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A Simple and Unified Approach to Identify Integrable Nonlinear Oscillators and Systems

Nonlinear Sciences – Exactly Solvable and Integrable Systems
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A simple circuit realization of the tent map

Nonlinear Sciences – Chaotic Dynamics
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A simple denoising algorithm using wavelet transform

Nonlinear Sciences – Chaotic Dynamics
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A Simple Learning Algorithm for the Traveling Salesman Problem

Nonlinear Sciences – Adaptation and Self-Organizing Systems
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A simple method of chaos control

Nonlinear Sciences – Chaotic Dynamics
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A Simple Model for Faraday Waves

Nonlinear Sciences – Pattern Formation and Solitons
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A simple model for self organization of bipartite networks

Nonlinear Sciences – Adaptation and Self-Organizing Systems
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A simple model for the formation of a complex organism

Nonlinear Sciences – Adaptation and Self-Organizing Systems
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A simple model for the formation of vegetated dunes

Nonlinear Sciences – Pattern Formation and Solitons
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A Simple Model of Epidemics with Pathogen Mutation

Nonlinear Sciences – Chaotic Dynamics
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A Simple Model of the Evolution of Simple Models of Evolution

Nonlinear Sciences – Adaptation and Self-Organizing Systems
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A Simple Proof of the Stability of Solitary Waves in the Fermi-Pasta-Ulam model near the KdV Limit

Nonlinear Sciences – Pattern Formation and Solitons
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A simple statistical explanation for the localization of energy in nonlinear lattices with two conserved quantities

Nonlinear Sciences – Pattern Formation and Solitons
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A simple theory for the Raman spike

Nonlinear Sciences – Pattern Formation and Solitons
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A simple way of making a Hamiltonian system into a bi-Hamiltonian one

Nonlinear Sciences – Exactly Solvable and Integrable Systems
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A simple yet complex one-parameter family of generalized lorenz-like systems

Nonlinear Sciences – Chaotic Dynamics
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A simplified model for red cell dynamics in small blood vessels

Nonlinear Sciences – Chaotic Dynamics
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A Simulation of Oblivious Multi-Head One-Way Finite Automata by Real-Time Cellular Automata

Nonlinear Sciences – Cellular Automata and Lattice Gases
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A Soft Computing technique in rainfall forecasting

Nonlinear Sciences – Adaptation and Self-Organizing Systems
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A solitary-wave representation of turbulence in the physical-plus-eddy space

Nonlinear Sciences – Chaotic Dynamics
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