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Landslide Science and Practice

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Cover of 'Landslide Science and Practice'

Table of Contents

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    Book Overview
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    Chapter 1 Submarine Landslides and Their Consequences: What Do We Know, What Can We Do?
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    Chapter 2 Model Test of Submarine Landslide Impact Forces Acting on Cables
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    Chapter 3 Güímar and La Orotava Mega-Landslides (Tenerife) and Tsunamis Deposits in Canary Islands
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    Chapter 4 The Dynamics of Subaqueous Rock Avalanches: The Role of Dynamic Fragmentation
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    Chapter 5 Submarine Slope Failures Along the Northern Sicilian Continental Margin (Southern Tyrrhenian Sea) and Possible Implications for Geo-Hazard
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    Chapter 6 Interaction of Landslide Mass and Water Resulting in Impulse Waves
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    Chapter 7 Dynamics, Velocity, and Run-Out of Subaqueous Rock Avalanches
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    Chapter 8 Simulation of Submarine Landslides by Cellular Automata Methodology
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    Chapter 9 Modelling of the 1888 Landslide Tsunami, Trondheim, Norway
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    Chapter 10 Landslides Along Norwegian Fjords: Causes and Hazard Assessment
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    Chapter 11 Mapping of Subaqueous Landforms for Near-Shore Landslide Susceptibility Assessment Along Norwegian Fjords
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    Chapter 12 State of the Art for Landslides Along the North Bulgarian Black Sea Coast
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    Chapter 13 Flood Historical Data for Flood Risk Estimation in Coastal Areas, Eastern Tyrrhenian Sea, Italy
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    Chapter 14 Contribution of Physical Modelling to Landslide Hazard Mapping: Case of the French Basque Coast
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    Chapter 15 Landslides in Sea Cliffs Area Along the Capri Coast (Gulf of Naples, Italy)
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    Chapter 16 Large Landslides in Sea-Cliff Areas of the Central Adriatic Coast (Italy)
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    Chapter 17 Coupling On-Land and Marine Investigations to Assess Coastal Instability in the Napoli and Salerno Bays (Campania, Southern Italy)
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    Chapter 18 Identification of Hydro-Meteorological Triggers for Villerville Coastal Landslide
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    Chapter 19 Statistically Based Sea Cliff Instability Susceptibility Assessment at Regional Scale, at the Burgau-Lagos Coastal Section (Algarve, Portugal)
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    Chapter 20 Landslide Science and Practice
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    Chapter 21 Numerical Analysis of Two Wooden House Damages Induced by Dune Liquefaction during the 2007 Niigata Chuetsu-Offshore Earthquake
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    Chapter 22 The Recent Activities in the Earthquake-Induced Landslides Research Project Carried Out by the Japan Landslide Society: The Interim Report
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    Chapter 23 Landslide Science and Practice
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    Chapter 24 Mechanism of Landslide Composed of Strongly Weathered Mudstone Induced by the 2004 Mid-Niigata Earthquake
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    Chapter 25 Tien-Shan Landslides Triggered by Earthquakes in Pamir-Hindukush Zone
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    Chapter 26 Inferring Seismic Response of Landslide-Prone Slopes from Microtremor Study
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    Chapter 27 Evaluation of the Temporal Probability of Earthquake-Induced Landslides in the Island of Lefkada, Greece
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    Chapter 28 Building Vulnerability to the 2008 Ilia-Achaia Earthquake Induced Slides
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    Chapter 29 Seismic Slope Performance: Comparison of FEM Results to Displacement-Based Methods
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    Chapter 30 Possible Vapor Lock Generation Near a Sliding Surface as a Mechanism of Huge Earthquake Landslides
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    Chapter 31 Statistical Analysis of Deep-Seated Landslides Induced by Recent Strong Earthquakes in Eastern Japan: An Approach Based on Pre-Existing Landslide Topography
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    Chapter 32 Susceptibility Mapping of Deep-Seated Landslides Around Active Fault System, a Case Study of Western Niigata, Japan
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    Chapter 33 Effect of the Thickness of Geological Strata on Seismically-Induced Slope Failure in IMN Earthquake, 2008 in Japan
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    Chapter 34 Landslides Induced by the 1908 Southern Calabria: Messina Earthquake (Southern Italy)
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    Chapter 35 Earthquake Damage Zone GIS Modelling: A Modulation Between Co-Seismic Deformation and Landslide Susceptibility
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    Chapter 36 Spatial Distribution of Landslide Dams Triggered by the 2008 Wenchuan Earthquake
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    Chapter 37 Geological and Structural Control of Earthquake-Induced Landslides in El Salvador
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    Chapter 38 Landslides Induced by Historical and Recent Earthquakes in Central-Southern Apennines (Italy): A Tool for Intensity Assessment and Seismic Hazard
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    Chapter 39 Slope Stability of Continental Megalandslides
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    Chapter 40 Seismically Induced Landslides in Abruzzo (Central Italy): Morphostructural Control
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    Chapter 41 Semi-Empirical Assessment of Road Vulnerability to Seismically Induced Slides
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    Chapter 42 Earthquake Related Landslides in the Indian Himalaya: Experiences from the Past and Implications for the Future
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    Chapter 43 Relationships Between Slope Instabilities, Active Tectonics and Drainage Systems: The Dúdar Landslide Case (Granada, Southern Spain)
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    Chapter 44 Modern Seismogenic Landslides Caused by the Pamir-Hindu Kush Earthquakes and Their Consequences in Central Asia
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    Chapter 45 Hazard and Risk Scenarios of Landslides Triggered by Earthquakes
Attention for Chapter 38: Landslides Induced by Historical and Recent Earthquakes in Central-Southern Apennines (Italy): A Tool for Intensity Assessment and Seismic Hazard
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Chapter title
Landslides Induced by Historical and Recent Earthquakes in Central-Southern Apennines (Italy): A Tool for Intensity Assessment and Seismic Hazard
Chapter number 38
Book title
Landslide Science and Practice
Published by
Springer Berlin Heidelberg, February 2013
DOI 10.1007/978-3-642-31427-8_38
Book ISBNs
978-3-64-231426-1, 978-3-64-231427-8
Authors

Eliana Esposito, Luca Guerrieri, Sabina Porfido, Eutizio Vittori, Anna Maria Blumetti, Valerio Comerci, Alessandro M. Michetti, Leonello Serva

Editors

Claudio Margottini, Paolo Canuti, Kyoji Sassa

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 13 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 13 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 4 31%
Student > Ph. D. Student 3 23%
Student > Doctoral Student 1 8%
Other 1 8%
Student > Postgraduate 1 8%
Other 0 0%
Unknown 3 23%
Readers by discipline Count As %
Earth and Planetary Sciences 4 31%
Environmental Science 2 15%
Agricultural and Biological Sciences 1 8%
Physics and Astronomy 1 8%
Engineering 1 8%
Other 0 0%
Unknown 4 31%