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Earthquake Source Asymmetry, Structural Media and Rotation Effects

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Cover of 'Earthquake Source Asymmetry, Structural Media and Rotation Effects'

Table of Contents

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    Book Overview
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    Chapter 1 Development of Earthquake Rotational Effect Study
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    Chapter 2 Sources of Rotation and Twist Motions
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    Chapter 3 Some Examples of Rotation Effects: the Tulbagh Earthquake, South Africa
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    Chapter 4 Deviations from Symmetry and Elasticity: Asymmetric Continuum Mechanics
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    Chapter 5 Degenerated Asymmetric Continuum Theory
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    Chapter 6 Continuum with Rotation Nuclei and Defects: Dislocation and Disclination Densities
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    Chapter 7 Towards a Discrete Theory of Defects
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    Chapter 8 Fault Dynamics and Related Radiation
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    Chapter 9 A Review on Friction
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    Chapter 10 Soliton Physics
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    Chapter 11 Rotational Motions Excited by Earthquakes
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    Chapter 12 Ground Rotational Motions Recorded in Near-Source Region of Earthquakes
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    Chapter 13 Fracture-Band Geometry and Rotation Energy Release
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    Chapter 14 Rotation Motions: Recording and Analysis
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    Chapter 15 Glacier Motion: Seismic Events and Rotation/Tilt Phenomena
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    Chapter 16 Rotational Energy and Angular Momentum of Earthquakes
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    Chapter 17 Bend-Rotation Wave as a Mechanism of Macroseismic Effects
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    Chapter 18 Solitary Waves in Crustal Faults and their Application to Earthquakes
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    Chapter 19 Seismic Rotation Waves: Spin and Twist Solitons
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    Chapter 20 Earth Rotation, Elasticity and Geodynamics: Earthquake Wave Rotary Model
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    Chapter 21 Seismic Rotation Waves in the Continuum with Nonlinear Microstructure
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    Chapter 22 Tectonic Solitons Propagating Along the Fault
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    Chapter 23 Complexity of Rotation Soliton Propagation
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    Chapter 24 Micromorphic Continuum with Defects and Taylor-Bishop-Hill Theory for Polycrystals: Anisotropic Propagation of Seismic Waves and the Golebiewska Gauge
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    Chapter 25 Seismic Ray Theory for Structural Medium based on Kawaguchi and Finsler Geometry
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    Chapter 26 From Non-Local to Asymmetric Deformation Field
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    Chapter 27 Earthquake Hazard in the Valley of Mexico: Entropy, Structure, Complexity
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    Chapter 28 Note on the Historical Rotation Seismographs
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    Chapter 29 Ring Laser Gyroscopes as Rotation Sensors for Seismic Wave Studies
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    Chapter 30 Rotational Motions in Seismology: Theory, Observation, Simulation
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    Chapter 31 Absolute Rotation Measurement Based on the Sagnac Effect
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    Chapter 32 Design of Rotation Seismometer and Non-Linear Behaviour of Rotation Components of Earthquakes
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    Chapter 33 Rotation and Twist Motion Recording — Couple Pendulum and Rigid Seismometers System
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    Chapter 34 Equation of Pendulum Motion Including Rotations and its Implications to the Strong-Ground Motion
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    Chapter 35 Strong Motion Rotation Sensor
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    Chapter 36 High-Resolution Wide-Range Tiltmeter: Observations of Earth Free Oscillations Excited by the 26 December 2004 Sumatra -Andaman Earthquake
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    Chapter 37 Fiber Optic Sensors for Seismic Monitoring
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    Chapter 38 Deriving Seismic Surface Rotations for Engineering Purposes
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    Chapter 39 Effects of Torsional and Rocking Excitations on the Response of Structures
Attention for Chapter 30: Rotational Motions in Seismology: Theory, Observation, Simulation
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Chapter title
Rotational Motions in Seismology: Theory, Observation, Simulation
Chapter number 30
Book title
Earthquake Source Asymmetry, Structural Media and Rotation Effects
Published by
Springer, Berlin, Heidelberg, January 2006
DOI 10.1007/3-540-31337-0_30
Book ISBNs
978-3-54-031336-6, 978-3-54-031337-3
Authors

Alain Cochard, H. Igel, B. Schuberth, W. Suryanto, A. Velikoseltsev, U. Schreiber, J. Wassermann, F. Scherbaum, D. Vollmer, Cochard, Alain, Igel, H., Schuberth, B., Suryanto, W., Velikoseltsev, A., Schreiber, U., Wassermann, J., Scherbaum, F., Vollmer, D.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 55 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United Kingdom 1 2%
Germany 1 2%
Unknown 53 96%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 15 27%
Researcher 9 16%
Student > Master 9 16%
Professor 3 5%
Student > Postgraduate 3 5%
Other 9 16%
Unknown 7 13%
Readers by discipline Count As %
Earth and Planetary Sciences 28 51%
Engineering 10 18%
Physics and Astronomy 5 9%
Environmental Science 1 2%
Agricultural and Biological Sciences 1 2%
Other 2 4%
Unknown 8 15%