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  <title>e-sygoing.link — Differential Equations</title>
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  <description>Latest links in the Differential Equations category</description>
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    <title>Green&#039;s Function Theory</title>
    <link>https://e-sygoing.link/link/5285952-greens-function-theory</link>
    <description>A set of lecture notes on Green&#039;s functions and their applications.</description>
    <pubDate>Wed, 04 Feb 2026 17:26:08 -0500</pubDate>
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    <title>GetDP (a General environment for the treatment of Discrete Problems)</title>
    <link>https://e-sygoing.link/link/5285935-getdp-a-general-environment-for-the-treatment-of-discrete-pr</link>
    <description>A scientific software environment for the numerical solution of integro-differential equations, open to the coupling of physical problems (electromagnetic, acoustic, thermal, mechanical, ...) as well as of numerical methods (finite element methods, boundary element and integral methods, ...).</description>
    <pubDate>Thu, 25 Dec 2025 19:50:03 -0500</pubDate>
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    <title>MathPages: Calculus and DiffEq Notes</title>
    <link>https://e-sygoing.link/link/5285947-mathpages-calculus-and-diffeq-notes</link>
    <description>Kevin Brown&#039;s compilation of postings including many topics in differential equations.</description>
    <pubDate>Thu, 13 Nov 2025 02:02:54 -0500</pubDate>
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    <title>The Polar Representation Theorem</title>
    <link>https://e-sygoing.link/link/5285955-the-polar-representation-theorem</link>
    <description>An article covering n-dimensional time-dependent linear Hamiltonian systems. By Jorge Rezende from the University of Lisbon.  In PDF format.</description>
    <pubDate>Sat, 01 Mar 2025 03:52:04 -0500</pubDate>
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    <title>The Animated Telegraph equation</title>
    <link>https://e-sygoing.link/link/5285938-the-animated-telegraph-equation</link>
    <description>This demonstration illustrates the behaviour of solutions of the telegraph equation</description>
    <pubDate>Sat, 08 Feb 2025 20:50:12 -0500</pubDate>
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    <title>The World of Mathematical Equations</title>
    <link>https://e-sygoing.link/link/5285961-the-world-of-mathematical-equations</link>
    <description>Gives solutions to different types of ordinary differential equations, including linear and nonlinear functions.  Many pages use PDF.</description>
    <pubDate>Mon, 03 Feb 2025 03:39:33 -0500</pubDate>
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    <title>Bifurcations, Equilibria, and Phase Lines: Modern Topics in Differential Equation Courses</title>
    <link>https://e-sygoing.link/link/5285934-bifurcations-equilibria-and-phase-lines-modern-topics-in-dif</link>
    <description>Online course material</description>
    <pubDate>Wed, 18 Sep 2024 00:55:00 -0400</pubDate>
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    <title>Difference Method for Numerical Approximation to Applied Differential Equations.</title>
    <link>https://e-sygoing.link/link/5285946-difference-method-for-numerical-approximation-to-applied-dif</link>
    <description>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&#039;s method.</description>
    <pubDate>Sun, 25 Aug 2024 04:38:04 -0400</pubDate>
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    <title>Linear Mathematics in Infinite Dimensions</title>
    <link>https://e-sygoing.link/link/5285953-linear-mathematics-in-infinite-dimensions</link>
    <description>A set of lecture notes on the mathematical framework that underlies linear systems arising in physics,  engineering and applied mathematics.</description>
    <pubDate>Mon, 04 Mar 2024 22:28:30 -0500</pubDate>
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