Article
Publicly Available
Persistence Properties of the Two-Component b-Family System
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Min Zhu
Published/Copyright:
March 10, 2016
Published Online: 2016-03-10
Published in Print: 2012-05-01
© 2016 by Advanced Nonlinear Studies, Inc.
Articles in the same Issue
- Sublinear Elliptic Equations With Singular Potentials
- On the Cheeger–Buser Type Inequalities for the p-Laplacian
- Symmetrization for Neumann Anisotropic Problems and Related Questions
- Nonlinear Schrödinger Equations with Sign-Changing Potential
- Asymptotic Properties of Ground States of Quasilinear Schrödinger Equations With H1-Subcritical Exponent
- Entire Solutions to Nonlinear Scalar Field Equations with Indefinite Linear Part
- Steady States, Global Existence and Blow-up for Fourth-Order Semilinear Parabolic Equations of Cahn–Hilliard Type
- Multiple Non Semi-Trivial Solutions for Elliptic Systems
- The Brezis–Nirenberg Problem for the Hénon Equation: Ground State Solutions
- Periodic Solutions of Pendulum-Like Hamiltonian Systems in the Plane
- Persistence Properties of the Two-Component b-Family System
Keywords for this article
Two-component b-family system;
compact support;
propagation speed;
persistence properties
Articles in the same Issue
- Sublinear Elliptic Equations With Singular Potentials
- On the Cheeger–Buser Type Inequalities for the p-Laplacian
- Symmetrization for Neumann Anisotropic Problems and Related Questions
- Nonlinear Schrödinger Equations with Sign-Changing Potential
- Asymptotic Properties of Ground States of Quasilinear Schrödinger Equations With H1-Subcritical Exponent
- Entire Solutions to Nonlinear Scalar Field Equations with Indefinite Linear Part
- Steady States, Global Existence and Blow-up for Fourth-Order Semilinear Parabolic Equations of Cahn–Hilliard Type
- Multiple Non Semi-Trivial Solutions for Elliptic Systems
- The Brezis–Nirenberg Problem for the Hénon Equation: Ground State Solutions
- Periodic Solutions of Pendulum-Like Hamiltonian Systems in the Plane
- Persistence Properties of the Two-Component b-Family System