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Alkaline rocks, kimberlites and carbonatites : geochemistry and genesis : proceedings of the XV International Seminar "Deep-seated magmatism, its sources and plumes," 1-7 September 2019, Russia, Saki / / Nikolay Vladykin, editor
Alkaline rocks, kimberlites and carbonatites : geochemistry and genesis : proceedings of the XV International Seminar "Deep-seated magmatism, its sources and plumes," 1-7 September 2019, Russia, Saki / / Nikolay Vladykin, editor
Pubbl/distr/stampa Cham, Switzerland : , : Springer, , [2021]
Descrizione fisica 1 online resource (265 pages)
Disciplina 551.13
Collana Springer Proceedings in Earth and Environmental Sciences
Soggetto topico Magmatism
ISBN 3-030-69670-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910483070603321
Cham, Switzerland : , : Springer, , [2021]
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Crustal magmatic system evolution : anatomy, architecture, and physico-chemical processes / / Matteo Masotta, Christoph Beier and Silvio Mollo, editors
Crustal magmatic system evolution : anatomy, architecture, and physico-chemical processes / / Matteo Masotta, Christoph Beier and Silvio Mollo, editors
Pubbl/distr/stampa Hoboken, New Jersey : , : American Geophysical Union : , : Wiley, , [2021]
Descrizione fisica 1 online resource (254 pages)
Disciplina 552.2
Collana Geophysical monograph
Soggetto topico Magmas
Magmatism
Volcanoes
Soggetto genere / forma Electronic books.
ISBN 1-119-56447-6
1-119-56446-8
1-119-56448-4
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover -- Title Page -- Copyright Page -- Contents -- List of Contributors -- Preface -- Part I Architecture of Crustal Magmatic Systems -- Chapter 1 Geothermobarometry of Mafic and Ultramafic Xenoliths: Examples From Hualalai and Mauna Kea Volcanoes, Hawaii -- 1.1. Introduction -- 1.2. Geological and Petrological Background -- 1.3. Revised Geothermobarometry of Mauna Kea and Hualalai Xenoliths -- 1.3.1. Rationale and Data Selection -- 1.3.2. Temperature Estimates -- 1.3.3. Pressure Estimates -- 1.4. Discussion -- 1.4.1. Comparisons with Previous Estimates and Implications of the Results -- 1.4.2. Geobarometry of Xenoliths as One of the Links between Petrology and Geophysics -- 1.5. Conclusions and Future Perspectives -- Acknowledgments -- References -- Chapter 2 Trace Element Geothermometry and Geospeedometry for Cumulate Rocks: Quantitative Constraints on Thermal and Magmatic Processes During Igneous Crust Formation -- 2.1. Introduction -- 2.2. A Trace Element Perspective for Decoding Thermal and Magmatic Records in Minerals -- 2.2.1. Equilibrium Exchange -- 2.2.2. Chemical Diffusion -- 2.3. Trace Element Geothermometry -- 2.3.1. Theoretical Basis -- 2.3.2. Trace Element Partitioning -- 2.3.3. Geothermometers for Mafic Cumulates -- 2.4. Trace Element Geospeedometry -- 2.4.1. Diffusion and Geospeedometry -- 2.4.2. Basic Idea of Geospeedometer Design -- 2.4.3. The Mg-REE Coupled Geospeedometer for Mafic Cumulates -- 2.5. A Case Study on Oceanic Crust Formation -- 2.6. Concluding Remarks -- Acknowledgments -- References -- Chapter 3 Magma Storage at Ocean Islands: Insights From Cape Verde -- 3.1. Introduction -- 3.2. The Cape Verde Archipelago -- 3.2.1. Geochronology of the Cape Verde Archipelago -- 3.2.2. The Geology of Santiago -- 3.2.3. The Geology of Fogo -- 3.2.4. The Geology of Brava -- 3.2.5. The Cadamosto Seamount.
