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Rock Friction and Earthquake Prediction

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Cover of 'Rock Friction and Earthquake Prediction'

Table of Contents

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    Book Overview
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    Chapter 1 Editors’ Note
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    Chapter 2 A Review of Rock Mechanics Studies in the United States Pertinent to Earthquake Prediction
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    Chapter 3 Volume Changes During Fracture and Frictional Sliding: A Review
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    Chapter 4 Friction of Rocks
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    Chapter 5 A Note on Permeability Changes in Geologic Material Due to Stress
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    Chapter 6 The Effect of Water on Stress Relaxation of Faulted and Unfaulted Sandstone
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    Chapter 7 Mineralogy and Physical Nature of Clay Gouge
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    Chapter 8 Rock Friction-Effect of Confining Pressure, Temperature, and Pore Pressure
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    Chapter 9 Aspects of Asperity—Surface Interaction and Surface Damage of Rocks during Experimental Frictional Sliding
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    Chapter 10 Electrical Resistivity Changes in Rocks During Frictional Sliding and Fracture
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    Chapter 11 Seismic Velocity Changes during Fracture and Frictional Sliding
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    Chapter 12 Dilatancy and Fracture Induced Velocity Changes in Rock and their Relation to Frictional Sliding
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    Chapter 13 Velocity Anomalies: An Alternative Explanation Based on Data from Laboratory Experiments
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    Chapter 14 Creep, Stable Sliding, and Premonitory Slip
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    Chapter 15 Time-Dependent Friction and the Mechanics of Stick-Slip
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    Chapter 16 Transient Creep and Semibrittle Behavior of Crystalline Rocks
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    Chapter 17 Effect of Displacement Rate on the Real Area of Contact and Temperatures Generated During Frictional Sliding of Tennessee Sandstone
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    Chapter 18 Fracture Surface Energy of Olivine
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    Chapter 19 Fault and System Stiffnesses and Stick-Slip Phenomena
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    Chapter 20 Experimental Observations of Elastic Wave Radiation Characteristics from Tensile Cracks and Pre-existing Shear Faults
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    Chapter 21 Model Studies of Shear Displacement along a Pre-existing Fault
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    Chapter 22 Small Faults Formed as Deformation Bands in Sandstone
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    Chapter 23 Development of Faults as Zones of Deformation Bands and as Slip Surfaces in Sandstone
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    Chapter 24 Propagation of Slip along Frictional Surfaces
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    Chapter 25 Rupture and Particle Velocity During Frictional Sliding
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    Chapter 26 Nonuniform Friction as a Physical Basis for Earthquake Mechanics
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    Chapter 27 Comments to ‘Nonuniform friction as a physical basis for earthquake mechanics’, by Amos Nur
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Title
Rock Friction and Earthquake Prediction
Published by
Birkhäuser Basel, December 2012
DOI 10.1007/978-3-0348-7182-2
ISBNs
978-3-03-487184-6, 978-3-03-487182-2
Editors

Byerlee, James D., Wyss, Max

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 9 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 9 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 6 67%
Other 1 11%
Unknown 2 22%
Readers by discipline Count As %
Earth and Planetary Sciences 6 67%
Engineering 1 11%
Unknown 2 22%