ITERATIVE METHOD FOR A CLASS OF FOURTH-ORDER <i>P</i>-LAPLACIAN BEAM EQUATION

From MaRDI portal
Publication:5859408

DOI10.11948/2156-907X.20180276zbMath1458.34046OpenAlexW2961363283MaRDI QIDQ5859408

Shuo Zhang, Zhanbing Bai, Zeng-Ji Du

Publication date: 16 April 2021

Published in: Journal of Applied Analysis & Computation (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.11948/2156-907x.20180276




Related Items (16)

On solutions of a class of three-point fractional boundary value problemsSolvability for some fourth order two-point boundary value problemsA class of impulsive vibration equation with fractional derivativesPositive solutions of beam equations under nonlocal boundary value conditionsUniqueness result and iterative method for fourth order \(p\)-Laplacian integral boundary value problems with different nonlinear termsExistence of solution of a three-point boundary value problem via variational approachEigenvalue criteria for existence of positive solutions to fractional boundary value problemExistence and Asymptotic Behavior of Beam-Equation Solutions with Strong Damping and p(x)-Biharmonic OperatorExistence of beam-equation solutions with strong damping and p(x)-biharmonic operatorThe Green function for a class of Caputo fractional differential equations with a convection termInfinitely many periodic solutions for fourth-order impulsive differential equation with oscillatory nonlinear termExponential stability of a class of nonlinear systems via fixed point theoryA class of fourth order nonlinear boundary value problem with singular perturbationPositive solutions for a fourth-order Riemann-Stieltjes integral boundary value problemEXISTENCE AND MULTIPLICITY OF SOLUTIONS FOR A QUASILINEAR ELLIPTIC SYSTEM ON UNBOUNDED DOMAINS INVOLVING NONLINEAR BOUNDARY CONDITIONSSOLVABILITY FOR RIEMANN-STIELTJES INTEGRAL BOUNDARY VALUE PROBLEMS OF BAGLEY-TORVIK EQUATIONS AT RESONANCE



Cites Work


This page was built for publication: ITERATIVE METHOD FOR A CLASS OF FOURTH-ORDER <i>P</i>-LAPLACIAN BEAM EQUATION