3.2.6. Volcanic Eruptions and Hazards at Fogo -- 3.3. Magmatic Processes -- 3.4. Magma Storage in Southern Cape Verde -- 3.4.1. Controls on the Depth of Magma Storage -- 3.5. Insights Into the Shallower Magmatic System -- 3.6. Ocean Islands Globally -- 3.7. Conclusions and Recommendations -- Acknowledgments -- References -- Chapter 4 Anatomy of Intraplate Monogenetic Alkaline Basaltic Magmatism: Clues From Magma, Crystals, and Glass -- 4.1. Introduction -- 4.2. Origin of Intraplate Monogenetic Basaltic Systems -- 4.3. Insights From Whole‐Rock Chemical Data -- 4.4. Insights From Crystal Compositions -- 4.5. Insights From Glass Compositions -- 4.6. Summary and Concluding Remarks -- Acknowledgments -- References -- Part II Experimental and Numerical Constraints on Magmatic Processes -- Chapter 5 Magma Differentiation and Contamination: Constraints From Experimental and Field Evidences -- 5.1. Introduction -- 5.2. Geological and Geochemical Inferences on Fractionation -- 5.3. Mechanisms of Liquid-Crystal Separation -- 5.3.1. Gravitational Collapse and Compaction -- 5.3.2. Crystallization in a Vertical (Non‐Gravitational) TBL -- 5.4. Magma Contamination by Country-Rock Assimilation -- 5.4.1. Field Relations Supporting Assimilation and Magma Contamination -- 5.4.2. Experiments on Contamination -- 5.5. Concluding Remarks -- Acknowledgments -- References -- Chapter 6 Crystal and Volatile Controls on the Mixing and Mingling of Magmas -- 6.1. Introduction: Magma Mixing and Mingling and Volcanic Plumbing Systems -- 6.1.1. Chemical Mixing -- 6.1.2. Physical Mingling -- 6.2. Controls on Magma Mingling: Observations, Experiments, and Numerical Models -- 6.2.1. Field Observations -- 6.2.2. Analogue Experiments -- 6.2.3. High-Temperature and/or High-Pressure Experiments -- 6.2.4. Numerical Models.
6.3. Petrologic Constraints on Mingling Conditions: Petrographic Interpretations -- 6.3.1. Volcanic Systems -- 6.3.2. Phenocryst, Xenocryst, and Groundmass Textures and Chemistries -- 6.3.3. Interpretation of Textures and Chemistries -- 6.3.4. Conceptual Model of Magma Mixing and Mingling -- 6.4. Quantitative Modeling of Crystal and Volatile Controls on Mixing and Mingling -- 6.4.1. The Model of Andrews and Manga (2014) -- 6.4.2. The Model of Bergantz et al. (2015) -- 6.4.3. The Model of Montagna et al. (2015) -- 6.4.4. Comparison and Common Limitations -- 6.5. Conclusions and Outlook for Future Research -- Acknowledgments -- References -- Chapter 7 From Binary Mixing to Magma Chamber Simulator: Geochemical Modeling of Assimilation in Magmatic Systems -- 7.1. Introduction -- 7.2. The End-Member Modes of Magmatic Interaction -- 7.2.1. Defining Homogeneity in Mixtures -- 7.2.2. Terminology of Mixing in Magmatic Systems -- 7.2.3. Mixing Versus Assimilation -- 7.2.4. Defining the End‐Member Modes of Magmatic Interaction -- 7.3. Overview of Geochemical Models of Assimilation -- 7.3.1. In Bunsen's Footsteps: Simple Binary Mixing Model -- 7.3.2. Assimilation Coupled With Fractional Crystallization: AFCDP -- 7.3.3. Integration of Thermodynamic Constraints Into Modeling Assimilation: EC-AFC -- 7.3.4. Phase Equilibria of Assimilation: MCS -- 7.3.5. Comparison of the Different Assimilation Models -- 7.3.6. MCS Applied to a Natural System: Flood Basalts From Antarctica -- 7.4. Summary -- Acknowledgments -- References -- Part III Timescales of Magma Dynamics -- Chapter 8 Elemental Diffusion Chronostratigraphy: Time-Integrated Insights Into the Dynamics of Plumbing Systems -- 8.1. Introduction -- 8.2. Geospeedometry: Approach and Limitations -- 8.3. Isothermal Versus Non-Isothermal Approach -- 8.4. The Temperature Conundrum.
