scientific article; zbMATH DE number 7312833
DOI10.13137/2464-8728/30917zbMath1459.35180MaRDI QIDQ4963474
Frank Richard Prieto Medina, Marcela Molina-Meyer
Publication date: 18 February 2021
Full work available at URL: https://rendiconti.dmi.units.it/volumi/52/017.pdf
Title: zbMATH Open Web Interface contents unavailable due to conflicting licenses.
collocation methodsspectral methodsheterogeneous logistic equationnumerical simulation of large solutions and metasolutionsunequal distribution of resources
Spectral, collocation and related methods for boundary value problems involving PDEs (65N35) Population dynamics (general) (92D25) Degenerate elliptic equations (35J70) Numerical bifurcation problems (65P30) Semilinear elliptic equations (35J61)
Cites Work
- Unnamed Item
- Unnamed Item
- Comparing seven spectral methods for interpolation and for solving the Poisson equation in a disk: Zernike polynomials, Logan-Shepp ridge polynomials, Chebyshev-Fourier series, cylindrical Robert functions, Bessel-Fourier expansions, square-to-disk conformal mapping and radial basis functions
- Pole condition for singular problems: The pseudospectral approximation
- Spectral methods for exterior elliptic problems
- Spectral collocation methods and polar coordinate singularities
- Blending Fourier and Chebyshev interpolation
- Advanced topics in Shannon sampling and interpolation theory
- Spectral methods for incompressible viscous flow
- Uniqueness of large positive solutions
- Global dynamics of generalized logistic equations
- Spectral collocation schemes on the unit disc
- Elliptic eigenvalue problems and unbounded continua of positive solutions of a semilinear elliptic equations
- A new fast Chebyshev-Fourier algorithm for Poisson-type equations in polar geometries
- Polar differentiation matrices for the Laplace equation in the disk under nonhomogeneous Dirichlet, Neumann and Robin boundary conditions and the biharmonic equation under nonhomogeneous Dirichlet conditions
- Optimal uniqueness theorems and exact blow-up rates of large solutions
- Spectral Methods
- On the Positive Solutions of Semilinear Equations Δu + λu - hu p = 0 on the Compact Manifolds
- Efficient Spectral-Galerkin Methods III: Polar and Cylindrical Geometries
- Spectral Methods in MATLAB
- A Pseudospectral Approach for Polar and Spherical Geometries
- A Practical Guide to Pseudospectral Methods
- Linear Second Order Elliptic Operators
- Spectral Methods
- On the existence and numerical computation of classical and non-classical solutions for a family of elliptic boundary value problems
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