Periodic solutions for a Rayleigh type p-Laplacian equation with sign-variable coefficient of nonlinear term
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Publication:979294
DOI10.1016/J.AMC.2010.03.031zbMath1201.34104OpenAlexW1973460986MaRDI QIDQ979294
Fabao Gao, Wei Zhang, Shiping Lu
Publication date: 25 June 2010
Published in: Applied Mathematics and Computation (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.amc.2010.03.031
Applications of operator theory to differential and integral equations (47N20) Periodic solutions to functional-differential equations (34K13)
Related Items (4)
Existence of periodic solutions for \(p\)-Laplacian neutral Rayleigh equation ⋮ Periodic solutions for Liénard type equation with time-variable coefficient ⋮ Positive periodic solution for \(\phi\)-Laplacian Rayleigh equation with strong singularity ⋮ Existence and uniqueness of periodic solution for prescribed mean curvature Rayleigh type \(p\)-Laplacian equation
Cites Work
- On the existence of periodic solutions to \(p\)-Laplacian Rayleigh differential equation with a delay
- Periodic solutions for \(p\)-Laplacian Rayleigh equations
- Existence of periodic solutions for a Liénard type \(p\)-Laplacian differential equation with a deviating argument
- New results of periodic solutions for Rayleigh type \(p\)-Laplacian equation with a variable coefficient ahead of the nonlinear term
- Periodic solutions for a Rayleigh type equation with a variable coefficient ahead of the nonlinear term
- Periodic solution for nonlinear systems with \(p\)-Laplacian-like operators
- Periodic solutions to a second order \(p\)-Laplacian neutral functional differential system
- Periodic solutions for \(p\)-Laplacian neutral functional differential equation with multiple deviating arguments
- Multiple nontrivial solutions for nonlinear periodic problems with the \(p\)-Laplacian
- Sufficient conditions for the existence of periodic solutions to some second order differential equations with a deviating argument
- Periodic solutions for second order differential inclusions with the scalar \(p\)-Laplacian
- Nonuniform nonresonance at the first eigenvalue of the p-laplacian
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