8.5. Two Examples: Stromboli and Popocatépetl Volcanoes -- 8.6. Resolving Elemental Diffusion Stratigraphy -- 8.7. Uncertainties -- 8.8. Conclusions: A Way Forward -- Acknowledgments -- References -- Chapter 9 Interpreting Magma Dynamics Through a Statistically Refined Thermometer: Implications for Clinopyroxene Fe-Mg Diffusion Modeling and S ector Zoning at Stromboli -- 9.1. Introduction -- 9.2. Calibration and Test Data Sets -- 9.3. Parameterization of the Thermometer -- 9.4. Implications for Magma Dynamics at Stromboli -- 9.4.1. Modeling Magma Storage Timescales -- 9.4.2. Interpreting Hourglass Sector Zoning -- 9.5. Final Remarks -- Acknowledgments -- References -- Chapter 10 Insights Into Processes and Timescales of Magma Storage and Ascent From Textural and Geochemical Investigations: Case Studies From High‐Risk Neapolitan Volcanoes (Italy) -- 10.1. Introduction -- 10.2. Volcanological Background of Neapolitan Area -- 10.3. Magma Evolution in Crustal Reservoirs -- 10.3.1. Magma Storage Processes and Timescales for Neapolitan Volcanoes -- 10.4. Magma Ascent in Volcanic Conduit -- 10.4.1. Degassing and Crystallization of Ascending Alkaline Neapolitan Magmas -- 10.5. Conclusions: Implications for Future Hazards -- Acknowledgments -- References -- Index -- EULA.
Record Nr. UNINA-9910555178703321
Hoboken, New Jersey : , : American Geophysical Union : , : Wiley, , [2021]
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Crustal magmatic system evolution : anatomy, architecture, and physico-chemical processes / / Matteo Masotta, Christoph Beier and Silvio Mollo, editors
Crustal magmatic system evolution : anatomy, architecture, and physico-chemical processes / / Matteo Masotta, Christoph Beier and Silvio Mollo, editors
Pubbl/distr/stampa Hoboken, New Jersey : , : American Geophysical Union : , : Wiley, , [2021]
Descrizione fisica 1 online resource (254 pages)
Disciplina 552.2
Collana Geophysical monograph
Soggetto topico Magmas
Magmatism
Volcanoes
ISBN 1-119-56447-6
1-119-56446-8
1-119-56448-4
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover -- Title Page -- Copyright Page -- Contents -- List of Contributors -- Preface -- Part I Architecture of Crustal Magmatic Systems -- Chapter 1 Geothermobarometry of Mafic and Ultramafic Xenoliths: Examples From Hualalai and Mauna Kea Volcanoes, Hawaii -- 1.1. Introduction -- 1.2. Geological and Petrological Background -- 1.3. Revised Geothermobarometry of Mauna Kea and Hualalai Xenoliths -- 1.3.1. Rationale and Data Selection -- 1.3.2. Temperature Estimates -- 1.3.3. Pressure Estimates -- 1.4. Discussion -- 1.4.1. Comparisons with Previous Estimates and Implications of the Results -- 1.4.2. Geobarometry of Xenoliths as One of the Links between Petrology and Geophysics -- 1.5. Conclusions and Future Perspectives -- Acknowledgments -- References -- Chapter 2 Trace Element Geothermometry and Geospeedometry for Cumulate Rocks: Quantitative Constraints on Thermal and Magmatic Processes During Igneous Crust Formation -- 2.1. Introduction -- 2.2. A Trace Element Perspective for Decoding Thermal and Magmatic Records in Minerals -- 2.2.1. Equilibrium Exchange -- 2.2.2. Chemical Diffusion -- 2.3. Trace Element Geothermometry -- 2.3.1. Theoretical Basis -- 2.3.2. Trace Element Partitioning -- 2.3.3. Geothermometers for Mafic Cumulates -- 2.4. Trace Element Geospeedometry -- 2.4.1. Diffusion and Geospeedometry -- 2.4.2. Basic Idea of Geospeedometer Design -- 2.4.3. The Mg-REE Coupled Geospeedometer for Mafic Cumulates -- 2.5. A Case Study on Oceanic Crust Formation -- 2.6. Concluding Remarks -- Acknowledgments -- References -- Chapter 3 Magma Storage at Ocean Islands: Insights From Cape Verde -- 3.1. Introduction -- 3.2. The Cape Verde Archipelago -- 3.2.1. Geochronology of the Cape Verde Archipelago -- 3.2.2. The Geology of Santiago -- 3.2.3. The Geology of Fogo -- 3.2.4. The Geology of Brava -- 3.2.5. The Cadamosto Seamount.
