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Nonlinear Dynamics in Geosciences

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Cover of 'Nonlinear Dynamics in Geosciences'

Table of Contents

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    Book Overview
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    Chapter 1 Introducing Networks in Climate Studies
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    Chapter 2 Two Paradigms in Landscape Dynamics: Self-Similar Processes and Emergence
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    Chapter 3 Effects of Systematic and Random Errors on the Spatial Scaling Properties in Radar-Estimated Rainfall
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    Chapter 4 Nonlinear Dynamics in the Earth’s Magnetosphere
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    Chapter 5 Microseism Activity and Equilibrium Fluctuations
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    Chapter 6 An Exponential Langevin-type Model for Rainfall Exhibiting Spatial and Temporal Scaling
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    Chapter 7 Storm Tracking and Ensemble Prediction
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    Chapter 8 Towards a Nonlinear Geophysical Theory of Floods in River Networks: An Overview of 20 Years of Progress
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    Chapter 9 Investigations of Wave-induced Nonlinear Response of Minor Species with the KBM Averaging Method
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    Chapter 10 ENSO Signal Propagation Detected by Wavelet Coherence and Mean Phase Coherence Methods
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    Chapter 11 25 Years of Nonlinearity in Oceanography from the Lagrangian Perspective
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    Chapter 12 Nonlinear Dynamics in Geosciences
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    Chapter 13 Hindcast AGCM Experiments on the Predictability of Stratospheric Sudden Warming
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    Chapter 14 Self Organized Criticality and/or Low Dimensional Chaos in Earthquake Processes: Theory and Practice in Hellenic Region
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    Chapter 15 Analysis of Nonlinear Biophysical Time Series in Aquatic Environments: Scaling Properties and Empirical Mode Decomposition
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    Chapter 16 The Arctic Ocean as a Coupled Oscillating System to the Forced 18.6 Year Lunar Gravity Cycle
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    Chapter 17 Dynamical synchronization of truth and model as an approach to data assimilation, parameter estimation, and model learning
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    Chapter 18 Scale, Scaling and Multifractals in Geophysics: Twenty Years on
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    Chapter 19 Statistics of Return Intervals and Extreme Events in Long-term Correlated Time Series
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    Chapter 20 Statistical Properties of Mid-latitude Atmospheric Variability
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    Chapter 21 On the Spatiotemporal Variability of the Temperature Anomaly Field
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    Chapter 22 Time Evolution of the Fractal Dimension of Electric Self-Potential Time Series
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    Chapter 23 Diffusion Entropy Analysis in Seismicity
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    Chapter 24 Snow Avalanches as a Non-critical, Punctuated Equilibrium System
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    Chapter 25 Evidence from Wavelet Lag Coherence for Negligible Solar Forcing of Climate at Multi-year and Decadal Periods
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    Chapter 26 From Diversity to Volatility: Probability of Daily Precipitation Extremes
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    Chapter 27 Stochastic Linear Models of Nonlinear Geosystems
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    Chapter 28 Reducing Forecast Uncertainty to Understand Atmospheric Flow Transitions
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    Chapter 29 The Role of El Niño—Southern Oscillation in Regulating its Background State
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    Chapter 30 Nonlinear Dynamics of Natural Hazards
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    Chapter 31 Predicting the Multifractal Geomagnetic Field
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Title
Nonlinear Dynamics in Geosciences
Published by
Springer Science & Business Media, January 2007
DOI 10.1007/978-0-387-34918-3
ISBNs
978-0-387-34917-6, 978-0-387-34918-3
Authors

Tsonis, Anastasios A., Elsner, James B.

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X Demographics

The data shown below were collected from the profiles of 2 X users who shared this research output. Click here to find out more about how the information was compiled.
Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 73 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United States 3 4%
Spain 1 1%
Canada 1 1%
Unknown 68 93%

Demographic breakdown

Readers by professional status Count As %
Researcher 20 27%
Student > Ph. D. Student 18 25%
Professor > Associate Professor 9 12%
Student > Master 6 8%
Other 4 5%
Other 10 14%
Unknown 6 8%
Readers by discipline Count As %
Earth and Planetary Sciences 28 38%
Engineering 14 19%
Environmental Science 4 5%
Agricultural and Biological Sciences 3 4%
Computer Science 2 3%
Other 10 14%
Unknown 12 16%