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Micromechanics, Statistics and Hazards of Mechanical Failure
Virtual Workshop, Oct 19-22, 2020
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Section 1: Common aspects and particular features of natural avalanche processes
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Section 2: Data processing, statistical analysis and empirical laws and models
Avalanche statistics at the yielding transition of amorphous solids: universality in elastoplastic models
Ezequiel Ferrero
Avalanche statistics at the yielding transition of amorphous solids: universality in elastoplastic models
Ezequiel Ferrero
Section 1: Common aspects and particular features of natural avalanche processes
Crackling around the jamming transition : Local and global avalanches in a two-dimensional sheared granular medium
Jonathan Barés
Failure of porous materials under compression: two universality classes?
Eduard Vives
Spatiotemporal organization of correlated local activity within global avalanches in slowly driven interfaces
Ramon Planet
Avalanche criticality during ferroelectric switching
Blai Casals
Section 2: Data processing, statistical analysis and empirical laws and models
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Section 5: Model-based hazard assessment and forecasting
Induced Seismicity During Hydraulic Stimulations: From Self-Arrested to Unbounded Ruptures
Grzegorz Kwiatek
Section 2: Data processing, statistical analysis and empirical laws and models
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Section 4: Physical origin of precursors, correlations and heterogeneity
Quantifying preparation process of large earthquakes: Damage localization and coalescent dynamics
Ilya Zaliapin
Section 2: Data processing, statistical analysis and empirical laws and models
Hyperbolic geometry of earthquake networks
Ilya Zaliapin
Section 3: Micromechanical modeling from molecular dynamics to mean field
From Plastic Flow To Brittle Fracture: Role Of Microscopic Friction In Amorphous Solids
Kamran Karimi
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