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PR: 9
Difference Method for Numerical Approximation to Applied Differential Equations.
This page explains how to use the difference formula of differentials to approximate the differential equations for applied systems. This method is used when analytical techniques are unavailable or cause computers to spit out garbage. This difference method is very similar to the Runge-Kata and Newton's method.
http://www.geocities.com [ Detail ]
PR: 8
arXiv Front: AP Analysis of PDEs
PDEs section of the mathematics e-print arXiv.
http://front.math.ucdavis.edu [ Detail ]
PR: 8
Weak and Variational Forms of Poisson's Equation
A set of lecture notes on Poisson's equation. [PDF]
http://www.colorado.edu [ Detail ]
PR: 7
Analytic Differential Equations
Lectures on Analytic Differential Equations by Sergei Yakovenko at the Weizmann Institute. [PDF]
http://www.wisdom.weizmann.ac.il [ Detail ]
PR: 7
Complex Analysis and Dynamics
Various lecture notes by C. McMullen
http://www.math.harvard.edu [ Detail ]
PR: 7
Differential Equations in Industry and Commerce
European TMR network coordinated at the Oxford Centre for Industrial and Applied Mathematics.
http://www2.maths.ox.ac.uk [ Detail ]
PR: 7
Introduction to Green's Functions
Green's functions play an important role in the solution of linear ordinary and partial differential equations, and are a key component to the development of boundary integral equation methods.
http://www.boulder.nist.gov [ Detail ]
PR: 6
The Animated Telegraph equation
This demonstration illustrates the behaviour of solutions of the telegraph equation
http://www.math.ubc.ca [ Detail ]
PR: 6
Bifurcations, Equilibria, and Phase Lines: Modern Topics in Differential Equation Courses
Online course material
http://math.bu.edu [ Detail ]
PR: 6
C*ODE*E Archive
Consortium of ODE Experiments at Harvey Mudd College. Newsletter, graphics, links.
http://www.math.hmc.edu [ Detail ]