3.2.6. Volcanic Eruptions and Hazards at Fogo -- 3.3. Magmatic Processes -- 3.4. Magma Storage in Southern Cape Verde -- 3.4.1. Controls on the Depth of Magma Storage -- 3.5. Insights Into the Shallower Magmatic System -- 3.6. Ocean Islands Globally -- 3.7. Conclusions and Recommendations -- Acknowledgments -- References -- Chapter 4 Anatomy of Intraplate Monogenetic Alkaline Basaltic Magmatism: Clues From Magma, Crystals, and Glass -- 4.1. Introduction -- 4.2. Origin of Intraplate Monogenetic Basaltic Systems -- 4.3. Insights From Whole‐Rock Chemical Data -- 4.4. Insights From Crystal Compositions -- 4.5. Insights From Glass Compositions -- 4.6. Summary and Concluding Remarks -- Acknowledgments -- References -- Part II Experimental and Numerical Constraints on Magmatic Processes -- Chapter 5 Magma Differentiation and Contamination: Constraints From Experimental and Field Evidences -- 5.1. Introduction -- 5.2. Geological and Geochemical Inferences on Fractionation -- 5.3. Mechanisms of Liquid-Crystal Separation -- 5.3.1. Gravitational Collapse and Compaction -- 5.3.2. Crystallization in a Vertical (Non‐Gravitational) TBL -- 5.4. Magma Contamination by Country-Rock Assimilation -- 5.4.1. Field Relations Supporting Assimilation and Magma Contamination -- 5.4.2. Experiments on Contamination -- 5.5. Concluding Remarks -- Acknowledgments -- References -- Chapter 6 Crystal and Volatile Controls on the Mixing and Mingling of Magmas -- 6.1. Introduction: Magma Mixing and Mingling and Volcanic Plumbing Systems -- 6.1.1. Chemical Mixing -- 6.1.2. Physical Mingling -- 6.2. Controls on Magma Mingling: Observations, Experiments, and Numerical Models -- 6.2.1. Field Observations -- 6.2.2. Analogue Experiments -- 6.2.3. High-Temperature and/or High-Pressure Experiments -- 6.2.4. Numerical Models.
6.3. Petrologic Constraints on Mingling Conditions: Petrographic Interpretations -- 6.3.1. Volcanic Systems -- 6.3.2. Phenocryst, Xenocryst, and Groundmass Textures and Chemistries -- 6.3.3. Interpretation of Textures and Chemistries -- 6.3.4. Conceptual Model of Magma Mixing and Mingling -- 6.4. Quantitative Modeling of Crystal and Volatile Controls on Mixing and Mingling -- 6.4.1. The Model of Andrews and Manga (2014) -- 6.4.2. The Model of Bergantz et al. (2015) -- 6.4.3. The Model of Montagna et al. (2015) -- 6.4.4. Comparison and Common Limitations -- 6.5. Conclusions and Outlook for Future Research -- Acknowledgments -- References -- Chapter 7 From Binary Mixing to Magma Chamber Simulator: Geochemical Modeling of Assimilation in Magmatic Systems -- 7.1. Introduction -- 7.2. The End-Member Modes of Magmatic Interaction -- 7.2.1. Defining Homogeneity in Mixtures -- 7.2.2. Terminology of Mixing in Magmatic Systems -- 7.2.3. Mixing Versus Assimilation -- 7.2.4. Defining the End‐Member Modes of Magmatic Interaction -- 7.3. Overview of Geochemical Models of Assimilation -- 7.3.1. In Bunsen's Footsteps: Simple Binary Mixing Model -- 7.3.2. Assimilation Coupled With Fractional Crystallization: AFCDP -- 7.3.3. Integration of Thermodynamic Constraints Into Modeling Assimilation: EC-AFC -- 7.3.4. Phase Equilibria of Assimilation: MCS -- 7.3.5. Comparison of the Different Assimilation Models -- 7.3.6. MCS Applied to a Natural System: Flood Basalts From Antarctica -- 7.4. Summary -- Acknowledgments -- References -- Part III Timescales of Magma Dynamics -- Chapter 8 Elemental Diffusion Chronostratigraphy: Time-Integrated Insights Into the Dynamics of Plumbing Systems -- 8.1. Introduction -- 8.2. Geospeedometry: Approach and Limitations -- 8.3. Isothermal Versus Non-Isothermal Approach -- 8.4. The Temperature Conundrum.
