary facies during late Cenozoic microplate rifting and dispersal in the western Mediterranean William Cavazza and Sergio G. Longhitano https://doi.org/10.1144/SP523-2021-95 Full Access8 March 2022 Sedimentary dynamics and topographic controls on the tidal-dominated Zagra Strait, Early Tortonian, Betic Cordillera, Spain Ángel Puga-Bernabéu, Juan Carlos Braga, Julio Aguirre, and José Manuel Martín https://doi.org/10.1144/SP523-2021-85 Full Access26 January 2022 Tectonic control on the palaeogeographical evolution of the Miocene Seaway along the Western Alpine foreland basin Amir Kalifi, Philippe Sorrel, Philippe-Hervé Leloup, Albert Galy, Vincenzo Spina, Bastien Huet, Séverine Russo, Bernard Pittet, and Jean-Loup Rubino https://doi.org/10.1144/SP523-2021-78 Full Access28 November 2022 Facies partitioning of fluvial, wave, and tidal influences across the shoreline-to-shelf architecture in the Western Interior Campanian Seaway, USA Keith P. Minor, Anton Wroblewski, Ronald J. Steel, Cornel Olariu, and Jeff P. Crabaugh https://doi.org/10.1144/SP523-2022-11
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