| D02AGF | Ordinary differential equations, boundary value problem, shooting and matching technique, allowing interior matching point, general parameters to be determined |
| D02GAF | Ordinary differential equations, boundary value problem, finite difference technique with deferred correction, simple nonlinear problem |
| D02GBF | Ordinary differential equations, boundary value problem, finite difference technique with deferred correction, general linear problem |
| D02HAF | Ordinary differential equations, boundary value problem, shooting and matching, boundary values to be determined |
| D02HBF | Ordinary differential equations, boundary value problem, shooting and matching, general parameters to be determined |
| D02JAF | Ordinary differential equations, boundary value problem, collocation and least squares, single nth-order linear equation |
| D02JBF | Ordinary differential equations, boundary value problem, collocation and least squares, system of first-order linear equations |
| D02RAF | Ordinary differential equations, general nonlinear boundary value problem, finite difference technique with deferred correction, continuation facility |
| D02TGF | nth-order linear ordinary differential equations, boundary value problem, collocation and least squares |
| D03EAF | Elliptic PDE, Laplace's equation, two-dimensional arbitrary domain |
| D03EBF | Elliptic PDE, solution of finite difference equations by SIP, five-point two-dimensional molecule, iterate to convergence |
| D03ECF | Elliptic PDE, solution of finite difference equations by SIP for seven-point three-dimensional molecule, iterate to convergence |
| D03UAF | Elliptic PDE, solution of finite difference equations by SIP, five-point two-dimensional molecule, one iteration |
| D03UBF | Elliptic PDE, solution of finite difference equations by SIP, seven-point three-dimensional molecule, one iteration |