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Stephen Wolfram
Applied Mathematics
>
Numerical Methods
SUBSECTIONS
Approximation Theory
(17)
ITEMS
85
items are in this category. Listing items
1
to
50
:
Accuracy estimates for computer algebra system initial-value problem (IVP) solvers
Algorithmic Integrability Tests for Nonlinear Differential and Lattice Equations
Analysis of Periodic Oscillations with Computer Algebra
Application of Computer Algebra Systems for Stability Analysis of Difference Schemes on Curvilinear Grids
Application of
Mathematica
to the Direct Semi-Numerical Solution of Finite Element Problems
Approximate solutions of boundary-value problems using computer algebra software
Boundary Modulation with
Mathematica
Calculation of Weights in Finite Difference Formulas
Closed-Form Expressions for the Finite Difference Approximations for First and Higher Derivatives Based on Taylor Series
A compendium of FEM integration formulas for symbolic work
Computing generalized inverse of polynomial matrices by interpolation
Computing the Coefficients of a Recurrence Formula for Numerical Integration by Moments and Modified Moments
CP Methods for the Schrödinger Equation Revisited
Crack Edge Element of Three-Dimensional Displacement Discontinuity Method with Boundary Division into Triangular Leaf Elements
Curve fitting using spline sections of different orders
Determining Sample Sizes for Monte Carlo Integration
Discrete Approximation of Linear Functions
Efficient Method for the Calculation of Mean Extinction. III. Approximation or Representation of Particle-Size Distributions by Rational Functions.
Eigenvalues to arbitrary precision for one-dimensional Schrödinger equations by the shooting method using integer arithmetic
Electron-Wave-Function Calculation in the Continuous Part of the Spectrum: The Case of Slowly Varying Potential Asymptotics
Electronic Wave Propagation With
Mathematica
Explicit Analytical Solution of the Nonlinear Vlasov-Poisson System
A Family of Approximation Formulas and Some Applications
Finding Closed-Form Solutions of Difference Equations by Symbolic Methods
Finite Difference Method by Using
Mathematica
Finite elements beyond Courant's triangulation
Fitting Using Finite Monte Carlo Samples
Forward and Inverse Boundary-Value Problem Solver Using Symbolic Computation
The Gauss-Laguerre Quadrature Rule for Finite-Part Integrals
Geodesics on Convex Surfaces for a GTD/UTD Program
Graphic and Numerical Comparison Between Iterative Methods
A Half-Explicit Runge-Kutta Method of Order 5 for Solving Constrained Mechanical Systems
Half-Explicit Runge-Kutta Methods for Differential-Algebraic Systems of Index 2
Higher Order Normal Form and Period Averaging
Hybrid solvers for composition and splitting methods
If Lie Had Known About
Mathematica
Integrating Symbolic and Numeric Techniques in Atomic Physics
A least squares method for solving initial-boundary value problems
Mathematica
in Action, I: Monotonic Interpolation, Revisited
Mathematica
in Action: Check Your Answers... But How?
A
Mathematica
program for the two-step twelfth-order method with multi-derivative for the numerical solution of a one-dimensional Schrödinger equation
The
Mathematica
Programmer: Interval Plotting and Global Optimization
The
Mathematica
Programmer: Interval Plotting and Global Optimization, Part 2
MathSource Reviews: Splines
Matrix Newton Interpolation and Progressive 3D Imaging: PC-Based Computation
A Method for Solving Inverse Boundary-Value Problems Using Symbolic Computation
Métodos Iterativos con
Mathematica
Monte Carlo Integration with
Mathematica
3.0
Multiparameter Direct Variational Solutions for Linear Dissipative Oscillators
New finite difference formulas for numerical differentiation
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