8.5. Two Examples: Stromboli and Popocatépetl Volcanoes -- 8.6. Resolving Elemental Diffusion Stratigraphy -- 8.7. Uncertainties -- 8.8. Conclusions: A Way Forward -- Acknowledgments -- References -- Chapter 9 Interpreting Magma Dynamics Through a Statistically Refined Thermometer: Implications for Clinopyroxene Fe-Mg Diffusion Modeling and S ector Zoning at Stromboli -- 9.1. Introduction -- 9.2. Calibration and Test Data Sets -- 9.3. Parameterization of the Thermometer -- 9.4. Implications for Magma Dynamics at Stromboli -- 9.4.1. Modeling Magma Storage Timescales -- 9.4.2. Interpreting Hourglass Sector Zoning -- 9.5. Final Remarks -- Acknowledgments -- References -- Chapter 10 Insights Into Processes and Timescales of Magma Storage and Ascent From Textural and Geochemical Investigations: Case Studies From High‐Risk Neapolitan Volcanoes (Italy) -- 10.1. Introduction -- 10.2. Volcanological Background of Neapolitan Area -- 10.3. Magma Evolution in Crustal Reservoirs -- 10.3.1. Magma Storage Processes and Timescales for Neapolitan Volcanoes -- 10.4. Magma Ascent in Volcanic Conduit -- 10.4.1. Degassing and Crystallization of Ascending Alkaline Neapolitan Magmas -- 10.5. Conclusions: Implications for Future Hazards -- Acknowledgments -- References -- Index -- EULA.
Record Nr. UNINA-9910830866303321
Hoboken, New Jersey : , : American Geophysical Union : , : Wiley, , [2021]
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Displacement of the south flank of Kilauea Volcano : the result of forceful intrusion of magma into the rift zones / / by Donald A. Swanson, Wendell A. Duffield, and Richard S. Fiske
Displacement of the south flank of Kilauea Volcano : the result of forceful intrusion of magma into the rift zones / / by Donald A. Swanson, Wendell A. Duffield, and Richard S. Fiske
Autore Swanson Donald A.
Pubbl/distr/stampa Washington : , : United States Department of the Interior, Geological Survey, , 1976
Descrizione fisica 1 online resource (iv, 39 pages) : illustrations
Collana Geological Survey professional paper
Soggetto topico Earth movements - Hawaii - Kilauea Volcano
Magmatism - Hawaii - Kilauea Volcano
Earth movements
Magmatism
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Altri titoli varianti Displacement of the south flank of Kilauea Volcano
Record Nr. UNINA-9910706881703321
Swanson Donald A.  
Washington : , : United States Department of the Interior, Geological Survey, , 1976
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Dynamic magma evolution / / Francesco Vetere, editor
Dynamic magma evolution / / Francesco Vetere, editor
Pubbl/distr/stampa Hoboken, NJ : , : Wiley-American Geophysical Union, , 2021
Descrizione fisica 1 online resource (221 pages)
Disciplina 551.13
Collana Geophysical monograph series
Soggetto topico Magmatism
Volcanism
Soggetto genere / forma Electronic books.
ISBN 1-119-52115-7
1-119-52118-1
1-119-52114-9
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910554883603321
Hoboken, NJ : , : Wiley-American Geophysical Union, , 2021
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Dynamic magma evolution / / Francesco Vetere, editor
Dynamic magma evolution / / Francesco Vetere, editor
Pubbl/distr/stampa Hoboken, NJ : , : Wiley-American Geophysical Union, , 2021
Descrizione fisica 1 online resource (221 pages)
Disciplina 551.13
Collana Geophysical monograph series
Soggetto topico Magmatism
Volcanism
ISBN 1-119-52115-7
1-119-52118-1
1-119-52114-9
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Rates and timescales of magma transfer, storage, emplacement, and eruption / Maurizio Petrelli and Georg F. Zellmer -- Boundary layer melts entrapped as melt inclusions? The case of phosphorus and CO2-rich spinelhosted melt inclusions from El Hierro, Canary Islands / Marc-Antoine Longpre, John Stix and Nobumichi Shimizu -- Apatite as a Monitor of Dynamic Magmatic Evolution at TorfajÃkull Volcanic Center, Iceland / Mary Elizabeth Connors, Tamara L. Carley and Adrian Fiege -- Control of magma plumbing systems on long term eruptive behavior of Sakurajima volcano, Japan: Insights from CSD (Crystal Size Distribution) analysis / Shimizu Yamashita and Atsuki Toramaru -- Dynamics of volcanic systems: physical and chemical models applied to equilibrium versus disequilibrium solidification of magmas / Letizia Giuliani, Gianluca Iezzi and Silvio Mollo -- Architecture of the magmatic system in the Main Ethiopian Rift / Sabrina Nazzareni, Stefano Rossi, Maurizio Petrelli and Luca Caricchi -- Rheological behavior of partly crystallized silicate melts under variable shear rate / Francesco Vetere and Francois Holtz -- Investigating the crystallization kinetics via time-resolved neutron diffraction / Marco Zanatta, Caterina Petrillo and Francesco Sacchetti -- Axial melt lens dynamics at fast-spreading mid-ocean ridges / Jurgen Koepke and Chao Zhang.
Record Nr. UNINA-9910677786803321
Hoboken, NJ : , : Wiley-American Geophysical Union, , 2021
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Faulting and magmatism at mid-ocean ridges
Faulting and magmatism at mid-ocean ridges
Pubbl/distr/stampa [Place of publication not identified], : American Geophysical Union, 1998
Disciplina 551.1/36
Collana Geophysical monograph Faulting and magmatism at mid-ocean ridges
Soggetto topico Sea-floor spreading
Faults (Geology)
Magmatism
Geology
Earth & Environmental Sciences
Dynamic & Structural Geology
ISBN 1-118-66450-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910130944803321
[Place of publication not identified], : American Geophysical Union, 1998
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Faulting and magmatism at mid-ocean ridges
Faulting and magmatism at mid-ocean ridges
Pubbl/distr/stampa [Place of publication not identified], : American Geophysical Union, 1998
Disciplina 551.1/36
Collana Geophysical monograph Faulting and magmatism at mid-ocean ridges
Soggetto topico Sea-floor spreading
Faults (Geology)
Magmatism
Geology
Earth & Environmental Sciences
Dynamic & Structural Geology
ISBN 1-118-66450-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNISA-996202746103316
[Place of publication not identified], : American Geophysical Union, 1998
Materiale a stampa
Lo trovi qui: Univ. di Salerno
Opac: Controlla la disponibilità qui
Faulting and magmatism at mid-ocean ridges
Faulting and magmatism at mid-ocean ridges
Pubbl/distr/stampa [Place of publication not identified], : American Geophysical Union, 1998
Disciplina 551.1/36
Collana Geophysical monograph Faulting and magmatism at mid-ocean ridges
Soggetto topico Sea-floor spreading
Faults (Geology)
Magmatism
Geology
Earth & Environmental Sciences
Dynamic & Structural Geology
ISBN 1-118-66450-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910830425103321
[Place of publication not identified], : American Geophysical Union, 1998
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Faulting and magmatism at mid-ocean ridges
Faulting and magmatism at mid-ocean ridges
Pubbl/distr/stampa [Place of publication not identified], : American Geophysical Union, 1998
Disciplina 551.1/36
Collana Geophysical monograph Faulting and magmatism at mid-ocean ridges
Soggetto topico Sea-floor spreading
Faults (Geology)
Magmatism
Geology
Earth & Environmental Sciences
Dynamic & Structural Geology
ISBN 1-118-66450-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910877174103321
[Place of publication not identified], : American Geophysical Union, 1998
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui